Panasonic Relay Technology Innovation across the board. Panasonic Semiconductor Relays: Compact and Reliable

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1 Introduction Panasonic Relay Technology Innovation across the board Telecommunications, machine construction, measurement and control systems, automotive electronics, building security and installation today there is virtually no branch of human activity that can exist without using modern relays. Panasonic is able to meet both simple or complex demands from its vast range of sophisticated, economic switching technologies by offering the relay most appropriate to Load switching capability ranges from low-level signals to double-digit ampere values. Panasonic relays are available for all common mounting configurations with screw, PCB, solder or surface mount terminals to meet most demands of operating environments or conditions. With its well established, comprehensive T and G series relays, we are making significant contributions within the field of global data transmission. Panasonic power relays, particularly those of the J, L and C series, are not only used in mains isolation applications, but also in diverse ranges of consumer solving the specific application. With over 0 years experience at the forefront of relay innovation and development, Panasonic today offers one of the world`s most comprehensive ranges of electromechanical and semiconductor types. Currently our product range extends from ultra-miniature SMD semiconductor types to robust, compact industrial devices. appliances, automotive electrics and diverse OEM manufacturing industries. In the field of safety of man and machine, the SF series relays with forcibly guided contacts, have set a new standard of security. Panasonic has developed a wide range of SMD miniature relays for the new generation of surface mounting, automated assembly processes. In addition to electromechanical SMD types such as the TQ, TX, GN, GQ and CP series, we have made significant developments in the rapidly expanding field of SSR and PhotoMOS relays. Electromechanical Relays Panasonic Semiconductor Relays: Compact and Reliable If your application requires long lifetime, stable behavior, small size or high switching speed, semiconductor relays are definitely the best choice for you. Within our broad product range, you can find relays to switch low level loads or double-digit ampere values. Various package options are also available. In other words, our semiconductor relays complement our electromechanical relay selection to allow us to exactly meet your needs. For us, supplying quality products is paramount. To guarantee superior quality, the company has implemented strict testing and inspection procedures to comply with or even exceed most international specifications. Of course, we sell RoHS compliant products and have ISO900 certification. If you need more detailed information about Panasonic relays, please ask us to send you the complete relay catalog. Soldering Guidelines for Lead-free Solder Our products support lead-free soldering processes. Please contact a Panasonic sales office to find out when each relay will support lead-free solder. If you are using Sn-Pb eutectic solder, mounting conditions can remain as they are. When using lead-free solder for our products, please adhere to the following soldering guidelines: DIP type The conditions for mounting with lead-free solder are: preheating at 0 C within 0 seconds and soldering at 60 ±5 C within 6 seconds. (Soldering of PhotoMOS relays can be carried out at 60 C within 0 seconds.) The reliability of the solder at the joining part can vary greatly depending on the actual mounting conditions. Influencing factors are: the type of lead-free solder, the landscape of the PCB, the mounting conditions. SMT type We recommend the following temperature profile as a condition for automatic mounting when using lead-free solder. Service Has Priority We are constantly striving to optimize our service sector to enable us to react quickly to customer requests. Whether you have specific application requests or you simply want technical information, we are always ready to advise and assist you; you only have to call. Our current delivery program is assembled for you in this relay overview. Besides the most important technical data, you will find numerous illustrations of possible applications. Recommended temperature profile condition during reflow soldering T = T = T = T T T 50 to 80 C 0 C and higher Up to 50 C Cautions when mounting t t = t = t 60 to 0 sec. Within 0 sec. The relay temperature may rise depending on the mounting density and the heating method of the reflow oven. Accordingly, please set the temperature so that the soldered parts of the relay terminals do not exceed the mounting conditions given above. We recommend checking the temperature rise at each part to be soldered under the actual conditions. Of course, detailed data sheets are available on our homepage Our product managers, sales and application engineers will be happy to advise you. Intro Relays

2 Introduction Electromechanical Relays Intro Relays Relays: Characteristics at a Glance Table of Contents Coil insulation Relay UL coil insulation UL-B LE, LZ, JS, JQ, JW UL-F LE, LZ, JT-N, JT-V Panasonic Relay Technology... Soldering Guidelines... Relays: Characteristics at a Glance... 4 PhotoMOS Form B... 8 PhotoMOS Form A Signal Relays PhotoMOS Other s Photovoltaic MOSFET drivers TV rated Surge between contact and coil TV rated Steady (A) Inrush (A) Relay TV- HL (C; NC), HL (c, NC) TV ST, HC (c,c), HL (c, NC) TV LA, HL (c, NO) TV LK-P, LK-Q, JQ, JS, JW, HL (c, NO) TV LK-T, LK-Q TV HE (a) TV HE (a) Surge Relay 5 000V DS-P 6 000V ST, PF, JT-V 8 000V JQ, JK, PQ 0 000V LF, LE, LZ, LA, LD, LJ, LK-S, LK-P, LK-T, LK-Q, JW, JM, HE, JC, DJ, DK, DQ, DY Mechnical Relays Selector Chart... 6 Signal Relays... 6 Polarized Power Relays... Non-Polarized Power Relays... 8 High-Frequency Relays... Automotive Relays... 8 Safety Relays PhotoMOS Relays Selector Chart Examples of PhotoMOS Advantages PhotoMOS Product Key PhotoMOS Relays: Popular Selection Table.. 57 PhotoMOS Relay Dimensions PhotoMOS Form A Signal Relays... 6 PhotoMOS Form A Power Relays PhotoMOS Form A Low CxR Solid State Relays Photo-Triac Couplers Photo-Triac Couplers Wide Terminal... 0 AQH Relays Solid State SIL and DIL s Alphabetical List of Relays... Further Panasonic Products... Application of the EC Directives to All-or-Nothing Relays... 4 High frequency characteristics Relay Arrangement Isolation Insertion loss RD coaxial switch SPDT, Transfer, SP6T Min. 60dB (8GHz) Max. 0.5dB (8GHz) RV coaxial switch SPDT Min. 60dB (8GHz) Max. 0.7dB (8GHz) RJ Form C Min. 5dB (5GHz) Max. 0.5dB (8GHz) RE Form C Min. 0dB (.6GHz) Max. 0.5dB (.6GHz) RA Form C Min. 0dB (GHz) Max. 0.dB (GHz) RS Form C Min. 0dB (GHz) Max. 0.dB (GHz) Well Proven in Various Applications Terminal socket Socket LED operation indication type Relay HN, HC, HJ, HK, HL, SP, NC, HE, SFS HC, HL, S, ST, SP, NC, PA, DK, DS-P, JW, JC, Power PhotoMOS Relay, SFS, PF HN, HC, HJ, HK, HL, SFS, AQ-K Please download CAD Data from our Web site: Information/ Telecommunication Home Appliances Measurement Automotive Renewable Energies Energy Distribution 4 5

3 Signal Relays Mechanical Relays Selector Chart About the Selector Chart This selector chart is designed to help you quickly select a relay best suited for your needs. Please note: the values given for switching current and switching do not necessarily indicate standard operating conditions.for the nominal switching capacity and other critical values, please refer to the respective data sheet or contact your Panasonic representative. Signal = Popular Switching current Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : GQ (SMD) 0.6 x 7. x 5./5.4mm Compact flat body saves space Outstanding surge resistance The use of twin crossbar contacts ensures high contact reliability High sensitivity 00mW type available Max.: A Min.: 0 A 0μA A 0V DC 5V AC c (DC).5,, 4.5, 6, 9,, 4V Single side stable: 40mW (.5 - V DC) 0mW (4V DC) coil latching: 00mW (.5V - V DC) 0mW (4V DC) 750Vrms 000Vrms 500Vrms,500V FCC,500V Telcordia PCB, SMT PCB dia. SMD BSI, CSA, UL : GN (SMD) Compact slim body saves space Outstanding surge resistance The use of twin crossbar contacts ensures high contact reliability High sensitivity 00mW type available Max.: A Min.: 0 A 0μA A 0V DC 5V AC c (DC).5,, 4.5, 6, 9,, 4V Single side stable: 40mW (.5 - V DC) 0mW (4V DC) coil latching: 00mW (.5V - V DC) 0mW (4V DC) 750Vrms 000Vrms 500Vrms,500V FCC,500V PCB, SMT PCB dia. SMD.0.0 BSI, CSA, UL x 5.7 x 9.0mm 0.80 : TQ (SMD) 4 x 9 x 5.6mm Ultra low profile 5.8mm Surge withstand,500v types of surface-mount terminals available Max.: A Min.: 0 A 0μA A 0V DC 5V AC c (DC).5,, 4.5, 5, 6, 9,, 4, 48V Single side stable: 40mW (up to V DC) 00mW (4V DC) 00mW (48V DC) coil latching: 70mW (up to V DC) 00mW (4V DC) coil latching: 40mW (up to V DC) 00mW (4V DC) 000Vrms 500Vrms 500Vrms,500V FCC,500V Telcordia SMT For glue-pad 4 CSA, UL : TQ (THT),500V FCC Max.: A Min.: 0 A 4 x 9 x 5mm 0V DC 5V AC c, (DC), 4.5, 5, 6, 9,, 4, 48V Single side stable: 40mW ( - V DC) 00mW (4V DC) 00mW (48V DC) coil latching: 00mW ( - V DC) 50mW (4V DC) coil latching: 00mW ( - V DC) 00mW (4V DC) 750Vrms 000Vrms 000Vrms,500V FCC PCB CSA, UL Grid.54mm 0μA A c 4c 6 7

4 Signal Relays Mechanical Relays Selector Chart = Popular Switching current Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) Signal : TX (SMD) Surge withstand,500v Breakdown between contacts and coil,000v types of surface-mount terminals available Added new pin layout (LT type) in coil latching type Max.: A Min.: 0 A 0μA A 0V DC 0V AC c (DC).5,, 4.5, 5, 6, 9,, 4, 48V Single side stable: 40mW (up to 4V DC) 70mW (48V DC) coil latching: 00mW coil latching: 00mW 000Vrms 000Vrms 000Vrms,500V FCC,500V Telcordia PCB, SMT PCB, grid.54mm SMD BSI, CSA, UL 0. 5 For glue-pad 5 x 7.4 x 8.mm : TX-TH (SMD) Controlled 7.5A inrush current types of pin layouts types of surface mount terminals available Max.: 7.5A Min.: 0 A 0μA A 0V DC 50V AC c (DC).5,, 4.5, 5, 6, 9,, 4, 48V Single side stable: 40mW (up to 4V DC) 70mW (48V DC) coil latching: 00mW (up to 4V DC) coil latching: 40mW (up to 4V DC) 000Vrms 000Vrms 000Vrms,500V FCC,500V Telcordia PCB, SMT PCB, grid.54mm SMD BSI, CSA, UL 0. 5 For glue-pad 5 x 7.4 x 8.mm TX-D (SMD) : High-insulation relay that conforms to the insulation level provided for in the EN400 types of surface-mount terminals available High-insulation relay that conforms to the insulation level provided for in the EN60950 Surge breakdown 6kV (contacts to coil) available Max.: A Min.: 0 A 0μA A Break Before Make: 0V DC 50V AC Make Before Break: 5V DC 5V AC c (DC).5,, 4.5, 5, 6, 9,, 4V Single side stable: 00mW (.5 - V DC) 0mW (4V DC) coil latching: 50mW (.5 - V DC) 70mW (4V DC) 000Vrms 000Vrms 000Vrms 6,000V for fax machines & lighting ballasts PCB, SMT PCB, grid.54mm SMD For glue-pad 5 BSI, CSA, UL 5 x 7.4 x 8./8.4mm : TX-S (SMD) Higher sensitivity Nominal operating power, 50mW,500V FCC types of surface-mount terminals available Added new pin layout (LT type) in coil latching type Max.: A Min.: 0 A 0μA A 0V DC 5V AC c (DC).5,, 4.5, 5, 6, 9,, 4V Single side stable: 50mW (.5 - V DC) 70mW (4V DC) coil latching: 5mW (.5 - V DC) 50mW (4V DC) coil latching: 70mW (.5 - V DC) 50mW (4V DC) 750Vrms 000Vrms 800Vrms,500V FCC,500V Telcordia PCB, SMT PCB, grid.54mm SMD For glue-pad 5 BSI, CSA, UL 5 x 7.4 x 8./8.4mm 8 9

