Electrical characteristics n-channel, Dmc4050ssd, A product line of diodes incorporated – Diodes DMC4050SSD User Manual

Page 4

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DMC4050SSD

Document number: DS33310 Rev. 2 - 2

4 of 11

www.diodes.com

March 2011

© Diodes Incorporated

DMC4050SSD

A Product Line of

Diodes Incorporated








Electrical Characteristics N-CHANNEL

@T

A

= 25°C unless otherwise specified







































































Characteristic

Symbol

Min

Typ

Max

Unit

Test Condition

OFF CHARACTERISTICS (Note 8)
Drain-Source Breakdown Voltage

BV

DSS

40 - - V

V

GS

= 0V, I

D

= 250

μA

Zero Gate Voltage Drain Current T

J

= 25°C

I

DSS

- -

1.0

μA

V

DS

= 40V, V

GS

= 0V

Gate-Source Leakage

I

GSS

- -

±100

nA

V

GS

= ±20V, V

DS

= 0V

ON CHARACTERISTICS (Note 8)
Gate Threshold Voltage

V

GS(th)

0.8 1.3 1.8 V

V

DS

= V

GS

, I

D

= 250

μA

Static Drain-Source On-Resistance

R

DS (ON)

-

20
33

45
60

V

GS

= 10V, I

D

= 3A

V

GS

= 4.5V, I

D

= 3A

Forward Transfer Admittance

|Y

fs

|

- 12.6 -

S

V

DS

= 5V, I

D

= 3A

Diode Forward Voltage (Note 8)

V

SD

- 0.7

1.0 V

V

GS

= 0V, I

S

= 1A

DYNAMIC CHARACTERISTICS (Note 9)
Input Capacitance

C

iss

- 1790.8 -

pF

V

DS

= 20V, V

GS

= 0V,

f = 1.0MHz

Output Capacitance

C

oss

- 160.6 -

pF

Reverse Transfer Capacitance

C

rss

- 120.5 -

pF

Gate Resistance

R

g

- 1.03 -

Ω

V

DS

= 0V, V

GS

= 0V, f = 1MHz

Total Gate Charge

Q

g

- 37.56 -

nC

V

GS

= 10V, V

DS

= 20V,

I

D

= 3A

Gate-Source Charge

Q

gs

- 7.8 - nC

Gate-Drain Charge

Q

gd

- 6.6 - nC

Turn-On Delay Time

t

D(on)

-

8.08

- ns

V

GS

= 10V, V

DS

= 20V,

I

D

= 3A

Turn-On Rise Time

t

r

-

15.14

- ns

Turn-Off Delay Time

t

D(off)

-

24.29

- ns

Turn-Off Fall Time

t

f

-

5.27

- ns

Notes:

8. Short duration pulse test used to minimize self-heating effect.
9. Guaranteed by design. Not subject to production testing.





0

5

10

15

20

25

30

0

0.5

1

1.5

2

Fig. 1 Typical Output Characteristic

V

, DRAIN-SOURCE VOLTAGE (V)

DS

I,

D

R

AI

N

C

U

R

R

EN

T

(A)

D

V

= 3.5V

GS

V

= 2.5V

GS

V

= 3.0V

GS

V

= 4.0V

GS

V

= 4.5V

GS

V

= 8.0V

GS

0

5

10

15

20

25

30

0

1

2

3

4

5

Fig. 2 Typical Transfer Characteristic

V

, GATE-SOURCE VOLTAGE (V)

GS

I,

D

R

AI

N

C

U

R

R

E

N

T

(A

)

D

T = -55°C

A

T = 25°C

A

T = 85°C

A

T = 125°C

A

T = 150°C

A

V

= 5V

DS









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