Manufacturer Part Number
LTC6655BHLS8-4.096#PBF
Manufacturer
analog-devices
Introduction
The LTC6655BHLS8-4.096#PBF is a high-precision, low-noise voltage reference from Analog Devices. It provides a tightly regulated 4.096V output with excellent temperature stability and low noise performance, making it suitable for a wide range of applications, including data acquisition systems, instrumentation, and industrial control.
Product Features and Performance
Fixed 4.096V output voltage
Tight ±0.025% voltage tolerance
Low 2ppm/°C temperature coefficient
Ultra-low noise of 0.25ppm p-p (0.1Hz to 10Hz) and 0.67ppm rms (10Hz to 10kHz)
Wide operating temperature range of -40°C to +125°C
Low supply current of 7.5mA
8-pin CLCC surface mount package
Product Advantages
Excellent voltage stability and temperature performance
Extremely low noise for high-precision applications
Wide operating temperature range for industrial and harsh environments
Small, space-efficient surface mount package
Key Reasons to Choose This Product
Unparalleled precision and stability for demanding applications
Proven reliability and performance from a trusted manufacturer
Flexible operation across a wide range of temperatures
Compact design for space-constrained projects
Quality and Safety Features
Robust design and construction for long-term reliability
Designed and manufactured to the highest quality standards
Compliant with relevant industry safety and environmental regulations
Compatibility
The LTC6655BHLS8-4.096#PBF is a standalone voltage reference device that can be easily integrated into a wide range of electronic systems and circuits.
Application Areas
Data acquisition systems
Instrumentation and test equipment
Industrial automation and control
Medical devices
Precision measurement and sensing applications
Product Lifecycle
The LTC6655BHLS8-4.096#PBF is an active and currently available product. There are no known plans for discontinuation at this time. Customers should contact our website's sales team for information on any potential alternative or equivalent models.