# MOSFET Relay, 8 VDC, 10 µA, DPST-NO

![Product image](https://novapart.co/image/farnell:1608201/)

**URL**: https://novapart.co/products/PVI1050NSPBF/mosfet-relay-8-vdc-10-a-dpst-no
**SKU**: PVI1050NSPBF
**Manufacturer**: INFINEON
**Category**: Switches & Relays || Relays || Solid State Relays & Contactors || MOSFET Solid State Relays
**Price**: €3.5100
**Stock**: 1000+
**Lead Time**: 169 days (indicative)

## Description

Contact Configuration:DPST-NO; Load Current:10µA; Relay Terminals:SMD; Load Voltage Max:8VDC; On State Resistance Max:-; Isolation Vo; Available until stocks are exhausted Alternative available

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (25-Jun-2025) |
| Load Type | - |
| Contact Form | DPST-NO (2 Form A) |
| Load Current | 10µA |
| Product Range | PVI Series |
| Relay Mounting | Surface Mount |
| Relay Terminals | Gull Wing |
| Load Voltage Max | - |
| Isolation Voltage | 2.5kV |
| Forward Current If | 50mA |
| I/O Capacitance Typ | - |
| Contact Configuration | DPST-NO |
| On State Resistance Max | - |
| Mosfet Relay Package Style | DIP-8 (4-Pin Used) |
| Off State Leakage Current Max | - |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:1608201/)

**Data Sheet No. PD10054 revG** 

## **Series PVI-NPbF** 

Photovoltaic Isolator Single and Dual Channel 5-10 Volt Output 

## **General Description** 

The PVI Series Photovoltaic Isolator generates an electrically isolated DC voltage upon receipt of a DC input signal. It is capable of directly driving gates of power MOSFETs or IGBTs. It utilizes a monolithic integrated circuit photovoltaic generator of novel construction as its output. The output is controlled by radiation from a GaAlAs light emitting diode (LED), which is optically isolated from the photovoltaic generator. 

## **Features** 

- Isolated Voltage Source 

- Monolithic Construction 

- Up to 8 µ A Output 

- Single or Dual Output 

- Solid-State Reliability 

The PVI Series is ideally suited for applications requiring high-current and/or high-voltage switching with optical isolation between the low-level driving circuitry and high-energy or high-voltage load circuits. It can be used for directly driving gates of power MOSFETs. The dual-channel device allows its outputs to drive independent discrete power MOSFETs, or be connected in parallel or in series to provide higher current drive for power MOSFETs or higher voltage drive for IGBTs. The PVI Series Photovoltaic isolators employ fast turn-off circuitry. 

These PVI Series Photovoltaic Isolators are packaged in 8-pin, molded DIP packages and available with either thru-hole or surface-mount (“gull-wing”) leads, in plastic shipping tubes. 

## **Applications** 

- Load Distribution 

- Industrial Controls 

- Current-to-Voltage Conversion 

- Custom Solid-State Relay 

## **Part Identification** 

PVI1050NPbF PVI5050NPbF thru-hole PVI5080NPbF 

PVI1050NSPbF surface-mount PVI5050NSPbF (gull-wing) PVI5080NSPbF PVI1050NS-TPbF surface-mount, tape and reel 

www.irf.com 

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## **Series PVI-NPbF** 

|**Electrical Specifications**(-40°C≤TA≤+85°C unless otherwise specified)|**Electrical Specifications**(-40°C≤TA≤+85°C unless otherwise specified)||
|---|---|---|
|**INPUT CHARACTERISTICS**|**PVI Series**|**Units**|
|Input Current Range(see figure 4)|2.0 to 50|mA(DC)|
|Maximum Forward Voltage Drop @10mA, 25°C(see figure 5)|1.4|V(DC)|
|Maximum Reverse Voltage|6.0|V(DC)|
|Maximum Reverse Current@-6.0V(DC), 25°C|100|µA(DC)|
|Maximum Pulsed Input Current @ 25°C(see figure 6)|1.0|A(peak)|
||||
|**OUTPUT CHARACTERISTICS**|**PVISeries**|**Units**|
|Maximum Forward Voltage @ 10µA|8.0 per channel|V(DC)|
|Maxiumum Reverse Current @ -10VDC|10|µA(DC)|



