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ACS732KLATR-75AB-T - Allegro Microsystems

Description: 1 MHz Bandwidth, Galvanically Isolated Current Sensor IC

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ACS732KLATR-75AB-T - Allegro Microsystems PCB footprint - Small Outline Packages - Small Outline Packages - LA, 16-Pin SOICW
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ACS732KLATR-75AB-T - Allegro Microsystems  - 3D model - Small Outline Packages - LA, 16-Pin SOICW
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ACS732KLATR-75AB-T Details

  • Manufacturer Part Number:

    ACS732KLATR-75AB-T

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Not Recommended

  • Date Of Intro:

    2018-12-10

  • Manufacturer:

    Allegro MicroSystems LLC

  • YTEOL:

    3

  • Body Breadth:

    7.5 mm

  • Body Height:

    2.35 mm

  • Body Length or Diameter:

    10.3 mm

  • JESD-609 Code:

    e3

  • Mounting Feature:

    SURFACE MOUNT

  • Number of Terminals:

    16

  • Operating Temperature-Max:

    125 °C

  • Operating Temperature-Min:

    -40 °C

  • Output:

    OPEN-DRAIN

  • Output Type:

    ANALOG VOLTAGE

  • Package Body Material:

    PLASTIC/EPOXY

  • Package Equivalence Code:

    SOP16,.4

  • Package Shape/Style:

    RECTANGULAR

  • Screening Level:

    AEC-Q100

  • Sensors/Transducers Type:

    CURRENT SENSOR

  • Supply Voltage-Max:

    5.25 V

  • Supply Voltage-Min:

    4.75 V

  • Surface Mount:

    YES

  • Terminal Finish:

    Tin (Sn)

ACS732KLATR-75AB-T Frequently Asked Questions (FAQs)

  • A symmetrical layout with a central ground plane and minimal signal trace length is recommended. Allegro provides a reference layout in their application note AN296065.
  • Calibration involves applying a known current to the device and adjusting the output voltage to match the expected value. Allegro provides a calibration procedure in their application note AN296065.
  • The maximum allowable voltage on the VCC pin is 6.5V. Exceeding this voltage may damage the device.
  • The ACS732KLATR-75AB-T is rated for operation up to 150°C. However, the device's accuracy and reliability may degrade at high temperatures. Consult Allegro's application notes for guidance on high-temperature operation.
  • Use a low-pass filter with a cutoff frequency above the desired bandwidth to filter out high-frequency noise. Additionally, use shielding and grounding techniques to minimize electromagnetic interference.

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