JC050C1 Lineage Power, JC050C1 Datasheet - Page 11

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JC050C1

Manufacturer Part Number
JC050C1
Description
CONVERTER DC/DC 15V 50W OUT
Manufacturer
Lineage Power
Series
JC050r
Type
Isolated with Remote On/Offr
Datasheet

Specifications of JC050C1

Output
15V
Number Of Outputs
1
Power (watts)
50W
Mounting Type
Through Hole
Voltage - Input
18 ~ 36V
Package / Case
9-DIP Module
1st Output
15 VDC @ 3.33A
Size / Dimension
2.40" L x 2.28" W x 0.50" H (61mm x 57.9mm x 12.7mm)
Power (watts) - Rated
50W
Operating Temperature
-40°C ~ 100°C
Efficiency
88%
Approvals
CSA, UL, VDE
Product
Isolated
Output Power
50 W
Input Voltage Range
18 V to 36 V
Input Voltage (nominal)
28 V
Output Voltage (channel 1)
15 V
Output Current (channel 1)
3.33 A
Isolation Voltage
1.5 KV
Package / Case Size
DIP
Output Type
Isolated
Output Voltage
15 V
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
3rd Output
-
2nd Output
-
4th Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
JC050C1
Manufacturer:
LUCENT
Quantity:
1 000
Part Number:
JC050C1
Quantity:
55
Thermal Considerations
Introduction
Although the maximum case temperature of the power
modules is 100 °C, you can limit this temperature to a
lower value for extremely high reliability.
For additional information on these modules, refer to the
Thermal Management JC-, JFC-, JW-, and JFW-Series
50 W to 150 W Board-Mounted Power Modules Technical
Note (TN97-008EPS).
Heat Transfer Without Heat Sinks
Increasing airflow over the module enhances the heat
transfer via convection. Figure 21 shows the maximum
power that can be dissipated by the module without
exceeding the maximum case temperature versus local
ambient temperature (T
through 4 m/s (800 ft./min.).
Note that the natural convection condition was mea-
sured at 0.05 m/s to 0.1 m/s (10 ft./min. to 20 ft./min.);
however, systems in which these power modules may
be used typically generate natural convection airflow
rates of 0.3 m/s (60 ft./min.) due to other heat dissipat-
ing components in the system. The use of Figure 21 is
shown in the following example.
Example
What is the minimum airflow necessary for a JC100C
operating at nominal line, an output current of 6 A, and
a maximum ambient temperature of 40 °C?
Solution
Given: V
Determine P
Determine airflow (v) (Use Figure 21.):
Data Sheet
March 2008
I
T
P
v = 1.5 m/s (300 ft./min.)
Lineage Power
O
A
I
D
= 28 V
= 6 A
= 40 °C
= 14.0 W
D
(Use Figure 23.):
(continued)
A
) for natural convection
(continued)
JC050C, JC075C, JC100C Power Modules: dc-dc Converters;
18 Vdc to 36 Vdc Input, 15 Vdc Output; 50 W to 100 W
Figure 21. Forced Convection Power Derating with
Figure 22. JC050C Power Dissipation vs.
10
35
30
25
20
15
10
9
8
7
6
5
4
3
2
1
0
5
0
0.0
0
0.1 m/s (NAT. CONV.)
10
No Heat Sink; Either Orientation
Output Current
0.5
LOCAL AMBIENT TEMPERATURE, T
20
(20 ft./min.)
1.0
OUTPUT CURRENT, I
30
40
1.5
50
2.0
60
V
V
V
4.0 m/s (800 ft./min.)
3.5 m/s (700 ft./min.)
3.0 m/s (600 ft./min.)
2.5 m/s (500 ft./min.)
2.0 m/s (400 ft./min.)
1.5 m/s (300 ft./min.)
1.0 m/s (200 ft./min.)
0.5 m/s (100 ft./min.)
I
I
I
O
= 18 V
= 28 V
= 36 V
70
(A)
2.5
A
80
(˚C)
3.0
8-1150 (C).a
90
8-1583 (C)
100
3.5
11

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