Relays & Sockets. General-purpose electromechanical relays and sockets

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1 Relays & Sockets General-purpose electromechanical relays and sockets

2 Relays (Selection Guide) Category Slim Power Relay Model RJ RJ PC Board Terminal General SPDT, DPDT: A or A contact RoHS directive compliant DPDT SPDT, SPST-NO, DPDT, DPST-NO SPDT and SPST-NO available with A rated contacts. Plain High Capacity Plain DPDT, DPST-NO Shape Part No. Pin Terminal Blade Terminal RJS RJS RJS RJV PC Board Terminal RJV RJV RJV Contact Configuration SPDT DPDT DPDT (bifurcated) SPDT, SPST-NO DPDT, DPST-NO DPDT (bifurcated) DPST-NO (bifurcated) Contact Material Silver nickel alloy Silver nickel alloy Silver nickel alloy Silver tin indium Silver nickel alloy Silver nickel alloy Contact Maximum Capacity (A) 0 ~ 0 A A A A A A A Rated Load (resistive load) 0V AC, A 0V DC, A 0V AC, A 0V DC, A 0V AC, A 0V DC, A 0V AC, A 0V DC, A 0V AC, A 0V DC, A 0V AC, A 0V DC, A 0V AC, A 0V DC, A Coil Rated Power Consumption (approx.) Pickup (against rated values) Dropout (against rated values), 0, 0, 0, 0, 0V AC,,, 00V DC 0. VA (0 Hz) 0.W AC: 0% max., DC: 70% max. AC: 0% min., DC: 0% min.,, 0,, 0, 0, 0, 0V AC,,,,, 00-0V DC. VA (0 Hz), 0. to. VA (0 Hz), 0.W to 0.W AC: 0% max. DC: 70% max. AC: 0% min. DC: 0% min.,, 0,, 0, 0, 0, 0V AC,,,,, 00V DC 0. to. VA (0 Hz) 0.W to 0.W AC: 0% max., DC: 70% max. AC: 0% min., DC: 0% min.,, 0,, 0, 0, 0, 0V AC,,,,, 00-0V DC. VA (0 Hz), 0. to. VA (0 Hz), 0.W to 0.W AC: 0% max. DC: 70% max. AC: 0% min. DC: 0% min. Contact Resistance 0 mω max. 0 mω max. 0 mω max. 0 mω max. Operate Time ms max. ms max. ms max. ms max. Release Time 0 ms max. 0 ms max. 0 ms max. 0 ms max. Insulation Resistance 00 MΩ min. (00V DC megger) Life Dielectric Strength Mechanical Electrical Between contact and coil Between samepole contacts Operating Temperature Operating Humidity DIN rail mount Applicable Sockets PC board mount AC: 0,000,000 operations min. DC: 0,000,000 operations min. AC load: 00,000 operations min. DC load: 00,000 operations min. 000V AC, minute 000V AC, minute 0 to +70 C (no freezing) to % RH (no condensation) SJS-0B SJS-07L SJS-0B SJS-07L AC load: 0 million operations min. DC load: 0 million operations min. AC load: 00,000 operations min. DC load: 00,000 operations min. SJS-0B SJS-07L AC: 0,000,000 operations min. (SPDT/DPDT) 0,000,000 operations min. (SPST-NO/DPST-NO) DC: 0,000,000 operations min. (SPDT/DPDT) 0,000,000 operations min. (SPST-NO/DPST-NO) AC load: 00,000 operations min. DC load: 00,000 operations min. AC load: 0 million operations min. DC load: 0 million operations min. AC load: 00,000 operations min. DC load: 00,000 operations min. Panel mount SJS- Dimensions (H W D mm) Weight (approx.) g g 7g 7g 7g DPST: 7g, DPST-NO: g Approvals UL, CSA, VDE, CE UL, CSA, VDE, CE See Page Note: The above table shows initial values. : Measured using V DC, A voltage drop method : Measured at the rated voltage ( C)

3 Relays (Selection Guide) DPDT, 0A contact Miniature size Universal Relay PDT, A contact Miniature size Miniature Relay RU RY RM PDT, A contact Bifurcated contact DPDT, PDT; A or A contact A bifurcated contact also available DPDT, A contact Miniature lightweight relay RUS RUS RUS RYS-U RYS-U RMS-U RUV RUV RUV RYV-U RYV-U RMV-U DPDT PDT PDT DPDT PDT DPDT Silver alloy Gold-clad silver Gold-clad silver-nickel Gold-clad silver Silver 0A A A A A A 0V AC, 0A 0V DC, 0A 0V AC, A 0V DC, A, 00 (00-0), 0 (0-0), 00 (00-0), 0 (0-0)V AC,,,, 0V DC 0V AC, A 0V DC, A, 00 (00-0), 0 (0-0), 00 (00-0), 0 (0-0)V AC,,,, 00, 0V DC 0V AC/0V DC, A 0V AC, A 0V AC, A 0V DC, A DPDT:,,, 0, 00, 0,, 0, 00, 0, 0, 0V AC,,,, 00, 0V DC PDT:,,, 0, 00-0, 0-0, 00-0, 0-0V AC,,,, 00-0V DC 0V AC, A 0V AC, A 0V DC, A,,, 0, 00-0, 00-0, 0-0V AC,,,, 00-0V DC. VA (0Hz) W VA (0Hz) 0.W. VA (0Hz) 0.W AC: 0% max., DC: 0% max. AC: 0% max., DC: 0% max. AC: 0% min., DC: 0% min. AC: 0% min., DC: 0% min. 0 mω max. 0 mω max. 0 ms max. 0 ms min. 0 ms max. 0 ms min. 00 MΩ min. (00V DC megger) AC: 0,000,000 operations min. DC: 00,000,000 operations min. 0,000,000 operations min. 00,000 operations min. 00,000 operations min. 00,000 operations min. 00,000 operations min. 00,000 operations min. 00,000 operations min. 00,000 operations min. 00V AC, minute 00V AC, minute 000V AC, minute 000V AC, minute Simple: to +70 C, Others: to +0 C (no freezing) to + C (no freezing) to % RH (no condensation) to % RH (no condensation) SUS-L, SMS-0A, SMS-0C, SMS-0D, SMS-0DF SUS-L, SYS-0A, SYS-0C, SYS-0D, SYS-0DF SYS-0A SYS-0C SYS-0A SYS-0DF SYS-0C SYS-0D SMS- SYS- SYS- SYS- SMS- SMS- SYS- SYS- SYS- SYS- SMS-0A SMS-0DF SMS-0C SMS-0D SMS- SMS g g g g UL, c-ul, TÜV, CE UL, CSA, TÜV, CE Note: The above table shows initial values. : Measured using V DC, A voltage drop method : Measured at the rated voltage ( C)

4 Relays (Selection Guide) Category Model General SPDT, DPDT, PDT, PDT; 0A contact Miniature size Power Relay RH Shape Part No. Pin Terminal Blade Terminal RHB-U RHB-U RHB-U RHB-U PC Board Terminal RHV-U RHV-U RHV-U RHV-U Contact Configuration SPDT DPDT PDT PDT Contact Material Silver cadmium oxide 0 ~ 0 0A Contact Maximum Capacity (A) Rated Load (resistive load) 0V AC/0V DC, 0A 0V AC, 7A 0V AC/0V DC, 0A 0V AC, 7.A Rated,,, 0, 00, 0,, 0, 00, 0, 0, 0V AC,,,, 00, 0V DC,,, 0, 00-0, 0-0, 00-0, 0-0V AC,,,, 00-0V DC,,, 0, 00, 0,, 0, 00, 0, 0, 0V AC,,,, 00, 0V DC Coil Power Consumption (approx.) Pickup (against rated values) Dropout (against rated values) VA (0Hz) 0.W AC: 0% max., DC: 0% max. AC: 0% min., DC: 0% min.. VA (0Hz) 0.W.7 VA (0Hz).W Contact Resistance 0 mω max. Operate Time 0 ms max. ms max. Release Time 0 ms max. ms max. Insulation Resistance 00 MΩ min. (00V DC megger) VA (0Hz).W Life Mechanical 0,000,000 operations min. Electrical 00,000 operations min. 00,000 operations min. 00,000 operations min. Dielectric Between contact and coil 000V AC, minute Strength Between same-pole contacts 000V AC, minute Operating Temperature to +0 C (no freezing) to +0 C (no freezing) Operating Humidity to % RH (no condensation) Applicable Sockets DIN rail mount SHB-0A SHB-0C SHB-0A SHB-0C SHB-0D SHB-0A SHB-0C SHB-0A SHB-0C Panel mount SHB- SHB- SHB- SHB- PC board mount SHB- SHB- SHB- SHB- Dimensions (H W D mm) Weight (approx.) g 7g 0g 7g Approvals UL, CSA, TÜV, CE See Page Note: The above table shows initial values. : Measured using V DC, A voltage drop method : Measured at the rated voltage ( C)

5 Relays (Selection Guide) SPDT, 0A contact Heavy duty power relay Power Relay DPDT, PDT; 0A contact Heavy duty power relay Latch Relay RR RRKP RYKS DPDT; 0A contact Dual coil latch relay DPDT; A contact Dual coil latch relay RRP-U RRP-U RRPA-U RRKP-U RRBA-U RRBA-U RRB-U RYKS-U SPDT DPDT PDT DPDT DPDT Silver Silver Silver Gold-plated silver 0A 0A 0A A 0V AC, 0A 0V AC, 7.A 0V DC, 0A 0V AC, 0A 0V AC, 7.A 0V DC, 0A 0V AC/0A, 0V AC/7.A, 0V DC/0A, 00V DC/0.A 0/0V AC, A 0V DC, A 00V DC, 0.A,,, 0, 00, 0,, 0, 00, 0, 0, 0V AC,,,, 0V DC,,, 0, 00, 0,, 0, 00, 0, 0, 0V AC,,,, 0V DC,,, 0, 00, 0,, 0, 00, 0, 0, 0V AC,,,, 0V DC,,, 0, 00, 0V AC,,,, 00, 0V DC. VA (0Hz).W. VA (0Hz).W. VA (0Hz).W. VA (0Hz).W AC: 0% max., DC: 0% max. AC: 0% max., DC: 0% max. Set voltage: 0% max. Set voltage: 0% max. AC: 0% min., DC: % min. AC: 0% min., DC: % min. Reset voltage: 0% max. Reset voltage: 0% max. 0 mω max. 0 mω max. 0 mω max. 0 mω max. ms max. ms max. Set time: 0 ms max. Set time: ms max. ms max. ms max. Reset time: 0 ms max. Reset time: ms max. 00 MΩ min. (00V DC megger) 00 MΩ min. (00V DC megger) 0,000,000 operations min. 0,000,000 operations min. 0,000,000 operations min. 00,000 operations min. 00,000 operations min. 00,000 operations min. 00,000 operations min. 000V AC, minute Pin terminal: 00V AC, minute Blade terminal: 000V AC, minute 00V AC, minute 00V AC, minute 000V AC, minute 000V AC, minute 000V AC, minute 700V AC, minute to +0 C (no freezing) to +0 C (no freezing) to +0 C (no freezing) to % RH (no condensation) to % RH (no condensation) to % RH (no condensation) SRB-0 SRB- SRP-0A, SRP-0A, SRP-0C SRB-0 SRP-, SRP-70 SRB- SRP-0A, SRP-0A, SRP-0C SRP-, SRP-70 SRB- SRP-0A, SRP-0C, SRP-0A SRP- SRP-70 SYS-0A SYS-0C SYS- SYS- SYS g 0g (pin terminal) g (pin terminal) 70g 7g UL, CSA UL, CSA, TÜV, CE UL, CSA UL, CSA Note: The above table shows initial values. : Measured using V DC, A voltage drop method : Measured at the rated voltage ( C)

6 Relays (Selection Guide) Category PC Board Relay Category Force Guided Relay Model RVT Model RFV General NO contact, A mm-wide,.mm-high space-saving card relay. General -pole, A -pole,a Force guided contact mechanism Shape Shape Part No. RVT-G RVT-G Contact Configuration SPST-NO (twin) Contact Material Silver alloy (gold clad) A Part No. RFV(-pole) RFV(-pole) Contact Configuration Contact Material NO-NC, NO-NC AgSnO (Au flashed) A NO-NC, NO-NC, NO-NC Contact Maximum Capacity (A) Contact Maximum Capacity (A) Rated Load (resistive load) 0V AC A, V DC A Rated,, V DC Power Consumption (approx.) 0mW 00mW Coil Pickup (against rated values) 70% maximum Dropout (against rated values) 0% minimum Contact Resistance 0mΩ maximum Operate Time 0ms maximum Release Time ms maximum Insulation Resistance 00MΩ minimum (00V DC meggar) Life Mechanical 0,000,000 operations minimum Electrical See page. Dielectric Strength Between contact and coil Between same-pole contacts 000V AC, minute 70V AC, minute Protection Structure Washable Operating Temperature 0 to +70 C (no freezing) Operating Humidity % RH (no condensation) Storage Temperature C (no freezing) Storage Humidity % RH (no condensation) Dimensions (H W D mm)..0. Weight (approx.) g Approvals UL, CSAs TÜV, CE Terminal Arrangement (bottom view) All dimensions in mm. -ø. holes (.) Tolerance: ±0. Page Note: The above table shows initial values. : Measured using V DC, A voltage drop method : Measured at the rated voltage (.0) Rated Load (resistive load) 0V AC, A, 0V DC, A Rated,, V DC Power Consumption (approx.) 0.W 0.W Coil Pickup (against rated DC: 7% maximum values) Dropout (against rated values) DC: 0% maximum Contact Resistance 00mΩ maximum Operate Time 0ms maximum Release Time 0ms maximum Insulation Resistance 000MΩ (DC00V meggar, same measurement positions as the dielectric strength) Mechanical 0,000,000 operations minimum Life Electrical 00,000 operations minimum (0V AC A, 0V DC A) 00,000 (0V AC A, 0V DC A) Between contact and coil 000V AC, minute Dielectric Strength Between differentpole contacts 00V AC, minute Between contacts 7- and V AC, minute Between contacts - and -, Between contacts - and 7-, Between contacts - and -0 00V AC, minute Between contacts 7- and - Between contacts -0 and - Between contacts - and - 000V AC, minute Between contacts - and - Between contacts - and 7- Between contacts - and -0 Between contacts 7- and -0 Between same-pole contacts 00V AC, minute Operating Temperature 0 to + C (no freezing) Operating Humidity to % RH (no condensation) Storage Temperature 0 to + C (no freezing) Storage Humidity to % RH (no condensation) Applicable Din Rail SFV--07L SFV--07L Socket PC Board SFV-- SFV-- Dimensions (H W D mm) 0 0 Weight (approx.) 0g g Approvals UL, c-ul, TÜV Page Note: The above table shows initial values. : Measured using V DC, A voltage drop method : Measured at the rated voltage ( C)

7 Operating Instructions Operating Instructions Driving Circuit for Relays. To make sure of correct relay operation, apply rated voltage to the relay coil.. Input voltage for the DC coil: A complete DC voltage is best for the coil power to make sure of stable relay operation. When using a power supply containing a ripple voltage, suppress the ripple factor within %. When power is supplied through a rectification circuit, the relay operating characteristics, such as pickup voltage and dropout voltage, depend on the ripple factor. Connect a smoothing capacitor for better operating characteristics as shown below.. Operating the relay in synchronism with AC load: If the relay operates in synchronism with the AC power voltage of the load, the relay life may be reduced. If this is the case, select a relay in consideration of the required reliability for the load. Or, make the relay turn on and off irrespective of the AC power phase or near the point where the AC phase crosses zero voltage. Vin R TE Load EAC. Leakage current while relay is off: When driving an element at the same time as the relay operation, a special consideration is needed for the circuit design. As shown in the incorrect circuit below, Leakage current (Io) flows through the relay coil while the relay is off. Leakage current causes the coil release failure or adversely affects the vibration resistance and shock resistance. Design a circuit as shown in the correct example. Incorrect R Smoothing capacitor Io + R Relay TE EAC Vin Correct. Surge suppression for transistor driving circuits: When the relay coil is turned off, a high-voltage pulse is generated, causing the transistor to deteriorate and sometimes to break. Be sure to connect a diode to suppress the counter electromotive force. Then, the coil release time becomes slightly longer. To shorten the coil release time, connect a Zener diode between the collector and emitter of the transistor. Select a Zener diode with a Zener voltage slightly higher than the power voltage. Counter emf suppressing diode + R Relay Emin Emax Emean R Pulsation DC Emax Emin Ripple factor (%) = 00% Emean Emax = Maximum of pulsating current Emin = Minimum of pulsating current Emean= DC mean value Protection for Relay Contacts. The contact ratings show maximum values. Make sure that these values are not exceeded. When an inrush current flows through the load, the contact may become welded. If this is the case, connect a contact protection circuit, such as a current limiting resistor.. Contact protection circuit: When switching an inductive load, arcing causes carbides to form on the contacts, resulting in an increased contact resistance. In consideration of contact reliability, contact life, and noise suppression, use of a surge absorbing circuit is recommended. Note that the release time of the load becomes slightly longer. Check the operation using the actual load. Incorrect use of a contact protection circuit will adversely affect switching characteristics. Four typical examples of contact protection circuits are shown in the following table: This protection circuit can be used when the load impedance is smaller than the RC impedance in an AC load power circuit. Power Ind. Load C R R: Resistor of approximately the same resistance value as the load C: 0. to µf This protection circuit can be used for both AC and DC load power circuits. C Power Ind. Load R: Resistor of approximately the same R resistance value as the load C: 0. to µf This protection circuit can be used for DC load power circuits. Use a diode + with the following ratings. Reverse withstand voltage: Power D Ind. Load Power voltage of the load circuit 0 Forward current: More than the load current This protection circuit can be used for both AC and DC load power circuits. For a best result, when using on a Varistor power voltage of to V AC/DC, Power Ind. Load connect a varistor across the load. When using on a power voltage of 00 to 0V AC/DC, connect a varistor across the contacts.. Do not use a contact protection circuit as shown below: RC Diode Varistor C Power C Power Load Load This protection circuit is very effective in arc suppression when opening the contacts. But, the capacitor is charged while the contacts are opened. When the contacts are closed, the capacitor is discharged through the contacts, increasing the possibility of contact welding. This protection circuit is very effective in arc suppression when opening the contacts. But, when the contacts are closed, a current flows to charge the capacitor, causing contact welding. Generally, switching a DC inductive load is more difficult than switching a DC resistive load. Using an appropriate arc suppressor, however, will improve the switching characteristics of a DC inductive load. Notes on PC Board Mounting. When mounting two or more relays on a PC board collectively, take other components into consideration. Do not use relays in the vicinity of strong magnetic field as this may affect relay operation.. Do not install the relay on the PC board in the way the PC board is bent, otherwise copper foil may be cut or solder may be displaced after operating for a long time or due to vibration, degrading the relay s performance. 7

8 Operating Instructions Operating Instructions. Relay direction must be taken into consideration when installing the relay on PC board so that shock noise resistance, life, contact reliability is maintained. Shock Resistance To maintain shock resistance, it is ideal to mount the relay so that the armature movement is perpendicular to the direction of vibration and shock. Life Large load that causes arcs may result in the contact material scattered off, accumulating around the contact. This will degrade insulation resistance between the circuits. Make sure that relay is mounted in the correct direction. Contact Reliability It is not desirable for a single relay to switch both large and low level load. The scattered contact material produced when switching the large load adheres to the contacts when switching the low level load and may cause contact failure. Therefore. when multipole relay, avoid install the relay in the direction where the low level contacts comes below the large load. Also avoid terminal connection.. Mounting Space When two or more mounting relays closely, observe the instructions below. Ambient Temperature When two ore more relays are mounted, provide sufficient spacing between the relays (see the minimum spacing) so that the interaction of relays do not generate excessive heat. When multiple PC boards with relays are mounted to a rack, the temperature may rise excessively. When mounting relays, leave enough space so that heat will not build up, and so that the Relays ambient temperature remains within the specified operating temperature range.. RVT Auto-soldering does not cause flux to enter inside the relay. Also, auto-cleaning will not cause the cleaning liquid to enter inside the relay. Use alcohol-based solvents for cleaning. Cleaning with the boiling method is recommended. Avoid ultrasonic cleaning on relays. Use of ultrasonic cleaning may cause breaks in the coil or slight sticking of the contacts due to the ultrasonic energy. Soldering. When soldering the relay terminals, use a soldering iron of 0W (0 C), and quickly complete soldering within approximately seconds. Sn-Ag-Cu is recommended for lead-free soldering.. Auto-soldering: Solder at 0 C within to seconds.. Because the terminal part is filled with epoxy resin, do not excessively solder or bend the terminal. Otherwise, air tightness will degrade;. Avoid the soldering iron from touching the relay cover or the epoxy filled terminal part.. Use a non-corrosive rosin flux. Other Precautions. General notice: To maintain the initial characteristics, do not drop the relay or shock the relay. The relay cover cannot be removed from the base during normal operation. To maintain the initial characteristics, do not remove the relay cover. Use the relay in environments free from condensation of dust, sulfur dioxide (SO ), and hydrogen sulfide (H S). Make sure that the coil voltage does not exceed the applicable coil voltage range.. Connecting outputs to electronic circuits: When the output is connected to a load which responds very quickly, such as an electronic circuit, contact bouncing causes incorrect operation of the load. Take the following measures into consideration. Connect an integral circuit. Suppress the pulse voltage due to bouncing within the noise margin of the load.. UL- and CSA-approved ratings may differ from product rated values determined by IDEC.. Do not use relays in the vicinity of strong magnetic field as this may affect relay operation. DC diode type has polarity. The surge absorbing element on AC relays with RC or DC relays with diode is provided to absorb the counter electromotive force generated by the coil. When the relay is subject to an excessive external surge voltage, the surge absorbing element may be damaged. Add another surge absorbing provision to the relay to prevent damage. Safety Precautions Turn off the power to the relay before starting installation, removal, wiring, maintenance, and inspection of the relays. Failure to turn power off may cause electrical shock or fire hazard. Observe specifications and rated values, otherwise electrical shock or fire hazard may be caused. Use wires of the proper size to meet the voltage and current requirements. Tighten the terminal screws on the relay socket to the proper tightening torque.