5 Signal Relays Mechanical Relays Selector Chart = Popular Switching current Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) Signal : DS,500V FCC High switching power Max.: A Min.: 0 A 0V DC 50V AC c, c (DC).5,, 5, 6, 9,, 4, 48V M type: Single side stable: 400mW 000Vrms (DS-S: 500Vrms) 000Vrms 500Vrms (DS-S: 000Vrms),500V FCC PCB CSA, UL Grid.54mm 0μA A coil latching: 80mW c coil latching: 60mW c S type: Single side stable: 00mW 5/0 x 9.9 x 9.9mm coil latching: 90mW coil latching: 80mW : DSY High sensitivity Form C contact,500v FCC Sealed construction Max.: A Min.: 0 A 0V DC 50V AC c (DC).5,, 5, 6, 9,, 4, 48V Single side stable: 00mW (up to 4V DC) 00mW (48V DC) 750Vrms 000Vrms 000Vrms,500V FCC PCB CSA, UL Grid.54mm 0μA A 0 x 9.9 x 9.mm : HY High sensitivity 50mW / 00mW Max.: A Min.: 0 A 0μA A 60V DC c (DC).5,, 4.5, 5, 6, 9,, 4V Standard: 00mW High sensitivity: 50mW 500Vrms 000Vrms PCB CSA, UL Grid.54mm x 7.4 x 0.mm 0

6 Polarized Power Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : DSP 0. x x 0.5mm High switching capacity High sensitivity High breakdown Miniature high-power relay Creepage and clearance distance min. 4mm Max.: 8A (a) 5A (ab, a) 5A 8A 0V DC 400V AC a, ab, a (DC), 5, 6, 9,, 4V Single side stable: 00mW coil latching: 50mW coil latching: 00mW 000Vrms 000Vrms 000Vrms 5,000V PCB Grid.54mm CSA, SEV, TÜV, UL a ab, a Power : DW Pin-in-Paste version available Surge withstand between coil and contact:,000v Breakdown between coil and contact: 5,000V eff Conforms to EN 605 Creepage and clearance distance min. 6mm Max.: 8A (a) 8A 50V AC a (DC), 5, 6, 9,, 4V Single side stable: 00mW coil latching: 400mW 000Vrms 5000Vrms,000V PCB, PiP CSA, TÜV, UL 4 or 5-.0 dia. hole coil latching type only x 0 x 8.8mm DE : 5 x.5 x.5mm Conforms to VDE06 Low coil power Compact body saves space High switching capacity: 6A = 5,000 0A = 00,000 switching cycles Creepage and clearance distance min. 8mm Max.: 0/6A (a) 8A (ab, a) 8A 0A 6A 0V DC 440V AC a, ab, a (DC).5,, 4.5, 5, 6, 9,, 4, 48V Single side stable: 00mW coil latching: 00mW coil latching: 00mW 000Vrms 4000Vrms (ab, a) 5000Vrms,000V PCB CSA, TÜV, Grid.54mm UL, VDE : ST x 4 x.mm High capacity in small size High inrush capability Latching type available Frictionless pivoted rotating armature High breakdown Socket available Not for new applications Creepage and clearance distance min. 4mm Max.: 8A Min.: ma ma 8A 50V DC 400V AC ab, a (DC), 5, 6, 9,, 4, 48V Single side stable: 40mW coil latching: 0mW coil latching: 40mW 00Vrms 000Vrms 750Vrms 6,000V PCB CSA, SEV, Grid.54mm TV rating, UL, VDE (Single side stable) : DK 0 x.5 x 9.7mm Dimensions for a =.5mm, for a, ab = 5mm Low coil power Creepage and clearance distance min. 8mm: DKA-L min. 6.8mm DKAB-L min. 6.8mm Max.: 0A (a) 8A (ab, a) 8A 0A 5V DC 400V AC a, ab, a (DC), 5, 6, 9,, 4V Single side stable: 00mW coil latching: 00mW 000Vrms 4000Vrms 4000Vrms 0,000V PCB CSA, SEV, Grid.54mm TÜV, UL, VDE a ab, a

7 Polarized Power Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : DY 0 x 5 x 9.7mm Low cost, polarized power relay ab-contact arrangement is pin-compatible to DKab Latching type available Creepage and clearance distance min. 6mm Max.: 0A (a) 8A (ab) 8A 0A 5V DC 80V AC a, ab (DC), 5, 6,, 4V Single side stable: 00mW coil latching: 00mW 000Vrms 4000Vrms 4000Vrms 0,000V PCB CSA, TÜV, UL Grid.54mm Single side stable ab Power coil latching : DJ Latching type available Compact with high capacity Low coil power Optional available with manual test button Creepage and clearance distance min. 8mm Max.: 6A 6A 5V DC 400V AC a, b, c, ab, a, b, c (DC) 5, 6,, 4, 48V Single side stable: 50mW coil latching: 50mW coil latching: 50mW 000Vrms 4000Vrms 0,000V PCB CSA, SEV, Grid.54mm TÜV, UL, VDE Single side stable, coil latching (c) 9 x x 6/6.5mm coil latching (c) : DQ Latching type available Compact with high capacity High insulation Creepage and clearance distance min. 8mm Max.: 0A 0A 50V DC 50V AC a (DC) 4.5, 6, 9,, 4V coil latching: 500mW coil latching: 000mW 500Vrms 4000Vrms 0,000V PCB CSA, UL Grid.54mm coil latching 8 x 9 x 7.mm coil latching : DQM Miniature 60A polarized power relay Latching type available High insulation Creepage and clearance distance min. 8mm Max.: 60A 50V AC a (DC) 4.5, 6, 9,, 4V 60A coil latching: 500mW coil latching: 000mW 500Vrms 4000Vrms 0,000V PCB dia dia. coil latching type only 44 x 40.4 x 7.mm 4 5

8 Polarized Power Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : S 8 x x 0.4mm High switching capacity range due to 5-layer contact High sensitivity High vibration and shock resistance Low thermal electromotive force (approx. V) Latching type available Sockets available Max.: 4A Min.: 00 A 00μA 4A 00V DC 50V AC ab, ab, 4a (DC), 5, 6,, 4, 48V Single side stable: ~00mW (V - 4V DC) 7mW (48V DC) coil latching: ~00mW (V - 4V DC) 44mW (48V DC) coil latching: ~00mW (V - 4V DC) 55mW (48V DC) 750Vrms 000Vrms 500Vrms PCB CSA, UL Grid.54mm Power : SP Polarized power relay with rotating armature High sensitivity High vibration and shock resistance Wide switching range Latching type available Socket available Max.: 5A 5A 0V DC 50V AC c, 4c (DC), 5, 6,, 4, 48V Single side stable: 00mW coil latching: 00mW 500Vrms 000Vrms 000Vrms PCB, Plug-in CSA, TÜV, UL Grid.54mm c c: 50 x 5.6 x mm 4c: 50 x 6.8 x mm 4c 6 7

9 Non-Polarized Power Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : LD Slim type: width 7mm Coil power: 00mW Creepage and clearance distance min. 6mm Max.: A A 0V DC 77V AC a (DC) 4.5, 5, 6, 9,, 8, 4V 00mW 750Vrms 4000Vrms 0,000V PCB.5 CSA, TÜV, UL, VDE (.05) 7.0 (.5) 4-. Ø x 7 x 5mm Power : LD-P 0. x 7 x 5mm Slim type: width 7mm Coil power: 00mW High switching capacity 5A/77V AC Creepage and clearance distance min. 6mm Max.: 5A 5A 0V DC 77V AC a (DC) 5, 6, 9,, 8, 4V 00mW 750Vrms 4000Vrms 0,000V PCB C-UL, UL, VDE (.5) 4-. dia. 4.7 (.05) : LA 4 x x 5mm Low cost slim power relay: Form A High insulation resistance between contact and coil A-version with gold clad contacts available (ideal speaker switch) Surge withstand : 0kV Creepage and clearance distance min. 6mm Standard: Max.: A (A rated) A Power type: Max.: 5A (5A, TV-4 rated) 5A 0V DC 77V AC a (DC), 4V 50mW 000Vrms 000Vrms 4000Vrms 0,000V PCB 5.0 CSA, SEV, SEMKO, Ø 4-. Ø TÜV, UL 7.5 : PA 0 x 5 x.5mm Slim size permits high density mounting High switching capacity Gold-clad contacts Pin-compatible with the AQZ PhotoMOS relay High surge : 4,000V High breakdown :,000V PAD with min..6mm creepage distance and min..mm clearance distance Max.: 5A 5A 0V DC 50V AC a (DC) 5, 6, 9,, 8, 4V 0mW (5-8V) 80mW (4V) 000Vrms 000Vrms 4,000V PCB CSA, TÜV, UL Grid.54mm 8 9

10 Non-Polarized Power Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : PF 8 x 5 x 5mm Slim size permits high density mounting Wide switching capacity High surge : 6,000V High breakdown : 4,000V Slim relay for grid applications Insulation construction conforms to VDE0700 Contacts with gold flash plating or gold-clad contacts availble Print socket available Clearance distance min. 5.5mm Creepage distance min. 8mm Max.: 6A 6A 00V DC 400V AC a, c (DC) 4.5, 5, 6,, 8, 4, 48, 60V 70mW (5-4V) 7mW (48V) 75mW (60V) 000Vrms 4000Vrms 6,000V PCB C-UL, UL, VDE dia. -.0 dia dia. -. dia Power : JQ 0 x 0 x 5.6mm High switching capacity in small size High surge withstand : 8,000V Low power consumption Extremely low cost Creepage and clearance distance min. 4mm Standard: Max.: 5A 5A Power type: Max.: 0A 0A 77V AC a, c (DC), 5, 6, 9,,8, 4, 48V 00mW (a) 400mW (c) 000Vrms (a) 750Vrms (c) 4000Vrms 8,000V PCB 7.6 CSA, SEMKO, 4-. Ø 0.6 TÜV, UL, VDE 0.6 a Ø 7.6 c : PQ 0 x 0 x 5.6mm High electrical noise immunity High sensitivity: 00mW High surge : 8,000V Pin-compatible to JQa Gold-clad twin (bifurcated) contactsi Max.: 5A 5A 0V DC 50V AC a (DC), 5, 6, 9,, 8, 4V 00mW 000Vrms 4000Vrms 8,000V PCB 7.6 CSA, SEMKO, 4-. Ø 0.6 TÜV, UL, VDE 7.6 : JS x 6 x 6mm Ultra-miniature power relay with universal terminal footprint Special type for high ambient temperature available Extremely low cost High switching capacity: 0A Max.: 0A 0A 00V DC 77V AC a, c (DC) 5, 6, 9,, 8, 4, 48V 60mW 750Vrms 500Vrms PCB CSA, TÜV, a 4-. Ø complies with TV-5, UL, VDE c. 5-. Ø. 0

11 Non-Polarized Power Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : JW 8.6 x.8 x 0mm Compact power relay High surge withstand : 0,000V Class B coil insulation types available Creepage and clearance distance min. 8mm between contacts and coil (for changeover contacts min. 7.5mm Standard: Max.: 5A (a, c) 5A High capacity: Max.: 0A (a, c) 0A 00V DC 440V AC a, c, a, c (DC) 5, 6, 9,, 8, 4, 48V 50mW 000Vrms 000Vrms (a, c) 5000Vrms 0,000V PCB CSA, a.5 SEMKO,.4 0 SEV, TÜV, complies with 4-. Ø TV-5, UL,.5.5 c Ø VDE a Ø Power c Ø 7.5 : JM Slim: 0.4 x 6 x 6.5mm Flat: x 8.5 x 7.mm Superior welding resistance High surge resistance Compact high capacity relay for inductive load Relay for high motor loads Ideal for high inrush currents Pin-compatible with the LF relays Max.: 0A 0A 00V DC 50V AC a (DC) 5, 6, 9,, 4, 48V 900mW 000Vrms 5000Vrms 0,000V PCB, Top mount contact, coil to PCB.5 4.5±0. 5. COM 0±0. Coil N.O. ±0. Flat TMP type.5± Ø CSA, TÜV, UL, VDE : JT-V PCB:.9 x 6.9 x 0.mm TMP:. x 7.4 x 7.9mm High breakdown High surge withstand : min. 6kV High switching capacity with small dimensions and low height TMP types available Class F type as standardincreased insulation construction than JT-N Clearance, contact to coil: min. 6.4mm Creepage, contact to coil: min. 9.5mm Max.: 0A 0A 0V DC 77V AC a, c (DC), 8, 4, 48V 000mW 00Vrms 500Vrms 6,000V PCB Top-mounting a 6.0± Ø ± Ø ± Ø c ± Ø (TMP) C-UL, UL : JV-N Compact, flat type with low 0.9mm profile Sensitive coil Max.: 6A 6A 0V DC 77V AC a (DC) 4.5, 6, 9,, 4, 48, 00V (DC) 00mW (4.5V - 48V) (DC) 600mW (00V) 000Vrms 500Vrms 4,500V PCB CSA, TÜV, UL Ø.0.7 x 6 x 0.9mm (R) (R)

