Manufacturer Part Number
MIC29512WT
Manufacturer
microchip-technology
Introduction
The MIC29512WT is a highly versatile power management integrated circuit (PMIC) designed for a wide range of power conversion applications. This device offers a robust and reliable solution for voltage regulation, making it a suitable choice for various electronic systems, including those used in Intel Pentium® Plus-based platforms.
Product Features and Performance
Input voltage range: 2.24V to 20V
Output voltage range: 1.24V to 15V
Single output
Adjustable output voltage
Overload and thermal protection
High efficiency operation
Low dropout voltage
Fast transient response
Product Advantages
Wide input and output voltage ranges for enhanced flexibility
Adjustable output voltage for tailored power delivery
Robust protection features for reliable operation
High efficiency for improved power management
Compact TO-220-5 package for space-constrained designs
Key Reasons to Choose This Product
Versatile power conversion capabilities for a wide range of applications
Reliable and efficient performance to optimize system power
Comprehensive protection features to ensure safe and stable operation
Easy integration and compatibility with Intel Pentium® Plus-based systems
Quality and Safety Features
Overload protection
Thermal protection
ESD protection
Compatibility
The MIC29512WT is compatible with Intel Pentium® Plus-based platforms and can be used in various power conversion applications, including but not limited to:
Converters
Industrial equipment
Consumer electronics
Telecommunications equipment
Application Areas
Power conversion
Voltage regulation
Intel Pentium® Plus-based systems
Product Lifecycle
The MIC29512WT is an active product, and microchip-technology continues to actively support and manufacture it. There are no immediate plans for discontinuation. However, as technology evolves, customers are advised to contact our website's sales team for the latest product information and availability of any potential alternative or equivalent models.