Manufacturer Part Number
MAX732EWE
Manufacturer
Analog Devices
Introduction
The MAX732EWE is a high-efficiency, step-up DC-DC converter that provides a fixed 12V output from an input voltage range of 4V to 9.3V. Designed for a wide variety of portable and battery-powered applications, this regulator features low quiescent current and high efficiency.
Product Features and Performance
Step-up (boost) converter topology
Fixed 12V output voltage
Input voltage range: 4V to 9.3V
Output current capability: 200mA
Switching frequency: 170kHz
No synchronous rectifier
Low quiescent current: 45μA (typ.)
High efficiency: up to 90%
Thermal shutdown protection
-40°C to +85°C operating temperature range
16-pin SOIC package
Product Advantages
Efficient power conversion for portable and battery-powered devices
Compact design with high power density
Reliable thermal protection
Suitable for a wide range of input voltage conditions
Key Reasons to Choose This Product
Proven performance and reliability from a trusted manufacturer
Optimized for battery-powered applications with high efficiency and low quiescent current
Versatile input voltage range and fixed 12V output suitable for various systems
Compact package and surface mount design for space-constrained designs
Quality and Safety Features
Thermal shutdown protection
Robust SOIC package for mechanical reliability
Analog Devices' reputation for high-quality, reliable products
Compatibility
This product is compatible with a wide range of portable and battery-powered devices that require a regulated 12V output from a 4V to 9.3V input voltage range.
Application Areas
Portable electronics
Battery-powered devices
Industrial equipment
Instrumentation
Medical devices
Product Lifecycle
The MAX732EWE is an obsolete product, meaning it has been discontinued by the manufacturer. There may be equivalent or alternative models available from Analog Devices or other vendors. Customers are advised to contact our website's sales team for more information on current product options that may serve a similar function.