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Showing 16 results View by: Thread Post Sort by
  • SN65LVDM176: SN65LVDM176 Input Differential Voltage Damage Condition

    Stephanie Leigh
    Stephanie Leigh
    TI Thinks Resolved
    Part Number: SN65LVDM176 Hello, I am using a COTS FPGA solution system containing the TI SN65LVDM176 to test an m-LVDS transceiver in a simple non-multipoint application. On another forum, it seems that this LVDM transceiver may be compatible with m…
    • 28 days ago
    • Interface
    • Interface forum
  • SN65LVDM050QDQ1 - Measured channel-to-channel skew on reception ~1ns instead of <200ps at 200Mbps

    ETTORI Marc
    ETTORI Marc
    Other Parts Discussed in Thread: SN65LVDM050 Related Case No.: CS0253265 Dear TI support, On our board, we are SN65LVDM050QDQ1 part to provide communication protocol (clock + data) between two FPGA devices. The clock operates at 100MHz (e.g. 200Mbps…
    • over 5 years ago
    • Interface
    • Interface forum
  • Answered
  • RE: SN65LVDM176: Replacing MLVDS drivers that are too slow

    Michael Ikwuyum
    Michael Ikwuyum
    Resolved
    Hi Philippe, Please help see SN65LVDM050-Q1 with an additional channel and more throughput or SN65LVDM1676 with up to 16 channels and less throughput, thanks. Best Regards, Michael.
    • over 2 years ago
    • Interface
    • Interface forum
  • RE: SN65LVDT41: Driving 21 LED display panels using LVDS

    Malik Barton57
    Malik Barton57
    Hi Craig, The interfaces are different, M-LVDS does not require termination at every receiver like you have now and use 50 ohm differential opposed to 100 ohm for regular LVDS. M-LVDS should be able to support you 21 boards. I suspect that phase alignment…
    • over 3 years ago
    • Interface
    • Interface forum
  • Answered
  • RE: SN65ELT23 sample schematic

    Barani Subbiah
    Barani Subbiah
    Resolved
    Thanks Mike. The reason we wanted to see the schematic is we got confused about the · Internal Input 50-kΩ Pull-Down Resistor ?? Is the internal pull down for all PECL diff input. If so, why we need external pull up and pull down? Also, we are…
    • over 12 years ago
    • Interface
    • Interface forum
  • アナログ回路設計者のためのアナログトレーニング ( Analog Training ) 日本語資料

    OKAWA
    OKAWA
    オームの法則といった電子回路の基本的事項から書かれています。 これからアナログ(主にオペアンプやADコンバータ)の回路設計を始める方、 すでに回路設計をしているが、改めて基礎を勉強されたい方、あるいは、実際の回路でのトラブルシューティングに役立てたい方は是非ご活用ください。 ■オペアンプ編  ・ オペアンプ-その1-.pdf  ・ オペアンプ-その2-.pdf  ・オペアンプの動作原理: SigChain01 OPAmp_Theory_V22.pdf  ・TINA- TIによるオペアンプ動作の確認…
    • over 9 years ago
    • Japan
    • アナログ
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