Characteristic curves, Austin lynx, Continued) – GE Industrial Solutions Austin Lynx II 12V SIP User Manual

Page 7

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background image

Data Sheet
October 1, 2009

Austin Lynx

TM

II 12V SIP Non-isolated Power Modules:

8.3 – 14Vdc input; 0.75Vdc to 5.5Vdc Output; 10A output current


LINEAGE

POWER

7

Characteristic Curves

(continued)

The following figures provide typical characteristics for the Austin Lynx

TM

II SIP modules at 25ºC.

0

1

2

3

4

5

6

7

8

9

10

11

12

13

14

Io = 10A

Io=5A

Io=0A

INP

U

T

C

URR

E

N

T, I

IN

(A

)

INPUT VOLTAGE, V

IN

(V)

O

U

T

P

UT

C

U

R

R

E

N

T

,

O

U

T

P

UT

V

O

LT

A

G

E

I

O

(A

) (

2A

/div)

V

O

(V

)

(20

0mV/

d

iv

)

TIME, t (10

μs/div)

Figure 7. Input voltage vs. Input Current (Vo =
2.5Vdc).

Figure 10. Transient Response to Dynamic Load
Change from 50% to 100% of full load (Vo = 3.3Vdc).

OU

TPU

T

VO

LTAGE

V

O

(V

) (20mV/

d

iv

)

TIME, t (2

μs/div)

O

U

T

P

U

T

CU

RR

E

N

T,

OU

TPU

T

VO

LT

AG

E

I

O

(

A

) (

2A/d

iv)

V

O

(V

) (2

00

mV

/d

iv

)

TIME, t (10

μs/div)

Figure 8. Typical Output Ripple and Noise
(Vin = 12.0V dc, Vo = 2.5 Vdc, Io=10A).

Figure 11. Transient Response to Dynamic Load
Change from 100% to 50% of full load (Vo = 3.3 Vdc).

OU

TPUT

VO

LTAG

E

V

O

(V

)

(20mV

/di

v)

TIME, t (2

μs/div)

O

U

TPU

T

CU

RR

E

N

T,

OU

TPU

T

VO

LT

AG

E

I

O

(

A

) (

2A

/d

iv

)

V

O

(V

) (1

00

mV

/d

iv

)

TIME, t (20

μs/div)

Figure 9. Typical Output Ripple and Noise
(Vin = 12.0V dc, Vo = 3.3 Vdc, Io=10A).

Figure 12. Transient Response to Dynamic Load
Change from 50% to 100% of full load (Vo = 3.3 Vdc,
Cext = 2x150 μF Polymer Capacitors).

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