Manufacturer Part Number
MIC29204YM-TR
Manufacturer
Microchip Technology
Introduction
The MIC29204YM-TR is a high-performance, low-dropout linear voltage regulator from Microchip Technology. It is designed to provide a stable and regulated output voltage from an unregulated input voltage.
Product Features and Performance
Adjustable output voltage from 1.24V to 26V
Capable of delivering up to 400mA of output current
Low dropout voltage of 0.75V at 400mA
-40°C to 125°C operating temperature range
Integrated protection features including load dump, overcurrent, and reverse polarity protection
Single-bit enable control for easy system integration
Product Advantages
Stable and reliable output voltage regulation
Compact 8-SOIC surface mount package
Wide input voltage range up to 26V
Excellent thermal performance and power efficiency
Comprehensive protection features for improved system reliability
Key Technical Parameters
Input Voltage Range: 26V (max)
Output Voltage Range: 1.24V (min) to 26V (max)
Output Current: 400mA (max)
Quiescent Current: 300μA
Supply Current: 12mA (max)
Voltage Dropout: 0.75V @ 400mA
Quality and Safety Features
RoHS3 compliant
Tape and reel packaging for automated assembly
Compatibility
The MIC29204YM-TR is compatible with a wide range of electronic devices and systems that require a stable and regulated power supply.
Application Areas
Industrial and consumer electronics
Automotive and transportation systems
Telecommunications equipment
Medical devices
Portable and battery-powered devices
Product Lifecycle
The MIC29204YM-TR is an active product in Microchip Technology's portfolio and is not nearing discontinuation. Replacement or upgraded models may be available in the future.
Key Reasons to Choose This Product
Reliable and stable output voltage regulation
Compact and space-saving surface mount package
Wide input voltage range and high output current capability
Comprehensive protection features for improved system reliability
Excellent thermal performance and power efficiency
Easy system integration with single-bit enable control