9 RJ Series Slim Power Relays Compact and rugged power relays. Large switching capacity. Compact housing only.7-mm wide. Large contact rating RJS (-pole): A RJS (-pole): A Non-polarized LED indicator available. IDEC s unique light guide structure enables high visibility of coil status from any direction. Excellent electrical and mechanical life. Electrical life: 00,000 operations (AC load) Mechanical life: 0 million operations (AC coil) Environmentally friendly, RoHS directive compliant (EU directive 00//EC). Contains no lead, cadmium, mercury, hexavalent chromium, PBB or PBDE). Diode type Diode reverse withstand voltage: 000V UL recognized, CSA certified, EN compliant. Lloyd Register type approved. Applicable Standards Mark Certification Organization / File No. RJ UL0 UL recognized, File No. E CSA C. No. CSA File No. LR EN0- Reg.-Nr. B VDE No. 000 EU Low Directive Plug-in Terminal Style -pole (SPDT) -pole (DPDT) Part No. Code Part No. Code A D Standard (with LED Indicator) RJS-CL- A D RJS-CL- A0 D A0 D Simple (without LED Indicator) RJS-C- A0 D A0 D00 RJS-C- A0 With diode (DC coil only) (with LED indicator) A:, A: + RJS-CLD- RJS-CLD- With diode (DC coil only) D RJS-CD- A:, A: + D RJS-CD- With diode (DC coil only) D RJS-CLD- (with LED indicator) A: +, A: D00 RJS-CLD- With diode (DC coil only) A: +, A: RJS-CD- RJS-CD- With RC (with LED indicator) RJS-CLR- A A RJS-CLR- With RC (without LED indicator) RJS-CR- A0 A0 RJS-CR- Note: Coil voltages other than shown above are available (ex. A, A0, A0) Contact Ratings No. of Poles Contact NO NC NO NC Allowable Contact Power Resistive Load 000VA AC 0W DC 000VA AC 0W DC 000VA AC 0W DC 000VA AC 0W DC Inductive Load 7VA AC 0W DC 7VA AC 0W DC 000VA AC 0W DC 000VA AC 0W DC Rated Load Resistive Load Inductive Load cos ø = 0. L/R = 7 ms 0V AC A 7.A 0V DC A A 0V AC A 7.A 0V DC A A 0V AC A A 0V DC A A 0V AC A A 0V DC A A Note: Measured at operating frequency of 0 operations per minute. Failure rate level P, /0,000,000 (reference value) (JIS C00) A A A0 A0 A0 A0 A0 D D D D D D00 D D D D00 A A A0 A0 Allowable Switching Current A A Coil Code Code Rated Coil A V AC A V AC A0 0V AC A0 0V AC A0 0V AC A0 0V AC A0 0V AC D V DC D V DC D V DC D V DC D V DC D V DC Note: Specify a coil voltage code in place of in the Part No. Allowable Switching 0V AC V DC 0V AC V DC Minimum Applicable Load (Note) V DC, 00 ma (reference value) V DC, 0 ma (reference value)

10 RJ Series Slim Power Relays Approved Ratings UL CSA VDE AC-, DC- Resistive Resistive Inductive Resistive (Note) RJ RJ RJ RJ RJ RJ RJ RJ RJ RJ NO NC NO NC NO NC NO NC NO NC NO NC NO NO NO NO 0V AC A A A A A A A A 7.A 7.A A A A A A A 0V DC A A A A A A A A A A A A A A.A A Note: According to the utilization categories of IEC07-- Coil Ratings Rated AC 0/0 Hz DC Coil Code Without LED Indicator Rated Current (ma) ±% (at 0 C) Coil Resistance (Ω) ±0% (at 0 C) With LED Indicator Rated Current (ma) ±% (at 0 C) 0 Hz 0 Hz 0 Hz 0 Hz Coil Resistance (Ω) ±0% (at 0 C) V AC A V AC A V AC A V AC A V AC A V AC A V AC A Operating Characteristics (against rated values at 0 C) Minimum Pickup 0% maximum Dropout 0% minimum Maximum Continuous Applied (Note) 0% Power Consumption Approx. 0. VA (0Hz) V D V D V D % 0% 70% Approx. V D maximum minimum 0.W V D V D % Note: Maximum continuous applied voltage is the maximum voltage that can be applied on relay coils. Specifications Model RJS RJS Number of Poles -pole -pole Contact Configuration SPDT DPDT Contact Material Silver-nickel alloy Degree of Protection IP0 Contact Resistance (initial value) ( ) 0 mω maximum Operate Time ( ) ms maximum Release Time ( ) 0 ms maximum (with diode: 0 ms maximum) Between contact and coil 000V AC, minute 000V AC, minute Dielectric Strength Between contacts of the same pole 000V AC, minute 000V AC, minute Between contacts of different poles 000V AC, minute Vibration Operating extremes 0 to Hz, amplitude 0.7 mm Resistance Damage limits 0 to Hz, amplitude 0.7 mm Shock Operating extremes NO contact: 00 m/s, NC contact: 00 m/s Resistance Damage limits 000 m/s Electrical Life (rated load) AC load: 00,000 operations minimum (operation frequency 00 operations per hour) DC load: 00,000 operations minimum (operation frequency 00 operations per hour) Mechanical Life (no load) AC coil: 0,000,000 operations minimum (operation frequency,000 operations per hour) DC coil: 0,000,000 operations minimum (operation frequency,000 operations per hour) Operating Temperature ( ) 0 to +70 C (no freezing) Operating Humidity to % RH (no condensation) Weight (approx.) g Note: Above values are initial values. : Measured using V DC, A voltage drop method. : Measured at the rated voltage (at 0 C), excluding contact bounce time. : 00% rated voltage. Applicable Socket Terminal Part No. RJS (-pole) RJS (-pole) Standard Screw Terminal SJS-0B SJS-0B Finger-safe Screw Terminal SJS-07L SJS-07L Page 0

11 RJ RJ Series Slim Power Relays Dimensions RJS RJS-CL 7.0 ø. hole ø. hole Internal Connection Diagrams RJS-CL- Standard (w/led Indicator) (A) (A) () () () Coil voltage V AC/DC and below RJS-C- Simple (A) (A) (A) () () () (A) (A) () () () Coil voltage greater than V AC/DC RJS-CLD- With Diode (w/led Indicator) (A). All dimensions in mm. RJS-CL- Standard (w/led Indicator) (A) (A) Coil voltage V AC/DC and below RJS-C- Simple (A) (A) () () () 7() () () () () () 7() () () (A) (A) Coil voltage greater than V AC/DC RJS-CLD- With Diode (w/led Indicator) (A) () () () (A) () () () 7() () () () () () (A) + () () () Coil voltage V DC and below RJS-CD- With Diode (A) (A) + () () () Coil voltage greater than V DC (A) + 7() () () Coil voltage V DC and below RJS-CD- With Diode (A) () () () (A) + 7() () () Coil voltage greater than V DC (A) + () () () (A) + 7() () () RJS-CLD- With Diode (w/led Indicator) (A) + (A) + RJS-CLD- With Diode (w/led Indicator) (A) + () () () (A) + () () () (A) () () () Coil voltage V DC and below RJS-CD- With Diode (A) + (A) () () () Coil greater than V DC (A) 7() () () Coil voltage V DC and below RJS-CD- With Diode (A) + () () () (A) 7() () () Coil voltage greater than V DC (A) () () () (A) 7() () () RJS-CLR- With RC (w/led Indicator) (A) (A) () () () Coil voltage V AC and below RJS-CR- With RC (A) (A) () () () (A) (A) () () () Coil voltage greater than V AC RJS-CLR- With RC (w/led Indicator) (A) (A) () () () 7() () () Coil voltage V AC and below RJS-CR- With RC (A) (A) () () () 7() () () (A) (A) () () () 7() () () Coil voltage greater than V AC

12 RJ Series Slim Power Relays Electrical Life Curve RJ (resistive load) 00 RJ (resistive load) 00 Life ( 0,000 operations) V DC inductive load (NC contact) 0V AC inductive load 0V DC resistive load (NC contact) 0V DC inductive load (NO contact) 0V AC Resistive Load 0V DC resistive load (NO contact) Life ( 0,000 operations) V DC inductive load (NC contact) 0V AC inductive load 0V DC resistive load (NC contact) 0V DC inductive load (NO contact) 0V AC Resistive Load 0V DC resistive load (NO contact) Maximum Switching Capacity RJ (resistive load) RJ (resistive load) 0 DC resistive load (NC contact) DC inductive load (NO contact) AC resistive load DC resistive load (NO contact) AC inductive load 0 DC resistive load (NC contact) DC inductive load (NO contact) AC resistive load DC resistive load (NO contact) AC inductive load DC inductive load (NC contact) Load (V) DC inductive load (NC contact) Load (V) Operating Temperature and Coil Temperature Rise RJ Temperature Rise ( C) RJ AC Coil (0 Hz) Load Current A pole No Load Current Ambient Temperature ( C) Temperature Rise ( C) AC Coil (0 Hz) Load Current A pole No Load Current Ambient Temperature ( C) Temperature Rise ( C) DC Coil Load Current A pole No Load Current Ambient Temperature ( C) Temperature Rise ( C) AC Coil (0 Hz) Load Current A poles No Load Current Ambient Temperature ( C) 70 Temperature Rise ( C) AC Coil (0 Hz) Load Current A poles No Load Current Ambient Temperature ( C) Temperature Rise ( C) DC Coil Load Current A poles No Load Current Ambient Temperature ( C) 70 The above temperature rise curves show characteristics when 00% the rated coil voltage is applied. The slanted dashed line indicates allowable temperature rise for the coil at different ambient temperatures.

13 RJ RJ Series Slim Power Relay Plug-in Terminal (bifurcated contacts) High contact reliability with bifurcated contacts (minimum applicable load: V DC, 00µA) Applicable Standards Applicable Standards Mark File No. or Organization UL0 UL Recognized File No. E CSA C. No. CSA File No. LR EN0- VDE No. 000 EU Low Directive IDEC's unique light-guide structure The smallest width for -pole/bifurcated contacts relay (based on IDEC research as of April 0) Non-polarized green LED indicator available (except for simple type) IDEC s unique light-guide structure enables an RJ relay to be identified by the illuminating LED. Diode, reverse polarity diode, and RC circuits are available. Peak inverse voltage is 000V. UL recognized, CSA certified, VDE approved, EN compliant. Lightguide Green LED indicator compliant with IEC requirements. Relays Bifurcated Contacts Style -pole (bifurcated contacts DPDT) Part No. Coil Code Standard RJS-CL- A, A, A0, A, A0, (with LED indicator) A0, A0, A0, D, D, D, Simple (without LED indicator) RJS-C- D, D, D00 With diode (with LED indicator) RJS-CLD- With diode (without LED indicator) RJS-CD- With diode Reverse polarity RJS-CLD- D, D, D, D, D, D00 (with LED indicator) With diode Reverse polarity RJS-CD- (without LED indicator) With RC circuit (with LED indicator) RJS-CLR- A, A, A0, A, A0, With RC circuit (without LED indicator) RJS-CR- A0, A0, A0 Coil Code Code A V AC A V AC A0 0V AC A V AC A0 0V AC A0 0V AC A0 0V AC A0 0V AC D V DC D V DC D V DC D V DC D V DC D V DC Contact Ratings Allowable Contact Power Rated Load Allowable Resistive Inductive Resistive Switching Inductive Load Load Load Load cosø=0. L/R=7ms Current 0VA AC 0W DC 00VA AC W DC 0V AC A 0.A 0V DC A 0.A Note: Measured at operating frequency of 0 operations per minute. Failure rate level P, /0,000,000 (reference value) (JIS C00) A Allowable Switching 0V AC V DC Minimum Applicable Load (Note) V DC 00µA (reference value)

14 RJ Series Slim Power Relay Plug-in Terminal (bifurcated contacts) Ratings UL Ratings CSA Ratings VDE Ratings Resistive General Use Resistive Inductive General Use Resistive NO NC NO NC NO NC NO NC NO NC NO NC 0V AC A A A A A A 0V DC A A A A A A A A Coil Ratings Rated (V) Coil Code Without LED Indicator Rated Current (ma) ±% (at 0 C) Coil Resistance (Ω) ±0% (at 0 C) 0Hz 0Hz 0Hz 0Hz With LED Indicator Rated Current (ma) ±%, (at 0 C) Coil Resistance (Ω) ±0% (at 0 C) Operating Characteristics (against rated values at 0 C) Pickup (initial value) Dropout (initial value) Maximum Continuous Applied (Note) V A V A V A0..,70..,70 AC V A. 7., ,00 0% 0% 0/0 Hz 0V A0. 7., ,00 maximum minimum 0% 0V A0..,0..,0 0V A0..,00..,00 0V A0..7,70..7,70 V D V D DC V D % 0% V D.,00.7,00 maximum minimum V D.0,0 0.7,0 00-0V D00.-.,70.-.7,70 0% Note: Maximum continuous applied voltage is the maximum voltage that can be applied to relay coils. Power Consumption Approx..VA (0Hz) 0. to.va (0Hz) 70% Approx. 0. to 0.W Specifications Model Number of Poles Contact Configuration Contact Material Degree of Protection Contact Resistance (initial value) Operating Time (at 0 C) Release Time (at 0 C) Impulse Withstand Insulation Resistance Between contact and coil Dielectric Between contacts of the Strength same pole Between contacts of the different poles RJS -pole DPDT (bifurcated contacts) AgNi (gold clad) IP0 0 mω maximum (measured using V DC, A voltage drop method) ms maximum (at the rated coil voltage, excluding contact bounce time) With diode or RC: 0 ms maximum 0 ms maximum (at the rated coil voltage, excluding contact bounce time) With diode or RC: 0 ms maximum 0,000V AC (between contact and coil) 00 MΩ minimum (00V DC megger),000v AC, minute,000v AC, minute,000v AC, minute Vibration Operating Extremes 0 to Hz, amplitude 0.7 mm Resistance Damage Limits 0 to Hz, amplitude 0.7 mm Shock Operating Extremes NO contact: 00 m/s, NC contact: 00 m/s Resistance Damage Limits,000 m/s Electrical Life AC load: 00,000 operations minimum (operating frequency,00 per hour) DC load: 00,000 operations minimum (operating frequency,00 per hour) AC load: 0 million operations minimum Mechanical Life (operating frequency,000 operations per hour) DC load: 0 million operations minimum (operating frequency,000 operations per hour) Operating Temperature (00% rated voltage) 0 to +70 C (no freezing) Operating Humidity to % RH (no condensation) Storage Temperature 0 to + C (no freezing) Storage Humidity to % RH (no condensation) Weight (approx.) g Applicable Sockets Style Part No. Ordering No. Standard Screw Terminal Finger-safe Screw Terminal PC Board Terminal Package Quantity SJS-0B SJS-0B SJS-07L SJS-07L SJS- SJS-PN0 0 SJS- SJS-PN0 0

15 RJ RJ Series Slim Power Relay Plug-in Terminal (bifurcated contacts) Dimensions ø. elongated hole All dimensions in mm. Internal Connection (bottom view) RJS-CL- Standard (with LED indicator) (A) () () () (A) () () () RJS-CLD- With diode/reverse polarity (with LED indicator) (A) + (A) + () () () () () () (A) 7() () () V AC/DC or less RJS-C- Simple (A) () () () (A) 7() () () (A) 7() () () Over V AC/DC V AC/DC or less (A) Over V AC/DC RJS-CD- With diode/reverse polarity (A) + () () () 7() () () (A) 7() () () RJS-CLD- With diode (with LED indicator) (A) () () () (A) () () () (A) 7() () () RJS-CLR- With RC (with LED indicator) (A) () () () (A) () () () (A) + + 7() () () (A) 7() () () V AC/DC or less RJS-CD- With diode Over V AC/DC (A) 7() () () V AC/DC or less RJS-CR- With RC (A) Over V AC/DC 7() () () (A) () () () (A) () () () (A) + 7() () () (A) 7() () () Operating Temperature and Coil Temperature Rise Temperature Rise ( C) AC Coil (0 Hz) AC Coil (0 Hz) DC Coil Load current A x poles 0 Load current A x poles 0 No load current 0 No load current 0 Load current A x poles 0 0 No load current Temperature Rise ( C) Ambient Temperature ( C) Ambient Temperature ( C) Ambient Temperature ( C) The slanted dashed line indicates the allowable temperature rise for the coil at different ambient temperatures. The above temperature rise curves show the characteristics when 00% of the rated coil voltage is applied. Temperature Rise ( C)

16 RJ Series Slim Power Relays PC Board Terminal Compact power relays. High switching capacity up to A. Contact configurations: SPDT, SPST-NO, DPDT, DPST-NO. SPDT, SPST-NO are available in high capacity type. Compact housing only.7-mm wide. High contact rating RJV (-pole): A, A RJV (-pole): A IDEC s unique spring return mechanism ensures long electrical and mechanical life. Electrical life: 00,000 operations (AC load) Mechanical life: 0 million operations (AC coil, SPDT, DPDT) Flux-tight structure Environmentally friendly, RoHS directive compliant (EU directive 00//EC). Contains no lead, cadmium, mercury, hexavalent chromium, PBB, or PBDE). UL0 Standard Mark Certification Organization / File No. UL recognized File No. E CSA C. No. EN0- CSA File No. LR VDE No. 000 EU Low Directive PC Board Terminal No. of Poles Style Contact Part No. Coil Code Plain High Capacity Plain SPDT SPST-NO SPDT SPST-NO DPDT DPST-NO RJV-C- RJV-A- RJV-CH- RJV-AH- RJV-C- RJV-A- Specify a coil voltage code in place of in the Part No. A A A0 A A0 A0 A0 A0 D D D D D D00 Package Quantity Coil Code Code Rated Coil A V AC A V AC A0 0V AC A V AC A0 0V AC A0 0V AC A0 0V AC A0 0V AC D V DC D V DC D V DC D V DC D V DC D V DC Note: Specify a coil voltage code in place of in the Part No. Contact Ratings No. of Poles Style Plain High Capacity Plain Contact NO NC NO NC NO NC Allowable Contact Power Resistive Load 000VA AC 0W DC 000VA AC 0W DC 000VA AC 0W DC 000VA AC 0W DC 000VA AC 0W DC 000VA AC 0W DC Inductive Load 7VA AC 0W DC 7VA AC 0W DC 000VA AC 0W DC 000VA AC 0W DC 000VA AC 0W DC 000VA AC 0W DC Rated Load Resistive Load Inductive Load cos ø = 0. L/R = 7 ms 0V AC A 7.A 0V DC A A 0V AC A 7.A 0V DC A A 0V AC A A 0V DC A A 0V AC A A 0V DC A A 0V AC A A 0V DC A A 0V AC A A 0V DC A A Allowable Switching Current A A A Allowable Switching 0V AC V DC 0V AC V DC 0V AC V DC Minimum Applicable Load (reference value) V DC, 00 ma V DC, 00 ma V DC, 0 ma

