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首页 > 电子元器件选型 > 二极管 > 齐纳二极管

MMSZ5232B-7-F

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MMSZ5232B-7-F
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Zener Diode,

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¥0.2529
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生命周期状态: Active
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模型信息提供方: Samacsys
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    MMSZ5232B-7-F Diodes Incorporated 也适用于 MMSZ5226B-7-F ,MMSZ5234B-7-F ,MMSZ5237B-7-F 等其余65个型号

    参考设计

    (7)
    Multi-Output Flyback Converter (-24V@.7A)
    PMP7848.3: This is a flyback converter with an input voltage range of 10.8V-to-14.4Vin and three outputs: 80Vout @ 0.4A, -58Vout @ 0.7A, and -24Vout @ 0.7A
    Automotive Capacitive Proximity Kick to Open Detection Reference Design
    TIDA-00506: This TI design showcases proximity sensitivity using TI's FDC1004 EVM for an automotive kick to open application within a plastic bumper. This TI design also showcases test results that include exposure to mud and water on the bumper to determine the impact of common environmental factors.
    Multi-Output Flyback Converter (80V@.4A)
    PMP7848.1: This is a flyback converter with an input voltage range of 10.8V-to-14.4Vin and three outputs: 80Vout @ 0.4A, -58Vout @ 0.7A, and -24Vout @ 0.7A
    15W Automotive Start Stop Power Supply
    PMP9476: PMP9476 is non-sync buck converter plus a non-sync boost controller accepts an input voltage of 3.5V to 40V, and outputs 5V, capable of providing 3A of current to the load.
    Multi-Output Flyback Converter (80V@.4A) - PMP7848.1 - TI Tool Folder
    PMP7848: This is a flyback converter with an input voltage range of 10.8V-to-14.4Vin and three outputs: 80Vout @ 0.4A, -58Vout @ 0.7A, and -24Vout @ 0.7A
    Multi-Output Flyback Converter (-58V@.7A)
    PMP7848.2: This is a flyback converter with an input voltage range of 10.8V-to-14.4Vin and three outputs: 80Vout @ 0.4A, -58Vout @ 0.7A, and -24Vout @ 0.7A
    Inductive Linear Position Sensing Booster Pack Reference Design
    TIDA-00460: Typical implementations of distance measurements use expensive rare-earth magnets. To lower overall system cost, this reference design walks through the implementation of industry’s first inductance-to-digital converters from TI for linear position sensing without the use of any expensive rare-earth magnets. Linear position sensing determines the position of a target that moves laterally across an inductive sensor that is generating a magnetic field. An inductance-to-digital converter (LDC), like the LDC1000 or LDC1101, senses inductance changes of an inductor that comes into proximity with a conductive target, such as a piece of metal. The LDC measures this inductance shift to provide information about the position of a conductive target over a sensor coil. The inductance shift is caused by eddy currents generated in the target due to the magnetic field of the sensor. These eddy currents generate a secondary magnetic field that opposes the sensor field, causing a shift in the observed inductance.
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