


Analog Devices Inc.
AD9558BCPZ
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AD9558BCPZ Description
AD9558BCPZ Description
The AD9558BCPZ from Analog Devices Inc. is a high-performance clock translator and jitter attenuator designed for demanding synchronization applications in Ethernet, SONET/SDH, and Stratum networks. Housed in a compact 64-lead LFCSP package, this IC supports 1.71V to 3.465V supply voltages, ensuring compatibility with low-power and high-speed systems. With a maximum frequency of 1.25GHz, it excels in precision timing, offering 4:6 input-to-output ratio flexibility and supporting CMOS, LVDS, LVPECL inputs and CMOS, HSTL, LVDS outputs. Its integrated PLL ensures low-jitter clock generation, critical for high-speed data transmission.
AD9558BCPZ Features
- Versatile I/O Support: Accommodates differential inputs/outputs (LVDS, LVPECL, HSTL) for noise immunity in high-speed designs.
- Low-Jitter Performance: Integrated PLL reduces phase noise, ideal for SONET/SDH and telecom clock distribution.
- Wide Supply Range: Operates from 1.71V to 3.465V, suitable for mixed-voltage systems.
- High Frequency: Supports up to 1.25GHz, enabling use in 10G/40G/100G Ethernet and optical networks.
- Robust Packaging: 64LFCSP ensures thermal efficiency and reliability in surface-mount applications.
- Compliance: ROHS3 and REACH unaffected, with MSL 3 (168 hours) moisture sensitivity.
AD9558BCPZ Applications
- Telecom Infrastructure: Synchronization in OTN, SDH, and Stratum 3/4E timing cards.
- Data Centers: Clock translation for high-speed switches, routers, and servers.
- Optical Transport Networks: Jitter cleanup and frequency conversion in DWDM systems.
- Test & Measurement: Precision timing for BERTs and network analyzers.
- Industrial Systems: Resilient clocking in 5G base stations and FPGA-based designs.
Conclusion of AD9558BCPZ
The AD9558BCPZ stands out for its flexible I/O, low-jitter PLL, and wide frequency range, making it a top choice for high-performance timing applications. Its compact form factor and compliance with industry standards ensure seamless integration into advanced telecom and data center equipment. Engineers favor this IC for its reliability in phase-sensitive systems, solidifying its role as a cornerstone in modern clock distribution architectures.



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