Maximum ratings (per leg), Thermal characteristics, Per leg) – Diodes SBR10100CTB User Manual

Page 2: Electrical characteristics

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SBR10100CTB

Document number: DS31515 Rev. 4 - 2

2 of 4

www.diodes.com

July 2011

© Diodes Incorporated

SBR10100CTB

SBR is a registered trademark of Diodes Incorporated.





Maximum Ratings (Per Leg)

@T

A

= 25°C unless otherwise specified

Single phase, half wave, 60Hz, resistive or inductive load.
For capacitance load, derate current by 20%.

Characteristic Symbol

Value

Unit

Peak Repetitive Reverse Voltage
Working Peak Reverse Voltage
DC Blocking Voltage

V

RRM

V

RWM

V

RM

100 V

Average Rectified Output Current @ T

C

= 150ºC

I

O

10 A

Non-Repetitive Peak Forward Surge Current 8.3ms
Single Half Sine-Wave Superimposed on Rated Load

I

FSM

80 A



Thermal Characteristics

(Per Leg)

Characteristic Symbol

Value

Unit

Maximum Thermal Resistance (Note 4)

R

θJC

6 ºC/W

Operating and Storage Temperature Range

T

J

, T

STG

-65 to +175

ºC



Electrical Characteristics

(Per Leg)

@T

A

= 25°C unless otherwise specified

Characteristic Symbol

Min

Typ

Max

Unit

Test

Condition

Forward Voltage Drop (Per Leg)

V

F

-

0.77

-

0.84
0.71

V

I

F

= 5A, T

J

= 25ºC

I

F

= 5A, T

J

= 125ºC

Leakage Current (Note 5)

I

R

-

-

2

0.2

40

mA

V

R

= 100V, T

J

= 25ºC

V

R

= 100V, T

J

= 125ºC

Notes:

4. Device mounted on Polymide substrate, 2” x 2”, 2 oz. copper, single-sided, minimum recommended pad layout per http://www.diodes.com.
5. Short duration pulse test used to minimize self-heating effect.






0

300

600

900

V , INSTANTANEOUS FORWARD VOLTAGE (mV)

F

Fig. 1 Typical Forward Characteristics

I,

I

N

S

T

AN

T

AN

E

O

U

S F

O

R

WA

R

D

C

U

R

R

EN

T

(A

)

F

0.0001

0.001

0.01

0.1

1

10

100

0.01

0.1

1

10

100

1,000

10,000

0

20

40

60

80

100

V , INSTANTANEOUS REVERSE VOLTAGE (V)

R

Fig. 2 Typical Reverse Characteristics

I,

I

N

S

T

AN

T

AN

E

O

U

S

R

EV

E

R

SE

C

U

R

R

EN

T

(A

)

R

μ







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