Manufacturer Part Number
AP2014SL-13
Manufacturer
diodes
Introduction
The AP2014SL-13 is a high-efficiency, synchronous, step-down switching regulator controller designed to operate from a 5V or 12V supply. It features a wide duty cycle range of up to 90%, allowing it to efficiently regulate output voltages down to 1.2V. The device includes internal compensation, soft-start, and undervoltage lockout functions, making it easy to design power supply circuits with minimal external components.
Product Features and Performance
Wide input voltage range: 5V or 12V
High efficiency synchronous buck topology
Wide duty cycle range up to 90%
Internal compensation and soft-start
Undervoltage lockout function
Switching frequency of 200kHz
Supports 1 output phase
Operating temperature range of 0°C to 125°C
Product Advantages
Compact 8-SOIC package for space-constrained designs
Robust thermal management for high-power applications
Reliable and stable performance over wide operating conditions
Minimal external component count for simpler circuit design
Key Reasons to Choose This Product
Excellent power conversion efficiency for extended battery life
Flexible voltage regulation for a variety of end-use applications
Ease of design with integrated control features and protection functions
Proven reliability and long-term performance in industrial and consumer electronics
Quality and Safety Features
Rigorously tested for quality and reliability
Designed to meet relevant safety and regulatory standards
Compatibility
The AP2014SL-13 is compatible with various 5V and 12V power supply systems found in a wide range of electronic devices and industrial equipment.
Application Areas
Portable electronics
Industrial automation and control systems
Telecommunications equipment
Automotive electronics
Medical devices
Product Lifecycle
The AP2014SL-13 is an active product in the diodes portfolio. There are no immediate plans for discontinuation. Customers are advised to contact our website's sales team for information on any available equivalent or alternative models.