# Schottky Rectifier, High Voltage/Power, 100 V, 40 A, Dual Independent, ISOTOP, 4 Pins, 650 mV

![Product image](https://novapart.co/image/farnell:2550750/)

**URL**: https://novapart.co/products/STPS80H100TV/schottky-rectifier-high-voltage-power-100-v-40-a
**SKU**: STPS80H100TV
**Manufacturer**: STMICROELECTRONICS
**Category**: Semiconductors - Discretes || Diodes & Rectifiers || Schottky Diodes || Schottky Rectifier Diodes
**Price**: €10.0800
**Stock**: 200+
**Lead Time**: 127 days (indicative)

## Description

Repetitive Reverse Voltage Vrrm Max:100V; Forward Current If(AV):40A; Diode Configuration:Dual Independent; Diode Case Style:ISOTOP; No. of Pins:4Pins; Forward Voltage VF Max:650m

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (25-Jun-2025) |
| No. Of Pins | 4Pins |
| Product Range | - |
| Qualification | - |
| Diode Mounting | Panel |
| Diode Case Style | ISOTOP |
| Diode Configuration | Dual Independent |
| Forward Voltage Max | 650mV |
| Forward Surge Current | 700A |
| Average Forward Current | 40A |
| Operating Temperature Max | 150°C |
| Repetitive Peak Reverse Voltage | 100V |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:2550750/)

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## **STPS80H100TV** 

## HIGH VOLTAGE POWER SCHOTTKY RECTIFIER 

## **MAIN PRODUCT CHARACTERISTICS** 

|**IF(AV)**|**2 x 40 A**|
|---|---|
|**VRRM**|**100 V**|
|**Tj (max)**|**150 °C**|
|**VF (max)**|**0.65 V**|



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K2 A2<br>K1 A1<br>**----- End of picture text -----**<br>


## **FEATURES AND BENEFITS** 

- NEGLIGIBLE SWITCHING LOSSES HIGH JUNCTION TEMPERATURE CAPABILITY LOW LEAKAGE CURRENT 

- GOOD TRADE OFF BETWEEN LEAKAGE CURRENT AND FORWARD VOLTAGE DROP 

- AVALANCHE RATED LOW INDUCTANCE PACKAGE INSULATED PACKAGE : Insulated voltage = 2500 V(RMS) Capacitance = 45 pF 

**ISOTOP**[TM] 

## **DESCRIPTION** 

High voltage dual Schottky barrier rectifier designed for high frequency telecom and computer Switched Mode Power Supplies and other power converters. 

Packaged in ISOTOP, this device is intended for use in medium voltage operation, and particularly, in high frequency circuitries where low switching losses and low noise are required. 

## **ABSOLUTE RATINGS** (limiting values, per diode) 

|**ABSOLU**|**TE RATINGS**(limiting values, per diode)|**TE RATINGS**(limiting values, per diode)|**TE RATINGS**(limiting values, per diode)|||
|---|---|---|---|---|---|
|**Symbol**|**Parameter**|||**Value**|**Unit**|
|VRRM|Repetitivepeak reverse voltage|||100|V|
|IF(RMS)|RMS forward current|||125|A|
|IF(AV)|Average forward current|Tc = 120°C<br>δ= 0.5|Per dio<br>Per dev|de<br>ice<br>40<br>80|A|
|IFSM|Surge non repetitive forward current|tp= 10 ms sinusoidal||700|A|
|IRRM|Repetitivepeak reverse current|tp= 2µs  square F = 1kHz||2|A|
|IRSM|Non repetitivepeak reverse current|tp= 100µs  square||5|A|
|Tstg|Storage temperature range|||- 55  to + 150|°C|
|Tj|Maximum operating junction temperature *|||150|°C|
|dV/dt|Critical rate of rise of reverse voltage|||10000|V/µs|



1 *  :[d] dTj[P][tot] < Rth(j−a)  thermal  runaway condition for a diode on its own heatsink 

July 1999 - Ed: 3A 

1/4 

**STPS80H100TV** 

## **THERMAL RESISTANCES** 

|**Symbol**|**Parameter**||**Value**|**Unit**|
|---|---|---|---|---|
|Rth (j-c)<br>Junction|to case|Per leg<br>Total|1|°C/W|
||||0.55||
|Rth(c)||Coupling|0.1||



When the diodes 1 and 2 are used simultaneously : ∆ Tj(diode 1) =  P(diode1) x Rth(j-c)(Per diode) +  P(diode 2) x Rth(c) 

## **STATIC ELECTRICAL CHARACTERISTICS** (per diode) 

|**STATIC ELECTRIC**|**AL CHARACTERISTICS**(per diode)|**AL CHARACTERISTICS**(per diode)|||||
|---|---|---|---|---|---|---|
|**Symbol**<br>**P**|**arameter**<br>**Tests Conditions**||**Min.**|**Typ.**|**Max.**|**Unit**|
|IR*<br>Reverse|leakage current<br>Tj= 25°C<br>Tj= 125°C|VR= VRRM|||20|µA|
|||||7|25|mA|
|VF**<br>Forward|voltage drop<br>Tj= 25°C<br>Tj= 125°C<br>Tj= 25°C<br>Tj= 125°C|IF=  40 A|||0.78|V|
|||IF=  40 A||0.61|0.65||
|||IF=  80 A|||0.89||
|||IF=  80 A||0.7|0.74||



