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Product Detailed Parameters
- Description:ZERO DELAY BUFFER 11-OUT SINGLE-
- Series:*
- Mfr:Cypress Semiconductor Corp
- Package:Bulk
- Logic Type:-
- Number of Elements:-
- Number of Bits per Element:-
- Input Type:-
- Output Type:-
- Current - Output High, Low:-
- Voltage - Supply:-
- Operating Temperature:-
- Mounting Type:-
- Package / Case:-
- Supplier Device Package:-
- Grade:-
- Qualification:-
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Overview
The IMIZ9952AA is a zero delay buffer manufactured by Cypress Semiconductor Corp, designed for high-speed signal distribution and clock management applications. It features 11 outputs and operates at frequencies up to 180 MHz with a 3.3V supply voltage. The device utilizes a single-output configuration architecture to ensure precise timing alignment in complex digital systems.
Feature Summary
- Provides zero delay buffering for critical clock signals
- Supports multi-output distribution for system synchronization
- Operates within standard 3.3V logic levels
Applications
- High-speed data acquisition systems
- Network infrastructure equipment
- Telecommunications base stations
Procurement Notes
Verify the specific suffix and package variant against official datasheets before procurement. Confirm RoHS compliance status as manufacturing sources may vary. Ensure compatibility with existing board layouts and thermal requirements. Cross-reference part numbers with authorized distributors to avoid counterfeit components.
Selection Notes
Select this component when precise clock skew minimization is required across multiple downstream loads. Evaluate the 11-output capacity against system fan-out requirements. Consider the 180 MHz operational limit relative to target bus speeds. Verify power supply stability for consistent jitter performance.
Part Context
This buffer belongs to the Z9952 family of clock distribution devices from Cypress Semiconductor. These components are engineered for low-jitter performance in high-frequency digital environments. The series supports various packaging options to accommodate different PCB form factors and density constraints.
Replacement Considerations
Consult official replacement guides for direct equivalents. Verify pinout compatibility and electrical specifications before substitution. Check for updated revisions that may alter functional parameters or package dimensions.
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