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Showing 22 results View by: Thread Post Sort by
  • TPS61240-Q1: Efficiency vs load current curve for VIN = 3.3V

    Vineet Anurag
    Vineet Anurag
    TI Thinks Resolved
    Part Number: TPS61240-Q1 Tool/software: Hi, Can you please help to get the efficiency vs load current curve for VIN = 3.3V ?, As the datasheet only specifies for 3V & 3.6V. Thanks a lot for your help !! Regards, Vineet Anurag
    • 1 month ago
    • Power management
    • Power management forum
  • TPS61240-Q1: Schematic review of TPS61240IDRVRQ1 5V0 boost regulator.

    Nikitha Mariappan
    Nikitha Mariappan
    Part Number: TPS61240-Q1 Tool/software: Kindly help here to review the below attached schematic design pdf of 5V0 boost regulator part (TPS61240IDRVRQ1) from TI. please provide your valuable feedback on the same. TPS61240IDRVRQ1 5V0 Boost.pdf
    • 5 months ago
    • Power management
    • Power management forum
  • TPS61240-Q1: schematic check

    GARETH OU
    GARETH OU
    Part Number: TPS61240-Q1 Tool/software: Hi Could you help the check below TPS61240-Q1 schematic and any need adjust For Pass ISO 7637-2 test. The spec does not mention whether there is a short circuit protection mechanism. What happens when there is a…
    • 11 months ago
    • Power management
    • Power management forum
  • TPS61240-Q1: AC analysis and Stability Simulations

    Mithun V J
    Mithun V J
    TI Thinks Resolved
    Part Number: TPS61240-Q1 Other Parts Discussed in Thread: TPS61240 Hi Team, Could you share an average SPICE model (simulation tool SIMetrix) or a SIMPLIS model for this part to carry out AC analysis.
    • over 1 year ago
    • Power management
    • Power management forum
  • TPS61240-Q1: Why 2 package schematics?

    Kazusa Suzuki
    Kazusa Suzuki
    Part Number: TPS61240-Q1 There are 2 package schematics for SON in the datasheet. DRV0006A and DRV0006D. Why 2? And which package is for which product? There is obvious difference between them. Please make it clear which one of the packages is for each…
    • over 1 year ago
    • Power management
    • Power management forum
  • TPS61240-Q1: Loop response measurement at fixed output device

    Kazuki Kuramochi
    Kazuki Kuramochi
    Part Number: TPS61240-Q1 Other Parts Discussed in Thread: TPS61240 , TPS61033 Hello Team, Our customer want to confirm the loop response at fixed output device. As far as I confirmed FB pin is just connected to the top of internal resistor divider for…
    • over 1 year ago
    • Power management
    • Power management forum
  • Answered
  • TPS61240-Q1: PSPICE model

    Dixit Jones Zachariah1
    Dixit Jones Zachariah1
    Resolved
    Part Number: TPS61240-Q1 Hi, Do we have a PSICE model for the automotive variant, TPS61240-Q1. I would like to check the circuit performance under different ambient temperatures. Regards, Dixit
    • Resolved
    • over 1 year ago
    • Power management
    • Power management forum
  • TPS61240-Q1: TPS61240IDRVQ1 operation junction temperature question

    Jessica Wu74
    Jessica Wu74
    Part Number: TPS61240-Q1 Hi Team, Could you please kindly help to check if TPS61240IDRVQ1 could work with operation TJ=127.8℃, from datasheet, it shows maximum value for operation Tj=125℃. If it is not suitable to use with Tj above 125℃, then do we have…
    • over 1 year ago
    • Power management
    • Power management forum
  • Answered
  • TPS61240-Q1: Current limit when simulated in PSPICE-for-TI

    Dixit Jones Zachariah1
    Dixit Jones Zachariah1
    Resolved
    Part Number: TPS61240-Q1 Hi, As per TPS61240-Q1: Output Current Limit - Power management forum - Power management - TI E2E support forums , the output current supported is upto 240 mA, but simulation shows that the device is unstable (considerable noise…
    • Resolved
    • over 1 year ago
    • Power management
    • Power management forum
  • Answered
  • TPS61240-Q1: Output Current Limit

    Dixit Jones Zachariah1
    Dixit Jones Zachariah1
    Resolved
    Part Number: TPS61240-Q1 Other Parts Discussed in Thread: TPS61029-Q1 Hi, We are using TPS61240-Q1 in our design with input supply as 3.0V. In the updated design we have added additional load and the total load of 5V0 is 281 mA. I would like to know if…
    • Resolved
    • over 3 years ago
    • Power management
    • Power management forum
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