# MOSFET Relay, 350 VAC, 100 mA, 50 ohm, SPST-NO

![Product image](https://novapart.co/image/farnell:9918795/)

**URL**: https://novapart.co/products/G3VM-351D/mosfet-relay-350-vac-100-ma-50-ohm-spst-no
**SKU**: G3VM-351D
**Manufacturer**: OMRON ELECTRONIC COMPONENTS
**Category**: Switches & Relays || Relays || Solid State Relays & Contactors || MOSFET Solid State Relays
**Price**: €1.3400
**Stock**: 10+

## Description

Contact Configuration:SPST-NO; Load Current:100mA; Relay Terminals:SMD; Load Voltage Max:350VAC; On State Resistance Max:50ohm; Isolation Voltage:2.5kV; Forward Current If:7.5mA; Product Range:G3VM S

## Specifications

| Parameter | Value |
|---|---|
| Load Type | AC / DC |
| Contact Form | SPST-NO (1 Form A) |
| Load Current | 100mA |
| Product Range | G3VM Series |
| Relay Mounting | Surface Mount |
| Relay Terminals | Gull Wing |
| Load Voltage Max | 350V |
| Isolation Voltage | 2.5kV |
| Forward Current If | 7.5mA |
| I/O Capacitance Typ | 0.8pF |
| Contact Configuration | SPST-NO |
| On State Resistance Max | 50ohm |
| Mosfet Relay Package Style | DIP-4 |
| Off State Leakage Current Max | 1µA |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:9918795/)

## G3VM-351A/D 

## **MOS FET Relays** 

## **General-purpose Series with 350-V Load Voltage.** 

- **Upgraded G3VM-2 Series.** 

- **Continuous load current of 120 mA.** 

- **Operating time of 0.3 ms (typical).** 

**RoHS compliant** 

## ■ **Application Examples** 

Note: The actual product is marked differently from the image shown here. 

## ■ **Terminal Arrangement/Internal Connections** 

- **Test & Measurement equipment** 

- **Security equipment** 

- **Amusement equipment** 

**==> picture [218 x 59] intentionally omitted <==**

**----- Start of picture text -----**<br>
4 3<br>Mold pin mark  *<br>OMRON logo<br>Model name<br>[ i eePq] Pin 1 mark |—O= 932 i LOT.NO.<br>Lo 1 2 | aaa<br>**----- End of picture text -----**<br>


Note: The actual product is marked differently from the image shown here. 

- The indentation in the corner diagonally opposite from the pin 1 mark is from a pin on the mold. 

## ■ **List of Models** 

|**Package type**|**Contact form**|**Terminals**|**Load voltage**<br>**(peak value) ***|**Model**|**Minimumpackage quantity**|**Minimumpackage quantity**|
|---|---|---|---|---|---|---|
||||||**Numberper tube**|**er tube**<br>**Numberper tape and reel**|
|DIP4|1a<br>(SPST-NO)|PCB Terminals|350 V|**G3VM-351A**|100|-|
|||Surface-mounting Terminals||**G3VM-351D**|||
|||||**G3VM-351D(TR)**|-|1,500|



- The AC peak and DC value are given for the load voltage. 

## ■ **Absolute Maximum Ratings** (Ta = 25°C) 

**==> picture [332 x 141] intentionally omitted <==**

**----- Start of picture text -----**<br>
es Item  Symbol Rating Unit Measurement conditions<br>es LED forward current Rs IF ee 50 mA |<br>eeee ReLED forward current reduction rate petitive peak LED forward current es Δ es IIFFP/°C −0.5 1  mA/A °C  100 Ta ≥μ 25s p°C ulses, 100 pps<br>eeee LED reverse voltaConnection temperature ge  eeee VTRJ  ee 125 5  °V C<br>ee Load voltage (AC peak/DC) Re VOFF  ee 350  V<br>esee Continuous load current ON current reduction rate (AC peak/DC) Δ es IO ee IO/°C ee −120 1.2 mA/mA °C  Ta ≥ 25°C<br>eeee Pulse ON currentConnection temperature  eees ITopJ ee 0.36125  °AC  t = 100 ms, Duty = 1/10<br>eseeeeee Dielectric strenAmbient oASolderinmbient storagpg temeratinth between I/O ge tempgerature  tempp(erature See note 1.erature ) EeRe Tst ee VTa I-O- g −−55 to +125 ee 40 to +852500260  ee Vrms °°°C CC AC for 1 min With no icin10 s With no icingg or condensation  or condensation  |<br>Input<br>Output<br>**----- End of picture text -----**<br>


Note: 1. 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. 