12 Non-Polarized Power Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : LF 0. x 5.7 x.mm Ideal for compressor and inverter loads High insulation resistance Inrush current: 0A/00V AC 4A/00V AC High surge withstand Creepage and clearance distance min. 8mm Max.: 5A 50V AC a (DC) 5, 6, 9,, 8, 4V 5A 900mW 000Vrms 5000Vrms 0,000V PCB, Top-mounting ±0..8 ±0..0 ± ± TMP type 4-.8 Ø ±0..0 CSA, SEMKO, TÜV, UL, VDE Power : LE Ideal for magnetron and heater loads Excellent heat resistance 4.8mm fast-on terminals High sensitivity: 00mW Creepage and clearance distance min. 8mm Max.: 6A 77/400V AC a (DC) 5, 6, 9,, 8, 4, 48V 6A Standard: 400mW High sensitivity: 00mW 000Vrms 4000Vrms 0,000V PCB, Top-mounting Ø PCB type -. Ø CSA, TÜV, UL, VDE Ø 8.6 x.4 x 4.9mm TMP type : LZ 8.8 x.5 x 5.7mm Low profile relay (5.7mm) Low operating power of 400mW Ambient temperature up to 05 C Creepage and clearance distance min. 0mm Max.: 6A 6A 50V DC 440V AC a, c (DC) 5, 9,, 8, 4, 48V 400mW 000Vrms 5000Vrms 0,000V PCB CSA, UL, c VDE a Ø 6-. Ø Ideal for solar inverters Max.: A LF-G/LF-G High insulation resistance : A Inrush current: 0A/00V AC Max.: A 4A/00V AC High switching capacity A A/77V AC High surge withstand 0. x 5.7 x.mm Creepage and clearance distance min. 8mm 50V AC a (DC) 9,, 8, 4V 400mW 500Vrms 4000Vrms 6,000V PCB ± C-UL, UL, VDE ±0..8 ±0..0 ± Ø ±

13 Non-Polarized Power Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : LK-G 4 x x 5mm Contact gap: mm different types available High insulation resistance Slim profile High noise immunity Creepage and clearance distance between contact and coil min. 6mm (IEC65 compliant) Max.: 0A 0A Max.: 6A 6A 77V AC a (DC) 5, 9,, 4V 50mW 000Vrms 4000Vrms 0,000V PCB CSA, TÜV, UL -0.9 Ø Ø Power : LK-P 4 x x 5mm High switching capacity 0A 77V AC High inrush current capability: A UL/CSA TV-5 rated type available High insulation: Creepage and clearance distance between contact and coil min. 6mm Max.: 0A 0A 0V DC 77V AC a (DC), 4V 50mW 000Vrms 4000Vrms 0,000V PCB 6.5 CSA, SEMKO, -0.9 Ø -. Ø SEV, TÜV, TV-5 rating, 7.5 UL, VDE 0.0 : LK-Q 4 x x 5mm Reduced noise High sensitivity: nominal coil power 50mW TV-5/TV-8 rated type available Slim shape Creepage and clearance distance min. 6mm Max.: TV5: 5A (AC) 5A TV8: 8A (AC) 8A 0V DC 77V AC a (DC) 5, 9,, 4V 50mW 000Vrms 4000Vrms 0,000V PCB 6.5 CSA, SEMKO, -0.9 Ø -. Ø SEV, TÜV, complies with 7.5 TV-5, TV-8, 0.0 UL, VDE : LK-T 4 x x 5mm High inrush current capability: 8A UL/CSA TV-8 rated type available High noise immunity realized by the card separation structure between contact and coil High insulation resistance: ) Creepage and clearance distance between contact and coil min. 6mm ) Surge withstand between contact and coil > 0kV Max.: 8A 77V AC a (DC) 5, 9,, 4V 8A 50mW 000Vrms 4000Vrms 0,000V PCB 6.5 CSA, SEMKO, -0.9 Ø -. Ø SEV, TÜV, TV rating UL, 7.5 VDE

14 Non-Polarized Power Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : HC 7. x 0.8 x 5.mm Wide applications Versatile range Footprint compatible with competitive types Compact power relay AC and DC coil available Socket available Pin-compatible with the HJ relays Max.: 0A Min.: ma ma 0A 0V DC 50V AC c, c, c, 4c (DC) 6,, 4, 48, 0V (AC) 6,, 4, 48,0, 40V (DC) 900mW (AC).VA 700Vrms 700Vrms 000Vrms PCB, Plug-in, Topmounting c.5 c Ø Ø Ø c Ø 4c CSA, SEV, TV rating, UL, VDE Power : HJ 8 x.5 x 5/8mm contact arrangements, same footprint as our popular HC relay Coil breakdown detectionfunction (AC type with LED only) Convenient screw terminal sockets with finger protection also available Test button type available Compact power relay for AC and DC Socket available Max.: 7A 7A 0V DC 50V AC c, 4c (DC), 4, 48, 0V (AC), 4, 48, 00, 0, 00, 0/ 40V (DC) 900 mw (AC). -.5VA 000Vrms 000Vrms 000Vrms Plug-in c 4. CSA, SEV, TV rating, UL, VDE c HN : 9 x x 8mm Slim (mm) and compact size relay: The size has been reduced 0% compared with the existing HC/HJ relays. Plug-in solder type available Slim screw terminal socket (7.5mm) Also available with LED indication High reliability AC and DC coil available Max.: 5A 5A 0V DC 50V AC c, c (DC) 5, 6,, 4, 48V (AC) 00, 0, 40V (DC) 50mW (AC) 0.9VA 000Vrms 000Vrms 5000Vrms Plug-in, Screw terminal UL, C-UL, (VDE) HL : 7. x 0.8 x 5.4mm Large capacity Compact size Designed for long lifetime Footprint compatible with competitive types High load switching range Socket available Max.: 5A Min.: ma ma 5A 0V DC 50V AC c, c (DC) 6,, 4, 48, 0V (AC) 6,, 4, 48, 0, 40V (DC) mW (AC). -.VA 000Vrms 500Vrms 000Vrms PCB, Plug-in, Topmounting CSA, complies with TV-5, UL

15 +0. 0 Non-Polarized Power Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) HE/ HE PV : 50 x x 5.8mm High surge withstand : 0,000V High inrush resistance: TV-5: form A TV-0: form A Compact power relays for AC and DC Contact gap: mm Socket available Creepage and clearance distance min. 8mm Max.: 0A Max.: 50A 0A 50A 00V DC 77V AC a, a (DC) 6,, 4, 48, 0V (AC), 4, 48,0, 40V (DC) 90mW (AC).7 -.7VA 000Vrms 4000Vrms 5000Vrms 0,000V Top-mounting Panel cutout -4.5±0. Ø CSA, TÜV, TV rating, UL, VDE (Plug-in terminal type) (Screw terminal type) -4.5±0. Ø 40± ±0. (NEMA terminal type) (Screw terminal type, wide pitch) Power EP :8 mm 6.4 x 7.9 x x 7.9 x 45 High capacity to cut off DC in a compact relay: max. cut-off current,500a/00v DC Nominal switching capacity 00A 400V DC Low operating noise High contact reliability DC type with sealed capsule Max.: 0A 80A 00A 0A 00A 80A 00A 400V DC a (DC), 4, 48, 00V Max.:.4W (0A) 4.5W (80A) 4-40W (00A) 500Vrms 500Vrms PCB ±0.. ± x 40 x x 6 x

16 High-Frequency Relays Mechanical Relays Selector Chart Selector Chart = Popular Switching current Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Between live parts and ground Life (min. operations) Electrical Mechanical Mounting method (bottom view) : RV SPDT Ultra small coaxial switch Up to 6.5 GHz Impedance 50 PIN and SMA terminals available Latching types available -coil latching type helps reduce power consumption Failsafe type available Reverse type available Surge withstand : 500Vrms x 0 0 Coil Coil COM 5.9 x 5.9 x.mm RD SPDT : 4 x. x 9mm HF Characteristics at 8GHz/ SMA type: Isolation min. 40dB Insertion loss max. 0.7dB V.S.W.R. max..7 Coaxial relay Up to 6.5GHz (8GHz) Impedance 50 Latching types available TTL Version available HF Characteristics at 8GHz: Isolation min. 60dB Insertion loss max. 0.5dB V.S.W.R. max..5 DC: 00mA (indicator) HF: 0W (GHz) 0V DC (indicator) SPDT (DC) 4.5, 5,, 4V Single side stable: mW (4.5,, 4V) coil latching: mW (4.5,, 4V) Latching with TTL driver (self cut-off function): 5,, 4V 500Vrms 500Vrms 500Vrms 500Vrms 5 x x 0 6 Coax High-Frequency : RD TRANSFER x x 9mm Coaxial relay Up to 6.5GHz (8GHz) Impedance 50 Latching types available TTL Version available HF Characteristics at 8GHz: Isolation min. 60dB Insertion loss max. 0.5dB V.S.W.R. max..5 DC: 00mA (indicator) HF: 0W (GHz) 0V DC (indicator) DPDT (DC) 4.5, 5,, 4V Single side stable: mW (4.5,, 4V) coil latching: mW (4.5,, 4V) Latching with TTL driver (self cut-off function): 5,, 4V 500Vrms 500Vrms 500Vrms 500Vrms 5 x x 0 6 Coax

17 High-Frequency Relays Mechanical Relays Selector Chart = Popular Switching current Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Between live parts and ground Life (min. operations) Electrical Mechanical Mounting method (bottom view) :4 RD SP6T Coaxial relay Up to GHz (8GHz) Terminated type available Impedance 50 Latching types available HF Characteristics at GHz: Isolation min. 65dB Insertion loss max. 0.4dB V.S.W.R. max..5 DC: 00mA (indicator) HF: 0W (GHz) 0V DC (indicator) SP6T (DC) 4.5, 5,, 4V Single side stable: 840mW (4.5, V) 970mW (4V) Latching: 700mW (SET 4.5V) 750mW (SET V) 900mW (SET 4V) 500Vrms 500Vrms 500Vrms 500Vrms 5 x x 0 6 Coax : 80 x 80 x 9.5mm RJ Shielded HF relay Up to 8GHz Impedance 50 Latching types available SMD and PCB version available DC: 0.A HF: W (5GHz) 0V DC c (DC), 4.5,, 4V Single side stable: 00mW coil latching: 50mW 500Vrms 500Vrms 500Vrms 500Vrms PCB, SMT High-Frequency 4 x 9 x 8.mm HF Characteristics at 5GHz: Isolation min. 5dB Isolation min. 0dB between contact sets Insertion loss max. 0.5dB V.S.W.R. max RN High hot switching capability up to 80W at GHz, contact rating up to 50W at GHz High frequency capability up to 6GHz changeover contact, impedance 50 Reversed contact type available Single side stable or coil latching types available SMT version available Very good HF characteristics DC: 0.5A HF: 80W 0V DC c SPDT (DC) 4.5,, 4V Single side stable: 0mW coil latching: 400mW 500Vrms 500Vrms 500Vrms SMT HF Characteristics at GHz: Isolation min. 55dB Insertion loss max. 0.dB V.S.W.R. max

