Characteristic impedance

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1 urface-mounting, -Hz-Band, Miniature, PDT, High-frequency Relay uperior high-frequency characteristics, such as an isolation of db, insertion loss of.5 db, and V.WR of.5 at 2. Hz. urface-mounting terminals and superior high frequency characteristics combined using semi triplate strip transmission lines. Miniature dimensions of 8. mm (L W H). Choose from a lineup that includes single-winding latching models ( mw), double-winding latching models ( mw), and models with a reverse contact arrangement. eries includes models with an E-shape terminal structure (same as existing models), and models with a Y-shape terminal structure, allowing greater freedom with PCB design. Models with 5-Ω impedance and models with 5-Ω impedance are available. RoH Compliant Model Number Relay Function None: ingle-side stable U: ingle-winding latching K: Double-winding latching 2. Contact Form : PDT (c). Terminal hape F: urface-mounting terminals P: PCB terminals 4. Terminal arrangement None: Y-shape terminal structure E: E-shape terminal structure 5. Characteristic Impedance None: 5 Ω A: 5 Ω. Contact Arrangement None: tandard contact arrangement R: Reverse contact arrangement Application Examples These Relays can be used for switching signals in media equipment. Wire communications: Cable TV (TB and broadcasting infrastructure), cable modems, and VR (video response systems) Wireless communications:transceivers, ham radios, car telephones, ETC, IT, high-level TV, satellite broadcasting, text multiplex broadcasting, pay TV, mobile phone stations, TV broadcasting facilities, and community antenna systems Public equipment: TVs, TV games, satellite radio units, car navigation systems Industrial equipment: Measuring equipment, test equipment, and multiplex transmission devices Ordering Information tandard Models with PCB Terminals Relay Function ingleside stable inglewinding latching Doublewinding latching Enclosure rating Fully sealed Contact form PDT (c) Terminal arrangement E-shape Y-shape E-shape Y-shape E-shape Y-shape Characteristic impedance Model Rated coil voltage 5 Ω -PE, 4.5, 5, 9, 2, 24 VDC 5 Ω -PE-A, 4.5, 5, 9, 2, 24 VDC 5 Ω -P, 4.5, 5, 9, 2, 24 VDC 5 Ω -P-A, 4.5, 5, 9, 2, 24 VDC 5 Ω U-PE 5 Ω U-PE-A 5 Ω U-P, 4.5, 5, 9, 2, 24 VDC 5 Ω U-P-A 5 Ω K-PE 5 Ω K-PE-A 5 Ω K-P, 4.5, 5, 9, 2, 24 VDC 5 Ω K-P-A Note. Please add the coil rated voltage to the model number when ordering. Example: -PE DC In addition, the delivered product and its package will be marked with voltage specification as "@@VDC". Minmum packing unit 25 pcs/tube

2 tandard Models with urface-mounting Terminals Relay Function ingleside stable inglewinding latching Doublewinding latching Note. Please add the coil rated voltage to the model number when ordering. Example: -PE DC In addition, the delivered product and its package will be marked with voltage specification as Note 2. When ordering Relays in tape packing (surface mounting terminal models), add "-TR" to the end of the model number. This specification, however, is not part of the relay model number, so it is not marked on the relay case. (If "-TR" is not added to the end of the model number, the Relays will be provided in tube packing.) Note. Consult your OMRON representative for reverse contact models. Ratings Enclosure rating Fully sealed Contact form PDT (c) Terminal arrangement E-shape Y-shape E-shape Y-shape E-shape Y-shape Characteristic impedance Coil: ingle-side table Models (E-2P(E), -F(E)) Raged voltage Rated current (ma) Coil resistance (Ω) VDC VDC VDC VDC VDC. 24 VDC 8. 2,88 Coil: ingle-winding Latching Models (U-P(E), U-F(E)) Raged voltage Rated current (ma) Coil resistance (Ω) VDC VDC VDC VDC VDC. 24 VDC 8. 2,88 Coil: Double-winding Latching Models (K-P(E), K-F(E)) Raged voltage Rated current (ma) Coil resistance (Ω) VDC VDC VDC VDC VDC 4 24 VDC 5, Note. The rated current and coil resistance are measured at a coil temperature of 2 C with a tolerance of ±%. Note 2. The operating characteristics are measured at a coil temperature of 2 C. Note. The maximum voltage is the highest voltage that can be imposed on the Relay coil instantaneously. Note 4. The voltage measurements for operate/release and set/reset are the values obtained for instantaneous changes in the voltage (rectangular wave). Model 5 Ω -FE 5 Ω -FE-A 5 Ω -F 5 Ω -F-A 5 Ω U-FE 5 Ω U-FE-A 5 Ω U-F 5 Ω U-F-A 5 Ω K-FE 5 Ω K-FE-A 5 Ω K-F 5 Ω K-F-A Must operate voltage Must release voltage % of rated voltage Rated coil voltage, 4.5, 5, 9, 2 and 24 VDC, 4.5, 5, 9, 2 and 24 VDC, 4.5, 5, 9, 2 and 24 VDC Maximum voltage Minmum packing unit 25 pcs/tube ( pcs/ reel) Minimum ordering unit (Tape packing) pcs/reel Power consumption (mw) 5% % 5% Approx. Must set voltage Must reset voltage % of rated voltage Maximum voltage Power consumption (mw) 5% 5% 5% Approx. Must set voltage Must reset voltage % of rated voltage Maximum voltage Power consumption (mw) 5% 5% 5% Approx. 2

