Data sheet, Electrical specifications – GE Industrial Solutions SW-SC001-003 Series User Manual
Page 3
GE
Data Sheet
SW/SC001/003 Series DC-DC Power Module
18-36Vdc & 36-75Vdc Input; 3.3-15Vdc Output; 1-3.5A Output Current
October 14, 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
(V
IN
=V
IN,nom
, I
O
=I
O, max
, T
A
=25°C)
Output Voltage
V
O
-3.0
+3.0
% V
O, set
(Over all operating input voltage, resistive load, and
temperature conditions until end of life)
Adjustment Range
All
V
O, adj
-10.0
+10.0
% V
O, set
Selected by external resistor
Output Regulation
Line (V
IN
=V
IN, min
to V
IN, max
) (relative to actual V
O, set
at 50% load)
All
0.05
0.3
% V
O, set
Load (I
O
=I
O, min
to I
O, max
) (relative to actual V
O, set
at Typical V
IN
)
All
0.05
0.2
% V
O, set
Temperature (T
ref
=T
A, min
to T
A, max
)
All
1.00
% V
O, set
Output Ripple and Noise on nominal output
Measured with 10uF Tantalum and 1uF ceramic
(V
IN
=V
IN, nom
I
O
=80%I
O, max
T
A
=25°C)
RMS (5Hz to 20MHz bandwidth)
5V, 3.3V
25
mV
rms
Peak-to-Peak (5Hz to 20MHz bandwidth)
5V, 3.3V
75
mV
pk-pk
RMS (5Hz to 20MHz bandwidth)
15V, 12V
35
mV
rms
Peak-to-Peak (5Hz to 20MHz bandwidth)
15V, 12V
100
mV
pk-pk
External Capacitance
3.3V, 5V
C
O, max
0
1000
μF
12V, 15V
C
O, max
0
220
μF
Output Current
15V
I
o
0
1.0
Adc
12V
I
o
0
1.25
Adc
5V
I
o
0
3.0
Adc
3.3V
I
o
0
3.5
Adc
Output Current Limit Inception
15V
I
O, lim
1.1
Adc
(Hiccup Mode)
12V
I
O, lim
1.4
Adc
5V
I
O, lim
3.2
4.2
Adc
3.3V
I
O, lim
3.7
Adc
Output Short-Circuit Current
15V
I
O, s/c
0.8
Arms
V
O
≤ 250 mV @ 25
o
C
12V
I
O, s/c
1.2
Arms
5V
I
O, s/c
0.7
Arms
3.3V
I
O, s/c
1.5
Arms
Efficiency
SW (15V)
η
88.0
%
V
IN
=V
IN, nom
, T
A
=25°C
SW (12V)
η
87.0
%
I
O
=I
O, max,
V
O
= V
O, set
SW (5.0V)
η
86.0
%
SW (3.3V)
η
83.0
85.0
%
SC (12V)
η
85.0
%
SC (5.0V)
η
85.5
%
SC (3.3V)
η
85.5
%
Switching Frequency (Variable with Line & Load)
V
IN
=V
IN, nom
and I
O
= I
O, max
All
f
sw
300
kHz
V
IN
=V
IN, nom
and I
O
= 0.5 x I
O, max
All
f
sw
440
kHz