17 RJ Standard Ratings UL ratings Resistive RJ (plain) RJ (plain) RJ (high capacity) NO NC NO NC NO NC AC0V A A A A A A 0V DC A A A A A A CSA ratings RJ Series Slim Power Relays PC Board Terminal Resistive Inductive RJ (plain) RJ (plain) RJ (high capacity) RJ (plain) RJ (plain) RJ (high capacity) NO NC NO NC NO NC NO NC NO NC NO NC AC0V A A A A A A 7.A 7.A A A A A 0V DC A A A A A A A A A A A A Coil Ratings AC 0/0 Hz DC Rated Coil Code Rated Current (ma) ±% (at 0 C) Coil 0 Hz 0 Hz Resistance (Ω) ±0% (at 0 C) V A V A. 7. 0V A V A V A V A V A V A V D 0 7. V D. 7. V D. 7 V D. 00 V D.0 0 Minimum Pickup (initial value) 0% maximum 70% maximum Operating Characteristics (against rated values at 0 C) Dropout (initial value) 0% minimum 0% minimum Maximum Continuous Applied (Note) 00-0V D % Note: Maximum continuous applied voltage is the maximum voltage that can be applied to relay coils. Specifications 0% Power Consumption Approx.. VA (0Hz) Approx. 0. to.va (0Hz) 70% Approx. 0.W to 0.W Model RJV Plain RJV High Capacity RJV Plain Number of Poles -pole -pole -pole Contact Configuration SPDT, SPST-NO SPDT, SPST-NO DPDT, DPST-NO Contact Material Ag-Ni Ag-Sn-In Ag-Ni Enclosure Ratings Contact Resistance (initial value) ( ) Operate Time ( ) Release Time ( ) Flux-tight 0 mω maximum ms maximum 0 ms maximum VDE ratings Resistive AC-, DC- (Note) RJ RJ RJ RJ RJ (plain) (plain) (high capacity) (plain) (plain) NO NO NO NO NO AC0V A A A A A 0V DC A A A.A A Note: The operational current represents the classification by making and breaking currents (IEC 07--.) Impulse Withstand 0,000V (between contact and coil) Between contact and coil 000V AC, minute 000V AC, minute Dielectric Strength Between contacts of the same pole 000V AC, minute 000V AC, minute Between contacts of different poles 000V AC, minute Vibration Operating extremes 0 to Hz, amplitude 0.7 mm Resistance Damage limits 0 to Hz, amplitude 0.7 mm Shock Operating extremes NO contact: 00 m/s (0G), NC contact: 00 m/s (0G) Resistance Damage limits 000 m/s (00G) AC coil: 0 million operations minimum (SPDT/DPDT, operation frequency,000 operations per hour) Mechanical Life (no load) 0 million operations minimum (SPST-NO/DPST-NO, operation frequency,000 operations/h) DC coil: 0 million operations minimum (SPDT/DPDT, operation frequency,000 operations per hour) 0 million operations minimum (SPST-NO/DPST-NO, operation frequency,000 operations/h) Electrical Life (rated load) AC load: 00,000 operations minimum (operation frequency,00 operations per hour) DC load: 00,000 operations minimum (operation frequency,00 operations per hour) Operating Temperature ( ) 0 to +70 C (no freezing) Operating Humidity to % RH (no condensation) Weight (approx.) SPDT: 7g SPDT: 7g DPDT: 7g SPST-NO: g SPST-NO: g DPST-NO: g : Measured using V DC, A voltage drop method. : Measured at the rated voltage (at 0 C), excluding contact bounce time. : 00% rated voltage. 7

18 RJ Series Slim Power Relays PC Board Terminal Electrical Life Curve RJV Plain 00 RJV High Capacity 00 0V DC Inductive Load (NC contact) RJV Plain 00 ( 0,000 operations) V DC Inductive Load (NC contact) 0V AC Inductive Load 0V DC Resistive Load (NC contact) 0V DC Inductive Load (NO contact) 0V AC Resistive Load 0V DC Resistive Load (NO contact) ( 0,000 operations) 00 0V AC Inductive Load 0 0V DC Inductive Load (NO contact) 0V DC Resistive Load (NC contact) 0V AC Resistive Load 0V DC Resistive Load (NO contact) ( 0,000 operations) 00 0V DC Inductive Load (NC contact) 0V AC Inductive Load 0 0V DC Resistive Load (NC contact) 0V DC Inductive Load (NO contact) 0V AC Resistive Load 0V DC Resistive Load (NO contact) Maximum Switching Current RJV Plain RJV High Capacity RJV Plain 0 DC Resistive Load (NC contact) DC Inductive Load (NO contact) AC Resistive Load DC Inductive Load (NC contact) DC Resistive Load (NO contact) AC Inductive Load 0 DC Resistive Load (NC contact) DC Inductive Load (NO contact) DC Inductive Load (NC contact) AC Resistive Load DC Resistive Load (NO contact) AC Inductive Load 0 DC Resistive Load (NC contact) DC Inductive Load (NO contact) AC Resistive Load DC Inductive Load (NC contact) DC Resistive Load (NO contact) AC Inductive Load Load (V) Load (V) Load (V) Ambient Temperature vs. Temperature Rise Curves RJV Plain Temperature Rise ( C) Load Current A pole No load current Ambient Temperature ( C) RJV Plain AC voltage / 0 Hz Load Current A pole No load current 0 0 Temperature Rise ( C) Ambient Temperature ( C) AC voltage / 0 Hz Temperature Rise ( C) Load Current A pole No load current Ambient Temperature ( C) DC voltage Temperature Rise ( C) Load Current A poles No load current Ambient Temperature ( C) AC voltage / 0 Hz Temperature Rise ( C) Load Current A poles No load current Ambient Temperature ( C) AC voltage / 0 Hz The above temperature rise curves show the characteristis when 00% of the rated coil voltage is applied. The slant dashed line indicates the allowable temperature rise for the coil at different ambient temperatures. Temperature Rise ( C) Load Current A poles No load current Ambient Temperature ( C) DC voltage

19 RJ RJ Series Slim Power Relays PC Board Terminal Dimensions RJV-C- Plain SPDT. max. (.) max. (.) max. (.7).0 Mounting Hole Layout (Bottom View) (.) (.) -ø. holes Internal Circuit Diagram (Bottom View) (A) (A) () () () RJV-A- Plain SPST-NO. max. (.) max. (.) 0. max. (.7).0 (.) -ø. holes (.) (A) (A) () () RJV-CH- High Capacity SPDT. max. (.) max. (.) max. (.7).0 (.) -ø. holes.0 (.) (A) (A) () () () 7 RJV-AH- High Capacity SPST-NO. max. (.) max. (.) 0. max. (.7).0 -ø. holes (.) 7. (.) (A) (A) () () RJV-C- Plain DPDT. max. (.) max. (.) max. (.7).0 (.) -ø. holes.0 (.) (A) (A) () () () 7() () () RJV-A- Plain DPST-NO. max. (.) max. (.) 0. max. (.7).0 -ø. holes (.) 7. (.) (A) (A) () () () () All dimensions in mm. Instructions Notes on PC Board Mounting When using two or more RJ relays on a PC board, maintain at least mm distance between the relays. Manual soldering: Use a soldering iron of 0W (0 C), and quickly complete soldering with approximately seconds. Sn-Ag- Cu is recommended when using lead-free solder. Auto-soldering: Solder at 0 C within to seconds. Because the terminal part is filled with epoxy resin, do not excessively solder or bend the terminal. Otherwise, air tightness will degrade. Avoid the soldering iron from touching the reay cover or the epoxy filled terminal part. Use a non-corrosive resin flux.

20 RJ Series Slim Power Relays PC Board Terminal (bifurcated contacts) High contact reliability with bifurcated contacts (minimum applicable load: V DC, 00 µa) DPDT, DPST-NO contacts are available. The smallest width for -pole/bifurcated contacts relay (based on IDEC research as of April 0) IDEC s unique spring return mechanism ensures long life. Flux-tight structure Applicable Standards Applicable Standards Mark File No. or Organization UL0 UL Recognized File No. E CSA C. No. CSA File No. LR DPST-NO contact (bifurcated) DPDT contact (bifurcated) EN0- VDE No. 000 EU Low Directive Relays Bifurcated Contacts Coil Code Style Plain Contact DPDT DPST-NO Part No. RJV-C- RJV-A- -pole (bifurcated contacts DPDT) Coil Code A, A, A0, A, A0, A0, A0, A0, D, D, D, D, D, D00 Code A A A0 A A0 A0 A0 A0 D D D D D D00 V AC V AC 0V AC VAC 0V AC 0V AC 0V AC 0V AC V DC V DC V DC V DC V DC 00-0V DC Contact Ratings Allowable Contact Power Rated Load Allowable Resistive Inductive Resistive Switching Inductive Load Load Load Load cosø=0. L/R=7ms Current 0VA AC 0W DC 00VA AC W DC 0V AC A 0.A 0V DC A 0.A Note: Measured at operating frequency of 0 operations per minute (failure rate level P, reference value) Ratings A Allowable Switching 0V AC V DC Minimum Applicable Load (Note) V DC 00µA (reference value) UL ratings CSA Ratings VDE Ratings Resistive General Use Resistive Inductive General Use Resistive NO NC NO NC NO NC NO NC NO NC NO NC 0V AC A A A A A A 0V DC A A A A A A A A 0

21 RJ RJ Series Slim Power Relays PC Board Terminal (bifurcated contacts) Coil Ratings Rated (V) Coil Code Rated Current (ma) ±% (at 0 C) 0Hz 0Hz Coil Resistance (Ω) ±0% (at 0 C) Pickup (initial value) Operating Characteristics (against rated values at 0 C) Dropout (initial value) Maximum Continuous Applied (Note) V A V A. 7. 0V A0..,70 AC V A. 7.,00 0% 0% 0/0 Hz 0V A0. 7.,00 maximum minimum 0% 0V A0..,0 0V A0..,00 0V A0..7,70 V D 0 7. V D. 7. DC V D. 7 70% 0% V D.,00 maximum minimum V D.0,0 00-0V D00.-.,70 0% Note: Maximum continuous applied voltage is the maximum voltage that can be applied to relay coils. Specifications Model RJV Number of Poles -pole Contact Configuration DPDT (bifurcated), DPST-NO (bifurcated) Contact Material AgNi (gold clad) Degree of Protection Flux-tight structure Contact Resistance (initial value) 0 mω maximum (measured using V DC, A voltage drop method) Operating Time (at 0 C) ms maximum (at the rated coil voltage, excluding contact bounce time) Release Time (at 0 C) 0 ms maximum (at the rated coil voltage, excluding contact bounce time) Insulation Resistance 00 MΩ minimum (00V DC megger) Impulse Withstand 0,000V AC (between contact and coil) Between contact and coil,000v AC, minute Dielectric Strength Between contacts of the same pole,000v AC, minute Between contacts of the different poles,000v AC, minute Vibration Operating Extremes 0 to Hz, amplitude 0.7 mm Resistance Damage Limits 0 to Hz, amplitude 0.7 mm Shock Operating Extremes NO contact: 00 m/s, NC contact: 00 m/s Resistance Damage Limits,000 m/s Electrical Life AC load: 00,000 operations minimum (operating frequency,00 per hour) DC load: 00,000 operations minimum (operating frequency,00 per hour) AC load: 0 million operations minimum Mechanical Life (operating frequency,000 operations per hour) DC load: 0 million operations minimum (operating frequency,000 operations per hour) Operating Temperature (00% rated voltage) 0 to +70 C (no freezing) Operating Humidity to % RH (no condensation) Storage Temperature 0 to + C (no freezing) Storage Humidity to % RH (no condensation) Weight (approx.) DPDT: 7g, DPST-NO: g Power Consumption Approx..VA (0Hz) 0. to.va (0Hz) 70% Approx. 0. to 0.W

22 RJ Series Slim Power Relays PC Board Terminal (bifurcated contacts) Dimensions RJV-C- RJV-A-. max. (.) max. (.) max. (.) 0. max. (.7) max. (.) 0. max. (.7). Mounting Hole Layout RJV-C- -ø. holes.0.0 RJV-A- -ø. holes (.) 7. (.) 7. (.) 0.0 (.) All dimensions in mm. Internal Circuit Diagram (Bottom View) RJV-C- (A) () () () RJV-A- (A) () () (A) 7() () () (A) () () Operating Temperature and Coil Temperature Rise Temperature Rise ( C) AC Coil (0 Hz) AC Coil (0 Hz) DC Coil Load current A x poles 0 Load current A x poles 0 No load current 0 No load current Ambient Temperature ( C) 70 Temperature Rise ( C) Ambient Temperature ( C) The slanted dashed line indicates the allowable temperature rise for the coil at different ambient temperatures. The above temperature rise curves show the characteristics when 00% of the rated coil voltage is applied. Temperature Rise ( C) 0 Load current A x poles No load current Ambient Temperature ( C) Safety Precautions Turn off the power to the RJ relay before starting installation, removal, wiring, maintenance, and inspection. Failure to turn power off may cause electrical shock or fire hazard. Observe the specifications and rated values, otherwise electrical shock or fire hazard may be caused. Use wires of the proper size to meet the voltage and current requirements. Tighten terminal screws to a proper tightening torque.

23 RU RU Series Universal Relays Full featured universal miniature relays Designed with environment taken into consideration Two terminal styles: plug-in and PCB mount Non-polarized LED indicator available on plug-in relays No internal wires, lead-free construction Cadmium-free contacts Mechanical flag indicator available on plug-in relays Manual latching lever with color coding for AC or DC coil Snap-on yellow marking plate; optional marking plates are available in four other colors Maximum contact ratings: 0A (RU), A (RU), A (RU) UL, CSA, c-ul, EN compliant Lloyd Register type approved. Applicable Standard UL0 CSA C. No. CSA C. No. Mark Certification Organization / File No. UL Recognized File No. E0 CSA File No. LR EN0- TÜV SÜD EU Low Directive With Latching Lever Mechanical Indicator The contact position can be confirmed through the five small windows. Marking Plate Standard yellow marking plate is easily replaced with optional marking plates in four colors for easy identification of relays. Lever in the Latched Position Latching Lever Using the latching lever, operation can be checked without energizing the coil. The latching lever is color coded for AC and DC coils. AC coil: Orange DC coil: Green In Normal Operation LED Indicator Non-polarized green LED indicator is standard provision for plug-in terminal, latching lever types Without Latching Lever Mechanical Indicator Marking Plate LED Indicator Non-polarized green LED indicator is standard provision for plug-in terminal, except for simple types. AC/DC Color Marking For identification of AC or DC coils. AC coil: Yellow DC coil: Blue AC Coil DC Coil Note: Turn off the power to the relay coil when using the latching lever. After checking the operation, return the latching lever in the normal position. Relay Coil Tape Colors Coil Rated Tape Color V AC White 00 to 0V AC Clear 0 to 0V AC Blue 00 to 0V AC Black 0 to 0V AC Red V DC Green V DC V DC marking on V DC yellow tape 0V DC

24 RU Series Universal Relays Single Contact Termination Latching Lever Style Part No. DPDT PDT Coil Code Standard RUS- RUS- A, A00, A0, A00, A0 D, D, D, D, D0 With Latching Lever With RC (AC coil only) RUS-R- RUS-R- A00, A0, A00, A0 With diode (DC coil only) RUS-D- RUS-D- D, D, D, D, D0 Plug-in Terminal (Note ) Without Latching Lever With diode (DC coil only) Reverse polarity coil RUS-D- RUS-D- D Standard RUS-C- RUS-C- A, A00, A0, A00, A0 D, D, D, D, D0 With RC (AC coil only) RUS-CR- RUS-CR- A00, A0, A00, A0 With diode (DC coil only) RUS-CD- RUS-CD- D, D, D, D, D0 With diode (DC coil only) Reverse polarity coil RUS-CD- RUS-CD- D Simple (Note ) RUS-NF- RUS-NF- A, A00, A0, A00, A0 PCB Terminal Without Latching Lever Simple (Note ) RUV-NF- RUV-NF- D, D, D, D, D0 Bifurcated Contact Termination Latching Lever Style Part No. PDT Coil Code Standard RUS- A, A00, A0, A00, A0 D, D, D, D, D00, D0 With Latching Lever With RC (AC coil only) RUS-R- A00, A0, A00, A0 With diode (DC coil only) RUS-D- D, D, D, D, D00, D0 Plug-in Terminal (Note ) Without Latching Lever With diode (DC coil only) Reverse polarity coil RUS-D- D Standard RUS-C- A, A00, A0, A00, A0 D, D, D, D, D00, D0 With RC (AC coil only) RUS-CR- A00, A0, A00, A0 With diode (DC coil only) RUS-CD- D, D, D, D, D00, D0 With diode (DC coil only) Reverse polarity coil RUS-CD- D Simple (Note ) RUS-NF- A, A00, A0, A00, A0 PCB Terminal Without Latching Lever Simple (Note ) RUV-NF- D, D, D, D, D00, D0 Note : Plug-in terminal, except for simple types, have an LED indicator and a mechanical indicator as standard. Note : Simple types do not have an LED indicator, a mechanical indicator, and a latching lever. Part No. Development Specify a coil voltage code in place of in the Part No. Coil Code Coil Rating A V AC A V AC A0 0-0V AC A V AC A0 0-0V AC D V DC D V DC D V DC D V DC D00 00V DC D0 0V DC Accessory Name Part No. Ordering No. Color Code Package Quantity Marking Plate RUZ-P RUZ-P PN0 A (orange), G (green), S (blue), W (white), Y (yellow) 0 Note: Specify a color code in place of the Part No. When ordering, specify the Ordering No. The marking plate can be removed from the relay by inserting a flat screwdriver under the marking plate.

25 RU Coil Ratings Rated (V) AC (0/0 Hz) DC Coil Code Rated Current (ma) ±% (at 0 C) Coil Resistance (Ω) ±0% (at 0 C) 0 Hz 0 Hz A A ,0 0-0 A , A , A ,0 D 0 D 0 0 D.7 0 D,0 00 D00.7 0,000 0 D0.,00 Note : The rated current includes the current draw by the LED indicator. Note : Rated voltage 00V DC is available for the bifurcated contact only. Contact Ratings Contact DPDT (RU) PDT (RU) PDT (RU) bifurcated Continuous Current 0A A A Allowable Contact Power Resistive Inductive (V) Load Load 00VA AC 00W DC 00VA AC 0W DC 70VA AC 0W DC 0VA AC 0W DC 00VA AC 0W DC 00VA AC W DC 0 AC 0 DC Res. Load Rated Load Ind. Load Electrical Life (operations) 0A A 00,000 min. A 00,000 min..a 00,000 min. 0A A 00,000 min. A 00,000 min..a 00,000 min. 0 DC 0.A 0.A 00,000 min. 0 AC 0 DC A.A 0,000 min. A 0.A 00,000 min. A.7A 0,000 min. A.A 00,000 min. 0.A 0.A 0,000 min. 0 DC 0.A 0.A 00,000 min. 0 AC A 0.A 00,000 min. 0 DC A.A 00,000 min. 0 DC 0.A 0.A 00,000 min. Note : On PDT relays, the maximum allowable total current of neighboring two poles is A. At the rated load, make sure that the total current of neighboring two poles does not exceed A (A + A = A). Note : Inductive load for the rated load cos ø = 0., L/R = 7 ms UL and c-ul Ratings Resistive General Use Horse Power Rating RU RU RU RU RU RU RU RU RU 0V AC 0A A A /0HP 0V DC 0A A A CSA Ratings Resistive RU RU RU RU RU RU RU RU RU 0V AC 0A A A /0HP 0V DC 0A A A TÜV Ratings Resistive Inductive RU RU RU RU RU RU 0V AC 0A A A A 0.A 0.A 0V DC 0A A A A.A.A Surge Suppressor Ratings Type AC Coil With RC DC Coil With Diode Ratings RC series circuit R: 0 kω, C: 0.0 µf Diode reverse voltage: 000V Diode forward current: A RU Series Universal Relays Operating Characteristics (against rated values at 0 C) Maximum Continuous Applied Specifications Minimum Pickup Dropout 0% 0% maximum 0% minimum 0% 0% maximum 0% minimum Model RU (DPDT) RU (PDT) RU (PDT) Contact Material Contact Resistance Minimum Applicable Load Silver alloy 0 mω maximum Silver (gold clad) Silver-nickel (gold clad) V DC, ma V DC, ma V DC, 0. ma (reference value) Operate Time 0 ms maximum Release Time 0 ms maximum Power Consumption AC:. to.va (0 Hz), 0. to.va (0 Hz) DC: 0. to.0w Insulation Resistance 00 MΩ minimum (00V DC megger) Between contact and coil: 00V AC, minute Between contacts of different poles: Dielectric Strength 00V AC, minute 000V AC, minute Between contacts of the same pole: 000V AC, minute Operating Electrical: 00 operations/h maximum Frequency Mechanical:,000 operations/h maximum Vibration Damage limits: 0 to Hz, amplitude 0. mm Resistance Operating extremes: 0 to Hz, amplitude 0. mm Shock Resistance Damage limits: 000 m/s Operating extremes: 0 m/s Mechanical Life AC: 0,000,000 operations DC: 00,000,000 operations Electrical Life See page 7 and. Operating Temperature Operating Humidity Storage Temperature Storage Humidity Weight 0,000,000 operations PCB terminal: to +70 C (no freezing) Others: to +0 C (no freezing) to % RH (no condensation) to +70 C RH (no freezing) to % RH (no condensation) Approx. g Note: Above values are initial values. : Measured using V DC, A voltage drop method : Measured at operating frequency of 0 operations/min (failure rate level P, reference value) : Measured at the rated voltage (at 0 C), excluding contact bouncing; Release time of AC relays with RC: ms maximum Release time of DC relays with diode: 0 ms maximum : Measured at the rated voltage.