3 Contacts Item Load Resistive load Rated load ma at VAC ma at VDC W at 9 MHz * Rated carry current.5 A Max. switching voltage VAC, VDC Max. switching current.5 A * This value is for an impedance of 5Ω or 5Ω with a V.WR of.2 High-frequency Characteristics * Frequency 9MHz 2.Hz TH MD TH MD Item E-shape Y-shape E-shape Y-shape E-shape Y-shape E-shape Y-shape Isolation 5 Ω 5 db 5 db 45 db db 4 db db 5 Ω db Insertion loss 5 Ω.2 db.5 db (not including substrate loss) 5 Ω. db. db V.WR 5 Ω.2 db.5 db 5 Ω. db. db Return loss 5 Ω.8 db 4. db 5 Ω 2.4 db. db Maximum carry power W *2 Note. The above values are initial values. *. Contact your OMRON representative if the Relay will be used in applications that require high repeatability with high-frequency characteristics in microload regions. *2. These values are for an impedance of 5 Ω or 5 Ω with a V.WR of.2 Characteristics Relay Function ingle-side stable models ingle-winding latching models Double-winding latching models Model -P(E), -F(E) U-P(E), U-F(E) K-P(E), K-F(E) Contact resistance * mω Operating (set) time ms Release (reset) time ms Minimum set/reset pulse time 2 ms Insulation resistance *2 MΩ (at 5 VDC) Between Coil and contacts, VAC, 5/ Hz for min Dielectric strength Vibration resistance hock resistance Durability Between ground and coil/contacts 5 VAC, 5/ Hz for min Between Contacts of the same polarity 5 VAC, 5/ Hz for min Destruction to 55 to Hz,.5 mm single amplitude (.5 mm double amplitude) Malfunction to 55 to Hz,.5 mm single amplitude (.5 mm double amplitude) Destruction, m/s 2 Malfunction 5 m/s 2 Mechanical,, operations (at, operations/hour) Electrical, operations ( VAC, ma/ VDC, ma),, operations (9 MHz, W) at a switching frequency of,8 operations/hour -4 C to C (with no icing or condensation) 5% to 85% RH Approx. 2.8 g Ambient operating temperature Ambient operating humidity Weight Note. The above values are initial values. *. The contact resistance was measured with ma at VDC with a voltage drop method. *2. The insulation resistance was measured with a 5 VDC megohmmeter applied to the same parts as those used for checkingthe dielectric strength.

