Vishay Bridge Rectifier, 25A, 800V, 4-Pin

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Subtotal (1 box of 100 units)*

£233.80

(exc. VAT)

£280.60

(inc. VAT)

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100 - 100£2.338£233.80
200 +£2.221£222.10

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RS Stock No.:
165-2410
Mfr. Part No.:
GBPC2508-E4/51
Brand:
Vishay
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Brand

Vishay

Peak Average Forward Current

25A

Bridge Type

Single Phase

Peak Reverse Repetitive Voltage

800V

Mounting Type

Screw Mount

Package Type

GBPC

Pin Count

4

Diode Technology

Silicon Junction

Configuration

Single

Peak Non-Repetitive Forward Surge Current

300A

Maximum Operating Temperature

+150 °C

Minimum Operating Temperature

-55 °C

Peak Forward Voltage

1.1V

Peak Reverse Current

5µA

Length

28.8mm

Dimensions

28.8 x 28.8 x 7.62mm

Width

28.8mm

Height

7.62mm

Vishay GBPC25 Series Bridge Rectifiers


• UL recognition file number E54214
• Universal 3-way terminals: snap-on, wire wrap-around, or PCB mounting
• Typical IR less than 0.3 μA
• High surge current capability
• Low thermal resistance
• Solder dip 275 °C max. 10 s, per JESD 22-B106

TYPICAL APPLICATIONS
General purpose use in AC/DC bridge full wave rectification for power supply, home appliances, office equipment, industrial automation applications.

MECHANICAL DATA
Case: GBPC, GBPC-W
Molding compound meets UL 94 V-0 flammability rating
Base P/N-E4 - RoHS-compliant, commercial grade
Terminals: Nickel plated on faston lugs or silver plated on
wire leads, solderable per J-STD-002 and JESD22-B102.
Suffix letter “W” added to indicate wire leads
(e.g. GBPC12005W).
Polarity: As marked, positive lead by beveled corner
Mounting Torque: 20 inches-lbs. max.

Approvals

UL E54214


Bridge Rectifiers - Vishay Semiconductor


The Bridge Rectifier converts an Alternating Current (AC) input into a Direct Current (DC) output for full-wave rectification applications. The diode arrangement provides the same polarity of output for either polarity of input. A three-phase full-wave rectifier is an arrangement of six diodes in a bridge circuit configuration. The packages are designed for minimal size, highest reliability and maximum thermal performance.