MOS FET Relays in DIP 6-pin packages that achieve the low ON resistance and high switching capacity of a mechanical relay
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1 Introduction General-purpose High-load-voltage Multi-contact-pair High-current and Small and Highdielectric-strength (a, b, and ab) Low-ON-resistance -pin, High-current Type in -pin packages that achieve the low ON resistance and high switching capacity of a mechanical relay Load voltage: V, V, V, or V -V Relay: Continuous load current of A (8 A) max. * -V Relay: Continuous load current of. A (7 A) max. * -V GVM-BR/ER Relay: Continuous load current of. A max. -V GVM-BR/ER Relay: Continuous load current of A ( A) max. * -V Relay: Continuous load current of A ( A) max. * * Values in parentheses are for connection C. RoHS Compliant Application Examples Note: The actual product is marked differently from the image shown here. Communication equipment Test & Measurement equipment Security equipment Industrial equipment Power circuit Current-limiting Low-output-capacitance Small and Highload-voltage Standards Certification U GVM-@BR@/@ER@ Package (Unit : mm, Average) Model Number Legend -pin Ordering Information Package. Contact form a (SPST-NO) 7. Surface-mounting Terminals Note: The actual product is marked differently from the image shown Load Voltage : V : V : V : V. Additional functions R: Low ON resistance. Contact form : a (SPST-NO). Package B : -pin with PCB E : -pin with surface-mounting. Other informations When specifications overlap, serial code is added in the recorded order. Continuous load current Stick packaging Tape packaging Load voltage (peak value) * Model Minimum Model Minimum (peak value) * Connection Connection Surface-mounting package Surface-mounting package A, B C Terminals quantity Terminals quantity V A 8 A GVM-BR GVM-ER GVM-ER(TR) V. A 7 A GVM-BR GVM-ER GVM-ER(TR). A GVM-BR GVM-ER pcs. GVM-ER(TR), pcs. V A A GVM-BR GVM-ER GVM-ER(TR) V A A GVM-BR GVM-ER GVM-ER(TR) * The AC peak and DC value are given for the load voltage and continuous load current. Note: To order tape packaging for Relays with surface-mounting, add (TR) to the end of the model number. 8
2 Absolute Maximum Ratings (Ta = C) Input Output Item Symbol GVM-BR GVM-ER GVM-BR GVM-ER GVM-BR GVM-ER GVM-BR GVM-BR GVM-ER GVM-ER Note:. The dielectric strength between the input and output was checked by applying voltage between all pins as a group on the LED side and all pins as a group on the light-receiving side. Connection Diagram Unit Measurement conditions LED forward current IF ma Repetitive peak LED forward IFP A μs pulses, pps current LED forward current reduction rate ΔIF/ C -. ma/ C Ta C LED reverse voltage VR V Connection temperature TJ C Load voltage (AC peak/dc) VOFF V. Continuous. : Connection B IO A AC peak/dc load current Connection B and C: DC Connection C ON current Connection B ΔIO/ C reduction rate Connection C ma/ C Ta C Pulse ON current lop A t= ms, Duty=/ Connection temperature TJ C Dielectric strength between I/O VI-O, Vrms AC for min (See note.) Ambient operating temperature Ta - to +8 - to +8 - to +8 C With no icing or Ambient storage temperature Tstg - to + - to + - to + C condensation Soldering temperature C s Connection B Load or AC DC Load DC Introduction General-purpose High-load-voltage Multi-contact-pair (a, b, and ab) High-current and Low-ON-resistance Small and Highdielectric-strength Current-limiting Connection C Load DC Note: Only connection A can be used for the GVM-BR/ER. Low-output-capacitance Small and Highload-voltage Standards Certification GVM-@BR@/@ER@ U 9
