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    Part Img MAX706SCUA+ datasheet by Maxim Integrated Products

    • PMIC - Supervisors, Integrated Circuits (ICs), IC SUPERVISOR MPU 8-UMAX
    • Original
    • Yes
    • Yes
    • Transferred
    • EAR99
    • 8542.39.00.01
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    MAX706SCUA+ datasheet preview

    MAX706SCUA+ Frequently Asked Questions (FAQs)

    • The recommended layout and placement for the MAX706SCUA+ involves keeping the device away from high-current carrying traces, using a solid ground plane, and placing bypass capacitors close to the device. A 4-layer PCB with a dedicated power plane and a solid ground plane is recommended. Refer to the Maxim Integrated Products application note AN1991 for more details.
    • The MAX706SCUA+ requires a power-on reset (POR) to ensure proper initialization. A POR can be achieved by connecting a capacitor between the VCC pin and GND, with a value of at least 0.1uF. The device also requires a valid clock signal on the CLK pin to operate correctly. Refer to the datasheet for more information on power-up sequencing and clock requirements.
    • The MAX706SCUA+ supports clock frequencies up to 125MHz. However, the maximum clock frequency may be limited by the specific application and the quality of the clock signal. It is recommended to consult the datasheet and application notes for more information on clock frequency limitations and requirements.
    • The MAX706SCUA+ has a CMOS-compatible output stage that can be directly interfaced with most microcontrollers or digital logic. However, it is recommended to use a buffer or a level translator if the output voltage or current requirements exceed the capabilities of the MAX706SCUA+. Additionally, ensure that the interface signals are properly terminated and matched to the transmission line impedance to prevent signal reflections and distortion.
    • The typical power consumption of the MAX706SCUA+ depends on the clock frequency, output load, and operating conditions. According to the datasheet, the typical power consumption is around 15mA at 125MHz clock frequency and 3.3V supply voltage. However, this value can vary depending on the specific application and operating conditions. It is recommended to consult the datasheet and perform power consumption calculations based on the specific use case.
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