|**COUPLED CHARACTERISTICS**|**PVI5050N**<br>**PVI5080N**|**PVI5080N**|**PVI1050N**|**Units**|
|---|---|---|---|---|
|Minimum Open Circuit Voltage@ ILED = 10mA, 25°C, RL =>10MΩ<br> (see figures 1 to 2)|5.0||5.0/channel<br>10 series|V (DC)|
|see fi<br>Minimum Short Circuit Current@ ILED = 10mA, 25°C (see figures 1 to 2)|5.0|8.0|5.0 /channel<br>10 parallel|µA (DC)|
|Maximum Capacitance(Input/Output)|1.0||10 parallel<br>2.0|pF|
|Maximum Ton Time @ ILED=10mA, CLOAD=10pF (See Figure7)<br>RL>20MΩ<br>RL=10MΩ<br>RL=4.7MΩ|300|||µS|
||160|||µS|
||Ω<br> 90|||µS|
|Maximum Toff Time @ ILED=10mA, CLOAD=10pF (See Figure7)                                220|Maximum Toff Time @ ILED=10mA, CLOAD=10pF (See Figure7)                                220|||µS|



|**GENERAL CHARACTERISTICS**<br>**PVI5050N**|**PVI5050N/5080N    PVI1050N**|**5080N    PVI1050N**|**Units**|
|---|---|---|---|
|Min. Dielectric Strength,Input-Output                                                                   4000|ut                                                                   4000<br>2500|2500|VRMS|
|Min. Dielectric Strength, Output-to-Output                                                                     1200|Min. Dielectric Strength, Output-to-Output                                                                     1200||VDC|
|Min. Insulation Resistance, Input-to-Output<br>@TA=+25°C, 50%RH, 100VDC|1012||Ω|
|Max. Pin Soldering Temperature (10 seconds max.)                                                     +260|Max. Pin Soldering Temperature (10 seconds max.)                                                     +260||°C|
|Ambient Temperature Range:<br>Operating                                                                 -40 to +85<br>Storage                                                                   -40 to +125|Operating                                                                 -40 to +85||°C|
||Storage                                                                   -40 to +125||°C|



International Rectifier does not recommend the use of this product in aerospace, avionics, military or life support applications. Users of this International Rectifier product in such applications assume all risks of such use and indemnify International Rectifier against all damages resulting from such use. 

www.irf.com 

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**Series PVI-NPbF** 

**==> picture [431 x 550] intentionally omitted <==**

**----- Start of picture text -----**<br>
TOR Rectifier<br>8 40 8 40<br>Open Circuit Voltage Open Circuit Voltage<br>7 es 35 7 SF 35<br>6 ss RL=10MΩ 30 6 _ [—sST] RL=10MΩ 30<br>5 a 25 5 ——— 25<br>RL=4.7MΩ RL=4.7MΩ<br>4 a 20 4 ee 20<br>3 ——— RL=2.2MΩ — 15 3 = RL=2.2MΩ = 15<br>2 a RL=1MΩ 10 2 a RL=1MΩ n 10<br>Short Circuit Current Short Circuit Current<br>1 5 1 5<br>0 0 2 4 6 8 10 12 14 16 18 20 0 0 —= 0<br>0 2 4 6 8 10 12 14 16 18 20<br>Input Current (mA) Input Current (mA)<br>Figure 1. PVI5050N, PVI1050N Typical Output Characteristics Figure 2. PVI5080N Typical Output Characteristics<br>1.81.6 te<br>Short Circuit Current (Isc)<br>1.4<br>1.2 a Output Voltage (Voc)(Voc)<br>1.0<br>0.8<br>SeSEE<br>0.6<br>SS Jee -<br>0.4<br>0.2 cee °Py; EES<br>—-49 -2 Q 20 ao ag Fa 100<br>-40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 100<br>Forced Air Temperature (°C) Ambient Temperature (°C)<br>Figure 3. Typical Variation of Output Figure 4. Input Current Derating<br>20<br>CAUTION: provide current limiting<br>so that 25 mA maximum steady-<br>not exceededstate control current rating is “TTT LoD<br>16<br>12<br>8 | et EEE IE<br>4 AP | eee RT<br>Pp “4 OOS<br>0<br>0 0.5 1.0 1.5 2.0<br>LED Forward Voltage Drop (VDC) Duty Cycle<br>Figure 5. Input Characteristics Figure 6. Input Pulse Capability<br>Min. device and +85 deg. C limit<br>Max. device and -40 deg. C limit<br>TYPICAL<br>Output Voltage (VDC)<br>Output Voltage (VDC)<br>Output Short Circuit Current (µA) Output Short Circuit Current (µA)<br>Normalized Output<br>Allowable Input Current (mA)<br>Input Current (mA)<br>Allowable Input Pulse Current (mA)<br>**----- End of picture text -----**<br>


