beautypg.com

Dmn62d0lfd – Diodes DMN62D0LFD User Manual

Page 3

background image

DMN62D0LFD

Document number: DS36359 Rev. 2 - 2

3 of 6

www.diodes.com

May 2014

© Diodes Incorporated

DMN62D0LFD

ADVAN

CE I

N

F

O

RM

ATI

O

N

NEW PROD

UC

T

NEW PROD

UC

T


0

0.5

1.0

1.5

2.0

2.5

3.0

V , DRAIN-SOURCE VOLTAGE (V)

Figure 1 Typical Output Characteristics

DS

I,

D

R

AI

N

C

U

R

R

EN

T

(A

)

D

0.0

0.1

0.2

0.3

0.4

0.5

V

= 1.2V

GS

V

= 1.5V

GS

V

= 2.0V

GS

V

= 2.5V

GS

V

= 3.5V

GS

V

= 4.0V

GS

V

= 4.5V

GS

V

= 10V

GS

V

= 3.0V

GS

V , GATE-SOURCE VOLTAGE (V)

GS

Figure 2 Typical Transfer Characteristics

I,

D

R

AI

N

C

U

R

R

EN

T

(A

)

D

0.1

0.2

0.3

0.4

0.5

1.5

2.0

2.5

0

0.5

1.0

0

V

= 5.0V

DS

T = 150°C

A

T = 125°C

A

T = 85°C

A

T = 25°C

A

T = -55°C

A

I , DRAIN-SOURCE CURRENT (A)

D

Figure 3 Typical On-Resistance vs.

Drain Current and Gate Voltage

R

, D

R

AI

N-

S

O

U

R

CE

O

N-

R

ES

IS

TA

NCE (

)

DS

(O

N

)

Ω

0.5

0.7

0.9

1.1

1.3

1.5

1.7

1.9

2.1

2.3

2.5

0

0.1

0.2

0.3

0.4

0.5

V

= 2.5V

GS

V

= 4.5V

GS

V

= 10V

GS

3.0

I , DRAIN CURRENT (A)

D

Figure 4 Typical On-Resistance vs.

Drain Current and Temperature

R

, D

R

AI

N-

S

O

U

R

CE

O

N-

R

E

S

IST

A

NCE

(

)

DS

(O

N

)

Ω

0

0.1

0.2

0.3

0.4

0.5

2.5

2.0

1.5

1.0

0.5

0

T = -55°C

A

T = 25°C

A

T = 85°C

A

T = 125°C

A

T = 150°C

A

V

= 4.5V

GS

-50

-25

0

25

50

75

100

125

150

T , JUNCTION TEMPERATURE ( C)

Figure 5 On-Resistance Variation with Temperature

J

°

R

, D

R

AI

N-

S

O

U

R

C

E

ON

-R

E

S

IS

TA

N

C

E

(N

OR

MA

LIZ

E

D

)

DS

(O

N)

2.4

2.0

1.6

1.2

0.8

0.4

V

= .5V

I = 100mA

GS

D

2

V

= V

I = 200mA

GS

D

4

0

-50 -25

0

25

50

75

100

125

150

T , JUNCTION TEMPERATURE ( C)

Figure 6 On-Resistance Variation with Temperature

J

°

R

, D

R

AI

N

-S

O

U

R

C

E

O

N

-R

ES

IS

TA

N

C

E (

)

DS

(O

N)

Ω

V

= .5V

I = 100mA

GS

D

2

V

= V

I = 200mA

GS

D

4

0.5

1.0

1.5

2.0

2.5

3.0