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    MAX6365HKA23+ datasheet by Maxim Integrated Products

    • SOT23, Low-Power uP Supervisory Circuits with Battery Backup and Chip-Enable Gating
    • Original
    • Yes
    • Yes
    • Transferred
    • EAR99
    • 8542.39.00.01
    • 8542.39.00.00
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    MAX6365HKA23+ datasheet preview

    MAX6365HKA23+ Frequently Asked Questions (FAQs)

    • The MAX6365HKA23+ is a sensitive device and requires careful layout and placement to ensure optimal performance. It is recommended to follow the layout guidelines provided in the datasheet, including keeping the input and output capacitors close to the device, using a solid ground plane, and minimizing trace lengths and widths.
    • The MAX6365HKA23+ has a built-in POR circuit that ensures the device powers up in a controlled manner. To handle the startup sequence, it is recommended to follow the power-up sequence guidelines provided in the datasheet, including powering up the input voltage (VIN) before the output voltage (VOUT). The POR timing can be adjusted using external resistors and capacitors.
    • The MAX6365HKA23+ can handle input voltages up to 5.5V. However, the output voltage is regulated to 3.3V, regardless of the input voltage. It is recommended to ensure that the input voltage is within the specified range to ensure optimal performance and prevent damage to the device.
    • The MAX6365HKA23+ has built-in input voltage transient protection and noise filtering capabilities. However, it is still recommended to add external filtering components, such as capacitors and resistors, to further reduce noise and transients. Additionally, the device has a built-in undervoltage lockout (UVLO) circuit that disables the output when the input voltage falls below a certain threshold.
    • The MAX6365HKA23+ can deliver up to 150mA of output current. However, the device's thermal performance is affected by the output current, and high output currents can cause the device to heat up. It is recommended to ensure that the device is properly heat-sinked and that the output current is within the specified range to prevent overheating.
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