1 pcs : MAX17435ETG+T - Battery Management High-Frequency, Low-Cost SMBus Battery C
    • 1 pcs : MAX17435ETG+T - Battery Management High-Frequency, Low-Cost SMBus Battery C

    1 pcs : MAX17435ETG+T - Battery Management High-Frequency, Low-Cost SMBus Battery C

    Allparts-UK/M/700-MAX17435ETGT
    £33.53
    Delivery: 7-10 business days
    Quantity
    10 Items

    Description
    MAX17435 SMBus Chargers Analog Devices MAX17435 High-Frequency SMBus Chargers simplify the construction of accurate and efficient chargers and provide up to 7A of charge current to 2, 3, or 4 Li+ cells in series. These devices allow the charge setting to be programmed via the SMBus interface, eliminating the need for external components and improving design flexibility. The charge current and input current-limit sense amplifiers have low offset errors and can use 10mΩ sense resistors. These Analog Devices SMBus charger ICs are capable of operating at 850kHz and include a digital output that indicates the presence of the adapter, an analog output that indicates the adapter or battery current, and a digital output that indicates when the adapter current exceeds a user-defined threshold. The MAX17435 is ideal for use with notebook computers, PDAs, mobile communications devices, and 2- to 4- Li+ cell battery-powered devices.
    Product Details
    Allparts-UK/M/700-MAX17435ETGT
    MAX17435ETG+T
    10 Items

    Data sheet

    Manufacturer
    Analog Devices Inc.
    Series
    MAX17435
    Maximum Operating Temperature
    + 85 C
    Minimum Operating Temperature
    - 40 C
    Mounting Style
    SMD/SMT
    Output Current
    7 A
    Product Type
    Battery Management
    Package/Case
    TQFN-24
    Product Category
    Battery Management
    Packaging
    MouseReel
    RoHS
    Details
    Brand
    Analog Devices / Maxim Integrated
    Product
    Charge Management
    Factory Pack Quantity Factory Pack Quantity
    2500
    Subcategory
    PMIC - Power Management ICs
    Part # Aliases
    MAX17435
    Operating Supply Current
    1.5 mA