26 RU Series Universal Relays RU (DPDT Contact) Plug-in Terminal PCB Terminal LED indicator, mechanical flag indicator, and marking plate are standard provisions, except on simple types. Available with or without a manual latching lever Marking plate is a standard provision. Not provided with an LED indicator, mechanical flag indicator, and manual latching lever. Photo: RUS-A00 Photo: RUV-NF-A00 Dimensions RUS RUS-C/RUS-NF RUV Mechanical Indicator Window Marking Plate (yellow) Mechanical Indicator Window (RUS-C only) Marking Plate (yellow) Marking Plate (yellow) Latching Lever AC: Orange DC: Green LED Indicator (green) Color Marking AC: Yellow DC: Blue LED Indicator (green) (RUS-C only) Color Marking AC: Yellow DC: Blue Marking Plate Removal Slot.0 Marking Plate Removal Slot.0 Marking Plate Removal Slot ø.. Hole 7. Mounting Hole Layout 7.0 -ø Holes Marking plate removal slot is provided only on one side. Insert a flat screwdriver into the slot to remove the marking plate ø.. Hole All dimensions in mm. Internal Connection (Bottom View) RUS- Standard RUS- R With RC RUS- D With Diode RUS- D With Diode () () () () Reverse Polarity Coil () () () () () () ()A ()A () () () () () () () () () () () () () () ()A ()A ()A ()A ()A ()A V AC/DC or less V DC or less V DC () () () () () () () () RUS-NF- /RUV-NF- () () () () () () ()A ()A ()A ()A () () Over V AC/DC Blank or C comes in place of to represent types with or without a latching lever. Over V DC () ()A () ()A

27 RU RU Series Universal Relays Electrical Life Curves RU (Resistive Load) RU (Inductive Load) 000 0V AC 0V DC 0V DC 000 0V AC/0V DC 0V DC ( 0,000 operations) 00 0 ( 0,000 operations) 00 0 AC: cos ø = 0. DC: L/R = 7 ms Maximum Switching Current RU 0 AC resistive AC inductive (cos ø = 0.) 0. DC resistive DC inductive L/R = 7 ms Load (V) Ambient Temperature vs. Temperature Rise Curves RU (AC Coil, 0 Hz) RU (AC Coil, 0 Hz) RU (DC Coil) Temperature Rise ( C) Load current 0A poles Load current A poles No load current Temperature Rise ( C) Load current 0A poles Load current A poles No load current Temperature Rise ( C) Load current 0A poles Load current A poles No load current Ambient Temperature ( C) Ambient Temperature ( C) Ambient Temperature ( C) The above temperature rise curves show the characteristics when 00% the rated coil voltage is applied. The heat resistance of the coil is 0 C. The slant dashed line indicates the allowable temperature rise for the coil at different ambient temperatures. 7

28 RU (PDT Contact) Plug-in Terminal PCB Terminal LED indicator, mechanical flag indicator, and marking plate are standard provisions, except on simple types. Available with or without a manual latching lever Marking plate is a standard provision. Not provided with an LED indicator, mechanical flag indicator, and manual latching lever. Photo: RUS-A00 Photo: RUV-NF-D Dimensions RUS/RUS RUS-C/RUS-NF RUS-C/RUS-NF RUV/RUV Color Marking AC: Yellow DC: Blue Marking Plate (yellow) Marking Plate Removal Slot Mounting Hole Layout Mechanical Indicator Window Marking Plate (yellow) Latching Lever AC: Orange DC: Green LED Indicator (green) Mechanical Indicator Window (RUS-C/RUS-C only) Marking Plate (yellow) Color Marking AC: Yellow DC: Blue LED Indicator (green) (RUS-C/ RUS-C only) Marking Plate Removal Slot.0 Marking Plate Removal Slot ø.. Hole ø.. Hole RU Series Universal Relays 7. Marking plate removal slot is provided only on one side. Insert a flat screwdriver into the slot to remove the marking plate. 7. -ø Holes....7 All dimensions in mm. Internal Connection (Bottom View) RUS- /RUS- Standard () () () () () () (7) () () (0) () () ()A ()A V AC/DC or less () () () () () () (7) () () (0) () () RUS- R/RUS- R With RC () () () () () () (7) () () (0) () () ()A ()A RUS- D/RUS- D With Diode () () () () () () (7) () () (0) () () ()A ()A V DC or less () () () () () () (7) () () (0) () () RUS- D/RUS- D With Diode Reverse Polarity Coil () () () () () () (7) () () (0) () () ()A V DC ()A RUS-NF- /RUV-NF- RUS-NF- /RUV-NF- () () () () ()A ()A Over V AC/DC Blank or C comes in place of to represent types with or without a latching lever. ()A ()A Over V DC () () (7) () () (0) () () ()A ()A

29 RU RU Series Universal Relays Electrical Life Curves RU (Resistive Load) 000 0V AC 0V DC 0V DC RU (Inductive Load) 000 0V AC 0V DC 0V DC ( 0,000 operations) 00 0 ( 0,000 operations) 00 0 AC: cos ø = 0. DC: L/R = 7 ms RU (Resistive Load) RU (Inductive Load) 0V AC 0V DC 0V DC 0V AC 0V DC 0V DC ( 0,000 operations) 00 0 ( 0,000 operations) 00 0 AC: cos ø = 0. DC: L/R = 7 ms Maximum Switching Current RU (Rated Load) RU (Maximum Load) RU AC resistive AC inductive (cos ø = 0.) AC resistive AC inductive (cos ø = 0.) AC resistive AC inductive (cos ø = 0.) 0. DC resistive DC inductive L/R = 7 ms 0. DC resistive DC inductive L/R = 7 ms 0. DC resistive DC inductive L/R = 7 ms Load (V) Load (V) Load (V) Ambient Temperature vs. Temperature Rise Curves RU/RU (AC Coil, 0 Hz) RU/RU (AC Coil, 0 Hz) RU/RU (DC Coil) Temperature Rise ( C) Load current A poles Load current A poles No load current Temperature Rise ( C) Load current A poles Load current A poles No load current Temperature Rise ( C) Load current A poles Load current A poles No load current Ambient Temperature ( C) Ambient Temperature ( C) Ambient Temperature ( C) 70 The above temperature rise curves show the characteristics when 00% the rated coil voltage is applied. Load current A poles is for the RU only. The heat resistance of the coil is 0 C. The slant dashed line indicates the allowable temperature rise for the coil at different ambient temperatures.

30 RU Series Universal Relays Applicable Socket Relay Wiring Style Shape Part No. Rated Current Style Applicable Spring Hold-down Wire Spring Spring SMS-0A 7A SMS-0C (Note ) 7A (UL:0A) Finger-safe SFA-0 SFA-0 Front Wiring Socket SMS-0D 0A Slim SFA-0 SMS-0DF 0A Finger-safe RU SUS-L 0A A (collective mounting) (Note ) Spring-clamp (Note ) SFA-0 SFA-0 Solder SMS- 0A Rear Wiring Socket SMS- 0A PC board SFA-0 SFA-0 SYS-F PC board SMS- 0A SFA-0 SYS-F SYS-0A 7A SYS-0C (Note ) 7A Finger-safe SFA-0 SFA-0 Front Wiring Socket SYS-0D A Slim SFA-0 RU RU SYS-0DF (Note ) SUS-L A A (-pole) 0A (-pole) A (-pole, collective mounting (Note ) Finger-safe Spring-clamp (Note ) SFA-0 SFA-0 SFA-0 Solder SYS- 7A Rear Wiring Socket SYS- 7A PC board SFA-0 SFA-0 SYS-F PC board SYS- 7A SFA-0 SYS-F Package quantity: Note : Finger-safe cannot be used with ring ringerminal. Note : SUS-L and SUS-L are spring-clamp socket which does not require tightening screws. Stranded wire, solid wire, and ferrule can be attached using a screwdriver. Note : When using SUS-L and SUS-L at rated current A and above, maintain at least 0mm distance from the adjacent SU socket. Note : Front wiring socket can be mounted directly on DIN rail and mounting panel (some sockets need spacers for the ends). 0

31 RU RU Series Universal Relays Hold-down Springs Style Shape Material Part No. Ordering No. Package Quantity Wire Spring SYS-F SYS-FPN0 0 SFA-0 SFA-0PN0 SFA-0 SFA-0PN0 SFA-0 SFA-0PN0 Stainless Steel 0 pairs Leaf Spring SFA-0 SFA-0PN0 SFA-0 SFA-0PN0 SFA-0 SFA-0PN0 SFA-0 SFA-0PN0 0 Note : A relay needs a pair of leaf springs, except for SFA-0 (one spring per relay). Note : When the wire spring SYS-F or leaf spring SFA-0 is used on a relay with latcing lever, lever cannot be opened or closed. Note : Leaf springs (except for the leaf spring SFA-0) cannot be removed after being installed on a socket (except for SMS-0D and SYS-0D) Accessories for Sockets Package Name Shape Specifications Part No. Ordering No. Remarks Quantity Aluminum Weight: Approx. 00g BAA000 BAA000PN0 0 Length: m DIN Rail Steel Width: mm BAP000 BAP000PN0 0 Weight: Approx. 0g End Clip Zinc-plated steel Weight: Approx. g BNL BNLPN0 0 BNL BNLPN0 0 Used on a DIN rail to fasten relay sockets Applicable Screwdriver DIN Rail Spacer Weight: 0g 7 (approx.) BCS-SD0 BCS-SD0 Plastic (black) SA-0B SA-0B Used for spring clamp connection (SUS, SUS sockets) Thickness: mm Used for adjusting spacing between sockets mounted on a DIN rail End Spacer Intermediate Spacer Jumper Jumper Plastic (black) Brass jumper with ABS sheath Rated current: A Weight: Approx. g SA-0B SA-0B SA-0B SA-0B SUZ-J SUZ-JPN0 0 SMZ-JF SMZ-JF SMZ-JF SMZ-JFPN0 SMZ-JFPN0 SMZ-JFPN0 Used for mounting DIN rail mount sockets directly on a panel surface Used for interconnecting relay coil terminals on a maximum of five SU sockets; can be cut to required lengths Used for interconnecting relay coil terminals on SMS-0DF sockets; can be cut to required length. No. of sockets: SMZ-JF: SMZ-JF: SMZ-JF: 0 SYZ-JF SYZ-JFPN0 Used for interconnecting relay coil terminals on SYZ-JF SYZ-JF SYZ-JFPN0 SYZ-JFPN0 SYS-0DF sockets; can be cut to required length SYZ-JF: SYZ-JF: SYZ-JF:

32 RU Series Universal Relays Instructions Before operating the latching lever, turn off the power to the RU relay. After checking the circuit, return the latching lever to the original position. Do not use the latching lever as a switch. The durability of the latching lever is a minimum of 00 operations. When using DC loads on PDT relays, apply a positive voltage to terminals of neighboring poles and a negative voltage to the other terminals of neighboring poles to prevent the possibility of short circuits. DC relays with a diode have a polarity in the coil terminals. The surge absorbing element on AC relays with RC or DC relays with diode is provided to absorb the counter electromotive force generated by the coil. When the relay is subject to an excessive external surge voltage, the surge absorbing element may be damaged. Add another surge absorbing provision to the relay to prevent damage. Safety Precautions. Notes on soldering When mounting or more relays on a PC board, keep a minimum spacing of mm in each direction. Manual soldering: Solder the terminals at 0 C within sec., using a soldering iron of 0W (Sn-Ag-Cu is recommended when using lead-free solder). Auto-soldering: Solder at 0 C within to sec. Use a non-corrosive resin flux.. Color coding of coil voltage Coil V AC 00 0V AC 0 0V AC 00 0V AC 0 0V AC V DC V DC V DC V DC 00V DC 0V DC Color White Clear Blue Black Red Green marking on yellow tape

33 RY Series Miniature Relays DPDT and PDT contacts (A) Bifurcated contacts are also available The RY series are general purpose miniature relays with a A contact capacity. A wide variety of terminals styles and coil voltages meet a wide range of applications. All PDT have arc barriers. The PDT also available with reverse polarity diode and LED. Certification Organization/ Applicable Standards Mark File No. UL recognized, UL0 File No. E RY CSA C. No. EN0- CSA File No. LR TÜV SÜD EU Low Directive Plug-in Terminal Terminal Style DPDT PDT Part No. Coil Code Part No. Coil Code Basic RYS-U H RYS-U H With Indicator RYS-UL H RYS-UL H With Reverse Polarity AC, AC, AC, AC0, AC, AC, AC, AC0, AC00, AC0, AC, AC0, RYS-UL H Indicator AC00-0, AC0-0, AC00, AC0, AC0, AC0 AC00-0, AC0-0 With Check Button DC, DC, D, DC, DC00, RYS-UC H DC, DC, DC, DC, With Indicator and DC0 DC00-0 RYS-ULC H Check Button Standard Top Bracket Mounting RYS-UT H RYS-UT H With Diode (DC coil only) RYS-UD H RYS-UD H With Reverse Polarity RYS-UD Diode (DC coil only) DC, DC, DC, DC, DC, DC, DC, DC, With Indicator and RYS-ULD DC00, DC0 RYS-ULD H DC00-0 Diode (DC coil only) With Indicator and Reverse Polarity Diode (DC coil only) RYS-ULD PC Board Terminal Terminal Standard Style DPDT PDT Part No. Coil Code Part No. Coil Code Standard RYV-U H AC, AC, AC, AC0, AC00, AC0, AC, AC0, With Indicator RYV-UL H DC, DC, DC, DC RYV-UL H With Diode (DC coil only) RYV-UD H Part numbers marked with H in the tables above are UL-recognized, CSA-certified, and TÜV-approved. DC, DC, DC, DC, DC00, DC0 RYV-U H AC, AC, AC, AC0, AC00-0, AC0-0, AC00-0, AC0-0 DC, DC, DC, DC, DC00-0 Part No. Development When ordering, specify the Part No. and coil voltage code. (Example) RYS-U Part No. AC00-0 Coil Code

34 RY Series Miniature Relays Coil Ratings AC (0/0Hz) DC Rated (V) Rated Current (ma) ±% at 0 C Coil Resistance (Ω) Operation Characteristics (against rated values at 0 C) 0Hz 0Hz ±0% at 0 C Max. Continuous Min. Pickup Dropout DPDT PDT DPDT PDT DPDT PDT DPDT PDT Applied , ,0,0 0..,0 0% 0% 0% ,0,0 maximum minimum 0. 7., ,,0 0.7., ,70,0 0..,70 DPDT PDT DPDT PDT DPDT PDT ,0, ,000,0 0,00 Contact Ratings Contact Standard Contact DPDT PDT Continuous Current A Maximum Contact Capacity Allowable Contact Power Resistive Inductive Load Load 0 VA AC 0W DC 7 VA AC W DC Note: Inductive load for the rated load cos ø = 0., L/R = 7 ms 0% Rated Load Resistive Inductive Load Load 0V AC A.A 0V AC A 0.A 0V DC A.A 0% maximum 0% minimum Standard Ratings RY UL Ratings (Standard Contact) Resistive General use 0V AC A 0.A 0V AC.A 00V DC 0.A 0.A 0V DC A A RY UL Ratings (Standard Contact) Resistive General use 0V AC A A 00V DC 0.A 0.A 0V DC A A CSA Ratings (Standard Contact) Resistive General use 0V AC A 0.A 0V AC A.A 00V DC 0.A 0V DC A.A CSA Ratings (Standard Contact) Resistive General use 0V AC A A 00V DC 0.A 0V DC A.A TÜV Ratings (Standard Contact) 0V AC A 0V DC A AC cos =.0, DC L/R=0ms TÜV Ratings (Standard Contact) 0V AC A 0V DC A AC cos =.0, DC L/R=0ms

35 RY Specifications Contact Contact Material Gold-plated silver DPDT Standard Contact RY Series Miniature Relays Contact Resistance 0 mω maximum Minimum Applicable Load V DC, 0 ma (reference value) V DC, ma (reference value) Operate Time 0 ms maximum Release Time 0 ms maximum Power Consumption (approx.) Insulation Resistance Dielectric Strength Operating Frequency Vibration Resistance AC:. VA (0 Hz), VA (0 Hz) DC: 0.W 00 MΩ minimum (00V DC megger) Between live and dead parts: 00V AC, minute Between contact and coil: 00V AC, minute Between contacts of different poles: 00V AC, minute Between contacts of the same pole: 000V AC, minute Electrical:,00 operations/h maximum Mechanical:,000 operations/h maximum Damage limits: 0 to Hz, amplitude 0. mm Operating extremes: 0 to Hz, amplitude 0. mm Damage limits:,000 m/s Shock Resistance Operating extremes: 00 m/s (DPDT), 00 m/s (PDT) Mechanical Life 0,000,000 operations Electrical Life 00,000 operations (0V AC, A) Operating Temperature to +0 C (no freezing) Operating Humidity to % RH (no condensation) Storage Temperature to +70 C (no freezing) Storage Humidity to % RH (no condensation) Weight (approx.) g g Note: Above values are initial values. : Measured using V DC, A voltage drop method : Measured at the rated voltage (at 0 C), excluding contact bouncing Release time of relays with diode: 0 ms maximum : Relays with indicator or diode: 000V AC, minute PDT AC:. VA (0 Hz),. VA (0 Hz) DC: 0.W Between live and dead parts: 000V AC, minute Between contact and coil: 000V AC, minute Between contacts of different poles: 000V AC, minute Between contacts of the same pole: 000V AC, minute : For use under different temperature conditions, refer to Continuous Load Current vs. Operating Temperature Curve. The operating temperature range of relays with indicator or diode is to +0 C. Characteristics (Reference Data) Maximum Switching Capacity (RY) (RY) AC resistive AC inductive 0. DC inductive AC resistive AC inductive DC resistive 0. DC resistive DC inductive Load (V) Load (V) Continuous Load Current vs. Operating Temperature Curve (Basic, With Check Button, and Top Bracket Mounting) (RY) Operating Temperature ( C) Note: The rated voltage is applied to the coil. AC Coil DC Coil (RY) Operating Temperature ( C) Note: The rated voltage is applied to the coil. AC Coil DC Coil

