Manufacturer Part Number
LM3409HVMYX/NOPB
Manufacturer
texas-instruments
Introduction
The LM3409HVMYX/NOPB is a highly versatile DC-DC controller designed for driving high-brightness LEDs. It features a wide input voltage range of 6V to 75V, making it suitable for a variety of applications. The device offers precise LED current regulation, enabling efficient and reliable LED lighting solutions.
Product Features and Performance
Wide input voltage range: 6V to 75V
Integrated high-side switch for efficient buck topology
Analog and PWM dimming capabilities
Programmable switching frequency up to 1MHz
Overvoltage, overcurrent, and thermal protection features
Small 10-pin MSOP package for compact designs
Product Advantages
Excellent LED current regulation for consistent brightness
High efficiency and low power consumption
Robust protection features for reliable operation
Compact package size for space-constrained applications
Key Reasons to Choose This Product
Versatile input voltage range accommodates diverse applications
Precise LED current control ensures uniform lighting output
Advanced protection mechanisms safeguard the LED driver
Compact package enables miniaturized system designs
Quality and Safety Features
Automotive-grade qualification for reliable performance
Robust overcurrent, overvoltage, and thermal protection
Compliance with industry safety standards
Compatibility
The LM3409HVMYX/NOPB is compatible with a wide range of high-brightness LEDs and can be used in various LED lighting applications.
Application Areas
Automotive lighting (headlights, taillights, daytime running lights)
Industrial and commercial lighting (street lights, spotlights, downlights)
Architectural and decorative lighting
General illumination applications
Product Lifecycle
The LM3409HVMYX/NOPB is an active product in our website's sales team portfolio. There are no immediate plans for discontinuation. However, customers are advised to check with our website's sales team for the latest information on product availability and potential alternative models.