CC109128492 Lineage Power, CC109128492 Datasheet - Page 12

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CC109128492

Manufacturer Part Number
CC109128492
Description
Module DC-DC 1-OUT 1.5V 25A 8-Pin 1/16-Brick
Manufacturer
Lineage Power
Type
Step Downr
Datasheet

Specifications of CC109128492

Package
81/16-Brick
Output Current
25 A
Output Voltage
1.5 V
Input Voltage
48 V
Number Of Outputs
1
Data Sheet
December 15, 2009
Test Configurations
Figure 37. Input Reflected Ripple Current Test
Setup.
Figure 38. Output Ripple and Noise Test Setup.
Figure 39. Output Voltage and Efficiency Test
Setup.
LINEAGE
NOTE: All voltage measurements to be taken at the module
V
V
O
O
Efficiency
(+)
( – )
TO OSCILLOSCOPE
NOTE: Measure input reflected ripple current with a simulated
terminals, as shown above. If sockets are used then
Kelvin connections are required at the module terminals
to avoid measurement errors due to socket contact
resistance.
R
R
NOTE: All voltage measurements to be taken at the module
distribution
distribution
POWER
source inductance (L
possible battery impedance. Measure current as shown
above.
terminals, as shown above. If sockets are used then
Kelvin connections are required at the module terminals
to avoid measurement errors due to socket contact
resistance.
0.1uF
R
R
COPPER STRIP
contact
contact
η =
@ 20°C 100kHz
E.S.R.<0.1Ω
C
S
GROUND PLANE
12μH
L
V
220μF
10uF
TEST
IN
V
Vin+
V
Vin-
O
IN
TEST
. I
. I
) of 12μH. Capacitor C
O
IN
Vout+
Vout-
SCOPE
V
x 100 %
O
33μF
36 – 75Vdc Input; 1.2 to 5.0Vdc Output; 10 to 25A Output current
RESISTIVE
LOAD
CURRENT PROBE
R
R
contact
contact
S
Vin+
Vin-
offsets
R
R
distribution
distribution
R
LOAD
KW010/015/020/025 Series Power Modules:
Design Considerations
Input Filtering
The power module should be connected to a low
ac-impedance source. Highly inductive source
impedance can affect the stability of the power
module. For the test configuration in Figure 37, a
33μF electrolytic capacitor (ESR<0.1Ω at 100kHz),
mounted close to the power module helps ensure the
stability of the unit. Consult the factory for further
application guidelines.
Safety Considerations
For safety-agency approval of the system in which the
power module is used, the power module must be
installed in compliance with the spacing and
separation requirements of the end-use safety agency
standard, i.e., UL 60950-1-3, CSA C22.2 No. 60950-
00, and VDE 0805:2001-12 (IEC60950-1).
If the input source is non-SELV (ELV or a hazardous
voltage greater than 60 Vdc and less than or equal to
75Vdc), for the module’s output to be considered as
meeting the requirements for safety extra-low voltage
(SELV), all of the following must be true:
Note: Do not ground either of the input pins of the
The power module has extra-low voltage (ELV)
outputs when all inputs are ELV.
All flammable materials used in the manufacturing of
these modules are rated 94V-0, or tested to the
UL60950 A.2 for reduced thickness.
For input voltages exceeding –60 Vdc but less than or
equal to –75 Vdc, these converters have been
evaluated to the applicable requirements of BASIC
INSULATION between secondary DC MAINS
DISTRIBUTION input (classified as TNV-2 in Europe)
and unearthed SELV outputs.
The input to these units is to be provided with a
maximum 5 A time-delay fuse in the ungrounded lead.
The input source is to be provided with reinforced
One V
The input pins of the module are not operator
Another SELV reliability test is conducted on the
whole system (combination of supply source and
subject module), as required by the safety
agencies, to verify that under a single fault,
hazardous voltages do not appear at the
module’s output.
insulation from any other hazardous voltages,
including the ac mains.
grounded, or both the input and output pins are
to be kept floating.
accessible.
module without grounding one of the output
pins. This may allow a non-SELV voltage to
appear between the output pins and ground.
IN
pin and one V
OUT
pin are to be
12

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