36 RY Series Miniature Relays Electrical Life Curve AC Load (RY/) 000 DC Load (RY/) 000 0V DC resistive 0V DC inductive Life ( 0,000 operations) V AC resistive 0V AC resistive 0V AC inductive 0V AC inductive Life ( 0,000 operations) V DC resistive 00V DC inductive 0 0 Internal Connection (Bottom View) Basic (-U, UT) DPDT PDT 0 7 ( ) ( + ) ( ) ( + ) With Check Button Front Pushbutton Contacts can be operated by pressing the check button. Press the button quickly to prevent arcing. With Indicator and Diode (-ULD) This type contains an operation indicator and a surge absorber, and has the same height as the basic type. DPDT Below V DC (-) (+) With Indicator (-UL) Below 00V AC/DC DPDT ( ) (+) Below V AC/DC PDT 0 7 ( ) (+) With Indicator (-UL) (reverse polarity) PDT 0 7 (+) ( ) V DC and over (-) (+) PDT 00V AC/DC and over ( ) (+) V AC/ DC and over 0 7 ( ) (+) 0 7 (+) ( ) Below V DC 0 7 ( ) (+) When the relay is energized, the indicator goes on. The LED protection diode is not contained in DPDT relays for below 00V DC. With Diode (-UD) DPDT PDT With Diode (-UD) (reverse polarity) PDT V DC and over 0 7 ( ) (+) ( ) (+) 0 7 ( ) (+) 0 7 (+) ( ) This type contains a diode to absorb the counter emf generated when the coil is deenergized. The release time is slightly longer. Diode Characteristics Reverse withstand voltage:,000v Forward current: A With Indicator and Diode (-ULD) (reverse polarity) Below V DC V DC and over 0 7 (+) ( ) 0 7 (+) ( )

37 RY RY Series Miniature Relays Dimensions Plug-in Terminal RYS-U/RYS-UL RYS-UD Total length from panel surface including relay socket SYS-0A:. (.) max., SYS-:. (.) max. Dimensions in the ( ) ø. oblong hole include a hold-down spring. Applicable Socket and Hold-down Spring Socket Hold-down Mounting Style Part No. Spring. DIN Rail Mount Socket SYS-0 SFA-0 SFA-0 (Photo: RYS-U) 0.. max.. 7. Panel Mount Socket PC Board Mount Socket SYS- SYS- SYS-F SFA-0 SFA-0 RYS-U/RYS-UL/RYS-UD/RYS-ULD/ RYS-UL/RYS-UD/RYS-ULD (Photo: RYS-U) Total length from the panel surface including relay socket SYS-0A:. (.) max., SYS-:. (.) max.. ø. oblong hole Dimensions in the ( ) include a hold-down spring max Applicable Socket and Hold-down Spring Socket Hold-down Mounting Style Part No. Spring DIN Rail Mount Socket Panel Mount Socket PC Board Mount Socket SYS-0 SYS- SYS- SFA-0 SFA-0 SFA-0 SYS-F SFA-0 SFA-0 (SYS-0F) (SYS-0F) is for the relay with check button. PC Board Terminal RYV-U/RYV-UL/RYV-UD (Photo: RYV-U) ø holes..7.. max.. RYV-U/RYV-UL ø holes. (Photo: RYV-U) max.... Top Bracket Mounting (Plug-in Terminal) RYS-UT. ø. oblong hole max.. RYS-UT ø. oblong hole... max.. All dimensions in mm. 7

38 RM Series Miniature Relays DPDT contacts (A) Plug-in and PC board terminal styles Compact miniature size saves space Options include indicators and check buttons. Standard Mark Certification Organization/ File No. UL0 CSA C. No. EN0- UL recognized, File No. E CSA File No. LR TÜV SÜD EU Low Directive Style Plug-in Terminal PC Board Terminal Part No. Coil Code Part No. Coil Code Basic AC, AC, AC, AC0, RMS-U H RMV-U H AC, AC, AC, AC0, AC00-0, AC0-0, AC00-0, AC0-0, AC00-0, AC0-0 AC00-0, AC0-0 DC, DC, DC, DC, With Indicator RMS-UL H RMV-UL H DC, DC, DC, DC, DC00-0 With Check Button RMS-UC H DC00-0 Top Bracket Mounting RMS-UT H With Diode RMS-UD (DC coil only) H DC, DC, DC, DC, With Indicator and Diode DC00-0 RMS-ULD (DC coil only) H Part numbers marked with H in the table above are UL-recognized, CSA-certified, and TÜV-approved. Part No. Development When ordering, specify the Part No. and coil voltage code. (Example) RMS-U Part No. AC00-0 Coil Code Coil Ratings AC (0/0Hz) DC Rated (V) Rated Current (ma) ±% at 0 C 0Hz 0Hz Coil Resistance (Ω) ±0% at 0 C , , , , , ,0 Operation Characteristics (against rated values at 0 C) Max. Continuous Min. Pickup Dropout Applied 0% 0% 0% maximum 0% maximum 0% minimum 0% minimum

39 RM RM Series Miniature Relays Contact Ratings Continuous Current A Maximum Contact Capacity Allowable Contact Power Rated Load Resistive Load 00VA AC 0W DC Inductive Load 0VA AC 7W DC Res. Load Characteristics (Reference Data) Ind. Load 0V AC A.A 0V AC A A 0V DC A.A Note: Inductive load for the rated load cos ø = 0., L/R = 7 ms UL Ratings Resistive General use 0V AC A A 0V AC.A 00V DC 0.A 0V DC A CSA Ratings Resistive General use 0V AC A A 0V AC A.A 00V DC 0.A 0V DC A.A TÜV Ratings 0V AC 0V DC A A Note: AC: cos ø =.0, DC: L/R = 0 ms Maximum Switching Capacity DC inductive AC resistive AC inductive DC resistive Load (V) Specifications Contact Material Silver Contact Resistance 0 mω maximum Minimum Applicable Load V DC, ma (reference value) Operate Time 0 ms maximum Release Time 0 ms maximum Power Consumption (approx.) AC:. VA (0 Hz),. VA (0 Hz) DC: 0.W Insulation Resistance 00 MΩ minimum (00V DC megger) Between live and dead parts: 000V AC, minute Between contact and coil: 000V AC, minute Dielectric Strength Between contacts of different poles: 000V AC, minute Between contacts of the same pole: 000V AC, minute Operating Frequency Electrical:,00 operations/h maximum Mechanical:,000 operations/h maximum Temperature Rise Coil: C maximum, Contact: C maximum Damage limits: 0 to Hz, amplitude 0. mm Vibration Resistance Operating extremes: 0 to Hz, amplitude 0. mm Shock Resistance Damage limits: 000 m/s Operating extremes: 00 m/s Mechanical Life 0,000,000 operations Electrical Life 00,000 operations (0V AC, A) Operating Temperature to + C (no freezing) Operating Humidity to % RH (no condensation) Storage Temperature to +70 C (no freezing) Storage Humidity to % RH (no condensation) Weight (approx.) g Note: Above values are initial values. : Measured using V DC, A voltage drop method : Measured at the rated voltage (at 0 C), excluding contact bouncing Release time of relays with diode: 0 ms maximum : Relays with indicator or diode: 000V AC, minute : For use under different temperature conditions, refer to Continuous Load Current vs. Operating Temperature Curve. The operating temperature range of relays with indicator or doide is to +0 C. Electrical Life Curve AC Load Life ( 0,000 operations) V AC resistive 0V AC resistive 0V AC inductive 0V AC inductive 0 0 DC Load Life ( 0,000 operations) V DC resistive 0V DC inductive 00V DC resistive 00V DC inductive 0 0 Continuous Load Current vs. Operating Temperature Curve (Basic, With Check Button, and Top Bracket Mounting) Operating Temperature ( C) Note: The rated voltage is applied to the coil. AC Coil DC Coil

40 RM Series Miniature Relays Internal Connection (Bottom View) Basic (-U, UT) With Check Button ( ) (+) Front Pushbutton Contacts can be operated by pressing the check button. Press the button quickly to prevent arcing. With Indicator (-UL) Below V AC/DC V AC/DC and over ( ) (+) ( ) (+) When the coil is energized, the indicator goes on. The LED protection diode is not contained in DPDT relays for below 00V DC. With Indicator and Diode (-UD, -ULD) Below V DC V DC and over ( ) (+) ( ) (+) This type contains an operation indicator and a surge absorber, and has the same height as the basic type. Dimensions Plug-in (Solder Terminal) RMS-U/RMS-UL RMS-UD/RMS-ULD (Photo: RMS-U) Total length from the panel surface including relay socket. SMS-0A:. (.) max., SMS-:. (.) max. Dimensions in the ( ) include a hold-down spring.. ø. hole. 0.. max.. 7. Applicable Socket and Hold-down Spring Socket Hold-down Mounting Style Part No. Spring DIN Rail Mount Socket Panel Mount Socket PC Board Mount Socket SMS-0 SMS- SMS- SFA-0 SFA-0 SFA-0 SYS-F (SYS-0F) SFA-0 SFA-0 Note: (SYS-0F) is for the relay with check button. PC Board Terminal RMV-U/RMV-UL ø hole (Photo: RMV-U) max... Top Bracket Mounting (Solder Terminal) RMS-UT ø. hole max.. All dimensions in mm. 0

41 RH Series Power Relays SPDT through PDT, 0A contacts Midget power relays The RH series are miniature power relays with a large capacity. The RH relays feature 0A contact capacity as large as the RR series and the same size as IDEC s miniature relays. The compact size saves space. Standard Mark Approval Organization / File No. UL0 UL recognized, File No. E No. E0 CSA C. No. CSA File No. LR RH EN0- TÜV SÜD EU Low Directive Termination Plug-in Terminal SPDT DPDT Style Part No. Coil Code Part No. Coil Code RHB-U RHB-U Basic RHB-UW RHB-UW RHB-UL RHB-UL With Indicator AC, AC, AC, AC0, AC, AC, AC, AC0, RHB-ULW RHB-ULW AC00, AC0, AC, AC0, AC00-0, AC0-0, With Check Button AC00, AC0, AC0, AC0 RHB-UC AC00-0, AC0-0 With Indicator and DC, DC, DC, DC, DC, DC, DC, DC, Check Button DC00, DC0 RHB-ULC DC00-0 Top Bracket Mounting With Diode (DC coil only) With Indicator and Diode (DC coil only) RHB-UT RHB-UTW RHB-UD RHB-UDW RHB-ULD RHB-ULDW DC, DC, DC, DC, DC00, DC0 RHB-UT RHB-UTW RHB-UD RHB-UDW RHB-ULD RHB-ULDW DC, DC, DC, DC, DC00-0 PC Board Terminal Basic RHV-U RHV-UW AC, AC, AC, AC0, AC00, AC0, AC, AC0, AC00, AC0, AC0, AC0 DC, DC, DC, DC, DC00, DC0 With Indicator With Diode (DC coil only) RHV-UD RHV-UDW Part number ending with W is cadmium free. DC, DC, DC, DC, DC00 RHV-U RHV-UW RHV-UL RHV-ULW RHV-UD RHV-UDW AC, AC, AC, AC0, AC00-0, AC0-0, AC00-0, AC0-0 DC, DC, DC, DC, DC00-0 DC, DC, DC, DC, DC00-0 Part No. Development When ordering, specify the Part No. and coil voltage code. (Example) RHB-U Part No. AC00-0 Coil Code

42 RH Series Power Relays Termination Plug-in Terminal Basic Style With Indicator PDT PDT Part No. Coil Code Part No. Coil Code RHB-U RHB-U RHB-UW RHB-UW RHB-UL AC, AC, AC, RHB-UL AC0, AC00, AC0, RHB-ULW AC, AC0, AC00, With Check Button RHB-UC RHB-UC AC0, AC0, AC0 With Indicator and RHB-ULC DC, DC, DC, RHB-ULC Check Button DC, DC00, DC0 Top Bracket Mounting With Diode (DC coil only) With Indicator and Diode (DC coil only) RHB-UT RHB-UTW RHB-D (Note) RHB-DW (Note) RHB-LD (Note) RHB-LDW (Note) DC, DC, DC, DC, DC00, DC0 RHB-UT RHB-UTW RHB-UD RHB-UDW RHB-ULD RHB-ULDW AC, AC, AC, AC0, AC00, AC0, AC, AC0, AC00, AC0, AC0, AC0 DC, DC, DC, DC, DC00, DC0 DC, DC, DC, DC, DC00, DC0 PC Board Terminal Basic With Indicator With Diode (DC coil only) With Indicator and Diode (DC coil only) RHV-U RHV-UW RHV-UL RHV-ULW RHV-D (Note) RHV-DW (Note) RHV-LD (Note) RHV-LDW (Note) AC, AC, AC, AC0, AC00, AC0, AC, AC0, AC00, AC0, AC0, AC0 DC, DC, DC, DC, DC00, DC0 DC, DC, DC, DC, DC00, DC0 RHV-U RHV-UW RHV-UL RHV-ULW RHV-UD RHV-UDW RHV-ULD RHV-ULDW AC, AC, AC, AC0, AC00, AC0, AC, AC0, AC00, AC0, AC0, AC0 DC, DC, DC, DC, DC00, DC0 DC, DC, DC, DC, DC00, DC0 Note: No standard approval. Part number ending with W is cadmium free. Part No. Development When ordering, specify the Part No. and coil voltage code. (Example) RHB-U Part No. AC0 Coil Code Coil Ratings AC (0/0Hz) DC Rated (V) Rated Current (ma) ±% at 0 C SPDT DPDT PDT PDT Coil Resistance (Ω) 0Hz 0Hz ±0% at 0 C Max. Continuous SPDT DPDT PDT PDT SPDT DPDT PDT PDT SPDT DPDT PDT PDT , ,0,0,0, ,0,00, ,0,0,0, ,00,770, ,,0,0, , 0,00 7, ,70,0,00, ,70,00,0 SPDT DPDT PDT PDT SPDT DPDT PDT PDT SPDT DPDT PDT PDT ,0,00,00, ,000,0,00, ,00,00 7,0 Operation Characteristics (against rated values at 0 C) Applied 0% 0% Min. Pickup 0% maximum 0% maximum Dropout 0% minimum 0% minimum

43 RH RH Series Power Relays Contact Ratings Contact Continuous Current Maximum Contact Capacity Allowable Contact Power Resistive Load Inductive Load (V) Rated Load Res. Load Ind. Load 0 AC 0A 7A SPDT 0A 0VA AC 0VA AC 00W DC 0W DC 0 AC 7A.A 0 DC 0A 7A DPDT 0 AC 0A 7.A 0VA AC 00VA AC PDT 0A 0 AC 7.A A 00W DC W DC PDT 0 DC 0A 7.A Note: Inductive load for the rated load cos ø = 0., L/R = 7 ms UL Ratings (silver cadmium oxide) Resistive General use Horse Power Rating RH RH RH RH RH RH RH RH RH RH RH RH 0V AC 0A 7.A 7.A 7A.A A / HP / HP 0V AC 0A 0A 7.A 7.A / HP / HP 0V DC 0A 0A 7A V DC 0A UL Ratings (cadmium free) Resistive General use Horse Power Rating RH RH RH RH RH RH RH RH RH RH RH RH 0V AC 0A 0A 0A 0A 0A 0A / HP / HP 0V AC / HP / HP 0V DC 0A 0A 0A 7A CSA Ratings (Silver cadmium oxide/cadmium free) Resistive General use Horse Power Rating RH RH RH RH RH RH RH RH RH,, 0V AC 0A 0A 0A 0A 7A 7A 7A A / HP 0V AC 0A 0A 0A 0A 7.A 7.A 7.A / HP 0V DC 0A 0A 0A 0A 7A 7.A TÜV Ratings (silver cadmium oxide/cadmium free) RH RH RH RH 0V AC 0A 0A 7.A 7.A 0V DC 0A 0A 0A 0A AC: cos ø =.0, DC: L/R = 0 ms Specifications Contact Material Silver cadmium oxide/cadmium free (Ag-alloy) Contact Resistance 0 mω maximum Minimum Applicable Load V DC, 0 ma; V DC, 00 ma (reference value) Operate Time SPDT/DPDT 0 ms maximum PDT/PDT ms maximum Release Time SPDT/DPDT 0 ms maximum PDT/PDT ms maximum SPDT AC:. VA (0 Hz), VA (0 Hz), DC: 0.W Power Consumption DPDT AC:. VA (0 Hz),. VA (0 Hz), DC: 0.W (approx.) PDT AC: VA (0 Hz),.7 VA (0 Hz), DC:.W PDT AC:. VA (0 Hz), VA (0 Hz), DC:.W Insulation Resistance 00 MΩ minimum (00V DC megger) Between live and dead parts: 000V AC, minute SPDT Between contact and coil: 000V AC, minute Between contacts of the same pole: 000V AC, minute Dielectric Strength Between live and dead parts: 000V AC, minute DPDT/PDT/PDT Between contact and coil: 000V AC, minute Between contacts of different poles: 000V AC, minute Between contacts of the same pole: 000V AC, minute Operating Frequency Electrical:,00 operations/h maximum Mechanical:,000 operations/h maximum Vibration Resistance Damage limits: 0 to Hz, amplitude 0. mm Operating extremes: 0 to Hz, amplitude 0. mm Damage limits:,000 m/s Shock Resistance Operating extremes: 00 m/s (SPDT, DPDT) 00 m/s (PDT, PDT) Mechanical Life 0,000,000 operations minimum Silver cadmium oxide contact: 00,000 operations minimum Electrical Life DPDT (0V AC, 0A) Cadmium free (Ag-alloy) contact: 00,000 operations minimum SPDT/PDT/PDT 00,000 operations minimum (0V AC, 0A) Operating SPDT to +0 C (no freezing) Temperature DPDT/PDT/PDT to +0 C (no freezing) Operating Humidity to % RH (no condensation) Storage Temperature to +70 C (no freezing) Storage Humidity to % RH (no condensation) Weight (approx.) SPDT: g, DPDT: 7g, PDT: 0g, PDT: 7g Note: Above values are initial values. : Measured using V DC, A voltage drop method : Measured at the rated voltage (at 0 C), excluding contact bouncing Release time of relays with diode: 0 ms maximum : Relays with indicator or diode: 000V AC, minute : For use under different temperature conditions, refer to Continuous Load Current vs. Operating Temperature Curve. The operating temperature range of relays with indicator or diode is to +0 C.