18 High-Frequency Relays Mechanical Relays Selector Chart = Popular Switching current Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Between live parts and ground Life (min. operations) Electrical Mechanical Mounting method (bottom view) : RA 4.7 x 9.7 x 5.9mm HF relay in SMT version Up to GHz Impedance 50 Latching types available HF Characteristics at GHz: Isolation min. 0dB Isolation min. 0dB between contact sets Insertion loss max. 0.dB V.S.W.R. max.. DC: A HF: W (GHz, carrying point to carrying current) 0V DC c (DC).5,, 4.5, 5, 6, 9,, 4, 48V Single side stable: 40mW (.5 - V) 00mW (4V) 00mW (48V) coil latching: 70mW (.5 - V) 00mW (4V) coil latching: 40mW (.5 - V) 00mW (4V) 750Vrms 000Vrms 000Vrms 000Vrms SMT Suggested mounting pads (Top view) for glue pad earth RS HF relay Up to GHz Impedance 50/75 Silent type available Latching types available SMT and PCB version available 0W at GHz contact carrying power HF Characteristics at GHz (50 PCB type): Isolation min. 5dB Insertion loss max. 0.5dB V.S.W.R. max..4 DC: 0.5A HF: W (GHz) 0V DC c (DC), 4.5, 9,, 4V Single side stable: 00mW coil latching: 00mW coil latching: 400mW 500Vrms 000Vrms 500Vrms x x 0 PCB, SMT Ω PCB type Ω SMT type High-Frequency RE HF relay DC: 0.5A 0V DC c (DC), 4.5, 6, 9, Single side stable: 500Vrms 000Vrms 500Vrms x PCB, SMT : Up to.6ghz Impedance 50/75 SMT and PCB version available HF: W (.6GHz), 4V 00mW Grid.54mm.9 HF Characteristics at.6ghz 0. (75 PCB type): Isolation min. 0dB.54 Insertion loss max. 0.5dB V.S.W.R. max x. x 8.9/9.6mm 6 7

19 Automotive Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) Twin CJ Ultra small size Twin ( Form C x ) High capacity in a compact body H-bridge type available (twin relay) RTIII (IP67) Pin in Paste (with vent hole) available Max.: 0A (N.O.) 0A 0A (N.C.) 0A 6V DC c, c x (DC) V Standard: 800mW High sensitivity: 640mW 500Vrms 500Vrms PCB, PiP CT Super miniature size Twin ( Form C x ) ACT5 layout = layout of x ACT H-bridge type available (twin relay) Quiet operation RTIII (IP67) Pin in Paste (with vent hole) available Max.: 0A (N.O.) 0A 0A (N.C.) 0A 6V DC c, c x (DC) V 800mW 500Vrms 500Vrms PCB, PiP Ø 8 terminals Ø Automotive Ø Ø 0 terminals : CT POWER 7.4 x 4 x.5mm Super miniature size Twin ( Form C x ) Footprint same as CT standard type 0A switching capacity (motor load) H-bridge type available (twin relay) RTIII (IP67) Pin in Paste (with vent hole) available Max.: 0A (N.O.) 0A (N.C.) 0A 0A 6V DC c, c x (DC) V 000mW 500Vrms 500Vrms PCB, PiP Ø 8 terminals Ø Ø Ø 0 terminals 8 9

20 Automotive Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) Single : CB 40A switching current at 85 C Mini-ISO type terminals High shock resistance High thermal resistance Form A available with 70A switching current Broad lineup RTIII (IP67) available Max.: 70A (N.O. H type) 40A (a, c N.O.) 0A (c N.C.) 40A 70A 6V DC (V DC type) V DC (4V DC type) a, c (DC), 4V 400mW (V DC type) 800mW (4V DC type) 800mW (V DC, H type) 500Vrms 500Vrms PCB, Plug-in (PCB standard type) 6 x x 5mm 0A : CM Small substitute for Mini-ISO relay Micro-ISO terminal type RTIII (IP67) available Max.: 5A (N.O.) 0A (N.C.) 5A 6V DC (V DC type) V DC (4V DC type) a, c (DC), 4V 500mW (V DC type) 800mW (4V DC type) 500Vrms 500Vrms PCB (4V), Plug-in A : 0 x 5 x mm CV Low profile 0A Micro-ISO terminal type RTIII (IP67) Max.: 0A (N.O.) 0A 6V DC a, c (DC) V 800mW 500Vrms 500Vrms Plug-in 4 Automotive 0A (N.C.).5 x 5 x 5.7mm 0A Best space savings in its class Max.: 6V DC a (DC) V 450mW CN-H Substitute for Micro-ISO relay 640mW : 0A High current-carrying capacity RTIII (IP67) 500Vrms 500Vrms PCB dia. (hole) dia. (hole) x 0.6 x 8.mm 40 4

21 Automotive Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : CN-M 5,5 x x 4.4mm Space-saving design High switching capacity (up to 0A) SMD type available RTIII (IP67) Pin in Paste (with vent hole) available Max.: 0A (N.O.) 5A (N.C.) 0A 5A 6V DC a, c (DC) V 640mW 500Vrms 500Vrms PCB, SMT 5x.5 dia x : CP 4 x x 9.5mm Very low profile High capacity 4V DC type available on request RTIII (IP67) Max.: 0A (N.O.) 0A 0A (N.C.) 0A 6V DC a, c (DC) V, 4V 640mW 500Vrms 500Vrms PCB Ø CP POWER 4. Very low profile High capacity type: 45A maximum carrying current Improved heat conduction thanks to additional pin Layout is downward compatible to CP RTIII (IP67) Pin in Paste (with vent hole) available Max.: 0A (N.O.) 0A 0A (N.C.) 0A 6V DC a, c (DC) V 450mW 640mW 500Vrms 500Vrms PCB Automotive : CP (SMD) 4 x x 0.5mm Very low profile High capacity RTIII (IP67) Max.: 0A (N.O.) 0A 0A (N.C.) 0A 6V DC c (DC) V 640mW 500Vrms 500Vrms SMT

22 Automotive Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) CJ Ultra small size Twin ( Form C x ) High capacity in a compact body H-bridge type available (twin relay) RTIII (IP67) Pin in Paste (with vent hole) available Max.: 0A (N.O.) 0A (N.C.) 0A 0A 6V DC c, c x (DC) V Standard: 800mW High sensitivity: 640mW 500Vrms 500Vrms PCB, PiP : CT 7.4 x 7. x.5mm Super miniature size Twin ( Form C x ) ACT5 layout = layout of x ACT H-bridge type available (twin relay) Quiet operation RTIII (IP67) Pin in Paste (with vent hole) available Max.: 0A (N.O.) 0A (N.C.) 0A 0A 6V DC c, c x (DC) V 800mW 500Vrms 500Vrms PCB, PiP -.4 Ø Ø CT POWER Super miniature size Twin ( Form C x ) Footprint same as CT standard type 0A switching capacity (motor load) H-bridge type available (twin relay) RTIII (IP67) Pin in Paste (with vent hole) available Max.: 0A (N.O.) 0A (N.C.) 0A 0A 6V DC c, c x (DC) V 000mW 500Vrms 500Vrms PCB, PiP Ø 8 terminals Ø Ø Automotive Ø 0 terminals : CQ Very quiet operation Terminal layout identical to JJM RTIII (IP67) Max.: 0A (N.O.) 0A 0A (N.C.) 6V DC c (DC) V 640mW 500Vrms 500Vrms PCB Ø x x 6.6mm 0A

23 Automotive Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : JJM Compact (half the size of JS- M) Best-selling, familiar blinker sound RTIII (IP67) Max.: 0A (N.O.) 0A 0A (N.C.) 6V DC a, c (DC) V 640mW 500Vrms 500Vrms PCB -.4 Ø Ø 5.5 x x.9mm 0A.5 0. : JJM-DM 5.5 x x.9mm Small size Double make contact arrangement Terminal layout compatible to JJM RTIII (IP67) Max.: x 6A 6V DC Double make contact 6A 6A (DC) V 000mW 500Vrms 500Vrms PCB 4-.4 Ø Ø.5 0. : JS-M Low pick-up for high ambient temperatures RTIII (IP67) Standard: Max.: 0A 0A 6V DC a, c (DC) 9, V 640mW 750Vrms 500Vrms PCB a 4-. Ø Automotive x 6 x 6.4mm High capacity: Max.: 5A 5A c. 5-. Ø. : CA.5 x 4.4 x 7mm Small size Direct plug-in RTIII (IP67) Max.: 0A (a,.4w type) 0A 0A (a,.8w type) 0A (b, c) 0A 0A 5V DC (c - V DC type) 6V DC (a, b - V DC type) 0V DC (c - 4V DC type) a, b, c (DC), 4V 800mW 400mW (type S) 500Vrms 500Vrms Plug-in Sealed with epoxy resin a, b

24 Automotive Relays Mechanical Relays Selector Chart = Popular Switching current (Min.: see data sheet) Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) Special s EV 5 versions available:0, 0, :8 80, 0, 00A DC type with sealed capsule for electric and hybrid vehicles Compact size 66.8 x 49.7 x 7.9mm Small arcing space required 78 x 40 x 48.mm thanks to blow-out magnets Safety construction High contact reliability 8.8 x 40 x 79mm 75.5 x 40 x 80mm Max.: 0A (a) 0A 0A (a) 80A (a) 0A 0A (a) 80A 0A 400V DC a (DC), 4V Stable: 40mW (0A, /4V) 900mW (0A, V) 400mW (80A/0A, /4V) 600mW (00A, V) 800mW (00A, 4V) Inrush: 7.9W (00A, V) 44.4W (00A, 4V) 500Vrms 500Vrms Faston terminal x 6 x 75mm 00A (a) 00A EV QUIET DC type with sealed capsule, mainly for hybrid vehicles Very quiet operation Small size and light weight Small arcing space required thanks to blow-out magnets Safety construction High contact reliability Standard type for horizontal mounting available Max.: 60A (a) 60A 400V DC a (DC) V 4500mW Vertical: 500Vrms Horizontal: 000Vrms Vertical: 500Vrms Horizontal: 000Vrms Vertical type: lead wire Horizontal type: Faston terminal Automotive CW 8 6 Ideal relay for high output,- phase motors (Electric Power Steering) High cut-off current capability and high carrying current RTIII (IP67) Max.: 4V DC a (DC) V 400mW 500Vrms 500Vrms Welding 0A EB Automotive high-capacity DC cutoff relay Supports even 4V vehicles Max.: 00A (a) 00A 4V DC a (DC), 4, 6V 5000mW 500Vrms 500Vrms Screw terminal

25 Safety Relays Mechanical Relays Selector Chart = Popular Switching current Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : SFN4D 5. x x 4.5mm Polarised relay with forcibly guided contacts according to EN5005, B Safety double contact Extremely small total power loss Relay height: 4.5mm Max.: 8A Min.: 0mA 0mA 8A 500V DC 500V AC 4ab (DC) 5, 9,, 6, 8,, 4, 6, 48, 60V 90mW (5-4V) 40mW (6-60V) 500Vrms 4000Vrms 5000Vrms PCB CSA, SEV, Grid.5mm TÜV, UL 4ab : SF4D Polarised relay with forcibly guided contacts according to EN5005, B Safety double contact Max.: 8A Min.: 0mA 400V DC 400V AC 4a4b (DC) 5, 9,, 8,, 4, 6, 48, 60V 500mW 500Vrms 500Vrms 500Vrms PCB CSA, SEV, Grid.54mm TÜV, UL 0mA 8A 5. x x 6.5mm 4a4b SFD. 6. Polarised relay with forcibly guided contacts according to EN 5005, A Safety double contact For applications according to EN 5055 IEC/EN 605- (GWT) compliant Max.: 8A Min.: 0mA 0mA 8A 400V DC 400V AC ab (DC) 5, 9,, 8,, 4, 6, 48, 60V 500mW 500Vrms 500Vrms 500Vrms PCB CSA, SEV, Grid.54mm TÜV, UL ab SF. 6. Polarised relay with forcibly guided contacts according to EN 5005, A For applications according to EN 5055 IEC/EN 605- (GWT) compliant Max.: 8A Min.: 0mA 0mA 8A 400V DC 400V AC ab (DC) 5, 9,, 8,, 4, 6, 48, 60V 500mW 500Vrms 500Vrms 500Vrms PCB CSA, SEV, Grid.54mm TÜV, UL ab Sicherheit Safety 50 5

