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    Part Img TPS75825KTTT datasheet by Texas Instruments

    • Single Output LDO, 3.0A, Fixed(2.5V), Fast Transient Response, Low Quiescent Current 5-DDPAK/TO-263
    • Original
    • Yes
    • Unknown
    • Obsolete
    • EAR99
    • 8542.39.00.01
    • 8542.39.00.00
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    TPS75825KTTT datasheet preview

    TPS75825KTTT Frequently Asked Questions (FAQs)

    • The maximum input voltage that can be applied to the TPS75825KTTT is 6.5V, as specified in the datasheet. However, it's recommended to operate the device within the recommended input voltage range of 2.7V to 5.5V for optimal performance and reliability.
    • To ensure the stability of the output voltage, it's essential to follow the recommended layout and component selection guidelines provided in the datasheet. This includes using a suitable output capacitor, such as a 10uF ceramic capacitor, and placing it close to the output pin. Additionally, ensure that the input capacitor is properly sized and placed to minimize input voltage ripple.
    • The TPS75825KTTT can deliver up to 150mA of output current. However, the actual output current capability may be limited by the input voltage, output voltage, and ambient temperature. It's essential to consult the datasheet and perform thermal calculations to ensure the device operates within its recommended specifications.
    • Proper thermal management is crucial to ensure the reliability and performance of the TPS75825KTTT. This can be achieved by providing adequate heat sinking, such as using a thermal pad or a heat sink, and ensuring good airflow around the device. It's also essential to follow the recommended layout and component selection guidelines to minimize thermal resistance.
    • When designing the PCB layout for the TPS75825KTTT, it's essential to follow the recommended layout guidelines provided in the datasheet. This includes placing the input capacitor close to the input pin, using a solid ground plane, and minimizing the distance between the output capacitor and the output pin. Additionally, ensure that the PCB layout is designed to minimize electromagnetic interference (EMI) and electromagnetic compatibility (EMC) issues.
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