Maximum ratings, Thermal characteristics, Dmp3035sfg – Diodes DMP3035SFG User Manual

Page 2

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POWERDI is a registered trademark of Diodes Incorporated

DMP3035SFG

Document number: DS35440 Rev. 3 - 2

2 of 7

www.diodes.com

May 2012

© Diodes Incorporated

DMP3035SFG

ADVAN

CE I

N

F

O

RM

ATI

O

N






Maximum Ratings

@T

A

= 25°C unless otherwise specified

Characteristic Symbol

Value

Units

Drain-Source Voltage

V

DSS

-30 V

Gate-Source Voltage

V

GSS

±25 V

Continuous Drain Current (Note 6) V

GS

= -10V

Steady

State

T

A

= 25°C

T

A

= 70°C

I

D

-8.5
-6.7

A

t<10s

T

A

= 25°C

T

A

= 70°C

I

D

-12.5
-10.0

A

Continuous Drain Current (Note 6) V

GS

= -5V

Steady

State

T

A

= 25°C

T

A

= 70°C

I

D

-7.0
-5.5

A

t<10s

T

A

= 25°C

T

A

= 70°C

I

D

-10.0

-8.0

A

Pulsed Drain Current (10

μs pulse, duty cycle = 1%)

I

DM

-70 A

Maximum Continuous Body Diode Forward Current (Note 6)

I

S

-3.6 A





Thermal Characteristics

@T

A

= 25°C unless otherwise specified

Characteristic Symbol

Value

Units

Total Power Dissipation (Note 5)

P

D

0.95 W

Thermal Resistance, Junction to Ambient (Note 5)

Steady state

R

θJA

135 °C/W

t<10s 65

°C/W

Total Power Dissipation (Note 6)

P

D

2.3 W

Thermal Resistance, Junction to Ambient (Note 6)

Steady state

R

θJA

55 °C/W

t<10s 26

°C/W

Thermal Resistance, Junction to Case (Note 6)

R

θJC

6.14 °C/W

Operating and Storage Temperature Range

T

J,

T

STG

-55 to +150

°C






0.1

1

10

100

-V

, DRAIN-SOURCE VOLTAGE (V)

Fig. 1 SOA, Safe Operation Area

DS

0.01

0.1

1

10

100

-I

, D

R

AI

N

C

U

R

R

E

N

T

(A

)

D

R

Limited

DS(on)

DC

P = 10s

W

P = 1s

W

P = 100ms

W

P = 10ms

W

P = 1ms

W

P = 100µs

W

P = 10 s

W

µ

T

= 150°C

T = 25°C

Single Pulse

J(max)

A

t1, PULSE DURATION TIME (sec)

Fig. 2 Single Pulse Maximum Power Dissipation

0.001 0.01

0.1

1

10

100

1,000

0.0001

0

10

20

30

40

50

60

70

80

90

100

P

,

P

EAK

T

R

A

N

SI

E

N

T

P

O

IW

E

R

(W

)

(PK)

Single Pulse
R

= 61 C/W

R

= r

* R

T - T = P * R

θ
θ

θ

θ

JA

JA(t)

(t)

JA

J

A

JA(t)

°





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