26 Safety Relays Mechanical Relays Selector Chart = Popular Switching current Max. switching Contact arrangement Coil Coil power Between open contacts Breakdown Between contact sets Contacts to coil Surge withstand Mounting method (bottom view) : SFS 40 x x 4mm Polarised relay with forcibly guided contacts according to EN 5005, A 4-pole and 6-pole type with various contact arrangements Slim profile reduces mounting area PC board sockets and DINrail terminal socket available Max.: 6A Min.: ma ma 6A 0V DC 50V AC ab, ab, 4ab, 5ab, ab (DC), 6, 8,, 4, 48V 60mW (4 poles) 500mW (6 poles) 500Vrms 500Vrms/ 4000Vrms 4000Vrms PCB CSA, TÜV, UL (.8) pole (.8) pole x x 4mm SF-Y Polarised relay with forcibly guided contacts according to EN 5005, A 4-pole and 6-pole type with various contact arrangements Gold clad contacts on request Max.: 6A Min.: ma ma 6A 0V DC 50V AC ab, ab, 4ab, 5ab (DC) 5,, 8,, 4V 670mW 500Vrms 500Vrms/ 4000Vrms 4000Vrms PCB CSA, TÜV, UL 4-pole type pole type dia., typical value for manual insertion.6 dia., typical value for automatic insertion.4 dia., typical value for manual insertion.6 dia., typical value for automatic insertion Sicherheit Safety 5 5

27 PhotoMOS Relays What is PhotoMOS? Panasonic Electric Works offers a wide range of PhotoMOS relays for use in telecommunication, measurement, security devices and industrial control. Obviously, the PhotoMOS relay differs from the conventional electromechanical relay, but it also distinguishes itself from other switching solutions that utilize optocouplers or semiconductors. The construction of the PhotoMOS relay is illustrated below: Basically, the power MOSFET s output acts as a pure ohmic resistance thus distinguishing the PhotoMOS from an optocoupler or triac solution, since no saturation or offset is required. However the aforementioned source-drain diode of the MOSFET may influence the linearity of the output, and the output capacitance may limit the usability for higher frequencies. This strongly depends on the type of PhotoMOS relay used and on the application s requirements. Examples of PhotoMOS Advantages. High output linearity without any saturation or offset making PhotoMOS perfectly suitable for switching signals or loads (AQY5RV) Fast switching times with stable behavior over lifetime and no contact bouncing due to semiconductor technology (AQYNV) Semiconductor Relays. Perfectly suited for switching low level signals due to low off-state leakage current in the range of pa to na (AQY*S) PhotoMOS relays require very low input control currents. Sensitive types are also available (AQV4). Take temperature and safety considerations into account Figure PhotoMOS internal construction The input pins are connected to a light emitting diode. This LED is located on the upper part of the relay and as soon as a current flows through it, it starts emitting infrared light. Below the LED, there is an array of solar cells intergrated into an optoelectronic device, thus switching the output transistors. The light emitter and detector are moulded in translucent resin that allows light to pass through but provides a dielectric barrier between the input and output side. By integrating an internal circuit in the optoelectronic device, it serves as a control circuit for switching the power MOSFETs and therefore the load circuit in an ON of OFF-state. A single power MOSFET is only capable of switching a DC since its internal source-drain diode will become forward biased if the load polarity is reversed. Using a PhotoMOS relay for switching AC s therefore requires two source-coupled power MOSFETs in one PhotoMOS relay. By connecting the two output transistors of an AC relay in parallel, the allowable DC current can also be increased (A,B or C connection) as illustrated below: Figure PhotoMOS in A connection Due to Panasonic s broad product range, we are able to offer PhotoMOS relays for numerous applications, enabling you to utilize PhotoMOS advantages: Low control current Control of small analog signals Low leakage current Fast switching speed Stable ON-resistance over lifetime Extremely long product life Small size Flexible mounting position High vibration and shock resistance No contact bouncing No switching noise Due to the enormous variety of PhotoMOS relays, they are suitable for numerous applications (see figure 4). They can be used in telecommunications and for measurement equipment, for switching and controlling small motors or other power loads, and for controlling various signals out of microcontrollers. Load current, A ~ 0 ~ Load, V 0. Power PhotoMOS High capacity Power PhotoMOS PD PhotoMOS Quantity, n HF PhotoMOS HE PhotoMOS GU PhotoMOS GU-E PhotoMOS HS PhotoMOS RF PhotoMOS LED operate current, ma Slim & Power Flat & Power Low ON-Resistance Economy & Low ON-Resistance Wide Variation Economy High Sensitivity PACKAGES Power Power DIP DIP & SOP Low ON-Resistance / DIP, SON, SOP, Low output capacitance SSOP & VSSOP Intro Semiconductors Figure PhotoMOS in C connection Figure 4 PhotoMOS load current vs. - Selector Chart 54 55

28 PhotoMOS Relays Product Key Semiconductor Relays PhotoMOS Relays: Popular Selection Table ) Package Contact Voltage (V) ) Current (A) ) R on ) ( ) Info. Channel configuration S: 4 channels (6-pin) V: channel (6-pin) W: channels (8-pin) Y: channel (4-pin) Z: channel (SIL4-pin) Output configuration : Form A (DC) : Form A (AC/DC) Form A (AC/DC) 4 : Form B (AC/DC) Form B (AC/DC) 6 : Form A & B combination (AC/DC) A = Normally open B = Normally closed Load 0 : HF type 0: 50V Low on-resistance : to 40V Power type : 60V Slim and power : 50V : GU type Wide variation 4: 400V GU-E type 5: 80V to 00V Economical and 6: 600V reinforced insulation 7: 00V : RF type Low CxR and 8: 500V High-speed switching 9: 000V : HS type High sensitive 5 : HE type Economical & Low on-resistance 6 : Power High Capacity type Slim and power 7 : PD type Flat and power Driving method Nil: Current-sensitive D: Power type -sensitive F: GU/RF type -sensitive (Recommended input : 5V) AQYEH(A) AQYEH(A) AQYGH(A). 0.4 DIP4 AQY0EH(A) AQY4EH(A) AQY6EH(A) a AQYS AQYGS AQYGS.5 0. AQY0S SOP4 AQY4S AQY4S AQY40S b AQY44S AQYS AQY0S SOP4 a AQY4S AQY0KS SOP a AQVKL(A) DIP General use Low operate current Short circuit protected Feature Nil: Standard E: Economical G: High capacity N: Low CxR R: Low CxR Isolation Nil: Basic insulation (00Vrms, 500Vrms 500Vrms, 500Vrms) H: Reinforced insulation (5000Vrms) Current limit function Nil: Non K: With short circuit protection (latching) KL: With short circuit protection (non-latching) L: With current limiting Note: Valid only for combinations of products listed in the catalog. (Please inquire regarding combinations with products not listed in the catalog.) Package Nil: DIP (through hole terminal) A: DIP (surface mount terminal) M: SON S: SOP T: VSSOP V: SSOP Package style Nil: Plastic tube X: Tape and reel (DIP/SOP) Z: Tape and reel (DIP/SOP) Y: Tape and reel (SSOP/SON/VSSOP) W: Tape and reel (SSOP/SON/VSSOP) AQV5G AQV5G DIP6 AQV59H(A) a, AQV58H(A), AQV55GS SOP AQYRT AQYNT VSSOP a AQYNT AQYRM AQYNM SON AQYNM AQYNV AQYRV AQYNV SSOP AQY5RV AQYR4V AQYNS AQYRS SOP AQY5RS AQS5RS SOP6 4a High power Low CxR C min = pf AQZ DC only AQZ a AQZ SIL4 AQZ AC & DC AQZ404 b Intro Semiconductors ) A = SMD type ) Maximum value (DC or peak AC) ) Typical value 56 57

29 PhotoMOS Relays Semiconductor Relays PhotoMOS Relay Dimensions Please download CAD Data from our Web site: Dimensions Dimensions Ø AQY AQY4 Series ±0. ± ±0. ±0. AQW AQW AQW5 AQW4 AQW45 AQW6 AQW65 Series ± ±0. ± ± Ø Ø AQV0 AQV AQV0 AQV AQV AQV AQV5 AQV4 AQV45 Series 6.4± ±0.0. ±0. 8.8± ± ± ±0. ± ± AQW EH AQW HL AQW4 EH AQW6 EH Series ±0. ± ±0. ± APV Series 6.4± ±0.0. ±0. 8.8± ± ± Ø ± AQY (VSSOP) Series ± ±0. Intro Semiconductors ±0. ± APV(SOP) APV(SOP) AQY(SOP) AQY(SOP) AQY4(SOP) Series ±0. ±

30 PhotoMOS Relays Semiconductor Relays PhotoMOS Relay Dimensions Please download CAD Data from our Web site: Dimensions Dimensions Ø AQV(SOP) AQV(SOP) AQV4(SOP) Series ± ±0. ± ± ±0. ±0.. 6 AQY7 Series ± ± ± ±0. AQY (SON) Series APV (SSOP) AQY (SSOP) Series ± ± ±0. ±0..7 AQZ0 AQZ0 AQZ40 Series AQZ6 Series Q W E R ± ± ±0..8±0. 0. ±0.. Q W E R Ø -0.8 Ø ±0. - Q W - E - R Q W E R Ø Q W E R - AQW(SOP) AQW6(SOP) Series.7±0. 4.4±0. ± ± Ø ±0. ±0.. 6 Intro Semiconductors AQS(SOP) Series ±0. ±

31 t PhotoMOS Form A Signal Relays PhotoMOS Selector Chart PhotoMOS Selector Chart = Popular Photo with Dimensions Peak load V DC/AC Output Output Input Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Switching speed (I LED = 5mA) Turn-on time Turn-off time I/O isolation AQYGS High capacity type 60V.0A /.0A 0.4/0.7 0pF.0mA 0.mA 5.0ms 0.5ms,500V AC C-UL, TÜV, UL, VDE A AQYGS High capacity type 60V.5A /.0A 0./0.5 0pF.0mA 0.mA 5.0ms 0.5ms,500V AC.5A AQYS 60V 0.5A /.0A 0.8/.5 80pF.0mA 0.4mA.0ms 0.ms,500V AC BSI, CSA, C-UL, TÜV, UL 0.5A AQY0LS Current limiting 50V 0.A / - 0.8A (Output limit current [typ.]) 0/5 45pF.0mA 0.4mA.0ms.0ms,500V AC BSI, CSA, C-UL, TÜV, UL A AQY0S PSpice 50V 0.A / 0.A 7/5 45pF.0mA 0.4mA 0.5ms 0.ms,500V AC BSI, CSA, C-UL, TÜV, UL 0.A AQY0KS Short circuit protected 50V 0.A / - 0.A (Cut off current [typ.]).5/5 4pF.0mA 0.mA.0ms.0ms,500V AC BSI, CSA, C-UL, TÜV, UL 0.A AQY4S PSpice 400V 0.A / 0.4A 5/5 45pF.0mA 0.4mA 0.5ms 0.ms,500V AC BSI, CSA, C-UL, TÜV, UL 0.A PhotoMOS 6 6

32 PhotoMOS Form A Signal Relays PhotoMOS Selector Chart = Popular Photo with Dimensions Peak load V DC/AC Output Output Input Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Switching speed (I LED = 5mA) Turn-on time Turn-off time I/O isolation AQYS Sensitive type 60V 0.5A /.5A 0.85/.5 0.8pF 0.5mA 0.mA 5.0ms.0ms,500V AC 0.5A Sensitive type 50V 0.A / 0.A 9/5 0.8pF 0.5mA 0.mA 5.0ms.0ms,500V AC AQY0S 0.A AQY4S Sensitive type 400V 0.A / 0.4A 7/5 0.8pF 0.5mA 0.mA 5.0ms.0ms,500V AC 0.A AQYEH 0V.0A /.0A 0.5/0.5 40pF.0mA 0.4mA 5.0ms.0ms 5,000V AC BSI, CSA, C-UL, TÜV, UL, VDE A AQYEH 60V 0.55A /.5A 0.85/.5 80pF.0mA 0.4mA 4.0ms.0ms 5,000V AC BSI, CSA, C-UL, TÜV, UL 0.55A AQYGH High capacity type 60V.A /.0A 0.4/0.7 0pF.0mA 0.mA 5.0ms 0.5ms 5,000V AC C-UL, UL, VDE.A 400V 0.A / 0.A 6/5 45pF.0mA 0.4mA.0ms.0ms 5,000V AC BSI, CSA, C-UL, TÜV, UL, AQY4EH VDE 0.A V 0.A / 0.4A 8/5 45pF.0mA 0.4mA.0ms.0ms 5,000V AC BSI, CSA, C-UL, TÜV, UL, AQY0EH VDE 0.A AQY0HL Current limiting 50V 0.A / - 0.8A (Output limit current [typ.]) 0/5 45pF.0mA 0.4mA.0ms.0ms 5,000V AC BSI, CSA, C-UL, TÜV, UL 0.A AQY6EH 600V 0.05A / 0.5A 5/0 5pF.0mA 0.4mA.0ms.0ms 5,000V AC BSI, CSA, C-UL, TÜV, UL, VDE 0.05A PhotoMOS 64 65

