JFC100C1 Lineage Power, JFC100C1 Datasheet - Page 8

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JFC100C1

Manufacturer Part Number
JFC100C1
Description
CONVERTER DC/DC 15V 100W OUT
Manufacturer
Lineage Power
Series
JFC100Cr
Type
Isolatedr
Datasheet

Specifications of JFC100C1

Output
15V
Number Of Outputs
1
Power (watts)
100W
Mounting Type
Through Hole
Voltage - Input
18 ~ 36V
Package / Case
Module
1st Output
15 VDC @ 6.7A
Size / Dimension
2.40" L x 2.28" W x 0.50" H (61mm x 57.9mm x 12.7mm)
Power (watts) - Rated
100W
Operating Temperature
-40°C ~ 100°C
Efficiency
85%
Approvals
CSA, UL, VDE
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
3rd Output
-
2nd Output
-
4th Output
-

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
JFC100C1
Manufacturer:
LUCENT
Quantity:
27
Part Number:
JFC100C1
Manufacturer:
LAMBDA
Quantity:
492
dc-dc Converters; 18 to 36 Vdc Input, 15 Vdc Output; 50 W to 100 W
Test Configurations
Note: Measure input reflected-ripple current with a simulated source
Note: Use a 1.0 µF ceramic capacitor and a 10 µF aluminum or tan-
Figure 9. Peak-to-Peak Output Noise
Note: All measurements are taken at the module terminals. When
Figure 10. Output Voltage and Efficiency
8 8
BATTERY
SUPPLY
V
Figure 8. Input Reflected-Ripple Test Setup
V
RESISTANCE
inductance (L
tery impedance. Measure current as shown above.
talum capacitor. Scope measurement should be made using a
BNC socket. Position the load between 51 mm and 76 mm
(2 in. and 3 in.) from the module.
socketing, place Kelvin connections at module terminals to
avoid measurement errors due to socket contact resistance.
O
O
CONTACT
(+)
(–)
η
TO OSCILLOSCOPE
=
Measurement Test Setup
Measurement Test Setup
[
------------------------------------------------------ -
I
I
V
[
V
O
TEST
C
ESR < 0.1 Ω
@ 20 ˚C, 100 kHz
I
+ ( ) – V
COPPER STRIP
+ ( ) – V
1.0 µF
S
220 µF
) of 12 µH. Capacitor C
V
V
I
I
12 µH
(+)
(
(
)
(
L
TEST
O
I
SENSE(+)
SENSE(
– ( )
– ( )
10 µF
V
V
)
)
O
ESR < 0.7 Ω
O
@ 100 kHz
]I
(
]I
(+)
I
)
)
33 µF
O
⎞ x 100
SCOPE
CURRENT
PROBE
DISTRIBUTION LOSSES
S
I
O
offsets possible bat-
CONTACT AND
RESISTIVE
LOAD
%
V
V
I
I
(+)
(–)
8-513 (C).b
8-203 (C).l
LOAD
8-749 (C)
Design Considerations
Input Source Impedance
The power module should be connected to a low
ac-impedance input source. Highly inductive source
impedances can affect the stability of the power mod-
ule. For the test configuration in Figure 8, a 33 µF elec-
trolytic capacitor (ESR < 0.7 ¾ at 100 kHz) mounted
close to the power module helps ensure stability of the
unit. For other highly inductive source impedances,
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., UL1950, CSA C22.2 No. 950, and VDE 0805
(EN60950, IEC950)
For the converter output to be considered meeting the
requirements of safety extra-low voltage (SELV), the
input must meet SELV requirements.
If the input meets extra-low voltage (ELV) require-
ments, then the converter’s output is considered ELV.
The input to these units is to be provided with a maxi-
mum 20 A normal-blow fuse in the ungrounded lead.
Feature Descriptions
Overcurrent Protection
To provide protection in a fault (output overload) condi-
tion, the unit is equipped with internal current-limiting
circuitry and optional delayed shutdown. At the point of
current-limit inception, the unit shifts from voltage con-
trol to current control. If the output voltage is pulled
very low during a severe fault, the current-limit circuit
can exhibit either foldback or tailout characteristics
(output current decrease or increase). The unit will
operate normally once the output current is brought
back into its specified range. If the module has the
optional delayed current-limit shutdown, the unit will
operate normally once the output current is brought
back into its specified range, provided the overcurrent
condition is removed before the module shuts down.
Lineage Power
April 2008

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