## ■ **Electrical Characteristics** (Ta = 25°C) 

**==> picture [331 x 137] intentionally omitted <==**

**----- Start of picture text -----**<br>
Item  Symbol  Minimum Typical  Maximum Unit  Measurement conditions<br>PO<br>es LED forward voltage  VF 1.0  1.15  1.3  V  IF = 10 mA<br>Reverse current  IR - -  10  μA  VR = 5 V<br>POee Capacity between terminals  ReRe CT eses -  30  es - pF  V = 0, f = 1 MHz<br>Trigger LED forward current  IFT -  1 3  mA  IO = 120 mA<br>SE Turn-OFF LED forward current  IFC ———— 0.1 -  -  mA  IOFF = 100 μA<br>Maximum resistance with output ON  RON - - 2535 3550 ΩΩ IIFF = 5 mA = 5 mA, I, IOO = 120 mA = 120 mA, t<1 s<br>Current leakage when the relay is open  ILEAK - -  1.0  μA  VOFF = 350 V<br>PO Capacity between terminals COFF a - 30 - pF  V = 0, f = 1 MHz<br>eses CaInsulation resistance between I/O terminals Turn-ON time p ee acity between I/O terminals   ReReRs CRtONI-OI-O 1000  es - - 100.8 0.3 [8] 1.0-- Mms pF Ω || f = 1 MHzVIF I-O= 5 mA, R = 500 VDC, VL S= 200  = 0 V, ROH Ω≤,  60%<br>a Turn-OFF time  tOFF eeeeeae -  Seee 0.1  1.0 co ms  V Aa DD = 20 V(See note 2.)<br>Input<br>Output<br>**----- End of picture text -----**<br>


Note: 2. Turn-ON and Turn-OFF Times 

**==> picture [87 x 89] intentionally omitted <==**

**----- Start of picture text -----**<br>
IF 1 4 RL<br>VDD<br>2 3 VOUT<br>IF eeee<br>VOUT 1 0% 90%<br>t ON t OFF<br>**----- End of picture text -----**<br>


**1** 

G3VM-351A/D 

**MOS FET Relays** 

## ■ **Recommended Operating Conditions** 

Use the G3VM under the following conditions so that the Relay will operate properly. 

|**Item**|**Symbol**|**Minimum**|**Typical**|**Maximum**|**Unit**|
|---|---|---|---|---|---|
|**Load voltage (AC peak/DC)**|VDD|-|-|280|V|
|**Operating LED forward current**|IF|5|7.5|25|mA|
|**Continuous load current (AC peak/DC)**|IO|-|-|100|mA|
|**Ambient operating**<br>**temperature**|Ta|−20|-|65|°C|



## ■ **Engineering Data** 

**Continuous load current vs. Ambient temperature** 

**LED forward current vs. Ambient temperature** 

**LED forward current vs. LED forward voltage** 

**==> picture [491 x 329] intentionally omitted <==**

**----- Start of picture text -----**<br>
IF - Ta  IO - Ta  IF - VF<br>100  240  100<br>Ta=25°C<br>200  30<br>80<br>160  10<br>60<br>120  3<br>40<br>80  1<br>20  40  0.3<br>0 0 0.1<br>-20 0 20  40  60  80  100  120  -20 0 20  40 60 80  100  120 0.6 0.8 1 1.2 1.4 1.6 1.8<br>Ambient temperature Ta (°C) Ambient temperature Ta (°C) LED forward voltage VF (V)<br>Continuous load current vs. On-state  On-state resistance vs. Ambient  Trigger LED forward current vs.<br>voltage temperature Ambient temperature<br>IO - VONO - VON - VONON RON - Ta ON - Ta  - Ta  IFT - Ta<br>200  Ta = 25°C°CC 50 IO = 120mAO = 120mA = 120mA 5<br>IF = 5mA F = 5mA  = 5mA  IF = 5mAF = 5mA = 5mA IO = 120mA<br>t < 1s   t < 1s<br>40 4<br>100<br>30  3<br>0<br>20 2<br>-100<br>10 1<br>-200  0 0<br>-4 -3 -2 -1 0 1 2 3 4 -20 0 20 40 60 80 100 -20 0 20 40 60 80 100<br>On-state voltage VON (V)ON (V) (V) Ambient temperature Ta (°C)°C)C) Ambient temperature Ta (°C)<br> (mA)LED forward current IF Continuous load current I (mA)O  (mA)LED forward current IF<br>)ΩΩ<br> (<br>ON  (mA)<br>On-state resistance RON FT<br>Trigger LED forward current I<br>**----- End of picture text -----**<br>


