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KBPC3506W - HIGH CURRENT SINGLE-PHASE SILICON BRIDGE RECTIFIERS

Download the KBPC3506W datasheet PDF. This datasheet also covers the KBPC35005W variant, as both devices belong to the same high current single-phase silicon bridge rectifiers family and are provided as variant models within a single manufacturer datasheet.

Key Features

  • Electrically isolated metal case for maximum heat dissipation.
  • Surge overload ratings to 500 A.
  • Low power loss, high efficiency.
  • Low reverse leakage current.
  • Case to terminal isolation voltage 2500 V.
  • UL recognized file # E-216968 Mechanical data.
  • Metal or molded plastic with heatsink integrally mounted in the bridge encapsulation.
  • Mounting Position: Any Dimensions in inches and (mm) Absolute Maximum Ratings and C.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (KBPC35005W-SEMTECH.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number KBPC3506W
Manufacturer SEMTECH
File Size 576.28 KB
Description HIGH CURRENT SINGLE-PHASE SILICON BRIDGE RECTIFIERS
Datasheet download datasheet KBPC3506W Datasheet

Full PDF Text Transcription (Reference)

The following content is an automatically extracted verbatim text from the original manufacturer datasheet and is provided for reference purposes only.

View original datasheet text
KBPC35005W~KBPC3510W HIGH CURRENT SINGLE-PHASE SILICON BRIDGE RECTIFIERS REVERSE VOLTAGE: 50 to 1000 V FORWARD CURRENT: 35 A KBPCW Features • Electrically isolated metal case for maximum heat dissipation • Surge overload ratings to 500 A • Low power loss, high efficiency • Low reverse leakage current • Case to terminal isolation voltage 2500 V • UL recognized file # E-216968 Mechanical data • Metal or molded plastic with heatsink integrally mounted in the bridge encapsulation • Mounting Position: Any Dimensions in inches and (mm) Absolute Maximum Ratings and Characteristics Rating at 25 OC ambient temperature unless otherwise specified. Single phase, half wave, 60 Hz, resistive or inductive load. For capacitive load, derate current by 20%.