Manufacturer Part Number
MAX1734EUK15+
Manufacturer
analog-devices
Introduction
The MAX1734EUK15+ is a high-efficiency, low-noise, synchronous step-down DC-DC converter that provides a regulated output voltage from a higher input voltage. It is designed to power a wide range of applications, including portable electronics, industrial equipment, and telecommunications systems.
Product Features and Performance
Integrated high-side and low-side MOSFETs enable high-efficiency operation
Adjustable output voltage from 0.8V to 5.5V
Switching frequency up to 1MHz
Quiescent current as low as 35μA in shutdown mode
Overtemperature and overcurrent protection
Internal soft-start for controlled inrush current
Cycle-by-cycle current limit
Thermal shutdown protection
Product Advantages
High efficiency, reducing power consumption and heat dissipation
Low noise operation, suitable for sensitive analog circuits
Compact size, enabling small form factor designs
Robust protection features for reliable operation
Key Reasons to Choose This Product
Optimized for power-sensitive applications with high efficiency and low quiescent current
Versatile output voltage range and high switching frequency for flexible design
Comprehensive protection features ensure reliable and safe operation
Proven performance and reliability from a trusted manufacturer
Quality and Safety Features
Robust overcurrent, overvoltage, and overtemperature protection
Compliance with relevant safety and regulatory standards
Compatibility
The MAX1734EUK15+ is compatible with a wide range of electronic devices and systems that require a regulated DC power supply.
Application Areas
Portable electronics (e.g., smartphones, tablets, laptops)
Industrial equipment (e.g., automation systems, instrumentation)
Telecommunications equipment (e.g., routers, switches, base stations)
Product Lifecycle
The MAX1734EUK15+ is an obsolete product, meaning it is no longer in active production. Customers should contact our website's sales team for information on available equivalent or alternative models.