Manufacturer Part Number
MAX6126A21+
Manufacturer
Analog Devices
Introduction
The MAX6126A21+ is a precision, low-noise, high initial accuracy voltage reference from Analog Devices' Power Management ICs category.
Product Features and Performance
High-precision voltage reference with fixed 2.048V output
Low output noise of 1.3µVp-p from 0.1Hz to 10Hz
Excellent temperature coefficient of 5ppm/°C, ensuring stable output over wide temperature ranges
Supports output currents up to 10 mA
Low supply current of 725µA, optimizing power usage
Wide input voltage range from 2.7V to 12.6V, offering flexibility in a variety of power supply configurations
Product Advantages
High initial accuracy (±0.06% tolerance) ensures precise voltage reference
Ultra-low noise enhances performance in sensitive applications
The excellent temperature coefficient maintains output stability across temperature changes
Wide input voltage range adds versatility across different power configurations
Compact 8-TSSOP/8-MSOP package facilitates space-saving designs
Key Technical Parameters
Voltage - Output (Min/Fixed): 2.048V
Current - Output: 10 mA
Tolerance: ±0.06%
Temperature Coefficient: 5ppm/°C
Noise - 0.1Hz to 10Hz: 1.3µVp-p
Voltage - Input: 2.7V ~ 12.6V
Current - Supply: 725µA
Operating Temperature: -40°C ~ 125°C
Quality and Safety Features
Manufactured by Analog Devices, known for high-quality standards and reliability
Designed for robust performance in a wide operating temperature range
Compatibility
Compatible with various analog and digital circuits requiring a precise reference voltage
Mountable on surface mount technology (SMT) boards with its 8-TSSOP/8-MSOP footprint
Application Areas
High-precision instrumentation
Data acquisition systems
Industrial control systems
Medical devices
Portable, battery-powered equipment
Product Lifecycle
Status: Active
Indicates ongoing manufacture and support, without immediate risk of discontinuation
Several Key Reasons to Choose This Product
Ultra-low noise output makes it ideal for high-performance analog-to-digital conversion (ADC) applications
High stability and low temperature coefficient ensure reliable operation in changing environments
Low dropout voltage and supply current improve power efficiency, essential for portable and battery-powered applications
Wide operating temperature range supports use in industrial and automotive applications
High initial accuracy and low drift reduce the need for calibration, saving time and resources