33 PhotoMOS Form A Signal Relays PhotoMOS Selector Chart = Popular Photo with Dimensions Peak load V DC/AC Output Output Input Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Switching speed (I LED = 5mA) Turn-on time Turn-off time I/O isolation AQVS PSpice 60V 0.5A /.0A 0.8/.5 50pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.5A AQV5S PSpice 00V 0.A / 0.9A./4.0 0pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.A AQV7S PSpice 00V 0.6A / 0.48A /5 70pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.6A AQV0S PSpice 50V 0.A / 0.A /5 45pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, C-UL, TÜV, UL A AQV4S PSpice 400V 0.A / 0.A 0/50 45pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.A AQV6S PSpice 600V 0.04A / 0.A 70/0 45pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.04A AQV PSpice 60V 0.55A /.A 0.8/.5 50pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.55A AQV5G High capacity type 60V.5A / 6.0A 0.08/0. 40pF.0mA 0.mA 5.0ms 0.5ms,500V AC CSA, C-UL, TÜV, UL, VDE.5A AQV5G High capacity type 0V.5A / 6.0A 0.05/ pF.0mA 0.mA 5.0ms 0.5ms,500V AC A High capacity type 80V.5A /.5A 0.09/0.5 00pF.0mA 0.mA 5.0ms 0.5ms,500V AC AQV55GS.5A AQV5 PSpice 00V 0.A / 0.96A./4.0 0pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.A AQV7 PSpice 00V 0.8A / 0.54A /5 70pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.8A PhotoMOS AQV PSpice 50V 0.A / 0.4A /5 45pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, C-UL, TÜV, UL A 66 67

34 PhotoMOS Form A Signal Relays PhotoMOS Selector Chart = Popular Photo with Dimensions Peak load V DC/AC Output Output Input Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Switching speed (I LED = 5mA) Turn-on time Turn-off time I/O isolation AQV0E 50V 0.A / 0.4A /5 45pF.0mA.0mA.0ms.0ms,500V AC CSA, C-UL, TÜV, UL 0.A AQV0EH 50V 0.A / 0.4A /5 45pF.0mA 0.4mA.0ms.0ms 5,000V AC BSI, CSA, C-UL, TÜV, UL, VDE 0.A AQV4 PSpice 400V 0.A / 0.A 0/50 45pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.A AQV4E 400V 0.A / 0.A 0/50 45pF.0mA 0.mA.0ms.0ms,500V AC CSA, C-UL, TÜV, UL 0.A AQV4EH 400V 0.A / 0.A 0/50 45pF.0mA 0.4mA.0ms.0ms 5,000V AC BSI, CSA, C-UL, TÜV, UL, VDE 0.A AQV4H 400V 0.A / 0.A 0/50 45pF.0mA 0.4mA 0.8ms 0.ms 5,000V AC BSI, CSA, C-UL, TÜV, UL, VDE 0.A AQV6 PSpice 600V 0.05A / 0.5A 70/0 45pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.05A AQV0 40V DC 0.7A /.8A 0./ pF 5.0mA 0.8mA.0ms.0ms,500V AC C-UL, TÜV, UL 0.7A AQV0 40V 0.5A /.8A 0.6/ 50pF 5.0mA 0.8mA.0ms.0ms,500V AC C-UL, TÜV, UL 0.5A AQV5 40V 0.5A /.8A 0.6/.0 50pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.5A AQV0 60V DC 0.6A /.5A 0.7/ pF 5.0mA 0.8mA.0ms.0ms,500V AC C-UL, TÜV, UL 0.6A AQV0 60V 0.4A /.5A 0.74/.4 50pF 5.0mA 0.8mA.0ms.0ms,500V AC C-UL, TÜV, UL PhotoMOS 0.4A 68 69

35 PhotoMOS Form A Signal Relays PhotoMOS Selector Chart = Popular Photo with Dimensions Peak load V DC/AC Output Output Input Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Switching speed (I LED = 5mA) Turn-on time Turn-off time I/O isolation AQV5 60V 0.4A /.5A 0.74/.4 50pF.0mA 0.4mA.4ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.4A AQVKL Short circuit protected 60V DC 0.5A / / 00pF 0mA 0.mA.0ms.0ms,500V AC CSA, C-UL, TÜV, UL, VDE 0.5A AQV55 00V 0.5A /.0A.8/.5 50pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.5A AQV57 00V 0.5A / 0.75A.6/4.0 70pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.5A AQV V DC 0.A / 0.6A.7/4 00pF 5.0mA 0.8mA.0ms.0ms,500V AC C-UL, TÜV, UL 0.A AQV0 50V 0.A / 0.6A 5.5/8 70pF 5.0mA 0.8mA.0ms.0ms,500V AC C-UL, TÜV, UL 0.A AQV5 50V 0.A / 0.6A 5.5/8.0 70pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.A PhotoMOS 70 7

36 PhotoMOS Form A Signal Relays PhotoMOS Selector Chart = Popular Photo with Dimensions Peak load V DC/AC Output Output Input Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Switching speed (I LED = 5mA) Turn-on time Turn-off time I/O isolation AQV5H 50V 0.A / 0.6A 5.5/8 70pF.0mA 0.4mA 4.0ms 0.ms 5,000V AC BSI, CSA, C-UL, TÜV, UL, VDE 0.A AQV04 400V DC 0.8A / 0.5A 6./8 00pF 5.0mA 0.8mA.0ms.0ms,500V AC C-UL, TÜV, UL 0.8A AQV04 400V 0.5A / 0.5A.4/6 70pF 5.0mA 0.8mA.0ms.0ms,500V AC C-UL, TÜV, UL 0.5A AQV4 Sensitive type 400V 0.A / 0.A 0/50 45pF 0.mA 0.mA.0ms.0ms,500V AC CSA, C-UL, TÜV, UL 0.A AQV54 400V 0.5A / 0.5A.4/6 70pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL A AQV54H 400V 0.5A / 0.5A.4/6 70pF.0mA 0.4mA.0ms 0.ms 5,000V AC BSI, CSA, C-UL, TÜV, UL, VDE 0.5A AQV59,000V 0.0A / 0.09A 80/00 80pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.0A AQV58,500V 0.0A / 0.06A 45/500 80pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, C-UL, TÜV, UL 0.0A PhotoMOS 7 7

37 PhotoMOS Form A Power Relays PhotoMOS Selector Chart Output Output Input Switching speed = Popular Photo with Dimensions Peak load V DC/AC Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Turn-on time Turn-off time I/O isolation AQZ0 60V DC 4.0A / 9.0A 0.05/ pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA, C-UL, TÜV, UL 4.0A AQZ05 00V DC.6A / 6.0A 0.08/ pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA, C-UL, TÜV, UL.6A AQZ07 00V DC.A /.0A 0.4/ pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA, C-UL, TÜV, UL...A AQZ04 400V DC 0.7A /.5A.06/.6 900pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA, C-UL, TÜV, UL 0.7A AQZ6 60V 6.0A / 0.0A 0.06/ pF.0mA 0.4mA 0.0ms.0ms,500V AC CSA, UL 6.0A 4 AQZ0 60V.0A / 9.0A 0./ pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA, C-UL, TÜV, UL.0A 00V.0A / 6.0A 0./ pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA, C-UL, TÜV, UL AQZ05.0A AQZ07 00V.0A /.0A 07/ 600pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA, C-UL, TÜV, UL...0A AQZ04 400V 0.5A /.5A./. 600pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA, C-UL, TÜV, UL 0.5A AQYFGS Built-in resistor 60V.5A /.0A 0./0.5 50pF Operate V Fon.5A 4.0V Turn off V Foff (min.) 0.8V 5.0ms 0.5ms 500V AC PhotoMOS 74 75

38 PhotoMOS Form A Power Relays PhotoMOS Selector Chart Output Output Input Switching speed = Popular Photo with Dimensions Peak load V DC/AC Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Turn-on time Turn-off time I/O isolation AQZ64 400V.0A /.0A.0/.4 600pF.0mA 0.4mA 0.0ms.0ms,500V AC CSA, UL.0A 4 AQY7 60V.0A / 6.0A 0./ pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA, C-UL, UL.0A AQY75 00V.A / 4.0A 0./ pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA, C-UL, UL.A AQY77 00V 0.65A /.0A 0.7/. 600pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA, C-UL, UL A AQY74 400V 0.5A /.0A./. 600pF.0mA 0.4mA 5.0ms.0ms,500V AC CSA. C-UL, UL 0.5A PhotoMOS 76 77

39 PhotoMOS Form A Low CxR PhotoMOS Selector Chart Output Output Input Switching speed = Popular Photo with Dimensions Peak load V DC/AC Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Turn-on time Turn-off time I/O isolation AQYRT Low CxR 40V 0.5A 0.8/.5 4pF.0mA 0.mA 0.5ms 0.ms 00V AC 0.5A Low CxR 40V 0.A 9.5/.5.pF.0mA 0.mA 0.ms 0.ms 00V AC AQYNT A AQYNT Low CxR 5V 0.5A 5.5/7.5.pF.0mA 0.mA 0.ms 0.ms 00V AC 0.5A AQYNM Low CxR 5V 0.5A / - 5.5/7.5.pF.0mA 0.mA 0.ms 0.ms 00V AC 0.5A Low CxR 40V 0.5A / 0.75A 0.8/.5 4pF.0mA 0.mA 0.5ms 0.ms 00V AC AQYRM A AQYNM Low CxR 40V 0.A / - 9.5/.5.pF.0mA 0.mA 0.ms 0.ms 00V AC 0.A AQYNV Low CxR 5V 0.5A / 0.4A 5.5/7.5.pF.0mA 0.mA 0.ms 0.ms,500V AC 0.5A AQYR4V Low CxR 40V 0.5A /.0A 0.55/.0 4pF.0mA 0.mA 0.75ms 0.ms,500V AC 0.5A 0.5A AQYNV Low CxR PSpice 40V 0.A / 0.A 9.5/.5.0pF.0mA 0.mA 0.5ms 0.ms,500V AC 0.A AQYRV Low CxR PSpice 40V 0.5A / 0.75A 0.75/.5.5pF.0mA 0.mA 0.5ms 0.ms,500V AC AQYFRV Built-in resistor 40V 0.5A / 0.75A 0.75/.5 0.5A.5pF Operate V Fon 4.0V 0.5A Turn off V Foff (min.) 0.8V 0.5ms 0.ms 500V AC AQYFNV Built-in resistor 40V 0.A / 0.A 9.5/.5 0.A pf Operate V Fon 4.0V Turn off V Foff (min.) 0.8V 0.5ms 0.ms 500V AC AQY5RV Low CxR 80V 0.A / 0.A 0.5/5 4.5pF.0mA 0.mA 0.5ms 0.ms,500V AC PhotoMOS 0.A 78 79

40 PhotoMOS Form A Low CxR PhotoMOS Selector Chart Output Output Input Switching speed = Popular Photo with Dimensions Peak load V DC/AC Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Turn-on time Turn-off time I/O isolation AQYNS Low CxR 40V 0.A / 0.A 9.5/.5.0pF.0mA 0.mA 0.5ms 0.ms,500V AC CSA, TÜV, UL 0.A AQYRS Low CxR 40V 0.5A / 0.75A 0.8/.5 pf.0ma 0.mA 0.5ms 0.ms 500V AC CSA, TÜV, UL 0.5A AQYRS Low CxR 60V 0.5A /.0A 0.8/. 4.5pF.0mA 0.mA 0.5ms 0.ms,500V AC A AQY5RS Low CxR 80V 0.5A / 0.7A 0.8/. 7.5pF.0mA 0.mA 0.75ms 0.ms,500V AC 0.5A AQY5RS Low CxR 80V 0.5A / 0.45A 0.5/5 4.5pF.0mA 0.mA 0.5ms 0.ms,500V AC 0.5A AQV7NS 00V 0.05A / 0.5A 0/50 0pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, TÜV, UL 0.05A AQV4NS 400V 0.04A / 0.A 70/00 0pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, TÜV, UL A AQV 40V 0.08A / 0.8A /5 5.6pF.0mA 0.4mA 0.ms 0.ms,500V AC CSA, TÜV, UL 0.8A AQV5 80V 0.05A / 0.5A 6/50 4.8pF.0mA 0.4mA 0.ms 0.ms,500V AC CSA, TÜV, UL 0.05A AQV7N 00V 0.07A / 0.A 0/50 0pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, TÜV, UL A AQV4N 400V 0.05A / 0.5A 70/00 0pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, TÜV, UL 0.05A PhotoMOS 80 8

