Manufacturer Part Number
MAX8717ETI+TGC1
Manufacturer
analog-devices
Introduction
The MAX8717ETI+TGC1 is a highly integrated, dual-channel, synchronous, step-down DC-DC converter that provides a regulated supply voltage from a higher input voltage. It is designed to efficiently power multiple loads in portable applications such as smartphones, tablets, and other mobile devices.
Product Features and Performance
Dual-channel, synchronous, step-down DC-DC converter
High-efficiency operation up to 96%
Input voltage range of 2.5V to 5.5V
Adjustable output voltage from 0.6V to 3.3V
Programmable switching frequency up to 2.2MHz
Built-in thermal shutdown and overcurrent protection
Small package size (3mm x 3mm TQFN) for compact design
Product Advantages
Excellent power conversion efficiency
Compact and space-saving design
Programmable output voltage and switching frequency
Robust protection features for reliable operation
Suitable for a wide range of portable and mobile applications
Key Reasons to Choose This Product
Optimize power delivery and battery life in portable devices
Achieve high-efficiency power conversion with minimal heat generation
Flexible design options with programmable settings
Ensure reliable and safe operation with advanced protection features
Compact footprint enables integration into space-constrained designs
Quality and Safety Features
Thermal shutdown protection
Overcurrent protection
Short-circuit protection
Overvoltage protection
Compatibility
The MAX8717ETI+TGC1 is compatible with a wide range of portable and mobile devices, including smartphones, tablets, and other battery-powered electronics.
Application Areas
Smartphones
Tablets
Portable electronics
Mobile devices
Battery-powered applications
Product Lifecycle
The MAX8717ETI+TGC1 is an obsolete product, meaning it is no longer in active production. However, there may be equivalent or alternative models available from other manufacturers. Customers are advised to contact our website's sales team for more information on available options and potential replacements.