Manufacturer Part Number
LT6656BIS6-1.25#TRMPBF
Manufacturer
analog-devices
Introduction
The LT6656BIS6-1.25#TRMPBF is a high-precision, low-noise, low-drift voltage reference from Analog Devices. It provides a highly accurate and stable 1.25V reference voltage for use in a wide range of applications, including data acquisition systems, instrumentation, and precision analog circuits.
Product Features and Performance
Fixed 1.25V reference voltage with ±0.1% accuracy
Low temperature coefficient of 20ppm/°C
Low noise: 30pp-p (0.1Hz to 10Hz), 50μVrms (10Hz to 10kHz)
Wide input voltage range: 2.2V to 18V
Ultra-low quiescent current: 1.5μA
Operating temperature range: -40°C to 85°C
Product Advantages
Excellent stability and accuracy for precision analog applications
Low noise and drift for high-performance data acquisition
Wide input voltage range for flexible power supply configurations
Tiny SOT-23-6 or TSOT-23-6 package for space-constrained designs
Key Reasons to Choose This Product
Highly accurate and stable voltage reference for critical analog circuits
Low noise and drift performance to preserve signal integrity
Wide operating temperature range for industrial and automotive applications
Small footprint packages for compact design layouts
Quality and Safety Features
Robust design and construction for reliable operation
Compliant with relevant safety and environmental standards
Compatibility
The LT6656BIS6-1.25#TRMPBF is compatible with a wide range of analog and mixed-signal circuits that require a precise and stable voltage reference.
Application Areas
Data acquisition systems
Instrumentation and test equipment
Precision analog circuits
Industrial and automotive electronics
Product Lifecycle
The LT6656BIS6-1.25#TRMPBF is an active product in our website's sales team's portfolio. There are no immediate plans for discontinuation, and the company offers equivalent or alternative models that can be considered for new designs. For the most up-to-date information, customers are advised to contact our website's sales team.