V24C15C100A

Features: • DC input range: 18 - 36V• Input surge withstand: 50V for 100ms• DC output: 15V• Programmable output: 10 to 110%• Regulation: ±0.2% no load to full load• Efficiency: 86%• Maximum operating temperature: 100 at full load• Power density: 60W/...

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V24C15C100A Picture
SeekIC No. : 004539695 Detail

V24C15C100A: Features: • DC input range: 18 - 36V• Input surge withstand: 50V for 100ms• DC output: 15V• Programmable output: 10 to 110%• Regulation: ±0.2% no load to full load̶...

floor Price/Ceiling Price

Part Number:
V24C15C100A
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/21

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Product Details

Description



Features:

• DC input range: 18 - 36V
• Input surge withstand: 50V for 100ms
• DC output: 15V
• Programmable output: 10 to 110%
• Regulation: ±0.2% no load to full load
• Efficiency: 86%
• Maximum operating temperature: 100 at full load
• Power density: 60W/cubic inch
• Height above board: 0.43 in. (10,9 mm)
• Parallelable, with N+M fault tolerance
• Low noise ZCS/ZVS architecture



Specifications

Parameter Rating Unit Notes
+In to In voltage

+In to In voltage

PC to In voltage

PR to In voltage

+Out to Out voltage

SC to Out voltage

Isolation voltage (in to out)

Isolation voltage (in to base)

Isolation voltage (out to base)

Storage temperature (CGrade)

Operating temperature (CGrade)

Pin soldering temperature

Pin soldering temperature

Mounting torque
-0.5 to +36.0

50

-0.5 to +7.0

-0.5 to +7.0

-0.5 to +20.0

-0.5 to +1.5

3000

1550

500

-40 to +125

-20 to +100

500 (260)

750 (390)

5 (0.57)
Vdc

Vdc

Vdc

Vdc

Vdc

Vdc

Vrms

Vrms

Vrms





°F ()

°F ()

in-lbs (N-m)
<100ms


See part numbering chart on this
page for other product grades.

Baseplate
<5 sec; wave solder
<7 sec; hand solder
6 each, # 4-40 or M3



Description

The V24C15C100A uses 2nd Generation power processing, control and packaging technologies to provide the performance, flexibility and cost effectiveness expected of a mature power component. For example, a plated-cavity core transformer couples widely separated primary and secondary windings, resulting in low in-toout parasitic capacitance and noise. High frequency ZCS/ZVS switching, advanced power semiconductor packaging and thermal management provide high power density with low temperature gradients. Extensive use of silicon integration results in 1/3 the part count of a 1st Generation converter.




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