4 Engineering Data Ambient Temperature vs. Maximum Voltage Maximum voltage (%) Ambient temperature ( C) Electrical Durability (with Must Operate and Must Release Voltage) *, *2 On the basis of rated voltage (%) 8 4 ample: -PE 5 5 VDC Test conditions: ma resistive load at VAC witching frequency:,8 operations/h Must operate Must release Ambient Temperature vs. Must Operate or Must Release Voltage On the basis of rated voltage (%) ample: -P 5 VDC Number of relays: 5 pcs 4 Max. estimated value avg. avg. Must operate voltage Must release voltage 4 8 Ambient temperature ( C) Electrical Durability (with Must Operate and Must Release Voltage) On the basis of rated voltage (%) 8 4 ample: -PE 5 5 VDC Test conditions: ma resistive load at VDC witching frequency:,8 operations/h Must operate Must release hock Malfunction X,, hock direction X X Y 4 8, Y Y, Energized 8 De-energized 4,, X Unit: m/s 2 ample: -P-A 5 VDC / 5 Number of relays: 5 pcs Y Conditions: hock is applied in X, Y, and directions three times each with and without energizing the Relays to check for contact malfunctions..... Operating frequency ( operations) Electrical Durability (Contact Resistance) *, *2 Contact resistance (m), 5 ample: -PE 5 5 VDC Test conditions: ma resistive load at VAC witching frequency:,8 operations/h NO contact NC contact.... Operating frequency ( operations) Electrical Durability (Contact Resistance) *, *2 Contact resistance (m), 5 ample: -PE 5 5 VDC Test conditions: ma resistive load at VDC witching frequency:,8 operations/h NO contact NC contact Contact resistance 5..., Operating frequency ( operations) External Magnetic Interference (Average value) Change rate on the basis of initial value (%) N ample: -P 5 VDC Must operate voltage Must release voltage, , External magnetic field (A/m) Change rate on the basis of initial value (%) Contact resistance 5..., Operating frequency ( operations) N (Average value) ample: -P 5 VDC Must operate voltage Must release voltage, , External magnetic field (A/m) *. The tests were conducted at an ambient temperature of 2 C. *2. The contact resistance data are periodically measured reference values and are not values from each monitoring operation. Contact resistance values will vary according to the switching frequency and operating environment, so be sure to check operation under the actual operating conditions before use. Change rate on the basis of initial value (%) N (Average value) ample: -P 5 VDC Must operate voltage Must release voltage, , External magnetic field (A/m) 4

5 High-frequency Characteristics at 5Ω (Isolation) *, *2 High-frequency Characteristics at 5Ω (Insertion Loss) *, *2 High-frequency Characteristics at 5Ω (Return Loss, V.WR) *, *2 Insertion loss (db) ample: -PE 5 5 VDC with terminating resistance (Average value (initial value)) Insertion loss (db).2 (Average value (initial value)) Insertion loss (db) (Average value (initial value)). Ṿ ample: -PE 5 5 VDC with terminating resistance. W Return loss R V.WR N.O N.C 5,,5 2, 2,5, Frequency (MHz) High-frequency Characteristics at 5Ω (Isolation) *, *2.8. ample: -PE 5 5 VDC with terminating resistance N.O N.C 5,,5 2, 2,5, Frequency (MHz) High-frequency Characteristics at 5Ω (Insertion Loss) *, *2. N.O N.C 5,,5 2, 2,5, Frequency (MHz) High-frequency Characteristics at 5Ω (Return Loss, V.WR) *, *2 Insertion loss (db) ample: -PE 5 5 VDC with terminating resistance (Average value (initial value)) Insertion loss (db).2 (Average value (initial value)) Insertion loss (db) (Average value (initial value)). Ṿ ample: -PE 5 5 VDC with terminating resistance. W R Return loss N.O N.C 5,,5 2, 2,5, Frequency (MHz) Must Operate and Must Release Time Distribution * Number of contacts 25 5 Must operate Must release time ample: -P 5 VDC 5 Number of Relays: 2 pcs.8 ample: -PE 5 5 VDC N.O with terminating resistance N.C. 5,,5 2, 2,5, Frequency (MHz) Must Operate and Must Release Bounce Time Distribution * Number of contacts 25 5 Must operate Must release time ample: -P 5 VDC 5 Number of Relays: 2 pcs 5 V.WR.2. N.O N.C 5,,5 2, 2,5, Frequency (MHz) Time (ms) Time (ms) *. The tests were conducted at an ambient temperature of 2 C. *2. High-frequency characteristics depend on the PCB to which the Relay is mounted. Always check these characteristics, including endurance, in the actual machine before use. 5

6 Dimensions Models with PCB Terminals (Unit: mm) -PE U-PE -PE-R PCB Mounting Holes Tolerance: ±. mm ix,.8-dia. ix,.-dia. holes Three,.-dia. -PE 8. Three,.8-dia. holes U-PE R PE-R Note. Each value has a tolerance of ±. mm PE-A U-PE-A PCB Mounting Holes Tolerance: ±. mm Nine,.8-dia. -PE-A Nine,.-dia. holes Note. Each value has a tolerance of ±. mm U-PE-A R P U-P PCB Mounting Holes Tolerance: ±. mm Eight,.8-dia. -P 4 5 Eight,.-dia. holes Three,.-dia Note. Each value has a tolerance of ±. mm. Three,.8-dia. holes U-P 4 5 R

