Manufacturer Part Number
ADF4212LBRUZ
Manufacturer
Analog Devices
Introduction
High-frequency synthesizer designed for RF and IF applications
Product Features and Performance
RF/IF Clock/Frequency Synthesizer
Phase-Locked Loop (PLL) integrated
Compatible with CMOS and TTL inputs
Provides clock output signal
Single circuit design
4GHz maximum frequency operation
Selectable input to output ratio (3:1)
Differential input/output for noise reduction
Voltage supply range from 2.7V to 3.3V
Functional across a wide temperature range (-40°C to 85°C)
Applicable for surface mount technology
Comes in a 20-TSSOP packaging
Product Advantages
High frequency precision
Suitable for high-speed applications
Robust thermal performance
Easy integration for PCB designs due to surface mount package
Low voltage operation for energy efficiency
Key Technical Parameters
Number of Circuits: 1
Input:Output Ratio: 3:1
Differential Input/Output: Yes
Frequency Max: 2.4GHz
Divider/Multiplier: Yes/No
Voltage Supply: 2.7V ~ 3.3V
Operating Temperature: -40°C ~ 85°C
Quality and Safety Features
Operates reliably in extreme temperatures
Compliance with industry standards for electronic components
Compatibility
Compatible with various digital signals (CMOS, TTL)
Suitable for integration in multiple electronic systems
Mountable on standard TSSOP pinout configurations
Application Areas
Telecommunications
Data communications
Wireless infrastructure
Satellite communication systems
RF and IF systems
Product Lifecycle
Currently active product
No indication of near future discontinuation
Upgrades or replacement products may be available as technology evolves
Reasons to Choose This Product
Manufactured by Analog Devices, a reputable semiconductor company
High-frequency operation capability up to 2.4GHz
Flexibility in voltage supply and ratio configurations
Compatibility with differential signaling for quality performance
Adequate for rough environments due to wide operating temperature range
Standard surface mount package facilitates easy implementation in design
Relevant for a variety of complex communication applications