Vishay IRFU9310 Type P-Channel Power MOSFET, -1.8 A, -400 V Enhancement, 3-Pin IPAK

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RS庫存編號:
919-4505
製造零件編號:
IRFU9310PBF
製造商:
Vishay
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品牌

Vishay

Product Type

Power MOSFET

Channel Type

Type P

Maximum Continuous Drain Current Id

-1.8A

Maximum Drain Source Voltage Vds

-400V

Package Type

IPAK

Series

IRFU9310

Mount Type

Through Hole

Pin Count

3

Maximum Drain Source Resistance Rds

Channel Mode

Enhancement

Maximum Gate Source Voltage Vgs

20V

Forward Voltage Vf

-4V

Maximum Power Dissipation Pd

50W

Minimum Operating Temperature

-55°C

Typical Gate Charge Qg @ Vgs

13nC

Maximum Operating Temperature

150°C

Length

6.73mm

Standards/Approvals

RoHS

Width

2.38mm

Height

6.22mm

Automotive Standard

No

Vishay IRFU9310 Series Power MOSFET, -400V Maximum Drain Source Voltage, -1.8A Maximum Continuous Drain Current - IRFU9310PBF


This power MOSFET is a P-channel switching device designed for high-voltage applications in industrial electronics. It operates as an enhancement-mode transistor suitable for through-hole mounting and is intended for circuits requiring negative-polarity switching with moderate current and high blocking voltage.

Features and Benefits:


• Rated for -400V drain-source voltage enabling high-voltage switching
• Maximum continuous drain current -1.8 A supporting moderate-load operation
• Maximum power dissipation 50W allowing robust thermal handling
• Typical gate charge 13 nC reducing switching losses
• Maximum gate-source voltage 20V offering safe gate-drive margin
• Operating range -55 °C to 150 °C permitting wide temperature environments

Applications


• Suitable for high-voltage polarity-reversal circuits in power supplies
• Ideal for load switching in industrial automation panels
• Used for discrete-stage switching in motor control electronics
• Can be used for negative-side switching in power distribution modules

What package style does it use for prototyping and assembly?


The device is supplied in an IPAK through-hole package with three pins for hand-soldering or wave-solder processes.

How does the on-resistance affect thermal performance?


The maximum drain-source resistance of 7 Ω increases conduction losses at higher currents, which requires adequate heatsinking to maintain junction temperature within limits.

What environmental limits govern continuous operation?


It can be operated down to -55 °C and up to 150 °C, so thermal management and ambient conditions must be considered for reliable long-term use.

Is it suitable for automotive-grade systems?


The component is not specified to automotive standards

its approvals list RoHS only.

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