Dmc6070lfdh advanced information, Dmc6070lfdh – Diodes DMC6070LFDH User Manual

Page 7

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POWERDI is a registered trademark of Diodes Incorporated.

DMC6070LFDH

Document number: DS36083 Rev. 6 - 2

7 of 10

www.diodes.com

November 2013

© Diodes Incorporated

DMC6070LFDH

ADVANCED INFORMATION



0.1

0.2

0.3

0.4

0.5

0

2

4

6

8

10

0

-I , DRAIN SOURCE CURRENT (A)

Figure 15 Typical On-Resistance vs.

Drain Current and Gate Voltage

D

R

, D

R

AI

N-

S

O

U

R

CE

O

N-

R

E

S

IS

TA

NCE (

)

DS

(O

N)

V

= -4.5V

GS

V

= -10V

GS

0.1

0.2

0.3

0.4

0.5

0.6

0.7

0.8

0.9

0

2

4

6

8

10 12

14

16 18 20

1.0

0

-V , GATE-SOURCE VOLTAGE (V)

GS

Figure 16 Typical Drain-Source On-Resistance

vs. Gate-Source Voltage

R

, D

R

AI

N-

S

O

U

R

C

E

O

N-

R

ES

IS

TAN

C

E (

)

DS

(O

N)

I = -1.0A

D

I = -0.5A

D

0.1

0.2

0.3

0.4

0.5

0

2

4

6

8

10

0

-I , DRAIN SOURCE CURRENT (A)

Figure 17 Typical On-Resistance vs.

Drain Current and Temperature

D

R

, DRAIN-

S

O

URCE

O

N-

R

ESIS

TA

NCE (

)

DS

(O

N)

T = -55 C

A

T = 25 C

A

T = 85 C

A

T = 125 C

A

T = 150 C

A

V

= -4.5V

GS

0.6

0.8

1.2

1.4

1.6

1.8

1.0

2.0

-50

-25

0

25

50

75

100 125

150

T , JUNCTION TEMPERATURE ( C)

J

Figure 18 On-Resistance Variation with Temperature

R

, D

R

AI

N

-S

O

U

R

C

E

ON-

R

E

S

IS

TA

NCE

(N

ORMA

L

IZ

E

D)

DS

(O

N)

V

= -4.5V

I = -2.0A

GS

D

V

= -10V

I = -5.0A

GS

D

0.05

0.15

0.25

-50 -25

0

25

50

75

100 125

150

T , JUNCTION TEMPERATURE ( C)

J

Figure 19 On-Resistance Variation with Temperature

0

0.10

0.20

0.30

R

,

D

R

AI

N

-S

O

U

R

C

E

O

N

-R

ES

IS

TA

N

C

E (

)

D

S

(on)

V

= -10V

I =

A

GS

D

-5.0

V

=

5V

I =

A

GS

D

-4.

-2.0

-50 -25

0

25

50

75

100

125 150

T , AMBIENT TEMPERATURE (°C)

Figure 20 Gate Threshold Variation vs. Ambient Temperature

A

0.5

1.0

1.5

2.0

2.5

3.0

V,

G

A

T

E

T

H

R

ES

H

O

LD

V

O

LT

A

G

E (

V

)

GS

(TH

)

0

-I = 1mA

D

-I = 250µA

D

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