Manufacturer Part Number
ISL6292-1CR4Z
Manufacturer
Renesas Electronics America
Introduction
The ISL6292-1CR4Z is a single-cell Li-ion/polymer battery charger IC from Renesas Electronics America. It provides a constant-current, constant-voltage (CC-CV) charging algorithm with programmable charge current and voltage settings. The device is designed for use in portable applications that require safe and efficient battery charging.
Product Features and Performance
Constant-current, constant-voltage (CC-CV) charging algorithm
Programmable charge current up to 2A
Battery pack voltage up to 4.1V
Wide input voltage range of up to 6.5V
USB interface for charging
Operating temperature range of -20°C to 70°C
Product Advantages
Efficient and safe battery charging
Programmable charge parameters for flexibility in design
Compact 16-VQFN package for space-constrained applications
Comprehensive fault protection features
Key Reasons to Choose This Product
Reliable and proven battery charging solution from a leading semiconductor manufacturer
Optimized for portable and mobile applications with its compact size and high performance
Flexible programming options to meet various design requirements
Excellent thermal management and safety features for reliable operation
Quality and Safety Features
Comprehensive fault protection, including overcurrent, overvoltage, and overtemperature
Thermal regulation to prevent overheating
Robust design for reliable operation
Compatibility
The ISL6292-1CR4Z is compatible with a wide range of Li-ion and Li-polymer battery packs with a single-cell configuration.
Application Areas
Smartphones, tablets, and other portable electronic devices
Power banks and battery packs
Wearable electronics
Industrial and medical equipment
Product Lifecycle
The ISL6292-1CR4Z is an active product in our website's sales team portfolio. There are no known plans for discontinuation at this time. Customers are advised to contact our website's sales team for the latest information and availability of this product or potential alternative models.