3 Introduction General-purpose High-load-voltage Multi-contact-pair High-current and Small and Highdielectric-strength (a, b, and ab) Low-ON-resistance Current-limiting Low-output-capacitance Electrical Characteristics (Ta = C) Input Output Item Symbol GVM-BR GVM-BR GVM-BR GVM-BRGVM-BR GVM-ER GVM-ER GVM-ER GVM-ERGVM-ER Measurement conditions Minimum.8 LED forward voltage VF Typical. V IF= ma Maximum.8 Reverse current IR Maximum μa VR= V Capacitance between CT Typical 7 pf V=, f= MHz Trigger LED forward current Release LED forward current Maximum resistance with output ON IFT Typical.. Maximum ma IO= A IFC Minimum. ma IOFF= μa Typical Maximum 7 Connection B Typical RON Connection C Typical 8 Current leakage when the relay is open Capacitance between Capacitance between I/O Insulation resistance between I/O Turn-ON time Turn-OFF time ILEAK Typical. Maximum. mω μa GVM-BR/ER/BR/ER/ BR/ER/BR/ER : IF= ma, IO= A ( and B), IO= A (Connection C), t< s GVM-BR/ER : IF= ma, t= ms, IO= A VOFF=Load voltage ratings COFF Typical pf V=, f= MHz CI-O Typical.8 pf f= MHz, VS= V RI-O Note:. Turn-ON and Turn-OFF Times IF RL VDD VOUT IF Minimum Typical 8 Typical. Maximum. Typical... Maximum. MΩ VI-O= VDC, ROH % ms GVM-BR/ER/BR/ER/ BR/ER/BR/ER : IF= ma, RL= Ω, VDD= V (See note.) GVM-BR/ER : IF= ma, RL= Ω, VDD= V (See note.) Small and Highload-voltage Standards Certification U GVM-@BR@/@ER@ VOUT t ON % Recommended Operating Conditions For usage with high reliability, Recommended Operation Conditions is a measure that takes into account the derating of Absolute Maximum Ratings and Electrical Characteristics. Each item on this list is an independent condition, so it is not simultaneously satisfy several conditions. Item 9% t OFF Symbol Spacing and Insulation GVM-BR GVM-ER GVM-BR GVM-ER GVM-BR GVM-ER GVM-BR GVM-ER GVM-BR GVM-ER Load voltage (AC peak/dc) VDD Maximum 8 8 V Minimum Operating LED forward current IF Typical ma Maximum Continuous load current (AC peak/dc) IO Maximum.. A Ambient operating temperature Ta Minimum - Maximum C Item Minimum Unit Creepage distances 7. Clearance distances 7. mm Internal isolation thickness. Unit
4 Engineering Data LED forward current vs. GVM-BR/ER/BR/ER/ BR/ER/BR/ER I F - Ta GVM-BR/ER LED forward current vs. LED forward voltage Continuous load current vs. GVM-BR/ER/BR/ER GVM-BR/ER/BR/ER GVM-BR/ER I O - Ta I O - Ta I O - Ta 9 GVM-BR/ER: Connection C 8 GVM-BR/ER: Connection C 7 GVM-ER/ER:, B GVM-BR/ER:, B Continuous load current vs. On-state voltage I O - V ON GVM-BR/ER: Ta= C, IF=mA The others: Ta= C, IF=mA, GVM-BR/ER GVM-BR/ER GVM-BR/ER GVM-BR/ER - GVM-BR/ER On-state voltage VON (V) - I F - Ta GVM-BR/ER: Connection C 7 GVM-BR/ER: Connection C GVM-ER/ER:, B GVM-BR/ER:, B On-state resistance vs. R ON - Ta On-state resistance RON (mω) GVM-BR/ER: IO=A, IF=mA The others: IO=A, IF=mA, t<s, GVM-BR/ER GVM-BR/ER GVM-BR/ER GVM-BR/ER GVM-BR/ER I F - V F GVM-BR/ER Ta= C. GVM-BR/ER/BR/ER BR/ER/BR/ER LED forward voltage VF (V) Trigger LED forward current vs. I FT - Ta Trigger LED forward current IFT (ma)... GVM-BR/ER: IO=A The others: IO=A, t<s, GVM-BR/ER GVM-BR/ER GVM-BR/ER. GVM-BR/ER GVM-BR/ER Introduction General-purpose High-load-voltage Multi-contact-pair (a, b, and ab) High-current and Low-ON-resistance Small and Highdielectric-strength Current-limiting Low-output-capacitance Small and Highload-voltage Standards Certification GVM-@BR@/@ER@ U
