參數(shù)資料
    型號: A1193LUA-T
    元件分類: 磁阻傳感器
    英文描述: MAGNETIC FIELD SENSOR-HALL EFFECT, 1-20mT, RECTANGULAR, THROUGH HOLE MOUNT
    封裝: 1.50 X 4 MM, 3 MM HEIGHT, LEAD FREE, SIP-3
    文件頁數(shù): 17/18頁
    文件大小: 427K
    代理商: A1193LUA-T
    Figure 2. Typical application circuits
    GND
    A119x
    VCC
    V+
    0.01 μF
    A
    GND
    ECU
    Package UA Only
    A
    RSENSE
    CBYP
    GND
    A119x
    VCC
    V+
    0.01 μF
    A
    GND
    RSENSE
    CBYP
    (A) Low side sensing
    (B) High side sensing
    Figure 3. Chopper stabilization circuit (Dynamic Quadrature Offset Cancellation)
    Amp
    Regulator
    Clock/Logic
    Hall Element
    Sa
    mp
    le
    an
    d
    Ho
    ld
    Low-Pass
    Filter
    Chopper Stabilization Technique
    When using Hall-effect technology, a limiting factor for
    switchpoint accuracy is the small signal voltage developed
    across the Hall element. This voltage is disproportionally small
    relative to the offset that can be produced at the output of the
    Hall sensor IC. This makes it difficult to process the signal while
    maintaining an accurate, reliable output over the specified oper-
    ating temperature and voltage ranges. Chopper stabilization is
    a unique approach used to minimize Hall offset on the chip. The
    patented Allegro technique, namely Dynamic Quadrature Offset
    Cancellation, removes key sources of the output drift induced by
    thermal and mechanical stresses. This offset reduction technique
    is based on a signal modulation-demodulation process. The
    undesired offset signal is separated from the magnetic field-
    induced signal in the frequency domain, through modulation.
    The subsequent demodulation acts as a modulation process for
    the offset, causing the magnetic field-induced signal to recover
    its original spectrum at base band, while the DC offset becomes
    a high-frequency signal. The magnetic-sourced signal then can
    pass through a low-pass filter, while the modulated DC offset is
    suppressed. The chopper stabilization technique uses a 350 kHz
    high frequency clock. For demodulation process, a sample and
    hold technique is used, where the sampling is performed at twice
    the chopper frequency. This high-frequency operation allows
    a greater sampling rate, which results in higher accuracy and
    faster signal-processing capability. This approach desensitizes
    the chip to the effects of thermal and mechanical stresses, and
    produces devices that have extremely stable quiescent Hall out-
    put voltages and precise recoverability after temperature cycling.
    This technique is made possible through the use of a BiCMOS
    process, which allows the use of low-offset, low-noise amplifiers
    in combination with high-density logic integration and sample-
    and-hold circuits.
    Programmable, Chopper-Stabilized,
    Two Wire Hall-Effect Switches
    A1190, A1192,
    and A1193
    8
    Allegro MicroSystems, Inc.
    115 Northeast Cutoff
    Worcester, Massachusetts 01615-0036 U.S.A.
    1.508.853.5000; www.allegromicro.com
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