44 RH Series Power Relays Internal Connection (Bottom View) Basic SPDT DPDT PDT PDT With Check Button ( ) ( + ) ( ) ( + ) 0 ( ) ( + ) 0 7 ( ) ( + ) Front Pushbutton Contacts can be operated by pressing the check button. Press the button quickly to prevent arcing. With Indicator (-L) PDT PDT SPDT DPDT Below 00V AC/DC 0 ( ) ( + ) 0 7 ( ) ( + ) Below V AC/DC ( ) ( + ) ( ) ( + ) When the coil is energized, the indicator goes on. Relays for below 00V DC do not contain a protection diode (except DPDT). 00V AC/DC and over ( ) ( + ) ( ) ( + ) V AC/DC and over ( ) ( + ) ( ) ( + ) With Diode (-D) SPDT DPDT PDT PDT This type contains a diode to absorb the counter emf generated when the coil is deenergized. The release time is slightly longer. Available for DC coil only. Diode Characteristics ( ) ( + ) Reverse withstand voltage: ( ) ( + ) ( ) ( + ) ( ) ( + ),000V Forward current: A With Indicator and Diode (-LD) Below V DC SPDT DPDT PDT PDT This type contains an operation indicator and (-) (+) ( ) ( + ) Below 00V DC 0 ( ) ( + ) 0 7 ( ) ( + ) a sure absorber, and has the same height as the basic type. V DC and over ( ) ( + ) 00V DC and over 0 ( ) ( + ) 0 7 ( ) ( + ) ( ) (+)

45 RH RH Series Power Relays Characteristics (Reference Data) Maximum Switching Capacity (RH) 0.0 AC resistive.0 AC inductive (RH/RH/RH) AC resistive AC inductive.0 0. DC inductive DC resistive.0 0. DC inductive DC resistive Load (V) Load (V) Electrical Life Curve AC Load 000 (RH) 00 0V AC resistive DC Load 000 (RH) 00 Life ( 0,000 operations) 00 0 Life ( 0,000 operations) V DC resistive 0V DC resistive 0 0V AC inductive 0V AC inductive 0V AC resistive 0 0V DC inductive 00V DC inductive 0 (RH) V AC resistive 0 (RH) V DC resistive Life ( 0,000 operations) V AC inductive 0V AC resistive 0V AC inductive Life ( 0,000 operations) V DC resistive 00V DC inductive 0V DC inductive (RH/RH) 000 (RH/RH) V AC resistive 00 0V DC resistive Life ( 0,000 operations) 00 0 Life ( 0,000 operations) V DC inductive 0 0 0V AC inductive 0V AC resistive 0V AC inductive V DC resistive 00V DC inductive 7 0

46 RH Series Power Relays Continuous Load Current vs. Operating Temperature Curve (Basic, With Check Button, and Top Bracket Mounting) (RH) (RH) (RH/RH) Operating Temperature ( C) Note: The rated voltage is applied to the coil. AC Coil DC Coil 7 0 Operating Temperature ( C) Note: The rated voltage is applied to the coil. DC Coil AC Coil 7 0 Operating Temperature ( C) Note: The rated voltage is applied to the coil. AC/DC Coil 7 0 Dimensions SPDT Plug-in Terminal RHB-U/RHB-UL/RHB-UD/ULD Total length from panel surface including relay socket SHB-0A:. (.) max., SHB-:. (.) max. Dimensions in the ( ) include a hold-down spring. ø. hole (Photo: RHB-U) Applicable Socket and Hold-down Spring Socket Hold-down Mounting Style Part No. Spring DIN Rail Mount Socket Panel Mount Socket PC Board Mount Socket SHB-0 SHB- SHB- SFA-0 SFA-0 SYS-F SFA-0 SFA-0. max... DPDT Plug-in Terminal RHB-U/RHB-UL/RHB-UD/RHB-ULD Total length from panel surface including relay socket SHB-0A:. (.) max., SHB-:. (.) max. Dimensions in the ( ) include a hold-down spring. ø. hole.7 Applicable Socket and Hold-down Spring Socket Hold-down Mounting Style Part No. Spring DIN Rail Mount Socket SHB-0 (Note) SFA-0 SFA-0 (Photo: RHB-U). max Panel Mount Socket PC Board Mount Socket SHB- SHB- SYS-F SFA-0(Note) SFA-0(Note) (SYS-0F) Note: Not applicable with SHB-. (SYS-0F) is for the relay with check button. PDT Plug-in Terminal RHB-U/RHB-UL/RHB-D/RHB-LD Total length from panel surface including relay socket SHB-0A:. (.) max., SHB-:. (.) max. Dimensions in the ( ) include a hold-down spring. Applicable Socket and Hold-down Spring Socket Hold-down Mounting Style Part No. Spring DIN Rail Mount Socket SHB-0 SFA-0 SFA-0 (Photo: RHB-U) ø. hole Panel Mount Socket PC Board Mount Socket SHB- SHB- SYS-F SFA-0 SFA-0 (SHB-0F) (SHB-0F) is for the relay with check button.. max.. PDT Plug-in Terminal RHB-U/RHB-UL/RHB-UD/RHB-ULD Total length from panel surface including relay socket SHB-0A:. (.) max., SHB-:. (.) max. Dimensions in the ( ) include a hold-down spring. Applicable Socket and Hold-down Spring Socket Hold-down Mounting Style Part No. Spring.7 DIN Rail Mount Socket SHB-0 SFA-0 SFA-0 ø. hole (Photo: RHB-U) max.. 7. Panel Mount Socket PC Board Mount Socket SHB- SHB- SYS-F (Note) SFA-0 SFA-0 (SHB-0F) Note: Use two SYS-F hold-down springs for the SHB- socket. (SHB-0F) is for the relay with check button.

47 RH RH Series Power Relays SPDT Plug-in Terminal (Top Bracket Mounting) RHB-UT.7 DPDT Plug-in Terminal (Top Bracket Mounting) RHB-UT 0 ø. hole 0..7 ø. hole max max.. PDT Plug-in Terminal (Top Bracket Mounting) RHB-UT PDT Plug-in Terminal (Top Bracket Mounting) RHB-UT ø. hole 0..7 ø. hole max max.. max.. SPDT PC Board Terminal RHV-U/RHV-UD (Photo: RHV-U) ø holes 7. -ø. holes...7. max... DPDT PC Board Terminal RHV-U/RHV-UL/ RHV-UD (Photo: RHV-U) ø. holes (RHV-U). max.. 0. PDT PC Board Terminal RHV-U/RHV-UL/ RHV-D (Photo: RHV-U) 0. -ø. holes (RHV-U) 0.. max.. 7. PDT PC Board Terminal RHV-U/RHV-UL/ RHV-UD 0. -ø. holes (RHV-U) (Photo: RHV-U) 0.. max.. 7. All dimensions in mm. 7

48 RR Series Power Relays Heavy-duty power relays Large capacity 0A,, and poles Available in pin and blade terminal styles. Options include an indicator, check button for test operation, and side flange. DIN rail, surface, and panel mount sockets are available for a wide variety of mounting applications. Termination Pin Terminal Blade Terminal Style Part No. SPDT DPDT PDT (Note) Basic RRP-U H RRP-U H RRPA-U H With Indicator RRP-UL H RRP-UL H RRPA-UL H With Check Button RRP-UC H RRP-UC H RRPA-UC H With Indicator and Check Button RRP-ULC H RRP-ULC H RRPA-ULC H Basic RRBA-U RRBA-U RRB-U With Indicator RRBA-UL RRBA-UL RRB-UL With Check Button RRBA-UC RRBA-UC RRB-UC With Indicator and Check Button RRBA-ULC RRBA-ULC RRB-ULC Side Flange RRBA-US RRBA-US RRB-US Note: Both RRP and RRPA are PDT relays and have different terminal arrangements. See Internal Connection on page 0. Part numbers marked with H in the table above are UL-recognized, CSA-certified, and TÜV-approved. Others are UL-recognized and CSA-certified. Coil Ratings Rated (V) AC (0/0Hz) DC Rated Current (ma) ±% at 0 C 0Hz 0Hz Coil Resistance (Ω) ±0% at 0 C ,70 0 7,0., , , , , , ,00 0,0 Coil Code AC, AC, AC, AC0, AC00, AC0, AC, AC0, AC00, AC0, AC0, AC0, DC, DC, DC, DC, DC0 Part No. Development When ordering, specify the Part No. and coil voltage code. (Example) RRP-U Operation Characteristics (against rated values at 0 C) Max. Continuous Minimum Dropout Applied Pickup 0% 0% Part No. AC0 Coil Code 0% maximum 0% maximum 0% minimum % minimum

49 RR RR Series Power Relays Contact Ratings Continuous Current 0A Maximum Contact Capacity Allowable Contact Power Rated Load Resistive Inductive Resistive Inductive Load Load Load Load 0V AC 0A 7.A 0VA AC 00VA AC 0V AC 7.A A 00W DC 0W DC 0V DC 0A A Note: Inductive load for the rated load cos ø = 0., L/R = 7 ms UL Ratings Resistive General use Horse Power Raging 0V AC 0A 7A / HP 0V AC 0A 7.A / HP 0V DC 0A 7A CSA Ratings Resistive General use 0V AC 0A 7A 0V AC 0A 7.A 00V DC 0.A 0V DC 0A 7.A TÜV Ratings 0V AC 0A 0V DC 0A AC: cos ø =.0, DC: L/R = 0 ms Specifications Contact Material Silver Contact Resistance 0 mω maximum Minimum Applicable Load V DC, 0 ma (reference value) Operate Time ms maximum Release Time ms maximum Power Consumption (approx.) AC: VA (0 Hz),. VA (0 Hz) DC:.W Insulation Resistance 00 MΩ minimum (00V DC megger) Between live and dead parts: 00V AC, minute Pin Terminal Between contact and coil: 00V AC, minute Between contacts of different poles: 00V AC, minute Dielectric Strength Between contacts of the same pole: 000V AC, minute Between live and dead parts: 000V AC, minute Blade Terminal Between contact and coil: 000V AC, minute Between contacts of different poles: 000V AC, minute Between contacts of the same pole: 000V AC, minute Operating Frequency Electrical: 00 operations/h maximum Mechanical:,000 operations/h maximum Vibration Resistance Damage limits: 0 to Hz, amplitude 0. mm Operating extremes: 0 to Hz, amplitude 0. mm Shock Resistance Damage limits: 000 m/s Operating extremes: 00 m/s Mechanical Life 0,000,000 operations Electrical Life 00,000 operations (0V AC, A) Operating Temperature to +0 C (no freezing) Operating Humidity to % RH (no condensation) Weight (approx.) (Basic) RRP: 0g, RRP/RRPA: g, RRBA/RRBA/RRB: g Note: Above values are initial values. : Measured using V DC, A voltage drop method : Measured at the rated voltage (at 0 C), excluding contact bouncing : For use under different temperature conditions, refer to Continuous Load Current vs. Operating Temperature Curve.

50 RR Series Power Relays Internal Connection (Bottom View) Basic RRP-U ( ) 7 (+) ( ) RRP-U 7 0 (+) ( ) RRPA-U RRBA-U RRBA-U RRB-U 7 0 (+) 7 A B ( ) ( + ) 7 A B ( ) ( + ) 7 A B ( ) ( + ) With Check Button Front Pushbutton Contacts can be operated by pressing the check button. Press the button quickly to prevent arcing. With Indicator (-UL) RRP RRP RRPA RRBA RRBA RRB 7 7 Below 00V AC/DC ( ) 7 (+) ( ) 0 (+) ( ) 0 (+) 7 A B ( ) ( + ) 7 A B ( ) ( + ) 7 A B ( ) ( + ) V AC/ DC and above ( ) 7 (+) ( ) 0 (+) ( ) 0 (+) 7 A B ( ) ( + ) 7 A B ( ) ( + ) 7 A B ( ) ( + ) When the relay is energized, the indicator goes on. The LED protection diode is not contained in relays for below 00V DC. Characteristics (Reference Data) Maximum Switching Capacity DC resistive DC inductive AC resistive AC inductive Load (V) Continuous Load Current vs. Operating Temperature Curve (Basic, With Check Button, and Side Flange) Electrical Life Curve AC Load Life ( 0,000 operations) V AC resistive 0 0V AC resistive 0V AC inductive 0 0V AC inductive DC Load 000 Operating Temperature ( C) AC Coil DC Coil Life ( 0,000 operations) V DC resistive 00V DC inductive 0 0V DC resistive 0V DC inductive

51 RR Dimensions RRP-U/RRP-UL (Photo: RRP-U) Total length from panel surface including relay socket SRP-0A:. (7.) max., SRP-: () max.. max Dimensions in the ( ) include a hold-down spring. RR Series Power Relays Applicable Socket and Hold-down Spring Socket Hold-down Mounting Style Part No. Spring DIN Rail Mount Socket Panel Mount Socket w/solder Terminals w/wire Wrap Terminals SRP-0A SRP-0C SRP-0A SRP- SRP-70 SRB-0F SFA-0 SRP-0F RRP-U/RRP-UL/ RRPA-U/RRPA-UL (Photo: RRP-U) Total length from panel surface including relay socket SRP-0A:. (7.) max., SRP-: () max.. max.... Dimensions in the ( ) include a hold-down spring. 7 0 Applicable Socket and Hold-down Spring Socket Hold-down Mounting Style Part No. Spring DIN Rail Mount Socket Panel Mount Socket w/solder Terminals w/wire Wrap Terminals SRP-0A SRP-0C SRP-0A SRP- SRP-70 SRB-0F SFA-0 SRP-0F RRBA-U/RRBA-UL/ RRBA-U/RRBA-UL/ RRB-U/RRB-UL.7.0 ø.0 oblong hole Total length from panel surface including relay socket SRB-0: 7 (7) max., SRB-: (0) max. Applicable Socket and Hold-down Spring Socket Hold-down Mounting Style Part No. Spring DIN Rail Mount Socket SRB-0 SRB-0F SFA-0 Panel Mount Socket SRB- SRB-0F 0. (Photo: RRB-U) 7 A B 7. max. 7. Dimensions in the ( ) include a hold-down spring. RRBA-US RRBA-US RRB-US ø.0 oblong hole ø. Mounting Holes. 7. max (Photo: RRB-US) 0. 7 A B All dimensions in mm.

52 RVT PC Board Terminal Relays NO contact, A. Space-saving ( mm-wide,.mm-high) card relay. Highly sensitive 0mW SIL terminal enables easy patter design of PC Board terminal. Washable UL, CSA, TÜV compliant. Applicable Standards UL0 Mark Certification Organization/ File No. UL recognized File No. E CSA C. No. CSA File No. 07 EN0- Power Consumption 0mW 00mW Coil Ratings Power Consumption 0mW 00mW Contact NO NO Rated Coil Ratings Coil Rated V DC V DC V DC V DC V DC V DC Coil Resistance ±0% (at 0 C) TÜV Rheinland EU Low Directive Rated Current ±0% (at 0 C) Part No. RVT-G0 RVT-G RVT-G RVT-G0 RVT-G RVT-G Operating Characteristics (against rated values at 0 C) V DC 0Ω ma Pickup voltage V DC,00Ω 0mA (initial value: 70% Dropout volage V DC,00Ω ma (initial value): % V DC Ω 0mA Maximum concinuous applied V DC 70Ω.7mA voltage: 0% V DC,0Ω.mA Maximum Applied 0V AC, V DC Rated Current A Rated Contact /Current AC0V A (resistive load) V DC A (resistive load) Minimum Applicable Load (reference value) DC0.V, 00µA Approved Ratings UL and CSA Ratings UL Ratings CSA Ratings Contacts Contacts Resistive Inductive Resistive Inductive 0V AC A 0V AC A 0V AC A A (Pilot duty) 0V AC (Pilot duty) (0A inrush) 0V DC 0.A 0.A (Pilot duty) 0V DC 0.A 0.A (ms) 0V DC A A (Pilot duty) 0V DC A A (ms) TÜV Ratings Rated Contact Data Max. Rated Max. Rated Current AC 0V A DC 0V A Specifications Conact Resistance 0 mω maximum Operate Time 0 ms maximum Release Time ms maximum Insulatiotn Resistance 00 MΩ minimum (00V DC megger) Between contact and coil: Dielectric Strength 000V AC, minute Between contact gaps: 70V AC, minute Damage Vibration limits 0 to Hz, amplitude 0.7mm Resistance Operating extremes 0 to Hz, amplitude 0.7mm Damage Shock limits 000 m/s Resistance Operating extremes 00 m/s Operating Temperature 0 to +70 C (no freezing) Operating Humidity to % RH (no condensation) Storage Temperature 0 to +70 C (no freezing) Storage Humidity to % RH (no condensation) 0,000,000 operations minimum Mechanical (operating frequency,000 Life operations/hour) See electrical life curves Electrical (operating frequency,00 operations/ hour) Weight (approx.) g Note: Above values are initial values. : Measured using V DC, A voltage drop method : Measured at the rated voltage (at 0 C) Dimensions 0. max max.. max.. max. Internal Connection 0.. max. All dimensions in mm. Mounting Hole Layout (bottom view) -ø. holes (.0) (.)

53 RVT RVT PC Board Terminal Relays Electrical Life Curve AC Load Life (x0,000 operations) V AC Inductive Load 0V AC Inductive Load 0V AC Resistive Load 0V AC Resistive Load DC Load Life (x0,000 operations) V DC Inductive Load 0 V DC Inductive Load V DC Resistive Load 0V DC Resistive Load V DC Resistive Load V DC Inductive Load Maximum Switching Current 0 0. AC Inductive Load DC Resistive Load AC Resistive Load 0. DC Inductive 0. Load Load (V) Coil Range Single mounting Maximum Continuous Applied & Operating on Coil (%) Maximum Continuous Applied on Coil Operating on Coil hot coil cold coil Ambient Temperature ( C) Collective Mounting Maximum Continuous Applied & Operating on Coil (%) Maximum Continuous Applied on Coil Operating on Coil hot coil cold coil Ambient Temperature ( C)

54 RFV Force Guided Relays Compact and EN compliant RFV force guided relays. Force guided contact mechanism (EN00 Type A TÜV approved) Contact configuration -pole (NO-NC, NO-NC) -pole (NO-NC, NO-NC, NO-NC) Built-in LED indicator available. Fast response time ( ms maximum). High shock resistance (00 m/s minimum) Finger-safe DIN rail mount socket and PC board mount socket. Applicable Standard UL0 Marking Certification Organization / File No. UL recognized File No. E CSA C. No. CSA File No. 0 EN00 EN0- TÜV SÜD Force Guided Relays -pole -pole Contact NO-NC NO-NC NO-NC NO-NC NO-NC Package quantity: 0 Coil Ratings -pole -pole Contact NO-NC NO-NC NO-NC NO-NC NO-NC Rated Coil (V) Rated Coil Without LED Indicator With LED Indicator Part No. Part No. V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D V DC RFV-AB-D RFV-ABL-D Rated Current (ma) ±0% (at 0 C) (Note ) Coil Resistance (Ω) ±0% (at 0 C) V DC 0 00 V DC 00 V DC V DC 0 00 V DC 00 V DC V DC.7 V DC 0. V DC 0. 0 V DC.7 V DC 0. V DC 0. 0 V DC.7 V DC 0. V DC 0. 0 Pickup (initial value) Note : For relays with LED indicator, the rated current increases by approx. ma. Note : Maximum continuous applied voltage is the maximum voltage that can be applied to relay coils. Operating Characteristics (at 0 C) Dropout (initial value) Maximum Continuous Applied (Note ) 7% maximum 0% minimum 0% Power Consumption Approx. 0.W Approx. 0.W

55 RFV Specifications Number of Poles -pole -pole RFV Force Guided Relays Contact Configuration NO-NC NO-NC NO-NC NO-NC NO-NC Contact Resistance (initial value) (Note ) Contact Material Rated Load (resistive load) Allowable Switching Power (resistive load) Allowable Switching Allowable Switching Current Minimum Applicable Load (Note ) 00 mω maximum AgSnO (Au flashed) A 0V AC, A 0V DC 00 VA, 0W 0V AC, V DC A V DC, ma (reference value) Power Consumption (approx.) 0.W 0.W Insulation Resistance 000 MΩ minimum (00V DC megger, same measurement positions as the dielectric strength) Between contact and coil 000V AC, minute Dielectric Strength Between contacts of different poles 00V AC, minute Between contacts 7- and V AC, min. Between contacts - and - Between contacts - and 7- Between contacts - and -0 00V AC, minute Between contacts 7- and - Between contacts -0 and - Between contacts - and - 000V AC, min. Between contacts - and - Between contacts - and 7- Between contacts - and -0 Between contacts 7- and -0 Between contacts of the same pole 00V AC, minute Operate Time (at 0 C) 0 ms maximum (at the rated coil voltage, excluding contact bounce time) Response Time (at 0 C) (Note ) ms maximum (at the rated coil voltage, excluding contact bounce time) Release Time (at 0 C) 0 ms maximum (at the rated coil voltage, excluding contact bounce time) Vibration Operating Extremes 0 to Hz, amplitude 0.7 mm Resistance Damage Limits 0 to Hz, amplitude 0.7 mm Shock Operating Extremes (half sine-wave pulse: ms) 00 m/s, when mounted on DIN rail mount socket: 0 m/s Resistance Damage Limits (half sine-wave pulse: ms) 000 m/s 0V AC A resistive load: 00,000 operations minimum (operating frequency 00 per hour) 0V DC A resistive load: 00,000 operations minimum (operating frequency 00 per hour) 0V AC A resistive load: 00,000 operations minimum (operating frequency Electrical Life 00 per hour) 0V DC A resistive load: 00,000 operations minimum (operating frequency 00 per hour) [AC ] 0V AC A inductive load: 00,000 operations minimum (operating frequency 00 per hour, cos ø = 0.) [DC ] V DC A inductive load: 00,000 operations minimum (operating frequency 00 per hour, L/R = ms) Mechanical Life 0 million operations minimum (operating frequency 0,00 operations per hour) Operating Temperature (Note ) 0 to + C (no freezing) Storage Temperature 0 to + C (no freezing) Operating Humidity to % RH (no condensation) Storage Humidity to % RH (no condensation) Operating Frequency (rated load) 00 operations per hour Weight (approx.) 0g g Note : Measured using V DC,A voltage drop method. Note : Failure rate level P, /0,000,000 (reference value) (JIS C00) Note : Response time is the time until NO contact opens, after the coil voltage is turned off. Note : When using at 70 to C, reduce the switching current by 0.A/ C.

