Vishay Bridge Rectifier, 800 V 400 A, 4-Pin Single

Sous-total (1 tube de 20 unités)*

48,00 €

(TVA exclue)

58,00 €

(TVA incluse)

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Commandes ci-dessous 75,00 € coût (TVA exclue) 5,95 €.
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Unité
Prix par unité
le tube*
20 +2,40 €48,00 €

*Prix donné à titre indicatif

N° de stock RS:
165-7123
Référence fabricant:
PB4008-E3/45
Fabricant:
Vishay
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Marque

Vishay

Product Type

Bridge Rectifier

Peak Reverse Repetitive Voltage Vrrm

800V

Mount Type

Through Hole

Package Type

PB

Number of Phases

1

Pin Count

4

Configuration

Single

Maximum Operating Temperature

150°C

Forward Current If

40A

Peak Non-Repetitive Forward Surge Current Ifsm

400A

Minimum Operating Temperature

-55°C

Peak Forward Voltage Vf

1.1V

Series

PB40

Length

30.3mm

Peak Reverse Current Ir

500μA

Width

5.1 mm

Standards/Approvals

No

Height

20.3mm

Automotive Standard

No

Pays d'origine :
CN

SIL PCB Mounting, PB Series, Vishay Semiconductor


PB series bridge rectifiers in Enhanced isoCink+T™ SIL PCB Mounting package from Vishay Semiconductor. These general purpose AC/DC full wave bridge-rectifiers are suitable for linear and switching power supplies in home electrical appliance and white-goods applications. The rectifiers feature an enhanced isoCink+™ high current density single in-line package with superior thermal conductivity.

Enhanced isoCink+™ Bridge Rectifiers

Tested to UL standard for the safety of electrically isolated semiconductor devices. UL 1557.

Enhanced high-current density single in-line package

Superior thermal conductivity

Printed Circuit Board (PCB) through hole mounting

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.

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