Pulse test : * tp = 5 ms, δ < 2% ** tp = 380 µs, δ < 2% 

To evaluate the maximum conduction losses use the following equation : P = 0.56 x IF(AV) + 0.0022 x IF2(RMS) 

**Fig. 1:** Average forward power dissipation versus average forward current (per diode). 

**Fig. 2:** Average forward current versus ambient temperature (δ=0.5, per diode). 

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PF(av)(W)<br>35<br>δ = 0.1 δ = 0.2<br>30 δ = 0.05 δ = 0.5<br>25<br>δ = 1<br>20<br>15<br>10 T<br>5<br>IF(av) (A) δ [=tp/T] tp<br>0<br>0 5 10 15 20 25 30 35 40 45 50<br>**----- End of picture text -----**<br>


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IF(av)(A)<br>50<br>45<br>Rth(j-a)=Rth(j-c)<br>40<br>35<br>30<br>25 Rth(j-a)=5°C/W<br>20<br>15 T<br>10<br>5 δ [=tp/T] tp Tamb(°C)<br>0<br>0 25 50 75 100 125 150<br>**----- End of picture text -----**<br>


2/4 

**STPS80H100TV** 

**Fig. 3:** Non repetitive surge peak forward current versus overload duration (maximum values, per diode). 

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IM(A)<br>500<br>400<br>300<br>Tc=50°C<br>200<br>Tc=75°C<br>100 IM Tc=110°C<br>δ=0.5 t t(s)<br>0<br>1E-3 1E-2 1E-1 1E+0<br>**----- End of picture text -----**<br>


**Fig. 5:** Reverse leakage current versus reverse voltage applied  (typical values, per diode). 

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**----- Start of picture text -----**<br>
IR(µA)<br>1E+4<br>Tj=125°C<br>1E+3<br>1E+2<br>1E+1<br>1E+0 Tj=25°C<br>VR(V)<br>1E-1<br>0 10 20 30 40 50 60 70 80 90 100<br>**----- End of picture text -----**<br>


**Fig. 4:** Relative variation of thermal impedance junction to case versus pulse duration (per diode). 

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Zth(j-c)/Rth(j-c)<br>1.0<br>0.8<br>0.6 δ = 0.5<br>0.4 δ = 0.2<br>T<br>δ = 0.1<br>0.2<br>Single pulse tp(s) δ [=tp/T] tp<br>0.0<br>1E-3 1E-2 1E-1 1E+0 5E+0<br>**----- End of picture text -----**<br>


**Fig. 6:** Junction capacitance versus reverse voltage applied (typical values, per diode). 

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C(nF)<br>5.0<br>F=1MHz<br>Tj=25°C<br>1.0<br>VR(V)<br>0.1<br>1 2 5 10 20 50 100<br>**----- End of picture text -----**<br>


**Fig. 7:** Forward voltage drop versus forward current (maximum values, per diode). 

**==> picture [221 x 132] intentionally omitted <==**

**----- Start of picture text -----**<br>
IFM(A)<br>500<br>100 Tj=125°C<br>Tj=25°C<br>10<br>VFM(V)<br>1<br>0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0<br>**----- End of picture text -----**<br>


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**STPS80H100TV** 

## **PACKAGE MECHANICAL DATA** ISOTOP[TM] 

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|**REF.**|**DIMENSIONS**|**DIMENSIONS**|**DIMENSIONS**|**DIMENSIONS**|
|---|---|---|---|---|
||**Millimeters**||**Inches**||
||**Min.**|**Max.**|**Min.**|**Max.**|
|A|11.80|12.20|0.465|0.480|
|A1|8.90|9.10|0.350|0.358|
|B<br>|7.8|8.20|0.307|0.323|
|C|0.75|0.85|0.030|0.033|
|C2|1.95|2.05|0.077|0.081|
|D|3780|3820|1488|1504|
|D1|.<br>3150|.<br>3170|.<br>1240|.<br>1248|
|E|.<br>25.15|.<br>25.50|.<br>0.990|.<br>1.004|
|E1<br>E2|23.85<br>24.15<br>24.80 typ.||0.939<br>0.951<br>0.976 typ.||
|G|<br>14.90|<br>15.10|<br>0.587|<br>0.594|
|G1|12.60|12.80|0.496|0.504|
|G2|3.50|4.30|0.138|0.169|
|F|4.10|4.30|0.161|0.169|
|F1|4.60|5.00|0.181|0.197|
|P|4.00|4.30|0.157|0.69|
|P1|4.00|4.40|0.157|0.173|
|S|30.10|30.30|1.185|1.193|



## Cooling method: C 

Recommended torque value: 1.3 N.m. Maximum torque value: 1.5 N.m. 

|**Ordering type**|**Marking**|**Package**|**Weight**|**Base qty**|**Delivery mode**|
|---|---|---|---|---|---|
|STPS80H100TV|STPS80H100TV|ISOTOP|27g<br>without screws|10|Tube|



Epoxy meets UL94,V0 

Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics. 

The ST logo is a registered trademark of STMicroelectronics 

© 1999 STMicroelectronics - Printed in Italy - All rights reserved. 

## STMicroelectronics GROUP OF COMPANIES 

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**http://www.st.com** 

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