Manufacturer Part Number
MAX6161AESA+T
Manufacturer
analog-devices
Introduction
The MAX6161AESA+T is a high-precision, low-noise voltage reference from Analog Devices. It provides a stable and accurate 1.25V output voltage with excellent temperature stability and low noise characteristics, making it well-suited for a variety of power management and control applications.
Product Features and Performance
Fixed 1.25V output voltage
High precision: ±0.16% tolerance
Low temperature coefficient: 10ppm/°C
Low noise: 20µVp-p (0.1Hz to 10Hz), 15µVrms (10Hz to 10kHz)
Wide input voltage range: 2.5V to 12.6V
Low quiescent current: 150µA
Operating temperature range: -40°C to +85°C
Surface mount 8-SOIC package
Product Advantages
Excellent voltage stability and accuracy
Low noise and temperature drift for sensitive analog applications
Wide input voltage range for flexibility in power supply design
Small surface mount package for compact circuit design
Key Reasons to Choose This Product
Reliable and consistent performance for critical power management functions
Optimized for low-power, space-constrained applications
Proven quality and reliability from a trusted manufacturer, Analog Devices
Quality and Safety Features
Industrial-grade components and manufacturing process
Robust overcurrent and overvoltage protection
Thorough testing and screening to ensure reliable operation
Compatibility
The MAX6161AESA+T is compatible with a wide range of power management and control systems, making it a versatile choice for various applications.
Application Areas
Precision analog and mixed-signal circuits
Instrumentation and measurement equipment
Industrial control and automation systems
Medical devices and equipment
Portable electronics and battery-powered applications
Product Lifecycle
The MAX6161AESA+T is an active, in-production part. There are no plans for discontinuation at this time. Customers are advised to contact our website's sales team or their authorized distributors for the latest information on availability and any potential alternative or equivalent models.