Convection requirements for cooling (continued), Thermal considerations, Convection requirements for cooling – GE Industrial Solutions NH050x-L Series User Manual

Page 15: Lineage power 15, Continued), 25 °c

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Data Sheet

NH033x-L and NH050x-L Series Power Modules:

March 2010

5 Vdc Input; 1.2 Vdc to 3.3 Vdc Output; 10 A and 15 A

Lineage Power

15

Thermal Considerations

(continued)

Convection Requirements for Cooling

(continued)

8-2450(C)

Figure 43. NH050M-L Typical Power Dissipation vs.

Output Current, T

A

= 25 °C

8-2447(C)

Figure 44. NH033S1R8-L Typical Power Dissipation

vs. Output Current, T

A

= 25 °C

8-2451(C)

Figure 45. NH050S1R8-L Typical Power Dissipation

vs. Output Current, T

A

= 25 °C

8-2445(C)

Figure 46. NH033G-L Typical Power Dissipation vs.

Output Current, T

A

= 25 °C

2.0

3.0

5.0

4.0

1

3

11

13

0.5

OUTPUT CURRENT, I

O

(A)

1.0

0

7

9

5

15

2

4

6

8

10

12

14

1.5

2.5

4.5

3.5

6.0

5.5

V

I

= 5.5 V

V

I

= 5.0 V

V

I

= 4.5 V

PO

WER DISSIP

A

TION,

P

D

(W)

1

2

6

7

8

9

0.5

3.0

OUTPUT CURRENT, I

O

(A)

2.0

1.5

2.5

10

0

3.5

1.0

4

5

3

V

I

= 5.5 V

V

I

= 5.0 V

V

I

= 4.5 V

PO

WER DISSIP

A

TION,

P

D

(W)

2.0

3.0

5.0

4.0

1

3

11

13

0.5

OUTPUT CURRENT, I

O

(A)

1.0

0

7

9

5

15

2

4

6

8

10

12

14

1.5

2.5

4.5

3.5

6.0

5.5

V

I

= 5.5 V

V

I

= 5.0 V

V

I

= 4.5 V

PO

WER DISSIP

A

TION,

P

D

(W)

1

2

6

7

8

9

0.5

3.0

OUTPUT CURRENT, I

O

(A)

2.0

1.5

2.5

10

0

3.5

1.0

4

5

3

V

I

= 5.5 V

V

I

= 5.0 V

V

I

= 4.5 V

PO

WER DISSIP

A

TION,

P

D

(W)

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