16v picotlynx, 4a: non-isolated dc-dc power modules, Data sheet – GE Industrial Solutions 16V PicoTLynx 4A User Manual
Page 6: Characteristic curves

GE
Data Sheet
16V PicoTLynx
TM
4A: Non-Isolated DC-DC Power Modules
8Vdc –16Vdc input; 0.6Vdc to 8.0Vdc output; 4A Output Current
September 10, 2013
©2013 General Electric Company. All rights reserved.
Page 6
Characteristic Curves
The following figures provide typical characteristics for the 16V PicoTLynx
TM
4A at 0.6Vo and at 25
o
C.
EFFI
CIE
N
CY
, η
(%)
50
55
60
65
70
75
80
85
0
1
2
3
4
Vin=8V
O
U
TP
UT
C
U
RR
ENT,
Io
(A
)
0.5
1.5
2.5
3.5
4.5
20
30
40
50
60
70
80
90
NC
OUTPUT CURRENT, I
O
(A)
AMBIENT TEMPERATURE, T
A
O
C
Figure 1. Converter Efficiency versus Output Current.
Figure 2. Derating Output Current versus Ambient
Temperature and Airflow.
OUT
PUT
VOLT
AGE
V
O
(V) (1
0mV/
di
v)
OUTPUT CURRE
N
T,
OUTPUT VOLTAGE
I
O
(A) (2A
div
) V
O
(V) (5
00mV/
di
v)
TIME, t (1
μs/div) TIME,
t
(20
μs /div)
Figure 3. Typical output ripple and noise (V
IN
= 8V, I
o
= I
o,max
).
Figure 4. Transient Response to Dynamic Load
Change from 0% to 50% to 0% .
OUTPUT VOLTAGE
ON
/OFF VOL
TAGE
V
O
(V) (2
00mV/
div
)
V
ON/
O
FF
(V) (
5V/d
iv)
OUTPUT VOLTAGE
INPUT VOL
TAGE
V
O
(V) (2
00MV/d
iv) V
in
(V) (10v/
di
v)
TIME, t (2 ms/div)
TIME, t (2 ms/div)
Figure 5. Typical Start-up Using On/Off Voltage (I
o
= I
o,max
, V
IN
=
8V)
Figure 6. Typical Start-up Using Input Voltage (V
IN
=
8V, I
o
= I
o,max
).