Manufacturer Part Number
LM27341MY/NOPB
Manufacturer
Texas Instruments
Introduction
The LM27341MY/NOPB is a high-performance, monolithic, step-down DC-DC converter that offers a wide input voltage range, adjustable output voltage, and a switching frequency of up to 2MHz. This versatile power management IC is designed to provide efficient and reliable power conversion in a variety of applications, from portable electronics to industrial equipment.
Product Features and Performance
Wide input voltage range: 3V to 20V
Adjustable output voltage: 1V to 18V
Output current capability of up to 1.5A
Switching frequency up to 2MHz
Thermal shutdown and overcurrent protection
Small footprint 10-TFSOP or 10-MSOP package with exposed pad for improved thermal performance
Product Advantages
High efficiency across a wide load range
Compact size and low profile for space-constrained designs
Robust protection features for reliable operation
Flexible configuration options to meet diverse power requirements
Key Reasons to Choose This Product
Exceptional power conversion efficiency for extended battery life or reduced system cooling requirements
Versatile input and output voltage ranges to accommodate a wide range of applications
Ease of design and integration with the small, thermally-enhanced package
Reliable operation safeguarded by advanced protection features
Quality and Safety Features
Robust thermal protection and overcurrent limiting for safe and reliable operation
Certified to meet relevant industry standards for quality and safety
Compatibility
The LM27341MY/NOPB is compatible with a variety of electronic systems and devices that require a high-performance, efficient step-down power supply.
Application Areas
Portable electronics (smartphones, tablets, laptops)
Industrial equipment (PLCs, motor drives, sensors)
Medical devices
Telecommunications equipment
Automotive electronics
Product Lifecycle
The LM27341MY/NOPB is an active product, and our website's sales team recommends contacting them for the latest information on availability and potential alternative or equivalent models.