41 PhotoMOS Form B PhotoMOS Selector Chart Output Output Input Switching speed = Popular Photo with Dimensions Peak load V DC/AC Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Turn-on time Turn-off time I/O isolation Form B Signal Relays AQY4S 60V 0.5A /.5A /.5 450pF.0mA 0.4mA.0ms.0ms,500V AC CSA, UL, VDE 0.5A 50V 0.A / 0.A 8/5 AQY40S 0pF.0mA 0.4mA.0ms.0ms,500V AC BSI, CSA, TÜV, UL 0.A V 0.A / 0.4A 6/5 AQY44S 00pF.0mA 0.4mA.0ms.0ms,500V AC BSI, CSA, TÜV, UL 0.A AQY4EH 60V 0.55A /.5A /.5 480pF.0mA 0.4mA 0.0ms.0ms 5,000V AC CSA, UL, VDE 0.55A 50V 0.A / 0.4A 8/5 0pF.0mA 0.4mA.0ms.0ms 5,000V AC BSI, CSA, UL AQY40EH 0.A AQY44EH 400V 0.A / 0.A 6/5 00pF.0mA 0.4mA.0ms.0ms 5,000V AC BSI, CSA, UL 0.A AQV44S 400V 0.A / 0.A 6/50 00pF.0mA 0.4mA.0ms.0ms,500V AC CSA, TÜV, UL 0.A PhotoMOS 8 8

42 PhotoMOS Form B PhotoMOS Selector Chart Output Output Input Switching speed = Popular Photo with Dimensions Peak load V DC/AC Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Turn-on time Turn-off time I/O isolation AQV40EH 50V 0.A / 0.4A 8/5 0pF.0mA 0.4mA.0ms.5ms 5,000V AC BSI, CSA, TÜV, UL, VDE 0.A AQV4EH 60V 0.55A /.5A /.5 480pF.0mA 0.4mA 0.0ms.5ms 5,000V AC CSA, TÜV, UL, VDE 0.55A AQV44E 400V 0.A / 0.A 6/50 00pF.0mA 0.mA.0ms.0ms,500V AC CSA, TÜV, UL 0.A AQV44EH 400V 0.A / 0.A 6/50 00pF.0mA 0.4mA.0ms.5ms 5,000V AC BSI, CSA, TÜV, UL, VDE 0.A AQV45 50V 0.A / 0.6A 5.5/8.0 50pF.0mA 0.4mA.0ms.0ms,500V AC CSA, UL A AQV44 400V 0.A / 0.A 6/50 00pF.0mA 0.4mA.0ms.0ms,500V AC CSA, TÜV, UL 0.A AQV V 0.5A / 0.5A 0.5/6 70pF.0mA 0.4mA.0ms.0ms,500V AC CSA, TÜV, UL 0.5A AQV454H 400V 0.5A / 0.5A 0.5/6 70pF.0mA 0.4mA.0ms.0ms 5,000V AC CSA, TÜV, UL 0.5A Form B Power Relays AQZ V 0.5A /.5A.8/ pF.0mA 0.4mA 7.5ms.0ms,500V AC CSA, UL 0.5A.. PhotoMOS 84 85

43 PhotoMOS Form A Signal Relays PhotoMOS Selector Chart Output Output Input Switching speed = Popular Photo with Dimensions Peak load V DC/AC Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Turn-on time Turn-off time I/O isolation AQW0S 50V 0.A / 0.A 6/5 45pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, TÜV, UL 0.A AQWS : 60V 0.4A /.5A 0.8/.5 -.0mA 0.4mA.0ms 0.ms,500V AC CSA, TÜV, UL 0.4A 9.7 x 4.4 x.mm AQW4S 400V 0.08A / 0.4A 0/50 45pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, TÜV, UL 0.8A AQWEH 60V 0.5A /.5A 0.8/.5 80pF.0mA 0.4mA 4.0ms.0ms 5,000V AC CSA, TÜV, UL 0.5A AQW0EH 50V 0.A / 0.6A 8/5 45pF.0mA 0.4mA.0ms.0ms 5,000V AC CSA, TÜV, UL 0.A AQW0HL Current limiting 50V 0.A / - 0.8A (Output limit current [typ.]) 0/5 45pF.0mA 0.4mA.0ms.0ms 5,000V AC CSA, TÜV, UL 0.A AQW4EH V 0.A / 0.A 6/ pF.0mA 0.4mA.0ms.0ms 5,000V AC CSA, TÜV, UL 0.A AQW6EH 600V 0.04A / 0.A 5/0 45pF.0mA 0.4mA.0ms.0ms 5,000V AC CSA, TÜV, UL 0.04A PhotoMOS 86 87

44 PhotoMOS Form A Signal Relays PhotoMOS Selector Chart Output Output Input Switching speed = Popular Photo with Dimensions Peak load V DC/AC Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Turn-on time Turn-off time I/O isolation AQW 60V 0.6A /.0A 0.8/.5 50pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, TÜV, UL 0.6A AQW5 00V 0.A / 0.9A./4.0 0pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, TÜV, UL 0.A AQW7 00V 0.6A / 0.48A /5 70pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, TÜV, UL 0.6A AQW0 50V 0.A / 0.6A /5 45pF.0mA 0.4mA 0.5ms 0.05ms,500V AC CSA, TÜV, UL 0.A AQW V 0.A / 0.A 0/50 45pF.0mA 0.4mA 0.5ms 0.05ms,500V AC CSA, TÜV, UL A AQW54 400V 0.A / 0.6A.4/6 70pF.0mA 0.4mA.0ms 0.ms,500V AC CSA, TÜV, UL 0.A AQW6 600V 0.04A / 0.A 70/0 45pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, TÜV, UL 0.04A PhotoMOS 88 89

45 PhotoMOS Other s PhotoMOS Selector Chart Output Output Input Switching speed = Popular Photo with Dimensions Peak load V DC/AC Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Turn-on time Turn-off time I/O isolation Form A Low CxR AQW7NS 00V 0.04A / 0.5A 0/50 0pF.0mA 0.4mA 0.5ms 0.ms,500V AC C-UL, TÜV, UL : 0.04A AQWRS Low CxR 50V 0.4A / 0.4A 0/5 pf.0ma 0.mA 0.5ms 0.ms,500V AC C-UL 9.7 x 4.4 x.mm 0.4A AQW7N 00V 0.05A / 0.5A 0/50 0pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, TÜV, UL 0.05A AQW4N 400V 0.04A / 0.A 70/00 0pF.0mA 0.4mA 0.5ms 0.ms,500V AC CSA, TÜV, UL A Form B AQW44EH 400V 0.A / 0.A 6/5 00pF.0mA 0.4mA.0ms.0ms 5,000V AC BSI, CSA, TÜV, UL 0.A AQW44 400V 0.A / 0.A 6/50 00pF.0mA 0.4mA.0ms.0ms,500V AC CSA, TÜV, UL 0.A AQW V 0.A / 0.6A /6 70pF.0mA 0.4mA.0ms.0ms,500V AC CSA, TÜV, UL A PhotoMOS 90 9

46 PhotoMOS Other s PhotoMOS Selector Chart Output Output Input Switching speed = Popular Photo with Dimensions Peak load V DC/AC Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Turn-on time Turn-off time I/O isolation Form A / Form B AQW6S 60V 0.45A /.5A /.5 80pF (N.O.) 450pF 0.45A (N.C.).0mA 0.4mA.0ms.0m,500V AC CSA, TÜV, UL, VDE V 0.A / 0.A 8/5 45pF (N.O) AQW60S : 00pF 0.A (N.C.).0mA 0.4mA.0ms.0ms,500V AC BSI, CSA, TÜV, UL 9.7 x 4.4 x.mm AQW6EH 60V 0.5A /.5A /.5 80pF (N.O.) 480pF 0.5A (N.C.).0mA 0.4mA 4.0ms (N.O.) 0.0ms (N.C.).0ms 5,000V AC CSA, TÜV, UL, VDE V 0.A / 0.6A 8/5 45pF (N.O.) AQW60EH 00pF 0.A (N.C.).0mA 0.4mA.0ms.0ms 5,000V AC BSI, CSA, TÜV, UL 400V 0.A / 0.A 6/5 45pF (N.O.) AQW64EH 00pF A (N.C.) AQW64 400V 0.A / 0.A 7/50 45pF (N.O.) 00pF 0.A (N.C.).0mA 0.4mA.0ms.0ms 5,000V AC BSI, CSA, TÜV, UL.0mA 0.4mA.0ms.0ms,500V AC CSA, TÜV, UL AQW V 0.A / 0.6A N.O.: 0/6 0.A N.C.: / pF.0mA 0.4mA.0ms.0ms,500V AC CSA, TÜV, UL PhotoMOS 9 9

47 PhotoMOS Other s PhotoMOS Selector Chart Output Output Input Switching speed = Popular Photo with Dimensions Peak load V DC/AC Continuous load current/ Peak load current (00ms) ON resistance (typical/max.) Output capacitance (typical) LED operate current LED turn-off current (min.) Turn-on time Turn-off time I/O isolation Multichannel AQSNS Low CxR 40V 0.06A / 0.A 9.5/.5 pf.0ma 0.mA 0.ms 0.ms 500V AC 0.06A AQS5RS Low CxR 80V 0.07A / 0.A 0.5/ pF.0mA 0.mA 0.ms 0.ms,500V AC CSA, TÜV, UL 0.07A AQSFRS Built-in resistor 40V 0.6A / 0.A 0.5/.5.5pF Operate V Fon A 4.0V Turn off V Foff (min.) 0.8V 0.5ms 0.ms 500V AC AQSFNS Built-in resistor 40V 0.06A / 0.A 9.5/ A pf Operate V Fon 4.0V Turn off V Foff (min.) 0.8V 0.5ms 0.ms 500V AC PhotoMOS 94 95

48 Photovoltaic MOSFET drivers PhotoMOS Selector Chart = Popular Photo with Dimensions Drop-out (typical/min.) Output Input Switching speed Short circuit current (typical/min.) LED operate current LED turn-off current (min.) Turn-on time (typical) Turn-off time (typical) I/O isolation APVV : Ultra small SSOP housing 8./5.0V 8 / A.0mA 0.mA 0.8ms 0.ms,500V AC C-UL.65 x 4.45 x.8mm μa 8μA APVS Ultra small SMD (SOP) housing 8.7/6.0V 4 / 5 A.0mA 0.mA 0.4ms 0.ms,500V AC C-UL : 5μA 4μA APVS 4. x 4.4 x mm Ultra small SMD (SOP) housing 8./5.0V 8 / A.0mA 0.mA 0.8ms 0.ms,500V AC C-UL μa 8μA APV : 5000V breakdown 8.7/6.0V 4 / 5 A.0mA 0.mA 0.4ms 0.ms 5,000V AC C-UL 5μA 4μA DIP : 8.8 x 6.4 x.6mm SMD: 8.8 x 6.4 x.9mm PhotoMOS 96 97

49 H Photo-Triac Couplers Solid State Relays Selector Chart Solid State Relay Selector Chart Photo with Dimensions Repetitive peak OFF-state Output Max. load current/ Non-repetitive surge current ( cycle, 60Hz) PeakONstate Peak OFF-state current LED trigger current Input LED drop-out Turn-on time Zero-cross I/O isolation Connection type Switching diagram APTS Zero-cross SOP 4 pin 600V 0.05A / 0.6A.5V A 0mA.V 0.ms 50V,750V AC SMT (SOP) C-UL, UL, VDE 0.05A - APTS Random SOP 4 pin SMT (SOP) APTS Low zero-cross SOP 4 pin.0v 5V SMT (SOP) 4 - APT Zero-cross DIP 4 pin 600V 0.A /.A.5V A 0mA.V 0.ms 50V 5,000V AC PCB, SMT C-UL, UL, VDE 4 0.A - APT Random DIP 4 pin PCB, SMT APT Low zero-cross DIP 4 pin.0v 5V PCB, SMT Solid State

