VHB200W-Q48-S12 CUI Inc, VHB200W-Q48-S12 Datasheet - Page 4

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VHB200W-Q48-S12

Manufacturer Part Number
VHB200W-Q48-S12
Description
CONVERTER DC/DC 12V 16.7A 200W
Manufacturer
CUI Inc
Series
V-Infinity VHB200Wr
Type
Isolatedr
Datasheet

Specifications of VHB200W-Q48-S12

Output
12V
Number Of Outputs
1
Power (watts)
200W
Mounting Type
Through Hole
Voltage - Input
18 ~ 75V
Package / Case
9-DIP Module
1st Output
12 VDC @ 16.7A
Size / Dimension
2.40" L x 2.28" W x 0.52" H (61mm x 57.9mm x 13.2mm)
Power (watts) - Rated
200W
Operating Temperature
-40°C ~ 100°C
Efficiency
88%
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
3rd Output
-
2nd Output
-
4th Output
-
Other names
102-1992
Q3896225
VHB200W-Q48-S12

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
VHB200W-Q48-S12
Manufacturer:
CUI
Quantity:
67
PART NUMBER: VHB200W
APPLICATION NOTES
1. OUTPUT DE-RATING
The operating case temperature range for VHB200W is -40 ~ +100°C. When operating the VHB200W series, proper derating or
cooling is needed. The maximum case temperature under any operating condition should not exceed 100°C.
Example:
Solution:
Determine Power dissipation (Pd):
Determine airflow:
Check above Power de-rating curve:
Verifying:
Where:
What is the minimum airflow necessary for a VHB200W-Q48-S12
operating at nominal line, an output current of 16.7 A, and a
maximum ambient temperature of 40°C?
Given: Vin=48 V dc, Vo=12 V dc, Io=16.7 A
Pd=Pi-Po=Po(1-η)/η
Pd=12×16.7×(1-0.88)/0.88=27.32 W
Given: Pd=27.32 W and Ta=40°C
minimum airflow= 800 ft./min.
The maximum temp. rise ΔT = Pd × Rca=27.32×2.19=59.83°C. The maximum case temperature Tc=Ta+ΔT=99.83°C<100°C
The Rca is thermal resistance from case to ambience.The Ta is ambient temperature and the Tc is case temperature.
20050 SW 112
Power Dissipated vs Ambient Temperature and Air Flo w
FIGURE 1. OUTPUT DERATING (FORCED CONVECTION WITH NO HEAT SINK)
th
Ambient Temperature ,Ta(Deg. C)
Ave. Tualatin, Oregon 97062
phone
phone 503.612.2300 fax
DESCRIPTION: half-brick dc-dc converter
fax 503.612.2382
Chart of Thermal Resistance vs Air Flow
AIR FLOW RATE
Natural Convection
20ft./min. (0.1m/s)
100 ft./min. (0.5m/s)
200 ft./min. (1.0m/s)
300 ft./min. (1.5m/s)
400 ft./min. (2.0m/s)
500 ft./min. (2.5m/s)
600 ft./min. (3.0m/s)
700 ft./min. (3.5m/s)
800 ft./min. (4.0m/s)
Natural Convection
20 ft./min. (0.1 m/s)
100 ft./min. (0.5 m/s)
200 ft./min. (1.0 m/s)
300 ft./min. (1.5 m/s)
400 ft./min. (2.0 m/s)
500 ft./min. (2.5 m/s)
600 ft./min. (3.0 m/s)
700 ft./min. (3.5 m/s)
800 ft./min. (4.0 m/s)
page
date
TYPICAL Rca
7.12
6.21
5.17
4.29
3.64
2.96
2.53
2.37
2.19
07/2009
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