Manufacturer Part Number
MAX4943ELA+
Manufacturer
Analog Devices
Introduction
The MAX4943ELA+ is a high-voltage, low-quiescent-current overvoltage protection controller. It is designed to protect sensitive electronic circuits from overvoltage faults. The device features a wide supply voltage range, low supply current, and precise overvoltage detection threshold.
Product Features and Performance
Wide supply voltage range: 2.2V to 28V
Low quiescent current: 50µA
Precise overvoltage detection threshold
Configurable overvoltage detection threshold
Fast response time
Integrated pull-up/pull-down resistors
Undervoltage lockout (UVLO) function
Thermal shutdown protection
Product Advantages
Protects sensitive electronic circuits from overvoltage faults
Wide supply voltage range for versatile applications
Low quiescent current for energy-efficient operation
Precise overvoltage detection threshold for reliable protection
Fast response time to quickly react to overvoltage conditions
Integrated pull-up/pull-down resistors for easy implementation
Undervoltage lockout and thermal shutdown protection for enhanced reliability
Key Reasons to Choose This Product
Robust overvoltage protection for sensitive electronic circuits
Versatile supply voltage range for a wide range of applications
Energy-efficient operation with low quiescent current
Reliable and precise overvoltage detection
Easy to implement with integrated features
Quality and Safety Features
Meets safety and reliability standards
Robust design for harsh environments
Thermal shutdown protection to prevent overheating
Compatibility
Suitable for a variety of electronic devices and systems that require overvoltage protection
Application Areas
Automotive electronics
Industrial automation and control systems
Consumer electronics
Telecommunications equipment
Medical devices
Product Lifecycle
The MAX4943ELA+ is an active product. There are no known equivalent or alternative models available. If you have any further questions or require more information, please contact our sales team through our website.