50 Photo-Triac Couplers Solid State Relays Selector Chart Photo with Dimensions Output Input Zero-cross I/O isolation Connection type Switching diagram APT 6 0.A - 4 APT 6 4 APT Solid State

51 Photo-Triac Couplers Wide Terminal Solid State Relays Selector Chart Photo with Dimensions Repetitive peak OFF-state Output Max. load current/ Non-repetitive surge current ( cycle, 60Hz) PeakONstate Peak OFF-state current LED trigger current Input LED drop-out Turn-on time Zero-cross I/O isolation Connection type Switching diagram APTW Zero-cross DIP 4 pin wide terminal 600V 0.A /.A.5V A 0mA.V 0.ms 50V 5,000V AC PCB, SMT C-UL, UL, VDE 4 0.A - APTW : Random DIP 4 pin wide terminal PCB, SMT 4 DIP : 4.78 x 6.4 x.0mm SMD: 4.78 x 6.4 x.7mm APTW Low zero-cross DIP 4 pin wide terminal.0v 5V PCB, SMT 4 - APTW Zero-cross DIP 6 pin wide terminal 600V 0.A /.A.5V A 0mA.V 0.ms 50V 5,000V AC PCB, SMT C-UL, UL, VDE 6 0.A - 4 APTW : Random DIP 6 pin wide terminal PCB, SMT 6 4 APTW DIP : 8.8 x 6.4 x.9mm SMD: 8.8 x 6.4 x.6mm Low zero-cross DIP 6 pin wide terminal.0v 5V PCB, SMT Solid State

52 AQH Relays Solid State Relays Selector Chart Photo with Dimensions Repetitive peak OFF-state Output Max. load current/ Non-repetitive surge current ( cycle, 60Hz) PeakONstate Peak OFF-state current LED trigger current Input LED drop-out Turn-on time Zero-cross I/O isolation Connection type Switching diagram AQH0 Photo-Triac Zero-cross 600V 0.A / A.5V 00 A 0mA.V 0.ms 50V 5,000V 0.A C-UL, UL, VDE AQH0 Photo-Triac Random AQH AQH : Photo-Triac Zero-cross Photo-Triac Random 600V 0.6A / 6A.5V 00 A 0mA.V 0.ms 50V 5,000V 0.6A PCB, SMT With zero-cross switch: AQH AQH DIP : 9.78 x 6.4 x.9mm SMD: 9.78 x 6.4 x.6mm Photo-Triac Zero-cross Photo-Triac Random 600V 0.9A / 9A.5V 00 A 0mA.V 0.ms 50V 5,000V 0.9A Without zero-cross switch: AQH Photo-Triac Zero-cross 600V.A / A.5V 00 A 0mA.V 0.ms 50V 5,000V.A AQH Photo-Triac Random Solid State

53 Solid State SIL and DIL s Solid State Relays Selector Chart Load Output Max. load current/ Non-repetitive surge current ( cycle, 60Hz) OFF-state leakage current Input Input impedance Input Drop-out (min.) Operate time Release time Breakdown Connection type Terminal layout D ata sheet AQG A Photo-Triac Zero-cross Integrated snubber circuit 75-64V AC A / 8A.5mA 4-6V DC 0.k V ½ cycle of sine A V DC 0.8k wave + ms ½ cycle of sine wave + ms,000v AC PCB 0.6 C-UL, UL, VDE V DC.6k 4-.0 dia. Photo-Triac Random Integrated snubber circuit 75-64V AC A / 8A.5mA 4-6V DC 0.k V ms ½ cycle of sine A V DC 0.8k wave + ms,000v AC V DC.6k AQG A Photo-Triac Zero-cross Integrated snubber circuit A 75-64V AC A / 0A.5mA 4-6V DC 0.k V ½ cycle of sine V DC 0.8k wave + ms ½ cycle of sine wave + ms,000v AC PCB dia V DC.6k Photo-Triac Random Integrated snubber circuit 75-64V AC A / 0A.5mA 4-6V DC 0.k V ms ½ cycle of sine A V DC 0.8k wave + ms,000v AC V DC.6k AQ Photo-Transistor 0-00V DC A / 5A (s) ma - 8V DC.6k 0.8V 0.5ms ms,000v AC PCB A (DC output) Slim A 5.4 Copper foil 4 CSA, TÜV, UL dia. AQ Photo-Transistor - 60V DC A / 5A (s) ma - 8V DC.6k 0.8V 0.5ms ms,000v AC A (DC output) A Solid State

54 Solid State SIL and DIL s Solid State Relays Selector Chart Load Output Max. load current/ Non-repetitive surge current ( cycle, 60Hz) OFF-state leakage current Input Input impedance Input Drop-out (min.) Operate time Release time Breakdown Connection type Terminal layout D ata sheet AQ A (AC output) Photo-Transistor Zero-cross 75-50V AC A / 80A 5mA - 8V DC.6k 0.8V ½ cycle of sine A wave + ms ½ cycle of sine wave + ms,000v AC PCB Slim 5.4 Copper foil 4 CSA, TÜV, UL Flat dia AQ A (AC output) 0. Photo-Triac Zero-cross and random type available 75-50V AC A / 00A 5mA A 4 - V DC (Input current, max. 0mA).0V ½ cycle of sine wave + ms ½ cycle of sine wave + ms 4,000V AC (between input and output),500v AC (between input, output and case).54 PCB Slim Flat.4 Copper foil dia. VDE AQ Photo-Transistor 75-50V AC 5A (A without heat sink) / 00A 5mA - 8V DC.6k 0.8V ½ cycle of 5A (AC output) Zero-cross sine : 5A wave + ms 54 x 6mm ½ cycle of sine wave + ms,000v AC (between input and output),500v AC (between input, output and case).54 PCB Copper foil dia. CSA, TÜV, UL AQ Photo-Triac 75-50V AC 0A (5A without heat sink) / 00A 5mA 4 - V DC 0A (AC output) : Zero-cross and random type available 0A (Input current, max. 0mA) 54 x 6mm.0V ½ cycle of sine wave + ms ½ cycle of sine wave + ms 4,000V AC (between input and output),500v AC (between input, output and case).54 PCB Copper foil dia. VDE Solid State

55 Solid State SIL and DIL s Solid State Relays Selector Chart Load Output Max. load current/ Non-repetitive surge current ( cycle, 60Hz) OFF-state leakage current Input Input impedance Input Drop-out (min.) Operate time Release time Breakdown Connection type Terminal layout D ata sheet Solid State Hockey Puck s : AQ-J 8 x 8 x 7mm Photo-Triac Zero-cross Ultra-compact size Built-in varistor 75-64V AC 0A / 00A 5mA 0A 4-6V DC 0-8V DC V ½ cycle of sine wave + ms 8-8V DC.6k 5A / 50A 4-6V DC 60 5A 0-8V DC V DC.6k ½ cycle of sine wave + ms,000v AC (between input and output),500v AC (between input, output and case) C-UL, TÜV dia. or M4 5A / 50A 4-6V DC 60 5A 0-8V DC V DC.6k AQ-A Photo-Triac Zero-cross and random type available Built-in varistor and LED indication 75-50V AC 5A / 50A 0mA 5A 4 - V DC (Input current, max. 0mA) 5A / 50A 40A / 400A 5A V ½ cycle of sine wave + ms ½ cycle of sine wave + ms 4,000V AC (between input and output),500v AC (between input, output and case) A 0 Solid State

56 Alphabetical List of Relays Further Panasonic Products Mechanical Relays CA CB CJ... 8 CJ CM CN-H CN-M... 4 CP (SMD)... 4 CP POWER... 4 CP... 4 CQ CT POWER... 8 CT POWER CT... 8 CT CV CW DE... DJ... 4 DK... DQ... 4 DQM... 4 DS...0 DSY...0 DSP... DW... DY... 4 EB EP... 0 EV QUIET EV GN (SMD)...6 GQ (SMD)...6 HC... 8 HE/ HE PV... 0 HJ... 8 HL... 8 HN... 8 HY...0 JJM JJM-DM JM... JQ... 0 JS... 0 JS-M JT-V... JV-N... JW... LA... 8 LD... 8 LD-P... 8 LE... 4 LF... 4 LF-G/LF-G... 4 LK-G... 6 LK-P... 6 LK-Q... 6 LK-T... 6 LZ... 4 PA... 8 PF... 0 PQ... 0 RA... 6 RD SP6T... 4 RD SPDT... RD TRANSFER... RE... 6 RJ... 4 RN... 4 RS... 6 RV SPDT... S... 6 SFD SF SF4D SFN4D SFS... 5 SF-Y... 5 SP... 6 ST... TQ (SMD)... 6 TQ (THT)... 6 TX (SMD)... 8 TX-D (SMD)... 8 TX-S (SMD)... 8 TX-TH (SMD)... 8 Semiconductor Relays APT APTS APTW... 0 APT APTW... 0 APT APTS APTW... 0 APT APTW... 0 APT APTS APTW... 0 APT APTW... 0 APVS APV APVV APVS AQ AQ-A... 0 AQG AQH AQH AQH AQH AQH AQH AQH AQH AQ-J... 0 AQSFNS AQSFRS AQSNS AQS5RS AQV AQV AQV AQV AQVKL AQV AQV AQV AQV AQV AQV0E AQV0EH AQV0S AQV AQVS AQV AQV4E AQV4EH AQV4H AQV4S AQV AQV5S AQV AQV6S AQV AQV7S AQV AQV4N AQV4NS AQV AQV7N AQV7NS AQV AQV AQV5G AQV AQV5G AQV AQV5H... 7 AQV AQV54H... 7 AQV AQV55GS AQV AQV AQV AQV40EH AQV4EH AQV AQV44E AQV44EH AQV44S... 8 AQV AQV AQV454H AQW AQW0EH AQW0HL AQW0S AQW AQWEH AQWS AQW AQW4EH AQW4S AQW AQW AQW6EH AQW AQWRS AQW4N AQW7N AQW7NS AQW AQW AQW44EH AQW AQW60EH... 9 AQW60S... 9 AQW6EH... 9 AQW6S... 9 AQW AQW64EH... 9 AQW AQY0EH AQY0HL AQY0KS... 6 AQY0LS... 6 AQY0S... 6 AQYEH AQYEH AQYFGS AQYGS... 6 AQYGH AQYGS... 6 AQYS... 6 AQY4EH AQY4S... 6 AQY6EH AQYFNV AQYFRV AQYNM AQYNS AQYNT AQYNV AQYNM AQYNT AQYNV AQYRM AQYRS AQYRT AQYRV AQYR4V AQYRS AQY5RS AQY5RS AQY5RV AQY0S AQYS AQY4S AQY AQY AQY AQY AQY40EH... 8 AQY40S... 8 AQY4EH... 8 AQY4S... 8 AQY44EH... 8 AQY44S... 8 AQZ AQZ AQZ AQZ AQZ AQZ AQZ AQZ AQZ AQZ AQZ Connectors Today s electronic components are expected to meet stringent demands: They have to be as compact as possible and provide maximum reliability. To fulfill these requirements, Panasonic engineers have developed narrow-pitch connectors that utilize TOUGH CONTACT technology. In addition to their excellent shock and vibration resistance, these connectors feature an ultra-slim profile, which makes them ideally suited to applications where space is at a premium. Our versatile board-to-board and board-to-fpc connector product range offers the appropriate solution for practically any scenario. Switches The immense portfolio includes switches in all common sizes and with various IP degrees of protection, and are guaranteed to cover all standard requirements. Our switches are characterized by a large switching capacity range, long lifetime and exceptional reliability. A wide selection of supplemental actuators coupled with various terminal styles, e.g. solder, quick connect, PC board terminal and cable connections, maximize flexibility and ease application design. PaPIRs motion sensors Intelligent automation solutions help increase energy efficiency, cost effectiveness and comfort significantly. With a power consumption as low as μa and a height of just 6mm, PaPIRS open up a diverse range of possibilities to the lighting and building technology as well as battery-driven applications. NaPiOn motion sensors NaPiOn motion sensors are ideal for efficient lighting and energy management. Small size: Ø0x.5mm (thimble size) Integrated amplifier lens colors: white and black Pressure sensors Panasonic s pressure sensors contain built-in amplification and temperature compensation circuits. Users need not be concerned with circuit design or customization. State-of-the-art technology allows us to achieve high-level precision and reliability, yet without compromising compactness. Footprint 7.0mm (W) x 7.mm (D) 0.4mm (W) x 0.4mm (D) (low pressure type)

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