Manufacturer Part Number
MP3398AGY-Z
Manufacturer
Monolithic Power Systems
Introduction
The MP3398AGY-Z is a high-efficiency, four-channel LED driver IC from Monolithic Power Systems. It is designed to drive up to four independent strings of LEDs with high precision and flexibility, making it an ideal solution for backlight applications.
Product Features and Performance
Operates from a 5V to 28V input voltage range
Integrates four independent current regulators, each capable of driving up to 350mA of LED current
Utilizes a high-frequency 540kHz switching frequency to enable compact and efficient designs
Supports both analog and PWM dimming control for precise LED brightness adjustment
Includes built-in thermal regulation and short-circuit protection for reliable operation
Product Advantages
High efficiency and small solution size for space-constrained designs
Flexible configuration options to drive multiple LED strings independently
Robust protection features for enhanced reliability and safety
Key Reasons to Choose This Product
Optimized for backlight applications, delivering high performance and reliability
Ease of use with integrated control and protection features
Scalable design to support a wide range of LED count and power requirements
Quality and Safety Features
Operates within a wide -40°C to 125°C temperature range
Integrated thermal regulation and short-circuit protection
Complies with industry safety standards for LED driver applications
Compatibility
The MP3398AGY-Z is compatible with a variety of LED-based backlight designs, including those found in displays, televisions, and other consumer electronics.
Application Areas
LCD/LED backlighting for displays, TVs, and monitors
General lighting applications requiring multi-channel LED drivers
Product Lifecycle
The MP3398AGY-Z is an active product in our website's sales team portfolio. There are no known immediate plans for discontinuation. Customers are advised to consult with our website's sales team for the latest information on product availability and any potential alternative or equivalent models.