**Figure 6. Input Pulse Capability** 

www.irf.com 

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## **Series PVI-NPbF** 

**==> picture [201 x 162] intentionally omitted <==**

**----- Start of picture text -----**<br>
10000<br>eee<br>ee RL=10MΩ RL=4.7MΩ<br>1000 eae<br>RL=2.2MΩ<br>LZ— Toff<br>100<br>10<br>0 200 400 600 800 1000<br>Load Capacitance (pF)<br>Response Time (µs)<br>**----- End of picture text -----**<br>


**Figure 7. Typical Response Time** 

## **Wiring Diagram** 

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**----- Start of picture text -----**<br>
Anode<br>(+) 1 (-) 8<br>(-) 8<br>Anode<br>(+) 2<br>(-) 2 (+) 7<br>Cathode<br>DC<br>Anode<br>(-) 3 (+) 3 (-) 6<br>Cathode<br>(+) 5<br>PVI5050N (-) 4 (+) 5<br>PVI5080N Cathode PVI1050N<br>**----- End of picture text -----**<br>


## **Application Note:** 

The outputs of the PVI1050N (pins 5-6 and 7-8) may be placed in series connection to produce a 10-volt output with a 5µA minimum short circuit current. Alternatively, the two ouptut of the PVI1050 may be connected in parallel to produce a 5.0-volt ouput with a 10µA minimum short circuit current. 

The two outputs of the PVI1050N may be applied separately with a maximum 1200VDC between the outputs. Input-to-output isolation to either output is 2500V (RMS). 

www.irf.com 

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## **Series PVI-NPbF** 

## **Case Outlines** 

**==> picture [238 x 13] intentionally omitted <==**

**----- Start of picture text -----**<br>
PVI1050N 01-2030  01<br>**----- End of picture text -----**<br>


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**----- Start of picture text -----**<br>
PVI1050NS 01-2031  01<br>**----- End of picture text -----**<br>


www.irf.com 

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**Series PVI-NPbF** 

## **Case Outlines** 

## **PVI5050N/PVI5080N** 

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**----- Start of picture text -----**<br>
PVI5050NS/PVI5080NS<br>**----- End of picture text -----**<br>


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**----- Start of picture text -----**<br>
01-2013  00  (MS-001AB)<br>**----- End of picture text -----**<br>


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**----- Start of picture text -----**<br>
01-2019  00<br>**----- End of picture text -----**<br>


_Data and specifications subject to change without notice.  2/2008_ 

www.irf.com 

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## Links

- [View this product on Novapart](https://novapart.co/products/PVI1050NSPBF/mosfet-relay-8-vdc-10-a-dpst-no)
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- [Supplier page](https://es.farnell.com/infineon/pvi1050nspbf/relay-photomos-dpst-2no/dp/1608201)
---

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