7 -P-A U-P-A PCB Mounting Holes Tolerance: ±. mm Eleven,.8-dia. -P-A 4 5 Eleven,.-dia. holes U-P-A 4 5 R Note. Each value has a tolerance of ±. mm. K-PE PCB Mounting Holes Tolerance: ±. mm even,.8-dia. even,.-dia. holes Three,.-dia. R 8. Three,.8-dia. holes Note. Each value has a tolerance of ±. mm. K-PE-A PCB Mounting Holes Tolerance: ±. mm Ten,.8-dia. Ten,.-dia. holes R Note. Each value has a tolerance of ±. mm.

8 K-P PCB Mounting Holes Tolerance: ±. mm Nine,.8-dia. Nine,.-dia. holes Three,.-dia. 4 5 R 8. Three,.8-dia. holes Note. Each value has a tolerance of ±. mm. K-P-A PCB Mounting Holes Tolerance: ±. mm Twelve,.8-dia. Twelve,.-dia. holes. 4 5 R Note. Each value has a tolerance of ±. mm. Models with urface-mounting Terminals -FE U-FE Mounting Dimensions Tolerance: ±. mm FE U-FE Note. Each value has a tolerance of ±. mm. Note 2. The coplanarity of the terminals is. mm R 8

9 -FE-A U-FE-A Mounting Dimensions Tolerance: ±. mm 2. -FE-A U-FE-A Note. Each value has a tolerance of ±. mm. Note 2. The coplanarity of the terminals is. mm R -F U-F Mounting Dimensions Tolerance: ±. mm F U-F R 4 5 Note. Each value has a tolerance of ±. mm. Note 2. The coplanarity of the terminals is. mm -F-A U-F-A Mounting Dimensions Tolerance: ±. mm 2. -F-A U-F-A R 4 5 Note. Each value has a tolerance of ±. mm. Note 2. The coplanarity of the terminals is. mm 9

10 K-FE Mounting Dimensions Tolerance: ±. mm R Note. Each value has a tolerance of ±. mm. Note 2. The coplanarity of the terminals is. mm K-FE-A Mounting Dimensions Tolerance: ±. mm R Note. Each value has a tolerance of ±. mm. Note 2. The coplanarity of the terminals is. mm K-F Mounting Dimensions Tolerance: ±. mm R Note. Each value has a tolerance of ±. mm. Note 2. The coplanarity of the terminals is. mm K-F-A Mounting Dimensions Tolerance: ±. mm R Note. Each value has a tolerance of ±. mm. Note 2. The coplanarity of the terminals is. mm

11 Tube Packing and Tape Packing () Tube Packing Relays in tube packing are arranged so that the orientation mark of each Relay in on the left side. Be sure not to make mistakes in Relay orientation when mounting the Relay to the PCB. 2. Reel Dimensions dia. 2.8 dia topper (gray) Operation of Relays topper (green) A 8 R Tube length: 5 mm (stopper not included) No. of Relays per tube: 25 pcs Enlarged view of A (2) Tape Packing (urface-mounting Terminal Models) When ordering Relays in tape packing, add the prefix -TR to the model number, otherwise the Relays in tube packing will be provided. Relays per Reel: pcs Minimum packing unit: Reel ( pcs). Direction of Relay Insertion Pulling direction Top tape (cover tape) Pulling direction. Carrier Tape Dimensions 2. 5 MAX dia Note. The radius of the unmarked corner is. mm. A R.5 Enlarged view of A MAX. Carrier tape Emboss tape Recommended oldering Method Temperature Conditions for IR Method When using reflow soldering, ensure that the Relay terminals and the top of the case stay below the following curve. Check that these conditions are actually satisfied before soldering the terminals. The thickness of cream solder to be applied should be between 5 and μm on OMRON s recommended PCB pattern. Correct oldering Incorrect oldering Temperature T4 T Relay Terminal Land T2 Heel fillet is formed PCB T older Insufficient amount of solder Excessive amount of solder Check the soldering in the actual mounting conditions before use. t Preheating t2 oldering Time Measured part Terminals Preheating (T T2, t) 5 8 C, s oldering (T, t2) 2 C min, s Maximum peak (T4) 25 C Top of case 255 C Do not quench the terminals after mounting. Clean the Relay using alcohol or water no hotter than 4 C

