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DS125DF1610FB/NOPB
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DS125DF1610FB/NOPB Description
DS125DF1610FB/NOPB Description
The DS125DF1610FB/NOPB from Texas Instruments is a high-performance 16-channel retimer IC designed for demanding backplane and optical module applications. Packaged in a 196-pin FCBGA, this surface-mount device operates at a 2.5V supply voltage and complies with ROHS3 and REACH environmental standards. With an ECCN of EAR99 and HTSUS 8542.39.0001, it is suitable for global deployment. The device features a Moisture Sensitivity Level (MSL) of 4 (72 Hours), ensuring reliability in controlled manufacturing environments.
DS125DF1610FB/NOPB Features
- 16-Channel Retimer: Supports high-speed signal integrity restoration for data rates up to 28.3 Gbps per channel, ideal for 100G/400G Ethernet and InfiniBand applications.
- Advanced Equalization: Incorporates CTLE (Continuous Time Linear Equalization) and DFE (Decision Feedback Equalization) to compensate for channel losses and crosstalk.
- Low Power Consumption: Optimized for 2.5V operation, reducing thermal load in dense systems.
- Flexible Clocking: Supports asynchronous and synchronous clocking modes for versatile system integration.
- Robust Packaging: 196-pin FCBGA ensures reliable performance in high-vibration environments.
DS125DF1610FB/NOPB Applications
- Data Center Backplanes: Ensures signal integrity over long traces in high-speed switches and routers.
- Optical Modules: Retimes signals in QSFP-DD, OSFP, and CFP8 transceivers for coherent optics.
- Test & Measurement Equipment: Provides precise signal regeneration for BERTs and protocol analyzers.
- High-Performance Computing (HPC): Enables low-latency communication in AI/ML clusters and supercomputers.
Conclusion of DS125DF1610FB/NOPB
The DS125DF1610FB/NOPB stands out as a high-density, low-power retimer with superior signal integrity features, making it ideal for next-gen data center, telecom, and HPC applications. Its advanced equalization, flexible clocking, and robust packaging offer a competitive edge over similar models, ensuring reliable performance in the most demanding environments.






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