Manufacturer Part Number
LTC6907IS6#TRMPBF
Manufacturer
analog-devices
Introduction
The LTC6907IS6#TRMPBF is a high-performance, silicon oscillator that provides a programmable, low-power clock source for a wide range of applications. It offers excellent frequency stability and accuracy, making it suitable for use in various electronic systems that require reliable timing.
Product Features and Performance
Programmable frequency range: 40kHz to 4MHz
Low supply voltage: 3V to 3.6V
Low supply current: 305μA
Wide operating temperature range: -40°C to 85°C
Small package size: SOT-23-6 Thin, TSOT-23-6
Surface mount design for easy integration
Product Advantages
Highly accurate and stable clock source
Programmable frequency to meet specific application requirements
Low power consumption for efficient energy usage
Wide temperature range for reliable operation in diverse environments
Compact package for space-constrained designs
Key Reasons to Choose This Product
Exceptional frequency stability and accuracy
Flexible programmability to suit various application needs
Efficient power management for extended battery life
Robust performance across a wide temperature range
Convenient surface mount packaging for easy integration
Quality and Safety Features
Rigorously tested for reliability and performance
Compliant with industry standards and regulations
Designed and manufactured to high-quality standards
Compatibility
The LTC6907IS6#TRMPBF is compatible with a wide range of electronic systems and applications that require a programmable, low-power clock source.
Application Areas
Industrial automation and control systems
Telecommunications equipment
Consumer electronics
Portable devices
Medical devices
Automotive electronics
Product Lifecycle
The LTC6907IS6#TRMPBF is an active product, and there are no plans for discontinuation. However, as technology advances, there may be equivalent or alternative models available. Customers are advised to contact our website's sales team for the most up-to-date information on product availability and alternatives.