JW030B-M Lineage Power, JW030B-M Datasheet - Page 16

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JW030B-M

Manufacturer Part Number
JW030B-M
Description
CONVERTER DC/DC 12V 30W OUT
Manufacturer
Lineage Power
Series
JW030r
Type
Isolated with Remote On/Offr
Datasheet

Specifications of JW030B-M

Output
12V
Number Of Outputs
1
Power (watts)
30W
Mounting Type
Through Hole
Voltage - Input
36 ~ 75V
Package / Case
9-DIP Module
1st Output
12 VDC @ 2.5A
Size / Dimension
2.40" L x 2.28" W x 0.50" H (61mm x 57.9mm x 12.7mm)
Power (watts) - Rated
30W
Operating Temperature
-40°C ~ 100°C
Efficiency
83%
Approvals
CE, CSA, UL, VDE
Output Power
30W
Output Current
3A
Input Voltage
48V
Output Voltage
12V
Screening Level
Industrial
Product Length (mm)
61mm
Product Height (mm)
12.7mm
Product Depth (mm)
57.9mm
Mounting Style
Through Hole
Pin Count
9
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
3rd Output
-
2nd Output
-
4th Output
-
Lead Free Status / Rohs Status
Not Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
JW030B-M
Manufacturer:
LUCENT
Quantity:
492
Lineage Power36 Vdc to 75 Vdc Inputs; 30 W
Thermal Considerations
Forced Convection Cooling
Figure 32. JW030B-M Power Dissipation vs. Output
Figure 33. JW030C-M Power Dissipation vs. Output
16
8
7
6
5
4
3
2
1
0
8
7
6
5
4
3
2
1
0
0.0
0.0
Current
Current
0.5
V
V
V
0.5
I
I
I
= 72 V
= 54 V
= 36 V
OUTPUT CURRENT, I
OUTPUT CURRENT, I
1.0
1.0
(continued)
1.5
(continued)
O
O
(A)
V
V
V
(A)
I
I
I
= 72 V
= 54 V
= 36 V
1.5
2.0
8-1048(C)
8-1049(C)
2.0
2.5
Figure 34. Forced Convection Power Derating with
Heat Sink Selection
Several heat sinks are available for these modules.
The case includes through-threaded mounting holes
allowing attachment of heat sinks or cold plates from
either side of the module. The mounting torque must
not exceed 0.56 N-m (5 in./lb.).
Figure 35 shows the case-to-ambient thermal resis-
tance, θ (°C/W), for these modules. These curves can
be used to predict which heat sink will be needed for a
particular environment. For example, if the JW030A-M
dissipates 7 W of heat in an 80 °C environment with an
airflow of 0.7 ms
sink required can be determined as follows:
where:
θ ð (100 – 80)/7
θ ð 2.9 °C/W
From Figure 35, the 1/2 in. high heat sink or greater is
required.
9
8
7
6
5
4
3
2
1
0
T
30
C, max
P
T
No Heat Sink; Either Orientation
θ = module’s total thermal resistance
D
A
2.0 ms
1.0 ms
0.5 ms
40
LOCAL AMBIENT TEMPERATURE, T
= case temperature (See Figure 27.)
= inlet ambient temperature
= power dissipation
CONVECTION
–1
θ
-1
-1
-1
(See Figure 27.)
(400 ft./min.)
(200 ft./min.)
(100 ft./min.)
(130 ft./min.), the minimum heat
50
NATURAL
(
T
C
,
max
60
T
A
70
) P
March 26, 2008
D
80
Lineage Power
A
(˚C)
90
8-1051(C)
100

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