Electrical specifications, General specifications, Gigatlynx – GE Industrial Solutions GigaTLynx User Manual

Page 3: Continued)

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Data Sheet
September 7, 2011

GigaTLynx

TM

SMT Non-isolated Power Modules:

4.5 – 14Vdc input; 0.7Vdc to 2.0Vdc, 50A Output

LINEAGE

POWER

3

Electrical Specifications

(continued)

Parameter

Device

Symbol

Min

Typ

Max

Unit

Output Voltage Set-point
(V

IN

=V

IN,nom

, I

O

=I

O, nom

, T

ref

=25°C)

All

V

O, set

-1.0

+1.0 %

V

O, set

Output Voltage

All

V

O, set

-2.0

+2.0 %

V

O, set

(Over all operating input voltage, resistive load,
and temperature conditions until end of life)

Adjustment Range

All

V

O

0.7 2.0 Vdc

Selected by an external resistor

Output Regulation

Line (V

IN

=V

IN, min

to V

IN, max

) All

5 mV

Load (I

O

=I

O, min

to I

O, max

) All

8

mV

Temperature (T

ref

=T

A, min

to T

A, max

) All

8

mV

Remote Sense Range

All

0.5

Vdc

Output Ripple and Noise on nominal output

(V

IN

=V

IN, nom

and I

O

=I

O, min

to I

O, max

Cout = 1μF ceramic//2x10μF ceramic
capacitors)

Peak-to-Peak (5Hz to 20MHz bandwidth)

All

50

mV

pk-pk

External Capacitance

1

Without the Tunable Loop

TM

ESR ≥ 1 mΩ All

C

O, max

1200

μF

ESR ≥ 10 mΩ All

C

O, max

10000

μF

With the Tunable Loop

ESR ≥ 1 mΩ All

C

O, max

20000

μF

ESR ≥ 10 mΩ All

C

O, max

20000

μF

Output Current

All

I

o

0 50A

Adc

Output Current Limit Inception (Hiccup Mode )

All

I

O, lim

180

% I

o

Output Short-Circuit Current

All

I

O, s/c

5.5

Adc

(V

O

≤250mV) ( Hiccup Mode )

Efficiency V

O, set

= 0.7Vdc

η

81.1

%

V

IN

= 12V, T

A

=25°C V

O,set

= 1.2Vdc

η

87.0

%

I

O

=I

O, max ,

V

O

= V

O,set

V

O,set

= 1.8Vdc

η

90.1

%

Switching Frequency

All

f

sw

260

kHz

General Specifications

Parameter

Min

Typ

Max

Unit

Telcordia Issue 2,

Method I, Case 3, Calculated MTBF (I

O

=I

O, max

,

T

A

=40°C)

4,755,661

Hours

Weight

14.22 (0.5)

g (oz.)




__________________________________
External capacitors may require using the new Tunable Loop

TM

feature to ensure that the module is stable as well as

getting the best transient response. See the Tunable Loop

TM

section for details.

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