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Showing 34 results View by: Thread Post Sort by
    Answered
  • CSD17304Q3: Reach Alternative.

    MANISH KOTNI
    MANISH KOTNI
    Resolved
    Part Number: CSD17304Q3 Other Parts Discussed in Thread: CSD17578Q3A Hi TI Team, I am using CSD17304Q3 in one of the power supply design, but CSD17304Q3 is reach Affected, I need Reach unaffected, kindly suggest the alternatives.
    • Resolved
    • over 2 years ago
    • Power management
    • Power management forum
  • CSD17304Q3: ESD Information

    Mark Philip Felipe
    Mark Philip Felipe
    TI Thinks Resolved
    Part Number: CSD17304Q3 Hi Team, we would like to seek your support for the esd of this device. Thank you. Mark
    • over 5 years ago
    • Power management
    • Power management forum
  • LM5122: LM5122 Low Side FET Source-Drain Short.

    jungho LEE
    jungho LEE
    Part Number: LM5122 Other Parts Discussed in Thread: CSD17304Q3 , CSD17577Q3A , CSD18543Q3A Tool/software: Hi. I have some questions about LM5122. Our Operating condition => 15~21V Battery, Output 24V, Current : 3.5A(margin) Web-bench High Side FET…
    • 4 months ago
    • Power management
    • Power management forum
  • TPS51116-EP: High Frequency Operation at 1.8A

    Timothy Coulter
    Timothy Coulter
    Part Number: TPS51116-EP Other Parts Discussed in Thread: CSD17304Q3 , TPS51116 I am using the TPS51116 in DCAP mode for a 1.35V output. I am using Rds_on sensing, with a high/low-side TI CSD17304Q3 FET. I am seeing unusual behavior of the part at around…
    • over 2 years ago
    • Power management
    • Power management forum
  • [Case:711754]Technical Data Inquiry

    Mohamed Salem2
    Mohamed Salem2
    Other Parts Discussed in Thread: CSD17483F4 , CSD17304Q3 To Whom It May Concern, SiliconExpert Technologies has been contracted by our customer to work with their suppliers to collect component information (see attached Letter of Authorization). We…
    • over 2 years ago
    • Processors
    • Processors forum
  • Answered
  • LM5146-Q1: The difference of the bode plot generated by the quickstart and webdesigner

    suy
    suy
    Resolved
    Part Number: LM5146-Q1 Other Parts Discussed in Thread: LM5146 , CSD17304Q3 , CSD17573Q5B , LM5145-Q1 , LM25145 , LM25148-Q1 Hi team, I am using LM5146 for design, which requires input 12v and output 2v@10A. The reference design obtained by using…
    • Resolved
    • over 2 years ago
    • Power management
    • Power management forum
  • CSD17575Q3: SON3X3 package footprints

    James Evans73
    James Evans73
    TI Thinks Resolved
    Part Number: CSD17575Q3 Other Parts Discussed in Thread: CSD17304Q3 , Comparing two part datasheets (CSD17575Q3 and CSD17304Q3) with identical packages (SON 3.3mmx3.3mm), looking at recommended footprints: 1) Recommended Footprint Drawing note M0143…
    • over 6 years ago
    • Power management
    • Power management forum
  • Answered
  • RE: WEBENCH® Tools/LM5175-Q1: The time it takes for the output to go down from 12V to 5.5V

    Anna Yanovsky
    Anna Yanovsky
    Resolved
    Hi Praveen, I'm sorry for the multiple and confusing questions - we just found out that the large power consumption is due to a high Ciss of the MOSFETS that we chose. The WEBENCH suggests this model: CSD17304Q3, but it's not suitable for us because…
    • over 5 years ago
    • Simulation, hardware & system design tools
    • Simulation, hardware & system design tools forum
  • Answered
  • RE: CSD19536KTT: Mosfet suggestion for solenoid driver application

    John Wallace1
    John Wallace1
    Resolved
    Hi Ali, Thanks for your interest in TI FETs. For this application, I'd recommend at least a 30V FET. If there are transients or any chance of overvoltage, then a 40V or 60V device would be better. TI has several 30V FETs with on resistance rated at…
    • over 5 years ago
    • Power management
    • Power management forum
  • RE: CSD18543Q3AT MOSFET

    John Wallace1
    John Wallace1
    Hello tareq, Thanks for your interest in TI FETs. The CSD18543Q3A on resistance is specified at a minimum VGS = 4.5V. You must provide VGS >= 4.5V or we cannot guarantee the on resistance of the FET. As can be seen in the rds(on) vs. VGS curve on page…
    • over 5 years ago
    • Power management
    • Power management forum
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