Manufacturer Part Number
MAX6126A25+T
Manufacturer
Analog Devices
Introduction
The MAX6126A25+T is a high-precision, low-noise, ultra-stable voltage reference from Analog Devices, designed for power management applications.
Product Features and Performance
High-precision voltage reference at 2.5V
Low noise performance with 1.45µVp-p from 0.1Hz to 10Hz
Excellent temperature stability with a coefficient of 3ppm/°C
Supports a wide input voltage range from 2.7V to 12.6V
Capable of sourcing up to 10 mA output current
Low supply current requirement of 725µA
Operational over a wide temperature range from -40°C to +125°C
Product Advantages
Ultra-stable output voltage enhances system accuracy
Low noise improves system signal integrity
Wide operating temperature range suitable for industrial applications
High output current capability for broader application usage
Minimal power consumption aids in energy-efficient designs
Key Technical Parameters
Output Voltage (Fixed): 2.5V
Output Current: 10 mA
Voltage Tolerance: ±0.06%
Temperature Coefficient: 3ppm/°C
Supply Voltage: 2.7V ~ 12.6V
Supply Current: 725µA
Noise (0.1Hz to 10Hz): 1.45µVp-p
Quality and Safety Features
Manufactured by Analog Devices, a leader in high-performance semiconductors
Compatibility
Compatible with various digital and analog applications
Designed for easy surface-mount technology (SMT) assembly with the 8-TSSOP, 8-MSOP package
Application Areas
Precision instrumentation
Data acquisition systems
High-end audio equipment
Medical devices
Industrial control systems
Product Lifecycle
Current product status: Active
Not indicated as nearing discontinuation, ensuring long-term availability and support
Several Key Reasons to Choose This Product
Precision and stability reduce calibration frequency and improve reliability
Low noise output enhances performance in sensitive applications
Broad compatibility with various industrial and consumer applications
Support from a reputable semiconductor manufacturer ensures quality and long-term availability
Energy-efficient design aids in reducing overall system power consumption