Infineon Single HEXFET 1 Type N-Channel MOSFET Enhancement, 3-Pin TO-220AB AUIRL3705Z

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£9.75

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£11.70

(inc. VAT)

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Packaging Options:
RS Stock No.:
784-9215
Mfr. Part No.:
AUIRL3705Z
Brand:
Infineon
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Brand

Infineon

Channel Type

Type N

Product Type

MOSFET

Series

HEXFET

Package Type

TO-220AB

Pin Count

3

Channel Mode

Enhancement

Minimum Operating Temperature

-55°C

Transistor Configuration

Single

Maximum Operating Temperature

175°C

Length

10.67mm

Height

9.02mm

Width

4.83 mm

Number of Elements per Chip

1

Automotive Standard

AEC-Q101

COO (Country of Origin):
MX

Infineon HEXFET Series MOSFET, 75A/86A Maximum Continuous Drain Current, 130W Maximum Power Dissipation - AUIRL3705Z


This MOSFET is tailored for automotive applications, ensuring solid performance in challenging environments. It incorporates Advanced processing techniques that enhance efficiency and lower on-resistance, making it Crucial for high-current systems. The comprehensive safety and thermal management features reinforce its importance in modern electronic applications.

Features & Benefits


• Maximum continuous drain current of 86A for robust usage

• Low on-resistance of up to 8mΩ for improved efficiency

• Fast switching capability, optimising overall system performance

• Reliable operation at high temperatures, up to 175°C

• Complies with automotive qualifications per AEC-Q101 standards

• High power dissipation capacity of up to 130W

Applications


• Suitable for automotive power management systems

• Utilised in electric vehicle powertrains

• Applicable in DC-DC converters within automotive electronics

• Employed in battery management systems

• Effective for motor control in machinery

What is the maximum gate-source voltage this component can handle?


It can manage a maximum gate-source voltage of ±16V, ensuring compatibility with various control circuits.

How does the high current capability benefit my application?


The continuous drain current rating of 86A enables stable operations in power-intensive applications, enhancing efficiency and reducing thermal stress.

Can this component operate efficiently at elevated temperatures?


Yes, it is designed for effective operation at temperatures up to 175°C, making it suitable for automotive environments.

Is there a risk of damage if the recommended operating conditions are exceeded?


Yes, exceeding the specified absolute maximum ratings may result in permanent device damage. It is essential to operate within the recommended limits for reliability.

How does the low Rds(on) specification affect performance?


The low Rds(on) improves energy efficiency by minimising power loss, resulting in enhanced overall system performance.

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