Vishay SIZ260DT Type N-Channel MOSFET, 8.9 A, 80 V, 8-Pin PowerPAIR 3 x 3S

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RS庫存編號:
256-7436
製造零件編號:
SIZ260DT-T1-GE3
製造商:
Vishay
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品牌

Vishay

Channel Type

Type N

Product Type

MOSFET

Maximum Continuous Drain Current Id

8.9A

Maximum Drain Source Voltage Vds

80V

Series

SIZ260DT

Package Type

PowerPAIR 3 x 3S

Mount Type

Surface

Pin Count

8

Maximum Drain Source Resistance Rds

0.0247Ω

Typical Gate Charge Qg @ Vgs

6.3nC

Forward Voltage Vf

1.2V

Maximum Gate Source Voltage Vgs

20V

Maximum Power Dissipation Pd

33W

Minimum Operating Temperature

-55°C

Maximum Operating Temperature

+150°C

Width

3.3mm

Standards/Approvals

RoHS

Length

3.3mm

Automotive Standard

No

Vishay SIZ260DT Series MOSFET, 80V Drain Source Voltage, 8.9A Continuous Drain Current - SIZ260DT-T1-GE3


This MOSFET is a surface-mount N-channel transistor designed for switching and power management in industrial electronic systems. It operates at elevated temperatures and supports moderate continuous currents, making it suitable for Compact assemblies where thermal resilience and voltage handling are required.

Features and Benefits:


• 80V drain rating enables use in medium-voltage circuits
• 8.9A continuous current allows sustained load driving
• 0.0247Ω Rds(on) reduces conduction losses
• 6.3nC typical gate charge supports fast switching
• 33W power dissipation permits higher power handling
• ±20V gate tolerance accommodates varied gate-drive ranges

Applications


• Suitable for DC-DC converters in automation equipment
• Ideal for motor-driver stages in industrial drives
• Used for power switching in control modules
• Can be used for load switching in battery management
• Suitable for Compact SMD power assemblies in electrical systems

What temperature extremes can it withstand during operation?


It is rated to operate down to -55°C and up to +150°C, allowing use in environments with wide thermal fluctuations.

How does the package form affect PCB layout?


The PowerPAIR 3x3S SMD package with eight pins concentrates power and signal pins for short thermal paths and straightforward thermal-pad design.

Is this device appropriate for automotive applications?


It is not specified as meeting automotive standards, so it should not be selected where formal automotive-grade approval is required.

What are the benefits of the device’s pin count for circuit design?


The eight-pin arrangement separates gate and source connections from power paths, simplifying gate-drive routing and thermal management.

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