56 RFV Force Guided Relays Characteristics Maximum Switching Capacity 0 DC Resistive Load Load (V) AC Resistive Load Life ( 0,000 operations) Electrical Life Curve V AC Resistive Load 0V DC Resistive Load 0. 0 Notes on Contact Gaps except Welded Contacts Example: RFV-AB-D If the NO contact (7- or -0) welds, the NC contact (- or -) remains open even when the relay coil is de-energized, maintaining a gap of 0. mm. The remaining unwelded NO contact (-0 or 7-) is either open or closed. If the NC contact (- or -) welds, the NO contact (7- or -0) remains open even when the relay coil is energized, maintaining a gap of 0. mm. The remaining unwelded NC contact (- or -) is either open or closed RFV Dimensions RFV (-pole) RFV (-pole) PC Board Terminal Mounting Hole Layout (Bottom View) 0 max. 0 max. RFV (-pole) 0-. hole max. max. max Internal Connection (Bottom View) RFV (-pole) Without LED Indicator NO-NC Contact + max NO-NC Contact RFV (-pole) Without LED Indicator 7 0 NO-NC Contact ±0. 0. ±0. 0. (.).0 ±0..7±0.. ±0..0 RFV (-pole) (.).7±0..0 ± NO-NC Contact + -. hole.0 ±0..0±0..0 ±0.. ± NO-NC Contact With LED Indicator With LED Indicator NO-NC Contact NONC Contact NO-NC Contact NO-NC Contact NO-NC Contact

57 RFV RFV Force Guided Relays Instructions. Driving Circuit for Relays. To make sure of correct relay operation, apply rated voltage to the relay coil. Pickup and dropout voltages may differ according to operating temperature and conditions.. Input voltage for DC coil: A complete DC voltage is best for the coil power to make sure of stable operation. When using a power supply containing a ripple voltage, suppress the ripple factor within %. When power is supplied through a rectifications circuit, relay operating characteristics, such as pickup voltage and dropout voltage, depend on the ripple factor. Connect a smoothing capacitor for better operating characteristics as shown below. Smoothing Capacitor + R Relay Pulsation Emin Emax Emean DC Emax Emin Ripple Factor (%) 00% Emean Emax = Maximum of pulsating current Emin = Minimum of pulsating current Emean= DC mean value. Operating the relay in sync with an AC load: If the relay operates in sync with AC power voltage of the load, the relay life may be reduced. If this is the case, select a relay in consideration of the required reliability for the load. Or, make the relay turn on and off irrespective of the AC power phase or near the point where the AC phase crosses zero voltage. TE R Load Vin EAC Vin EAC. Leakage current while relay is off: When driving an element at the same time as the relay operation, special consideration is needed for the circuit design. As shown in the incorrect circuit below, leakage current (Io) flows through the relay coil while the relay is off. Leakage current causes coil release failure or adversely affects the vibration resistance and shock resistance. Design a circuit as shown in the correct example. Incorrect Correct. Surge suppression for transistor driving circuits: When the relay coil is turned off, a high-voltage pulse is generated. Be sure to connect a diode to suppress the counter electromotive force. Then, the coil release time becomes slightly longer. To shorten the coil release time, connect a Zener diode between the collector and emitter of the controlling transistor. Select a Zener diode with a Zener voltage slightly higher than the power voltage. R R lo TE Counter emf suppressing diode + R Relay. The coil terminal of the relay has polarity. Connect terminals according to the internal connection diagram. Incorrect wiring may cause malfunction.. Protection for Relay Contacts. The contact ratings show maximum values. Make sure that these values are not exceeded. When an inrush current flows through the load, the contact may become welded. If this is the case, connect a contact protection circuit, such as a current limiting resistor.. Contact protection circuit: When switching an inductive load, arcing causes carbides to form on the contacts, resulting in an increased contact resistance. In consideration of contact reliability, contact life, and noise suppression, use of a surge absorbing circuit is recommended. Note that the release time of the load becomes slightly longer. Check the operation using an actual load. Incorrect use of a contact protection circuit will adversely affect switching characteristics. Four typical examples of contact protection circuits are shown in the following table: RC Diode Varistor Power Power + Power Power C R C R D Varistor Ind. Load Ind. Load Ind. Load Ind. Load This protection circuit can be used when the load impedance is smaller than the RC impedance in an AC load power circuit. R: Resistor of approximately the same resistance value as the load C: 0. to µf This protection circuit can be used for both AC and DC load power circuits. R: Resistor of approximately the same resistance value as the load C: 0. to µf This protection circuit can be used for DC load power circuits. Use a diode with the following ratings. Reverse withstand voltage: Power voltage of the load circuit 0 Forward current: More than the load current This protection circuit can be used for both AC and DC load power circuits. For a best result, when using on a power voltage of to V AC/DC, connect a varistor across the load. When using on a power voltage of 00 to 0V AC/DC, connect a varistor across the contacts.. Do not use a contact protection circuit as shown below: C Power C Power Load Load This protection circuit is very effective in arc suppression when opening the contacts. But, the capacitor is charged while the contacts are opened. When the contacts are closed, the capacitor is discharged through the contacts, increasing the possibility of contact welding. This protection circuit is very effective in arc suppression when opening the contacts. But, when the contacts are closed, a current flows to charge the capacitor, causing contact welding. Generally, switching a DC inductive load is more difficult than switching a DC resistive load. Using an appropriate arc suppressor will improve the switching characteristics of a DC inductive load.. Usage, transport, and storage conditions. Temperature, humidity, atmospheric pressure during usage, transport, and storage. ➀ Temperature: C to + C (no freezing) When the temperature is 70 to 0 C, reduce the A max. switching current by 0. A/ C ➁ Humidity: to %RH (no condensation) The humidity range varies with temperature. Use within the range indicated in the chart below. ➂ Atmospheric pressure: to 0 kpa Operating temperature and humidity range Humidity (%RH) Tolerance Range (Avoid freezing when using at temperatures below 0ºC) (Avoid condensation when using at temperatures above 0ºC) 0 0 Temperature (ºC). Condensation Condensation occurs when there is a sudden change in temperature under high temperature and high humidity conditions. The relay insulation may deteriorate due to condensation.. Freezing Condensation or other moisture may freeze on the relay when the temperatures is lower than 0 C. This causes problems such as sticking of movable parts or delay in operation.. Low temperature, low humidity environments Plastic parts may become brittle when used in low temperature and low humidity environments.. Panel Mounting When mounting DIN rail mount sockets on a panel, take the following into consideration. Use M. screws, spring washers, and hex nuts. For mounting hole layout, see the dimensions on page. Keep the tightening torque within 0. to 0. N m. Excessive tightening may cause damage to the socket.. Others. General notice: ➀ To maintain the initial characteristics, do not drop or shock the relay. ➁ The relay cover cannot be removed from the base during normal operation. To maintain the initial characteristics, do not remove the relay cover. ➂ Use the relay in environments free from condensation, dust, sulfur dioxide (SO ), and hydrogen sulfide (H S). ➃ The RFV relay cannot be washed as it is not a sealed type. Also make sure that flux does not leak to the PC board and enter the relay.. Connecting outputs to electronic circuits: When the output is connected to a load which responds very quickly, such as an electronic circuit, contact bouncing causes incorrect operation of the load. Take the following measures into consideration. ➀ Connect an integration circuit. ➁ Suppress the pulse voltage due to bouncing within the noise margin of the load.. Do not use relays in the vicinity of strong magnetic field, as this may affect relay operation.. UL and CSA ratings may differ from product rated values determined by IDEC.. Notes on PC Board Mounting When mounting or more relays on a PC board, keep a minimum spacing of 0 mm in each direction. If used without spacing of 0 mm, rated current and operating temperature differs. Consult IDEC. Manual soldering: Solder the terminals at 00 C within sec. Auto-soldering: Preliminary heating at 0 C within 0 sec. Solder at 0 C± C within sec. Because the terminal part is filled with epoxy resin, do not excessively solder or bend the terminal. Otherwise, air tightness will degrade. Avoid the soldering iron from touching the relay cover or the epoxy filled terminal part. Use a non-corrosive resin flux. 7

58 RFV Force Guided Relays Control circuits conforming with safety categories,, and can be constructed. Safety category control circuits The circuit example below consisting of interlock switches, force guided relays, and safety contactors are only a part of a safety-related system in a machine. In actual machines, risk assessment must be performed taking various aspects into consideration such as hazard types, safeguarding measures, and change of hazard level in operating mode, in order to reduce the risk of the entire machine to a tolerable level. The safety category of a machine needs to be evaluated for the entire safety-related system. HSB Subminiature Interlock Switch L(+) V DC F S K () () K Safety guard open KM KM S () F Safety function at occurrence of single faults. If a short-circuit failure occurs at either of the S channels, when the safety guard is opened, K does not turn off but K turns off, so safety function (power interruption to the motor) is maintained. The system does not restart because the NC contact of K remains open and K is not energized even when S is turned on.. If a short-circuit failure occurs between S channels, the potential difference of K and K coils become 0V, turning K and K off. (Fault detection function between safety input circuits). If NO contact of KM is welded, KM turns off when the safety guard is opened, so the safety function (power interruption to the motor) is maintained. The system does not restart because the NC contact of KM remains open and K is not energized even when S is turned on.. If the NO contact of K is welded, K turns off when the safety guard is opened, so the safety function (power interruption to the motor) is maintained. The system does not restart because the NC contact of K remains open and K is not energized even when S is turned on.. If NC contact of K is welded, K and K turn off when the safety guard is opened, so the safety function (power interruption to the motor) is maintained. Also, the system does not restart because NO contact of K does not shut, therefore K and K cannot be energized. () F to F S: HSB subminiature interlock switch S: Start switch (HW series momentary) K, K, K: RFV force guided relays KM, KM: Safety contactor M: Motor F: Protection fuse for safety circuit F: Protection fuse for contact output of force guided relay contact F to F: Protection fuse for contact output of safety contactors L ( ) 0V K K K K KM () KM M Time Chart S: HSB subminiature interlock switch Safety guard closed Start switch (S) ON OFF Safety guard open RFV force guided relays S: Start switch K: Force guided relays K, K: Force guided relays Safety contactor output (KM, KM)

59 RRKP Latch Relays Self-maintained Latch Relays DPDT 0A contact capacity The RRKP series latch relays have a self-holding function using permanent magnets in the magnetic circuit. Applying a voltage on the set (or reset) coil operates the armature and retains the contacts in that position until the opposite coil is energized, hence the latch relays are ideal for memory and flipflop circuit applications. Enhanced self-holding functions, and vibration and shock resistance. The self-holding mechanism is not subject to wear unlike mechanical latch relays. Recognized by UL and certified by CSA. RRKP Terminal Style Pin Terminal Coil Ratings AC (0/0Hz) DC Style Part No. Coil Code Basic RRKP-U AC, AC, AC, AC0, AC00, AC0, AC, AC0, AC00, AC0, AC0, AC0 With Check Button RRKP-UC DC, DC, DC, DC, DC0 Rated (V) Rated Current (ma) ±% at 0 C 0Hz 0Hz Coil Resistance (Ω) ±0% at 0 C ,00 0,00,00 0,00 00, , , , , ,0 Part No. Development When ordering, specify the Part No. and coil voltage code. (Example) RRKP-U Operation Characteristics (against rated values at 0 C) Maximum Continuous Applied 0% 0% Part No. AC0 Coil Code Set and Reset 0% maximum 0% maximum Contact Ratings Switching 0V AC V DC Continuous Current 0A Maximum Contact Capacity Allowable Contact Power Rated Load Resistive Inductive Res. Load Load Load 0 VA AC 00W DC 00 VA AC W DC Note: Inductive load for rated load cos ø = 0., L/R = 7 ms Ind. Load 0V AC 0A 7.A 0V AC 7.A A 0V DC 0A 7.A 00V DC 0.A 0.A UL Ratings Resistive General Use Motor Load 0V AC 0A 7A / HP 0V AC 0A 7.A / HP 0V DC 0A 7A CSA Ratings Resistive General Use Motor Load 0V AC 0A 7A / HP 0V AC 0A 7.A / HP 00V DC 0.A 0V DC 0A 7.A

60 RRKP Latch Relays Specifications Contact Material Silver Contact Resistance 0 mω maximum (initial value) Operate Time ms maximum (at the rated voltage) Power Consumption (approx.) AC:. VA (0 Hz),. VA (0 Hz) DC:.W Insulation Resistance 00 MΩ minimum (00V DC megger) Between live and dead parts:,00v AC, minute Between contact and coil: Dielectric Strength,00V AC, minute Between contacts of different poles:,00v AC, minute Between contacts of the same pole:,000v AC, minute Operating Frequency Electrical: 00 operations/h maximum Mechanical:,000 operations/h maximum Temperature Rise Coil: C maximum, Contact: C maximum Vibration Resistance 0 to 0 m/s (maximum frequency: Hz), Frequency: to Hz, Amplitude: 0. mm Shock Resistance 00 m/s minimum Mechanical Life,000,000 operations minimum Electrical Life 00,000 operations minimum (0V AC, 0A) Operating Temperature to +0 C (no freezing) Operating Humidity to % RH (no condensation) Weight (approx.) 70g Dimensions Total length from panel surface including relay socket SRP-0A: 0 (0.) max., SRP-: 7. () max. 0. max. Applicable Socket and Hold-down Spring Socket Mounting Style Part No. SRP-0A DIN Rail Mount Socket SRP-0C SRP-0A Panel w/solder Terminals SRP- Mount Socket w/wire Wrap Terminals SRP Dimensions in the ( ) include a hold-down spring. All dimensions in mm. Hold-down Spring SRP-0F SRP-F Characteristics (Reference Data) Electrical Life Curve Life ( 0,000 operations) AC Load 0V AC resistive 0V AC resistive 0V AC inductive 0V AC inductive Life ( 0,000 operations) DC Load 0V DC resistive 0V DC inductive 00V DC resistive 00V DC inductive Internal Connection (Bottom View) (+) ( ) ( ) RESET SET 7 0 (+) 0

61 RYKS Latch Relays Self-maintained Latch Relays DPDT A contact capacity The RYKS series latch relays have a self-holding function using permanent magnets in the magnetic circuit. Applying a voltage on the set (or reset) coil operates the armature and retains the contacts in that position until the opposite coil is energized, hence the latch relays are ideal for memory and flip-flop circuit applications. Mountable in the same space as other miniature relays using the same sockets. Recognized by UL and certified by CSA. RYKS Terminal Style Plug-in Terminal Style Part No. Coil Code Basic RYKS-U AC, AC, AC, AC0, AC00, AC0 DC, DC, DC, DC, With Check Button RYKS-UC DC00, DC0 Part No. Development When ordering, specify the Part No. and coil voltage code. (Example) RYKS-U AC0 Part No. Coil Code Coil Ratings AC (0/0Hz) DC Rated (V) Rated Current (ma) ±% at 0 C 0Hz 0Hz Coil Resistance (Ω) ±0% at 0 C , , ,0 00,0 0 0,000 Operation Characteristics (against rated values at 0 C) Maximum Continuous Set and Reset Applied 0% 0% 0% maximum 0% maximum Contact Ratings Switching 0V AC V DC Continuous Current A Maximum Contact Capacity Allowable Contact Power Resistive Load 0VA AC 0W DC Inductive Load 7VA AC W DC Note: Inductive load for rated load cos ø = 0., L/R = 7 ms UL Ratings Resistive General Use 0V AC A 0.A 0V AC A.A 0V DC A CSA Ratings Resistive General Use 0V AC A 0.A 0V AC A.A 00V DC 0.A 0V DC A.A Rated Load Res. Load Ind. Load 0V AC A.A 0V AC A 0.A 0V DC A. 00V DC 0.A 0.A Specifications Contact Material Contact Resistance Set Time Reset Time Power Consumption (approx.) Insulation Resistance Dielectric Strength Operating Frequency Temperature Rise Vibration Resistance Shock Resistance Mechanical Life Electrical Life Operating Temperature Weight (approx.) Gold-plated silver 0 mω maximum (initial value) ms maximum (at the rated voltage) ms maximum (at the rated voltage) AC:. VA (0 Hz),. VA (0 Hz) DC:.W 00 MΩ minimum (00V DC megger) Between live and dead parts:,00v AC, minute Between contact and coil:,000v AC, minute Between contacts of different poles:,000v AC, minute Between contacts of the same pole: 700V AC, minute Electrical: 00 operations/h maximum Mechanical:,000 operations/h maximum Coil: C maximum, Contact: C maximum 0 to 0 m/s (maximum frequency: Hz), Frequency: to Hz, Amplitude: 0. mm 00 m/s minimum,000,000 operations minimum 00,000 operations minimum to +0 C (no freezing) 7g

62 RYKS Latch Relays Characteristics (Reference Data) Electrical Life Curve Life ( 0,000 operations) AC Load 0V AC resistive 0V AC resistive 0V AC inductive 0 0V AC inductive 0 Life ( 0,000 operations) DC Load 0V DC resistive 0V DC inductive 00V DC resistive 0 00V DC inductive 0 Internal Connection (Bottom View) ( ) 0 ( + ) ( ) SET RESET ( + ) Dimensions Total length from the panel surface including relay socket SYS-0A:. (.) max., SYS-:. (.) max. 0.. Dimensions in the ( ) include a hold-down spring.. ø. oblong hole max.. All dimensions in mm. Applicable Socket and Hold-down Spring Mounting Style Socket Part No. Hold-down Spring DIN Rail Mount Socket SYS-0A SYS-0C SFA-0 Panel Mount Socket SYS- SYS- SYS-F (SYS-0F) SFA-0 PC Board Mount Socket SYS-F SYS- (SYS-0F) Notes:. For the relays with check button, use the parenthesized hold-down springs shown in the above table. When the spring is used, sockets cannot be mounted closely side by side.. Leaf springs come in pairs.. Use the hold-down springs in environments where the relays are subject to vibrations or shocks. For details about sockets and hold-down springs, see page 7.

63 Relay Sockets SJ Series Relay Sockets... SJ Series PC Board Mount Sockets DF Series Finger-safe Sockets SU Series Spring Clamp Relay Sockets... 7 SFV Relay Sockets Relay Sockets... 7 Socket selection Guide... 7 DIN Rail Mount Sockets... Panel Mount Sockets PC Board Mount Sockets... Accessories...

64 SJ Series Relay Sockets.-mm wide are available. Release lever has an integrated extensible marking plate. Optional marking plate is also available. Can be attached to the release lever (at one position) and the socket (at. The release lever makes installation and removal of relays inside small panels simple and quick.. UL0 Applicable Standard Mark File No. UL recognized, File No. E7 SJ series relay sockets with marking plate will be available around in January 0. CSA C. No. EN0- CSA File No. LR EU Low Directive (Finger-safe screw terminal only) Applicable Crimping Terminals Standard Screw Terminal Finger-safe Screw Terminal Part No. Terminal Style -pole -pole Terminal No. Marking Color Black White Black White Standard Screw Terminal SJS-0B SJS-0BW SJS-0B SJS-0BW Finger-safe Screw Terminal SJS-07L SJS-07LW SJS-07L SJS-07LW Note: Release lever is supplied with each socket. Specifications Model SJS SJS Rated Current A A Rated Insulation 0V AC/DC Applicable Wire mm maximum ( AWG) Applicable Crimping Terminal mm Recommended Tightening Torque.0 N m Screw Terminal Style M slotted Phillips screw Terminal Strength Wire tensile strength: 0N minimum Insulation Resistance 00MΩ minimum (00V DC megger) Between live and dead metal parts: 000V AC, minute Between contact and coil: Dielectric Strength 000V AC, minute Between contacts of the same pole: 000V AC, minute Between contacts of the different poles: 000V AC, minute Vibration Resistance Damage limits: 0 m/s Resonance: 0 to Hz, amplitude 0.7 mm Shock Resistance Damage limits: 000 m/s Operating Temperature 0 to +70 C (no freezing) Storage Temperature to + C (no freezing) Operating Humidity to % RH (no condensation) Storage Humidity to % RH (no condensation) Weight (approx.) 0g g All dimensions in mm.. Applicable Relay Terminal Style Standard Screw Terminal Finger-safe Screw Terminal -pole -pole Socket Relay Socket Relay SJS-0B SJS-0BW SJS-07L SJS-07LW RJS series SJS-0B SJS-0BW SJS-07L SJS-07LW RJS series RJS series

65 SJ SJ Series Relay Sockets Dimensions SJS-0B(W) SJS-0B(W) SJS-07L(W) SJS-07L(W) All dimensions in mm. Replacement Parts Description Shape Material Part No. Ordering No. Package Quantity Release Lever (with integrated marking plate) Detachable Marking Plate (optional) Plastic (gray) SJZ-CM SJZ-CMPN0 Plastic (white) SJZ-PW SJZ-PWPN0 Accessories Description Shape Material Part No. Ordering No. DIN Rail End Clip Aluminum Weight: Approx. 00g Steel Weight: Approx. 00g Metal (zinc plated steel) Weight: Approx.g BAA000 BAP000 BNL BNL BAA000PN0 BAP000PN0 BNLPN0 BNLPN0 Package Quantity 0 Note Length: m Width: mm Used on a DIN rail to fasten relay sockets. To prevent the sockets from damage, position the clip before fastening. DIN Rail Spacer Jumper Plastic (black) SA-0B SA-0B For sockets SJZ-JF SJZ-JFPN0 For sockets Nickel-coated brass with SJZ-JF SJZ-JFPN0 0 For sockets polypropylene coating SJZ-JF SJZ-JFPN0 For 0 sockets SJZ-JF0 SJZ-JF0PN0 Thickness: mm Used for adjusting spacing between sockets mounted on a DIN rail Terminal centers:.mm Rated current: A Ensure that the total current to the jumper does not exceed the maximum current.

