1 pcs : MAX17291BANT+T - Voltage Regulators - Switching Regulators High-Voltage microPower Boost Converter
    • 1 pcs : MAX17291BANT+T - Voltage Regulators - Switching Regulators High-Voltage microPower Boost Converter

    1 pcs : MAX17291BANT+T - Voltage Regulators - Switching Regulators High-Voltage microPower Boost Converter

    electronicparts-UK/M/700-MAX17291BANT+T
    £10.22
    Delivery: 7-10 business days
    Quantity
    10 Items

    Description
    MAX17291B High-Voltage Micropower Boost Converter Analog Devices MAX17291B High-Voltage Micropower Boost Converter is a low quiescent current (IQ) step-up DC-DC converter with a 1A peak inductor current limit and True Shutdown™. The True Shutdown mode disconnects the output from the input with no forward or reverse current. Meanwhile, the output voltage is set with an external resistor divider. Analog Devices MAX17291B Converter provides high efficiency throughout the load range and a 6-Bump WLP package size. The highly-integrated boost converter is ideal for high-voltage applications and tiny solution sizes, such as sensor modules. The MAX17291B integrates a power switch, power diode, and output load switch. The MAX17291B Micropower Boost Converter is housed in a small 6-bump WLP with an operating temperature range of -40°C to +125°C.
    Product Details
    electronicparts-UK/M/700-MAX17291BANT+T
    MAX17291BANT+T
    10 Items

    Data sheet

    Manufacturer
    Analog Devices Inc.
    Maximum Operating Temperature
    + 125 C
    Minimum Operating Temperature
    - 40 C
    Mounting Style
    SMD/SMT
    Type
    Micropower
    Output Current
    16 mA
    Product Type
    Switching Voltage Regulators
    Package/Case
    WLP-6
    Product Category
    Voltage Regulators - Switching Regulators
    Quiescent Current
    28 uA
    Packaging
    Cut Tape
    RoHS
    Details
    Supply Voltage - Min
    1.8 V
    Brand
    Analog Devices / Maxim Integrated
    Factory Pack Quantity Factory Pack Quantity
    5000
    Subcategory
    PMIC - Power Management ICs