THVD8000 Line Driver for AC Line PLC Bench Setup

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Explore the setup of THVD8000 line driver for AC line PLC, including transmitting and receiving paths, signal flow, power distribution, and components involved. Follow the signal path from THVD8000EVM to AFE031 boostpack, transformer, HV capacitor, and UCC28880EVM. Understand the power flow from AC line to THVD8000EVM via UCC28880EVM and AFE031 boostpack. Dive into signal transmission through THS6222EVM, coupling circuits, and more for a comprehensive insight.


Uploaded on Sep 22, 2024 | 0 Views


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  1. THVD8000+line driver for AC line PLC bench setup

  2. Transmitting Path Components: THVD8000EVM, THS6222EVM, AFE031 boostpack, one transformer, one HV capacitor, UCC28880EVM Signal path: THVD8000EVM => THS6222EVM => AFE031 boostpack => transformer/HV capacitor => AC line Power: AC line => UCC28880EVM => THS6222EVM => AFE031 boostpack => THVD8000EVM

  3. Signal: THVD8000 -> THS6222 J3 TP4 J4 TP3

  4. Signal: THS6222 -> AFE031 boostpack (AFE031 chip unpowered) PAOUT J5

  5. Signal: AFE031 boostpack -> coupling circuit Line Coupling + Line Coupling - Phase Neutral

  6. Power: UCC28880EVM -> THS6222EVM V+ V- Phase Neutral

  7. Power: THS6222EVM -> AFE031 boostpack V+ V- TB2

  8. Power: AFE031 boostpack -> THVD8000EVM Vcc GND Vdd GND

  9. Receiving Path Components: THVD8000EVM, AFE031 boostpack, one transformer, one HV capacitor, UCC28880EVM Signal path: AC line => transformer/HV capacitor => AFE031 boostpack => THVD8000EVM Power: AC line => UCC28880EVM => AFE031 boostpack => THVD8000EVM

  10. Signal: coupling circuit -> AFE031 boostpack Line Coupling + Line Coupling - Phase Neutral

  11. Signal: AFE031 boostpack -> THVD8000EVM (AFE031 chip unpowered) RXPGA1IN TP4

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