Datasheet4U Logo Datasheet4U.com

APX9200 - Single-Phase Full-Wave Motor Driver

Description

The APX9200 is a single-phase full-wave motor driver for DC fan motors.

It’s suitable for variable speed curve applications, and then It is suitable for cooler DC fan that needs silent drivers.

When PWM is at low level in a short time, the supply current is less than 100µA.

Features

  • Single Phase Full Wave Fan Driver.
  • Built-in Reverse Voltage Protection Circuit.
  • Built-in Variable Speed Curve Function. It can com- pensate motors whose Speed curve is not linear.
  • Current Limit Circuit.
  • Built-in LOCK Protection and Auto Restart Function.
  • Built-in Adjustable Lead Angle Function.
  • Built-in Adjustable PWM Soft Switching Function.
  • Low Standby Current.
  • FG(Rotation Speed Detection)Output.
  • Built-i.

📥 Download Datasheet

Datasheet Details

Part number APX9200
Manufacturer ANPEC
File Size 340.36 KB
Description Single-Phase Full-Wave Motor Driver
Datasheet download datasheet APX9200 Datasheet

Full PDF Text Transcription (Reference)

The following content is an automatically extracted verbatim text from the original manufacturer datasheet and is provided for reference purposes only.

View original datasheet text
APX9200 Single-Phase Full-Wave Motor Driver for Fan Motor Features • Single Phase Full Wave Fan Driver • Built-in Reverse Voltage Protection Circuit • Built-in Variable Speed Curve Function. It can com- pensate motors whose Speed curve is not linear • Current Limit Circuit • Built-in LOCK Protection and Auto Restart Function • Built-in Adjustable Lead Angle Function • Built-in Adjustable PWM Soft Switching Function • Low Standby Current • FG(Rotation Speed Detection)Output • Built-in Thermal Protection Circuit • Lead Free and Green Device Available (RoHS Co- mpliant) General Description The APX9200 is a single-phase full-wave motor driver for DC fan motors. It’s suitable for variable speed curve applications, and then It is suitable for cooler DC fan that needs silent drivers.
Published: |