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Showing 30 results View by: Thread Post Sort by
    Answered
  • TXV0108-Q1: TXV0108-Q1

    Anjana Jahagirdar
    Anjana Jahagirdar
    Resolved
    Part Number: TXV0108-Q1 Other Parts Discussed in Thread: TXV0108 , TXV0106-Q1 , TXB0304 Tool/software: Hi, I need help with selecting appropriate level shifter. I need to use it for SDHC, so I need translations from 3.3 to 1.8 and vice versa. - The…
    • Resolved
    • 9 months ago
    • Logic
    • Logic forum
  • Answered
  • TXV0108-Q1: Alternative Source

    Jared Becker
    Jared Becker
    Resolved
    Part Number: TXV0108-Q1 Other Parts Discussed in Thread: SN74AVC8T245-Q1 , TXV0108 Hi Team, Is there an alternative source you would recommend to the TXV0108QWRGYRQ1 to second source ourselves from a TI perspective? Device would need to be pin-to-pin…
    • Resolved
    • 2 months ago
    • Interface
    • Interface forum
  • Answered
  • TXV0108-Q1: TXV0108-Q1

    Roni Koziel
    Roni Koziel
    Resolved
    Part Number: TXV0108-Q1 Tool/software: Hi, I would like to verify if I placed 3.3V for VCCB and for VCCA 1.8V, the signals A1 to A8 are driven by 3.3V Is the component will work correctly or damaged? Note: I saw in the datasheet section 7.3…
    • Resolved
    • over 1 year ago
    • Logic
    • Logic forum
  • TXV0108-Q1: From 3.3V Port A to 1.2V Port B Maximum data rate

    George Huang
    George Huang
    Part Number: TXV0108-Q1 Other Parts Discussed in Thread: SN74AUC244 , SN74AUC34 , TXV0108-EVM Tool/software: Hi, From the datasheet this info cannot be found, please advise: from 3.3V Port A to 1.2V Port B, is the data speed 100MHz (200Mbps) supported…
    • over 1 year ago
    • Logic
    • Logic forum
  • TXV0108-Q1: propagation delay

    Shinji Tsuji
    Shinji Tsuji
    TI Thinks Resolved
    Part Number: TXV0108-Q1 Hi team, Could you please advise the minimum propagation delay level shifter for my use case below? I/F : SPI data rate : 25MHz I found TXV0108-Q1. Is this the right device? Since slave device has large propagation…
    • over 2 years ago
    • Logic
    • Logic forum
  • RE: SN74AXC8T245-Q1: Query on Data Rate of SN74LXC8T245QPWRQ1 and SN74AXC8T245-Q1

    Joshua Salinas
    Joshua Salinas
    Hello Arunkumar, If you are planning to use RGMII, I would recommend you look into TXV0106-Q1 or TXV0108-Q1 . We cannot guarantee RGMII timing requirements with AXC or LXC. Regards, Josh
    • 30 days ago
    • Power management
    • Power management forum
  • LSF0108-Q1: Regarding Pull up values

    Maharajan P
    Maharajan P
    TI Thinks Resolved
    Part Number: LSF0108-Q1 Other Parts Discussed in Thread: TXV0108-Q1 Hi team, I am using the following Voltage level ranslating part in my design. LSF0108QPWRQ1 I came across some of the cases in the forum saying that It requires Pull up resistors for…
    • 3 months ago
    • Logic
    • Logic forum
  • Answered
  • TXB0108-Q1: I have a question about data latency.

    ?? ??
    ?? ??
    Resolved
    Part Number: TXB0108-Q1 Other Parts Discussed in Thread: TXV0108-Q1 What is the typical data delay when used at 3.3V? Also, the datasheet's switching characteristics state that it is 4.9ns (MAX), but is there actually a 4.9ns variation? It would be helpful…
    • Resolved
    • 7 months ago
    • Clock & timing
    • Clock & timing forum
  • [FAQ] How can I estimate Data Rate Frequency not given for my voltage level?

    Michael Ikwuyum
    Michael Ikwuyum
    Other Parts Discussed in Thread: TXV0108-Q1 FAQ: Logic and Voltage Translation > Fixed DIR / DIR CNTRL Level-Shifters >> Current FAQ Data rate depends on the system designers tolerance for various parameters such as VOL / VOH levels, duty cycle distortion…
    • over 2 years ago
    • Logic
    • Logic forum
  • Answered
  • SN74LXC8T245-Q1: 300Mbps@VCCA=1V8,VCCB=3V3 choice

    Ryan Wang
    Ryan Wang
    Resolved
    Part Number: SN74LXC8T245-Q1 Other Parts Discussed in Thread: SN74AXC8T245-Q1 , TXV0108-Q1 Tool/software: Team, Customer wants 8 channel automotive level shift which can support 300Mbps@VCCA=1V8,VCCB=3V3. Input transition rate 10ns/V. I find…
    • Resolved
    • over 1 year ago
    • Logic
    • Logic forum
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