Manufacturer Part Number
ISL9205IRZ
Manufacturer
Renesas Electronics America
Introduction
The ISL9205IRZ is a compact, highly-integrated, single-cell lithium-ion/polymer battery charger from Renesas Electronics. It features a programmable constant-current, constant-voltage charge algorithm with integrated power MOSFET, comprehensive charge monitoring, and protection functions.
Product Features and Performance
Constant-current, constant-voltage battery charging algorithm
Programmable charge current up to 900mA
Supports single-cell Li-ion/polymer batteries
Integrated power MOSFET, eliminating the need for an external charging FET
Comprehensive charge monitoring and protection functions
Overtemperature protection
Automatic charge termination
Trickle charge mode for deeply discharged batteries
16-VFQFN exposed pad package for efficient heat dissipation
Product Advantages
Highly integrated design reduces external component count and board space
Programmable charge current and termination parameters for flexibility
Robust protection features ensure safe and reliable battery charging
Wide operating temperature range of -40°C to 85°C
Key Reasons to Choose This Product
Compact and efficient solution for single-cell Li-ion/polymer battery charging
Programmable features allow customization to meet specific application requirements
Comprehensive protection features ensure safe and reliable operation
Renesas' reputation for quality and reliability in power management ICs
Quality and Safety Features
Overtemperature protection
Charge current regulation and termination
Battery voltage and charge current monitoring
Compatibility
The ISL9205IRZ is designed to work with single-cell lithium-ion or lithium-polymer battery packs.
Application Areas
Portable electronics
Wearable devices
Power tools
Battery-powered appliances
Product Lifecycle
The ISL9205IRZ is an active product in our website's sales team's portfolio. There are no immediate plans for discontinuation. Customers are advised to contact our website's sales team for information on any potential alternative or equivalent models.