Maximum ratings, Thermal characteristics, Electrical characteristics – Diodes SM12 User Manual

Page 2

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background image

SM12

Document number: DS35948 Rev. 6 - 2

2 of 5

www.diodes.com

November 2012

© Diodes Incorporated

SM12

ADVAN

CE I

N

F

O

RM

ATI

O

N





Maximum Ratings

(@T

A

= 25°C unless otherwise specified.)

Characteristic Symbol

Value

Unit

Conditions

Peak Pulse Power Dissipation

P

PP

300

W

8/20

μs, Per Fig. 3

Peak Pulse Current

I

PP

12 A

8/20

μs, Per Fig. 3

ESD Protection – Contact Discharge

V

ESD_Contact

±8 kV

Standard IEC 61000-4-2(ESD)

ESD Protection – Air Discharge

V

ESD_Air

±15 kV

Standard IEC 61000-4-2(ESD)

Electrical Fast Transient Current

I

EFT

40 A

Standard IEC 61000-4-4(EFT)




Thermal Characteristics

Characteristic Symbol

Value

Unit

Package Power Dissipation (Note 5)

P

D

250 mW

Thermal Resistance, Junction to Ambient (Note 5)

R

θJA

500

°C/W

Operating and Storage Temperature Range

T

J

, T

STG

-65 to +150

°C




Electrical Characteristics

(@T

A

= 25°C unless otherwise specified.)

Characteristic Symbol

Min

Typ

Max

Unit

Test

Conditions

Reverse Working Voltage

V

RWM

-

-

12.0

V

-

Reverse Current (Note 6)

I

R

- - 1.0

μA

V

R

= V

RWM

= 12.0V

Reverse Breakdown Voltage

V

BR

13.3

-

15.75

V I

R

= 1mA

Reverse Clamping Voltage

V

CL

- - 19 V

I

PP

= 1A, t

p

= 8/20

μs

Capacitance

C

T

- 95 -

pF

V

R

= 0V, f = 1MHz, Pin 1 to 3

Notes:

5. Device mounted on FR-4 PCB pad layout (2oz copper) as shown on Diodes, Inc. suggested pad layout AP02001, which can be found on our website at
http://www.diodes.com.

6. Short duration pulse test used to minimize self-heating effect.




0

125

175

150

50

100

0

T , AMBIENT TEMPERATURE ( C)

Figure 1 Power Derating Curve

A

°

P

,

P

O

WE

R

DIS

S

IP

A

T

IO

N (

m

W

)

D

25

100

50

75

150

25

75

125

300

175

Note 5

250

200

0

50

25

50

75

100

125

150

P

EAK

P

U

LS

E

D

E

R

A

T

IN

G

%

O

F

P

EAK

PO

W

E

R O

R

CUR

RENT

T , AMBIENT TEMPERATURE (°C)

Figure 2 Power Dissipation vs. Ambient Temperature

A

0

100

25

75

175 200





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