aat9123 Datasheet - Analogictech

Manufacturer

Analogictech
View all Analogictech datasheets →

The AAT9123 is a high-performance, N-Channel MOSFET designed for high-frequency switching applications.

Manufacturer
AnalogicTech
Part Number
AAT9123
Primary Category
SEMICONDUCTORS - DISCRETE
Package
SOP8
Key Spec 1
Drain-Source Voltage (VDS) = 30V
Key Spec 2
Continuous Drain Current (ID) = 10A

📖 Datasheet Preview

aat9123 Datasheet Page 1
Page 1 of 4
aat9123 Datasheet Page 2
Page 2 of 4
aat9123 Datasheet Page 3
Page 3 of 4
aat9123 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 AAT9123 is a high-performance, N-Channel MOSFET designed for high-frequency switching applications. It features low on-resistance, high current handling, and a compact package. This device is suitable for use in a variety of applications, including DC-DC converters, power management, and battery-powered systems.

Key Features and Benefits

Typical Applications

📊 Complete Technical Specifications

Absolute Maximum Ratings

ParameterValue
Drain-Source Voltage (VDS)30V
Operating Temperature-55°C to 150°C
Storage Temperature-55°C to 150°C

Electrical Characteristics

ParameterConditionMinTypMaxUnit
On-Resistance (RDS)VGS = 10V, ID = 10A0.0350.0450.055Ω
Threshold Voltage (VGS(th))VDS = 10V, ID = 1mA0.51.01.5V

Package Information

Pin Configuration

🔧 Application Guidelines

Design Considerations

When designing with the AAT9123, consider the high-frequency switching capability and low on-resistance. Ensure proper heat sinking and thermal management to maintain reliable operation.

Installation Guidelines

Follow standard SOP8 package installation guidelines, ensuring proper alignment and soldering to prevent damage or electrical issues.

Operational Notes

The AAT9123 is designed for high-frequency switching applications. Avoid operating the device near its absolute maximum ratings, and ensure proper gate drive to prevent overheating or electrical stress.