12 Precautions For general precautions on PCB Relays, refer to the precautions provided in eneral Information of the Relay Product Data Book. Correct Use High-frequency Characteristics Measurement Method and Measurement ubstrate High-frequency characteristics for the are measured in the way shown below. Consult your OMRON representative for details on 5-Ω models. Measurement Method for 5-Ω Models Network vector analyzer (Agilent Technologies) HP85D Through-hole ubstrate (5-Ω Models, E-shape or Y-shape) (Unit: mm) 4 MD-type ubstrate (5-Ω Models, E-shape or Y-shape) (Unit: mm) 5-/5- adapter (Agilent Technologies) 852B terminating resistance 4-dia. through-hole dia. through-hole 4-dia. through-hole.-dia. through-hole ubstrate Types Material: FR-4 glass epoxy (glass cloth impregnated with epoxy resin and copper laminated to its outer surface) Thickness:. mm Thickness of copper plating: 8 μm Note. The compensation substrate is used when measuring the Relay s insertion loss. The insertion loss is obtained by subtracting the measured value for the compensation substrate from the measured value with the Relay mounted to the high-frequency measurement substrate. Note 2. For convenience, the diagrams of the high-frequency measurement substrates given here apply both to models with an E-shape terminal structure and to models with a Y-shape terminal structure. Note. Be sure to mount a standoff tightly to the through-hole substrate. Note 4. Use measuring devices, connectors, and substrates that are appropriate for 5Ω and 5Ω respectively. Note 5. Ensure that there is no pattern under the Relay. Otherwise, the impedance may be adversely affected and the Relay may not be able to attain its full characteristics. Handling Do not use the Relay if it has been dropped. Dropping the Relay may adversely affect its functionality. Protect the Relay from direct sunlight and keep the Relay under normal temperature, humidity, and pressure. Use the Relay as soon as possible after opening the moistureproof package. If the Relay is left for a long time after opening the moisture-proof package, the appearance may suffer and seal failure may occur after the solder mounting process. To store the Relay after opening the moisture-proof package, place it into the original package and sealed the package with adhesive tape. When washing the product after soldering the Relay to a PCB, use a water-based solvent or alcohol-based solvent, and keep the solvent temperature to less than 4 C. Do not put the relay in a cold cleaning bath immediately after soldering. Claw ecuring Force During Automatic Mounting During automatic insertion of Relays, be sure to set the securing force of each claw to the following so that the Relay s characteristics will be maintained. A C B Direction A: 4.9 N Direction B: 4.9 N Direction C: 4.9 N ubstrate for High-frequency Characteristic Compensation (5-Ω Models, E-shape or Y-shape) (Unit: mm) dia. through-hole.-dia. through-hole ecure the claws to the shaded area. Do not attach them to the center area or to only part of the Relay. Latching Relay Mounting Make sure that the vibration or shock that is generated from other devices, such as Relays, on the same panel or substrate and imposed on the Latching Relay does not exceed the rated value, otherwise the set/reset status of the Latching Relay may be changed. The Latching Relay is reset before shipping. If excessive vibration or shock is imposed, however, the Latching Relay may be set accidentally. Be sure to apply a reset signal before use. Coating Do not use silicone coating to coat the Relay when it is mounted to the PCB. Do not wash the PCB after the Relay is mounted using detergent containing silicone. Otherwise, the detergent may remain on the surface of the Relay. Repeatability Contact your OMRON representative if the Relay will be used in an application that requires high repeatability in high-frequencycharacteristics for the microload region. (uch applications include testing and measurement equipment and ATE applications.) 2

13 Application examples provided in this document are for reference only. In actual applications, confirm equipment functions and safety before using the product. Consult your OMRON representative before using the product under conditions which are not described in the manual or applying the product to nuclear control systems, railroad systems, aviation systems, vehicles, combustion systems, medical equipment, amusement machines, safety equipment, and other systems or equipment that may have a serious influence on lives and property if used improperly. Make sure that the ratings and performance characteristics of the product provide a margin of safety for the system or equipment, and be sure to provide the system or equipment with double safety mechanisms. Note: Do not use this document to operate the Unit. OMRON Corporation Electronic and Mechanical Components Company Contact: Cat. No. K24-E- 82()(O)

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