66 SJ Series Relay Sockets Safety Precautions Turn off power to the relay and the socket before starting installation, removal, wiring, maintenance, and inspection of the relays. hazard. Use wires of the proper size to meet the voltage and current requirements. Make sure that relay and output equipment are wired correctly.. Prevent metal fragments and pieces of wire from dropping inside the socket. hazard, damage, or malfunction. Operating Instructions Installing relays The relay is installed on the socket using the release lever. Leaf spring is not necessary. Rail Mounting and Removing Do not mount or remove the socket in cold temperature (below -0 C), otherwise the socket may be damaged. Applicable Screwdriver Standard Screw Terminal Phillips: ø. mm maximum Slotted: Shown at right Finger-safe Screw Terminal Phillips: ø. mm maximum Slotted: Shown at right Installing relays. Unlock the release lever by pulling down as shown with arrow ➀.. Press relay against the socket as shown with arrow ➁.... When installed properly, the relay and the socket look as shown in ➂. Removing the release lever ➀ Lightly press the relay to prevent it from falling off. ➁ Pull down the release lever to the direction shown by the arrow until it touches the socket. Pull down further, and the lever will be detached from the socket. Caution lever and socket. Because release lever is detachable, make sure not to apply excessive force. Otherwise the relay may fall and result in damage. Panel Mounting Insert the anti-rotation projection into the anti-rotation hole. Mount the socket onto the panel using M screws (not provided). Use a screwdriver with diameter of ø.mm maximum. Mounting Hole Layout ➀ ➁ ➂ Tighten the mounting screws to a torque of.0 N m. Tightening with higher torque will damage the socket. The round rib projecting from the socket bottom prevents rotation when the socket is mounted on the panel directly. Removing the Release Lever Pull down the release lever to the direction shown by the arrow until it touches the socket. Pull down further, and the lever will be detached from the socket. Caution Ensure that the relay is installed in the socket completely. When installed loosely, the relay may fall out, resulting in possible damage to the relay. Caution Make sure that the relay has been removed from the socket before removing the release lever. If the release lever is removed when the relay is installed on the socket, the relay may fall out.

67 SJ SJ Series Relay Sockets Operating Instructions Installing the Release Lever ➀ Attach part A to part B. ➁ Slide the release lever in the direction of the arrow until part A runs out of part B. ➂ Rotate the release lever, with the center of rotation at part C until part A touches the rotation axis. ➃ Push the rib of the release lever against the socket. ➄ Complete the installation. ➀ ➁ ➂ The integrated marking plate must be retracted to the original position when wiring. The SJZ-CM integrated marking plate can be lifted and retracted for 0 times minimum. Using SJZ-PW Detachable Marking Plate (optional) ➀Insert the marking plate into the slot on the release lever or socket. Note: SJZ-PW detachable marking plate cannot be installed on the SJS-0B(W)/SJB-0B(W) socket. ➁ The marking plate is installed. ➃ ➄ ➀ Using Marking Plate integrated with SJM-CM Release Lever ➀ Using a nipper, cut the marking plate at the separation part shown below, so that the marking plate can be lifted. (Note) ➁ Lift the marking plate as shown with the arrow, past the projections. ➂ Marking plate is in place. ➀ ➁ ➂ ➁ Current Check the current of relay and ensure that the current is maintained below the values shown in the following table. SJS-0B(W) SJS-07L(W) SJS-0B(W) SJS-07L(W) Ambient 70 C C 0 C 70 C C 0 C 70 C C 0 C 70 C C 0 C Temperature Single mount A A A A Collective mount A* A 0A* A A 7A* A A* 7A A * When installing AC relays, maintain at least mm between the sockets. 7

68 SJ Series Relay Sockets (PC Board Terminal) Used for RJ series plug-in terminal relay. -pole:, -pole: A Latch makes it easy to install and removal the relay. UL0 Applicable Standards Mark File No. UL recognized, UL File No. E7 CSA C. No. EN0- Sockets CSA File No. LR EU Low Directive (Finger-safe screw terminal only) No. of Poles Part No. Ordering No. Package Quantity -pole SJS- SJS-PN0 0 SJS- SJS-PN0 0 -pole SJS- SJS-PN0 0 SJS- SJS-PN0 0 Specifications Model SJS- SJS- Rated Current A A Rated Insulation 0V AC/DC Insulation Resistance 00MΩ minimum (00V DC megger) Between contact and coil: 000V AC, minute Dielectric Strength Between contacts of the same pole: 000V AC, minute Between contacts of the different pole: 000V AC, minute Vibration Resistance Damage limits: 0 m/s Resonance: 0 to Hz, amplitude 0.7 mm Shock Resistance Damage limits: 000 m/s Operating Temperature 0 to +70 C (no freezing) Storage Temperature to + C (no freezing) Operating Humidity to % RH (no condensation) Storage Humidity to % RH (no condensation) Weight (approx.).g.g Dimensions SJS- SJS- Mounting Hole Layout/Terminal Arrangement (bottom view) SJS- SJS-

69 SJ SJ Series Relay Sockets (PC Board Terminal) Operating Instructions Installing the relay Press in the relay to the socket by guiding the latch to pass through the slit. PC Board Pattern Design Press in the relay to the socket by guiding the latch to pass through the slit. On the bottom of SJS-, metal parts other than the solder leads re exposed to the mounting side of PC board as *. Take these metal parts into consideration when designing the PC board.. The latch swings open and can stop at the intermediate position. Removing the relay Pull the latch, and pull out the relay from the socket. removal tool (MT-0). Description & Shape Part No. 0.0 MT-0 Soldering Use a soldering iron of 0W (0 C), and quickly complete soldering with approximately seconds.. Sn-Ag-Cu is recommended when using lead-free solder.

70 DF Series Finger-safe Sockets Contains no lead, cadmium, mercury, hexavalent chromium, PBB, or PBDE. Accepts the same marking plates as the RU series. Fork style jumpers available for easy wiring of adjoining sockets. The SMS-0DF can also mount -pole relays when using only poles. GTY miniature electric timer can be installed. UL, c-ul recognized, CE marked. Applicable Standards UL0 CSA C. No. Mark File No. UL/c-UL recognized File No. E EN0- EU Low Directive Specifications Model SMS-0DF SYS-0DF No. of Poles poles poles Rated Insulation 0V AC/DC Rated Current 0A A Insulation Resistance 00 MΩ minimum (00V DC megger) Applicable Wire. mm ( mm maximum) Screw Terminal M slotted Phillips Terminal Screw Tightening Torque 0. to.0 N m (maximum tightening torque:. N m) Dielectric Strength 000V AC, minute (between live and dead metal parts, between live metal parts of different poles) Operating Temperature to +70 C (no freezing) Operating Humidity to % RH (no condensation) Storage Temperature to +70 C (no freezing) Storage Humidity to % RH (no condensation) Degree of Protection IP0 Weight 0g g Applicable Relay/Timer RUS, RMS, GTY- RUS, RUS, RYS, RYS, GTY- Applicable Hold-down Spring for Relay/Timer SFA-0 (RU relay), SFA-0(RM relay), SFA- (timer) SFA-0 (relay). SFA- (timer) Standards UL0, CSA C. No., EN0- Accessories Name Part No. Ordering No. Package Quantity Description Relay Hold-down Spring SFA-0 SFA-0PN0 Stainless steel SFA-0 (Note ) SFA-0PN0 0 Stainless steel Timer Hold-down Spring SFA- SFA-PN0 Stainless steel sockets SMZ-JF SMZ-JFPN0 Jumper (SM series) sockets SMZ-JF SMZ-JFPN0 For SMS-0DF (Note ) sockets SMZ-JF SMZ-JFPN0 sockets SYZ-JF SYZ-JFPN0 Jumper (SY series) sockets SYZ-JF SYZ-JFPN0 For SYS-0DF (Note ) sockets SYZ-JF SYZ-JFPN0 0 Marking Plate RUZ-P* RUZ-P*PN0 Compatible with RU relays. DIN Rail (000 mm) BAA000 BAA000PN0 Aluminum BAP000 BAP000PN0 Steel End Clip BNL BNLPN0 Steel BNL BNLPN0 Steel DIN Rail Spacer SA-0B SA-0B Thickness: mm Used for adjusting spacing between sockets mounted on a DIN rail Note : Used when using SMS-0DF with RU relay (cannot be used with SYS-0DF) Note : Make sure that the total current to the jumper does not exceed the rated current. Insert a color code in place of *. A (amber), G (green), S (blue), W (white), Y (yellow) 70

71 DF DF Series Finger-safe Sockets Dimensions Sockets SMS-0DF SYS-0DF Terminal Arrangement Mounting Hole Layout Terminal Arrangement Mounting Hole Layout ± Applicable Crimping Terminal ± Applicable Crimping Terminal ± ± All dimensions are in mm. Insulated Fork Jumpers For SMS-0DF Terminal Style Part No. L (mm) No. of Sockets SMZ-JF SMZ-JF SMZ-JF For SYS-0DF Terminal Style Part No. L (mm) No. of Sockets SYZ-JF SYZ-JF SYZ-JF 0 7

72 DF Series Finger-safe Sockets Operating Instructions Hold-down Springs Installation Insert hold-down springs into the grooves as shown below. Make sure that the small projections on the springs are facing outward. Removal Remove hold-down springs by lifting them up while depressing the small projections on the hold-down springs. Using GTY- Timers and SMS-0DF Sockets When installing two or more GTY- timers on SMS-0DF sockets in close mounting proximity as shown below, take the derating curve into consideration. ϒ ϒ Safety Precautions Turn off power to the socket before starting installation, removal, wiring, maintenance, and inspection of the relays. hazard. Do not touch the terminals while power is applied, other-. Use wires of the proper size to meet voltage and current requirements. Tighten terminal screws on the socket to the proper tightening torque. Do not tighten more than the maximum torque. Also, do not leave the terminal screws hazard. -. 7

73 SU Series Spring Clamp Relay Sockets SU Can be installed easily on -mm-wide DIN rail in snap-on action. Relay contact terminals on upper side and coil terminal on the lower provide higher safety and allows easy wiring. Finger-safe IP0 degree of protection (IEC 0) Spring clamp style connection achieves high contact reliability and vibration resistance regardless of wire size and shape. Stranded wire, single wire, stranded wire with ferrule can be connected easily using a screwdriver. Wiring is possible only by stripping the wire. Crimp terminal and soldering are not necessary, reducing wiring and labor. Spring clamp eliminates loosening, reducing maintenance and labor. Each terminal has two wire ports, enabling jumper wiring. Jumper is available as accessory. Flameproof material UL V-0. UL0 Applicable Standards CSA C. No. Mark File No. UL recognized UL File No. E7 CSA File No. LR EN0- EU Low Directive Relay Sockets Dimensions Shape No. of Poles Part No. Applicable Relay SUS-L/SUS-L SUS-L SUS-L RUS RMS GTY- RUS, RYS, RYS,GTY- Specifications Part No. SUS-L SUS-L Operating Temperature to +70 C (no freezing) Operating Humidity to % RH (no condensation) Storage Temperature to +70 C (no freezing) Storage Humidity to % RH (no condensation) Solid Wire 0. to.mm Applicable IEC EN/ Stranded 0. to.mm Wire Wire UL AWG- Rated Insulation 0V Rated Current (Note) 0A A (collective mounting) A (-pole) 0A (-pole) A (-pole, collective mounting) Between contacts of the different poles: 00V AC, min. Dielectric Strength (between live and dead metal parts, between live metal parts of the different poles) Insulation Resistance 00MΩ minimum Degree of Protection IP0 (IEC 0) Weight (approx.) g g Note: When operating over the rated current in collective mounting, keep 0mm between the SU sockets. Terminal Arrangement (top view) 7

74 SU Series Spring Clamp Relay Sockets Accessories Name Shape. Ordering No. Jumper Brass (ABS cover) Weight: g (approx.) Package Quantity SUZ-J SUZ-JPN0 0 Remarks Used for interconnecting relay coil terminals. Can be cut to required length. Hold-down Spring (leaf spring) Stainless steel Weight (a pair): g (approx.) Stainless steel Weight (a pair): g (approx.) SFA-0 SFA-0PN0 0 pairs SFA-0 SFA-0PN0 0 pairs A pair of springs are used for a relay. DIN Rail Aluminum Weight: 00g (approx.) Steel Weight: 0g BAA000 BAA000PN0 0 BAP000 BAP000PN0 0 Length: m Width: mm End Clip Metal (zinc plated steel) Weight: g (approx.) BNL BNLPN0 0 Applicable Screwdriver Weight: 0g (approx.) BCS-SD0 BCS-SD0 Used to for wiring spring clamp relay sockets. Note : Make sure that the total current to the jumper does not exceed the rated current. Operating Instructions Identifying Socket SUS-L and SUS-L can be iden- below. Color No. of Poles Part No. Black SUS-L Gray SUS-L Applicable Wires Strip the wire insulation to 0 mm from the end. When using stranded wires without ferrules, make sure that the core wires have not been loosened. thin wires with insulation diameter of ø. mm or less, do not insert the wire too deeply where the insulation inserts into the spring clamp opening. Make sure that the wire insulation is stripped to 0 mm and the wire is inserted to the bottom. Applicable Ferrules Applicable Wire (stranded) Part No. Manufacturer mm AWG 0. AI 0.-BU AI 0.-TQ 0. 0 AI 0.-WH AI 0.-0WH Phoenix Contact Applicable Screwdriver For wiring, use the optional screwdriver (BCS-SD0) or the following applicable screwdriver. Parts Description ➀ ➁ ➂ ➀➁➄➅ ➁➂➃➄ ➃ ➄ ➅ In applications using ferrules for stranded wires, choose the ferrule listed in the table below. Make sure that an insulation sheath is applied when using the ferrules. When using 7

75 SU SU Series Spring Clamp Relay Sockets Operating Instructions Wiring Instructions. Insert the optional screwdriver (BCS-SD0) or an applicable screwdriver into the square-shaped port as shown, until the screw-driver tip touches the bottom of the spring. Installing the Hold-down Spring Use SFA-0 or SFA-0 hold-down spring ordered separately (see page 7). To install, insert the springs into the spring slots with the projection on the springs facing each other. Once installed, the springs cannot be removed.. Push in the screwdriver until it touches the bottom of the port. The wire port is now open, and the screwdriver is held in place. The screwdriver will not come off even if you release your hand.. While the screwdriver is retained in the port, insert the wire or ferrule into the round-shaped wire port. Each wire port can accommodate one wire or ferrule. When connecting two wires to one terminal, use the adjoining port of the same terminal.. Pull out the screwdriver. The connection is now complete. Do not tilt of turn the screwdriver while it is inserted into the screwdriver port in the socket, otherwise the socket may break. Installing the Marking Plate Because of its removable structure, the marking plate may have fallen from the socket or become loose in delivery. Make sure that the marking plate is securely installed before starting operation. The marking plate protects the conductive portion of the socket, located under the marking plate, by preventing metal fragments or pieces of wire from dropping inside. Should any such fragments enter the. DIN Rail Mounting and Removing Marking Plate Write markings on the SU sockets using an oil-based marker, or glue printed mylar on the marking surface. The size of the printed mylar can be mm maximum. 7

76 SU Series Spring Clamp Relay Sockets Operating Instructions SUZ-J Jumper for SUS-L and SUS-L. When installing instructions described below. The SUZ-J is for coil terminals only. Rated Current A Conductor Nickel-plated brass Material Sheath ABS resin Installing the SUZ-J Jumper Loosen the marking plate on the socket. Making sure that the SUZ-J jumper is correctly aligned, insert the blades into the ports in the groove of the SU socket. Installing the SUZ-J Jumper on Two, Three, or Four SU Sockets As shown below, slide the jumper in the sheath so that the jumper aligns with the center of the sheath. With the sheath properly installed on the jumper, cut the sheath and jumper at the points shown below, using cutting pliers. Referring to the drawing on the below right, make sure that the sheath and jumper are cut within the cutting area. Dispose of unused portions according to local waste disposal requirements. For Connecting Jumper Quantity Cutting Area Discard sockets A, C Y sockets sockets A, B X sockets D Z After cutting the jumper and sheath, slide the jumper as shown below, so that the ends of the jumper are not exposed. Jumper Wiring to Six or More SU Sockets sockets using whole jumpers and the remaining sockets using a cut jumper. Then connect the two terminals on adjoining sockets using an applicable wire (see table below). Safety Precautions Turn off the power to the SUZ-J jumper before starting installation, removal, wiring, maintenance, or inspection of the jumper, failure to turn power off may cause an electrical. which terminals are connected to the jumper before starting wiring. Wire Size Stranded Wire 0. to. mm Solid Wire 0. to. mm AWG to Note : Use a wire with cable insulation diameter of ø. mm maximum. Note : Strip the cable insulation to 0 mm from the end. 7

77 SFV Relay Sockets SFV Finger-safe DIN rail mount socket and PC board mount socket. UL, CSA, and EN compliant. UL0 Applicable Standards Mark File No. UL-c-UL recognized File No. E7 CSA C. No. CSA File No. 0 EN7000 EN700 TÜV SÜD EU Low Directive (DIN rail mount sockets only) Socket Style No. of Poles Part No. SFV--07L DIN Rail Mount Sockets SFV--07L SFV-- PC Board Mount Sockets SFV-- Specifications Part No. SFV--07L SFV--07L SFV-- SFV-- Rated Current A Rated 0V AC/DC Insulation Resistance 000 MΩ minimum (00V DC megger, between terminals) Dielectric Strength 00V AC, minute (between terminals) Screw Terminal Style M slotted Phillips screw Applicable Wire 0.7 to. mm ( AWG to AWG) Recommended Screw Tightening Torque 0. to 0. N m Terminal Strength Wire tensile strength: 0N min. Vibration Resistance Damage limits: 0 to Hz, amplitude 0.7 mm Resonance: 0 to Hz, amplitude 0.7 mm Shock Resistance 000 m/s Operating Temperature (Note) 0 to + C (no freezing) Storage Temperature Operating Humidity Storage Humidity to % RH (no condensation) Degree of Protection IP0 terminals) Weight (approx.) 0g g g 0g Note: When using at 70 to C, reduce the switching current by 0.A/ C. Operating Temperature Remarks Single Mounting (0mm spacing) When the ambient temperature is over 70 C, lower the contact current at 0.A/ C. NONC: Up to 70 C: Keep the total current of NO side to A maximum. Over 70 C: Lower the contact current at 0.A/ C. Collective Mounting Ambient -pole -0 C to +70 C Temperature -0 C to + C -pole -0 C to + C Contact A A Current When the ambient temperature is over -pole 70 C, lower the contact current at 0.A/ C. -pole Applicable Crimping Terminals Note: Ring tongue terminals cannot be used. When the ambient temperature is over 0 C, lower the contact current at 0.A/ C. NONC: Up to 0 C: Keep the total current of NO side to A maximum. Over 0 C: Lower the contact current at 0.A/ C. Accessories Item Shape. Ordering No. Package Quantity Remarks DIN Rail Aluminum Weight: Approx. 00g Steel Weight: Approx. 0g BAA000 BAA000PN0 0 BAP000 BAP000PN0 0 Length: m Width: mm Aluminum Weight: Approx. 0g BNDN000 BNDN000 North American standard product Length: m Width: mm End Clip Metal (zinc plated steel) Weight: Approx. g BNL BNLPN0 0 BNL BNLPN0 0 77

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