12v tlynx, 20a: non-isolated dc-dc power modules, Data sheet – GE Industrial Solutions 12V TLynx 20A User Manual
Page 3: Electrical specifications, Continued)

GE
Data Sheet
12V TLynx
TM
20A: Non-Isolated DC-DC Power Modules
4.5Vdc –14Vdc input; 0.69Vdc to 5.5Vdc output; 20A Output Current
May 2, 2013
©2013 General Electric Company. All rights reserved.
Page 3
Electrical Specifications
(continued)
Parameter
Device
Symbol
Min
Typ
Max
Unit
Output Voltage Set-point
All
V
O, set
-1.5 +1.5 %
V
O, set
Output Voltage
All
V
O, set
-2.5
⎯
+2.5 %
V
O, set
(Over all operating input voltage, resistive load, and
temperature conditions until end of life)
Adjustment Range (selected by an external resistor)
(Some output voltages may not be possible depending on
the input voltage – see Feature Descriptions Section)
All V
O
0.69 5.5 Vdc
Output Regulation (for V
O
≥ 2.5Vdc)
Line (V
IN
=V
IN, min
to V
IN, max
) All
⎯
+0.4 %
V
O, set
Load (I
O
=I
O, min
to I
O, max
) All
⎯
10 mV
Output Regulation (for V
O
< 2.5Vdc)
Line (V
IN
=V
IN, min
to V
IN, max
) All
⎯
10 mV
Load (I
O
=I
O, min
to I
O, max
) All
⎯
5 mV
Temperature (T
ref
=T
A, min
to T
A, max
) All
⎯
0.5 %
V
O, set
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
Co = 0.1μF // 10 μF ceramic
capacitors)
Peak-to-Peak (5Hz to 20MHz bandwidth)
All
⎯
30 80
mV
pk-pk
RMS
14
28
mV
rms
External Capacitance
1
Without the Tunable Loop
TM
ESR ≥ 1 mΩ All
C
O, max
0
⎯
200
μF
With the Tunable Loop
TM
ESR ≥ 0.15 mΩ All
C
O, max
0
⎯
1000
μF
ESR ≥ 10 mΩ All
C
O, max
0
⎯
10000
μF
Output Current
All
I
o
0 20 Adc
Output Current Limit Inception (Hiccup Mode )
All
I
O, lim
120 %
I
o,max
Output Short-Circuit Current
All
I
O, s/c
2.6 Adc
(V
O
≤250mV) ( Hiccup Mode )
Efficiency (V
IN
= 10Vdc)
V
O,set
= 0.69Vdc
η
72.1
%
V
IN
= 12Vdc, T
A
=25°C V
O,set
= 1.2Vdc
η
81.3
%
I
O
=I
O, max ,
V
O
= V
O,set
V
O,set
= 1.8Vdc
η
85.7
%
V
O, set
= 2.5Vdc
η
88.0
%
V
O,set
= 3.3Vdc
η
89.7
%
V
O,set
= 5.0Vdc
η
91.8
%
1
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.