5 Introduction General-purpose High-load-voltage Multi-contact-pair High-current and Small and Highdielectric-strength (a, b, and ab) Low-ON-resistance Current-limiting Low-output-capacitance Small and Highload-voltage Standards Certification U GVM-@BR@/@ER@ GVM-@BR@/@ER@ Engineering Data Turn ON, Turn OFF time vs. LED forward current GVM-BR/ER/BR/ER t ON, t OFF - I F Turn ON, Turn OFF time, (ms). GVM-BR/ER VDD=V, RL=Ω, Ta= C GVM-BR/ER GVM-BR/ER. Turn ON, Turn OFF time vs. GVM-BR/ER/BR/ER t ON, t OFF - Ta Turn ON, Turn OFF time, (ms). VDD=V, RL=Ω, IF=mA GVM-BR/ER GVM-BR/ER GVM-BR/ER GVM-BR/ER/BR/ER/BR/ER t ON, t OFF - I F Turn ON, Turn OFF time, (ms). GVM-BR/ER GVM-BR/ER. GVM-BR/ER/BR/ER/BR/ER t ON, t OFF - Ta Turn ON, Turn OFF time, (ms) Appearance / Terminal Arrangement / Internal Connections Appearance (Dual Inline Package) -pin GVM-BR/ER, -BR/ER, -BR/ER, -BR/ER OMRON logo Pin mark Special -pin * GVM-BR/ER OMRON logo Pin mark 9 9. Mold pin mark (See note.) Model name (See note.) LOT.NO. Mold pin mark (See note.) Model name (See note.) LOT.NO. GVM-BR/ER VDD=V, RL=Ω, Ta= C GVM-BR/ER GVM-BR/ER VDD=V, RL=Ω, IF=mA GVM-BR/ER GVM-BR/ER GVM-BR/ER GVM-BR/ER GVM-BR/ER Ta( C) Current leakage vs. Current leakage ILEAK (na). I LEAK - Ta VOFF=Load voltage ratings GVM-BR/ER GVM-BR/ER GVM-BR/ER GVM-BR/ER GVM-BR/ER. - 8 Terminal Arrangement/Internal Connections (Top View) GVM-BR/ER, -BR/ER, -BR/ER, -BR/ER GVM-BR/ER Note:. The actual product is marked differently from the image shown here. Note:. GVM does not appear in the model number on the Relay. Note:. The indentation in the corner diagonally opposite from the pin mark is from a pin on the mold. * The external dimensions of the standard -pin are the same, but the number of is different.
6 Dimensions (Unit: mm) GVM-BR/BR/BR/BR ±..8±.. min. Note: The actual product is marked differently from the image shown here. GVM-BR 7.±..±. 7.±..±..±. Weight:. g 7.±. 7.8 to 8.8 Weight:. g GVM-ER/ER/ER/ER.±. Surface-mounting Terminals 7.±..±..±. 7.±.. max. Weight:. g min.. min. GVM-ER Surface-mounting Terminals 7.±. Weight:. g PCB Dimensions (BOTTOM VIEW) Six,.8-dia. holes. (.). (.) (.) (.) Actual Mounting Pad Dimensions (Recommended Value, Top View).. 8. to PCB Dimensions (BOTTOM VIEW) Six,.8-dia. holes. (.). Introduction General-purpose High-load-voltage Multi-contact-pair (a, b, and ab) High-current and Low-ON-resistance ±..8±.. min. Note: The actual product is marked differently from the image shown here. Approved Standards UL recognized.±..±..±. 7.±. 7.8 to ±. Approved Standards Contact form File No. UL (recognized) a (SPST-NO) E8.±..±. 7.± min.. max.. min. (.) (.) (.) Actual Mounting Pad Dimensions (Recommended Value, Top View).. 8. to Small and Highdielectric-strength Current-limiting Low-output-capacitance Small and Highload-voltage Safety Precautions Refer to the Common Precautions for All for precautions that apply to all. Standards Certification GVM-@BR@/@ER@ U
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