**Continuous load current vs. On-state voltage** 

**==> picture [331 x 330] intentionally omitted <==**

**----- Start of picture text -----**<br>
IO - VONO - VON - VONON RON - Ta ON - Ta  - Ta<br>200  50<br>Ta = 25°C°CC IO = 120mAO = 120mA = 120mA<br>IF = 5mA F = 5mA  = 5mA  IF = 5mAF = 5mA = 5mA<br>t < 1s<br>40<br>100<br>30<br>0<br>20<br>-100<br>10<br>-200  0<br>-4 -3 -2 -1 0 1 2 3 4 -20 0 20 40 60 80 100<br>On-state voltage VON (V)ON (V) (V) Ambient temperature Ta (°C)°C)C)<br>Turn ON, Turn OFF time vs. LED  Turn ON, Turn OFF time vs. Ambient<br>forward current temperature<br>tON, tOFF - IF tON, tOFF - Ta<br>3000 3000<br>Ta = 25°C<br>VDD = 20V<br>RL = 200Ω<br>1000 1000<br>tON<br>300 300<br>tOFF<br>100 100 t OFF<br>30 30 V DD  = 20V<br>tON R L  = 200Ω<br>IF = 5mA<br>10 10<br>1 3 10 30 100 300 -20 0 20 40 60 80 100<br>LED forward current IF (mA) Ambient temperature Ta (°C)<br>)ΩΩ<br> (<br>Continuous load current I (mA)O On-state resistance RON<br> (µs)  (µs)<br>OFF OFF<br>, t , t<br>ON ON<br>Turn ON, Turn OFF time t Turn ON, Turn OFF time t<br>**----- End of picture text -----**<br>


**Turn ON, Turn OFF time vs. LED forward current** 

**Current leakage vs. Ambient temperature** 

**==> picture [158 x 143] intentionally omitted <==**

**----- Start of picture text -----**<br>
ILEAK - Ta<br>100<br>VOFF = 350V<br>30<br>10<br>3<br>1<br>0.3<br>0.1<br>-20 0 20 40 60 80 100<br>Ambient temperature Ta (°C)<br> (nA)<br>LEAK<br>Current leakage I<br>**----- End of picture text -----**<br>


## ■ **Safety Precautions** 

**•** Refer to **"Common Precautions"** for all G3VM models. 

**2** 

**DIP4 type** 

## **A earance/Dimensions pp** 

## ■ **Appearance** 

## DIP (Dual Inline Package) 

**==> picture [157 x 53] intentionally omitted <==**

**----- Start of picture text -----**<br>
DIP4<br>Mold pin mark  *<br>a<br>OMRON logo<br>Model name<br>Pin 1 mark is 932 LOT.NO.<br>**----- End of picture text -----**<br>


Note: The actual product is marked differently from the image shown here. 

***** The indentation in the corner diagonally opposite from the pin 1 mark is from a pin on the mold. 

## ■ **Dimensions** 

**(Unit:mm)** 

**==> picture [507 x 171] intentionally omitted <==**

**----- Start of picture text -----**<br>
PCB Terminals Surface-mounting Terminals PCB Dimensions  (BOTTOM VIEW)<br>Weight: 0.25 g Weight: 0.25 g Four, 0.8-dia. holes<br>2.54<br>Da (0.61)<br>2.54<br>4.58±0.25 4.58±0.25<br>YO HHARA<br>(0.61)<br>6.4±0.25 6.4±0.25 (1.52) (1.52)<br>¢ ey che<br>7.62±0.25 a Actual Mounting Pad Dimensions<br>0.8±0.25 7.62±0.25<br>(Recommended Value, TOP VIEW)<br>3.65 +0.15-0.25 0.25 +0.1-0.05 3.65 +0.15-0.25 4.0 +0.25-0.2 2.54<br>2.5 min. 0.51.2±0.1±0.15 7.85 to 8.80 1.2±0.15 1.0 min. 1.0 min. 8.3 to 8.8<br>2.54±0.25 2.54±0.25 10.0 max.<br>Note: The actual product is marked differently from the  1.3 1.5<br>image shown here.<br>**----- End of picture text -----**<br>


- 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:  www.omron.com/ecb** 

**Cat. No. K146-E1-02** 1014(0412)(O) 



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- [Supplier page](https://es.farnell.com/omron-electronic-components/g3vm-351d/relay-mosfet-spno/dp/9918795)
---

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