Manufacturer Part Number
LTC6908IS6-1
Manufacturer
Analog Devices
Introduction
The LTC6908IS6-1 is an easy-to-use precision oscillator that provides a programmable frequency range and spread spectrum capability.
Product Features and Performance
Programmable frequency range
Spread spectrum frequency modulation for reduced EMI
Two outputs with 180 degrees phase difference
Selectable frequency modulation span and rates
Temperature range: –40°C to +125°C
Low supply voltage operation: 2.7V to 5.5V
High frequency accuracy and stability
Small package size for space-limited applications
Product Advantages
Reduces radiated electromagnetic emissions
Facilitates synchronization with external events
Minimizes component count with integrated resistors
Enhances system reliability through high-precision signal generation
Low power consumption for battery-powered devices
Robust performance over a wide temperature range
Key Technical Parameters
Programmable frequency from 50kHz to 10MHz
Frequency Modulation (FM) span: ±1.5%, ±3.0%, ±5.0%, ±10.0%
Supply voltage range: 2.7V to 5.5V
Operating temperature range: –40°C to +125°C
Output load capacity: 15pF
Quality and Safety Features
High precision oscillator reduces timing errors
Over-temperature protection ensures device longevity
Designed for robust operation in industrial environments
Compatibility
Direct replacement for traditional crystal oscillators
Compatible with most microcontroller input specifications
Operates with standard CMOS and TTL logic levels
Application Areas
Communications equipment
Industrial and automotive electronics
Portable and battery-operated devices
Embedded systems
Networking hardware
Consumer electronics
Product Lifecycle
Product Status: Active
Not stated to be nearing discontinuation
Future availability of replacements or upgrades is likely but should be confirmed with the manufacturer for specific projects
Several Key Reasons to Choose This Product
Highly configurable to suit a wide range of applications
Spread spectrum capability minimizes EMI-related design challenges
Low power consumption supports energy-efficient designs
High frequency precision and stability for sensitive applications
Durable and reliable performance in harsh industrial environments
Easy to implement with fewer external components needed compared to other solutions
Versatile compatibility with existing systems and logic families