aat9055 Datasheet - Analogictech

Manufacturer

Analogictech
View all Analogictech datasheets →

The AAT9055 is an N-Channel MOSFET designed for high-performance applications. It features low on-resistance, high current handling, and a compact package.

Manufacturer
AnalogicTech
Part Number
AAT9055
Primary Category
SEMICONDUCTORS - DISCRETE
Package
DPAK
Key Spec 1
Drain-Source Voltage: 55V
Key Spec 2
Continuous Drain Current: 10A

📖 Datasheet Preview

aat9055 Datasheet Page 1
Page 1 of 4
aat9055 Datasheet Page 2
Page 2 of 4
aat9055 Datasheet Page 3
Page 3 of 4
aat9055 Datasheet Page 4
Page 4 of 4

⬇️ Download Complete Datasheet

Get the full 4-page technical datasheet in PDF format

📊 PDF Format 📏 N/A 📖 4 Pages 🌐 English

📝 Component Overview

The AAT9055 is an N-Channel MOSFET designed for high-performance applications. It features low on-resistance, high current handling, and a compact package. This device is suitable for a variety of applications, including power management, motor control, and high-frequency switching.

Key Features and Benefits

Typical Applications

📊 Complete Technical Specifications

Absolute Maximum Ratings

ParameterValue
Drain-Source Voltage55V
Operating Temperature-55°C to 150°C
Storage Temperature-55°C to 150°C

Electrical Characteristics

ParameterConditionMinTypMaxUnit
On-ResistanceVGS = 10V, ID = 10A0.035Ω0.045Ω0.055ΩΩ
Threshold VoltageVDS = 10V, ID = 1mA0.5V1.0V1.5VV

Package Information

Pin Configuration

🔧 Application Guidelines

Design Considerations

When designing with the AAT9055, consider the high current handling and low on-resistance to optimize the performance of the application. Ensure proper thermal management to prevent overheating.

Installation Guidelines

The AAT9055 should be mounted on a suitable heat sink to ensure proper thermal dissipation. Follow standard soldering practices to prevent damage to the device.

Operational Notes

The AAT9055 is designed for high-performance applications and should be operated within the specified ratings to ensure reliable operation. Avoid exceeding the maximum ratings to prevent device failure.