Datasheet, Schottky rectifier, 10 a mbr10.. series, Vishay high power products – C&H Technology MBR10.. Series User Manual

Page 2

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Document Number: 93437

For technical questions, contact: [email protected]

www.vishay.com

Revision: 22-Aug-08

1

Schottky Rectifier, 10 A

MBR10.. Series

Vishay High Power Products

FEATURES

• 150 °C T

J

operation

• TO-220 package
• High frequency operation
• Low forward voltage drop

• High purity, high temperature epoxy encapsulation for

enhanced mechanical strength and moisture resistance

• Guard ring for enhanced ruggedness and long term

reliability

• Designed and qualified for industrial level

DESCRIPTION

This Schottky rectifier has been optimized for low reverse
leakage at high temperature. The proprietary barrier
technology allows for reliable operation up to 150 °C junction
temperature. Typical applications are in switching power
supplies, converters, freewheeling diodes, and reverse
battery protection.

PRODUCT SUMMARY

I

F(AV)

10 A

V

R

35/45 V

I

RM

15 mA at 125 °C

TO-220AC

Anode

1

3

Cathode

Base

cathode

2

MAJOR RATINGS AND CHARACTERISTICS

SYMBOL

CHARACTERISTICS VALUES

UNITS

I

F(AV)

Rectangular waveform

10

A

I

FRM

T

C

= 135 °C

20

V

RRM

35/45

V

I

FSM

t

p

= 5 µs sine

1060

A

V

F

10 Apk, T

J

= 125 °C

0.57

V

T

J

Range

- 65 to 150

°C

VOLTAGE RATINGS

PARAMETER SYMBOL

MBR1035

MBR1045

UNITS

Maximum DC reverse voltage

V

R

35

45

V

Maximum working peak reverse voltage

V

RWM

ABSOLUTE MAXIMUM RATINGS

PARAMETER SYMBOL

TEST

CONDITIONS

VALUES

UNITS

Maximum average forward current

I

F(AV)

T

C

= 135 °C, rated V

R

10

A

Peak repetitive forward current

I

FRM

Rated V

R

, square wave, 20 kHz, T

C

= 135 °C

20

Non-repetitive peak surge current

I

FSM

5 µs sine or 3 µs rect. pulse

Following any rated load condition
and with rated V

RRM

applied

1060

A

Surge applied at rated load conditions halfwave,
single phase, 60 Hz

150

Non-repetitive avalanche energy

E

AS

T

J

= 25 °C, I

AS

= 2 A, L = 4 mH

8

mJ

Repetitive avalanche current

I

AR

Current decaying linearly to zero in 1 µs
Frequency limited by T

J

maximum V

A

= 1.5 x V

R

typical

2

A

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