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  • 參數(shù)資料
    型號: MPX50GS
    廠商: Motorola, Inc.
    英文描述: 0 to 50 kPa (0-7.25 psi) 60 mV FULL SCALE SPAN (TYPICAL)
    中文描述: 0至50千帕(0-7.25 PSI)的60壓全尺寸跨度(典型)
    文件頁數(shù): 3/10頁
    文件大?。?/td> 187K
    代理商: MPX50GS
    3
    Motorola Sensor Device Data
    TEMPERATURE COMPENSATION
    Figure 2 shows the typical output characteristics of the
    MPX50 series over temperature.
    The X–ducer piezoresistive pressure sensor element is a
    semiconductor device which gives an electrical output signal
    proportional to the pressure applied to the device. This de-
    vice uses a unique transverse voltage diffused semiconduc-
    tor strain gauge which is sensitive to stresses produced in a
    thin silicon diaphragm by the applied pressure.
    Because this strain gauge is an integral part of the silicon
    diaphragm, there are no temperature effects due to differ-
    ences in the thermal expansion of the strain gauge and the
    diaphragm, as are often encountered in bonded strain gauge
    pressure sensors. However, the properties of the strain
    gauge itself are temperature dependent, requiring that the
    device be temperature compensated if it is to be used over
    an extensive temperature range.
    Temperature compensation and offset calibration can be
    achieved rather simply with additional resistive components,
    or by designing your system using the MPX2050 series
    sensors.
    Several approaches to external temperature compensa-
    tion over both –40 to +125
    °
    C and 0 to +80
    °
    C ranges are
    presented in Motorola Applications Note AN840.
    LINEARITY
    Linearity refers to how well a transducer’s output follows
    the equation: Vout = Voff + sensitivity x P over the operating
    pressure range (see Figure 3). There are two basic methods
    for calculating nonlinearity: (1) end point straight line fit or (2)
    a least squares best line fit. While a least squares fit gives
    the “best case” linearity error (lower numerical value), the
    calculations required are burdensome.
    Conversely, an end point fit will give the “worst case” error
    (often more desirable in error budget calculations) and the
    calculations are more straightforward for the user. Motorola’s
    specified pressure sensor linearities are based on the end
    point straight line method measured at the midrange
    pressure.
    Figure 2. Output versus Pressure Differential
    Figure 3. Linearity Specification Comparison
    Figure 4. Cross–Sectional Diagram (not to scale)
    éééééééééééé
    éééééééééééé
    P2
    SILICONE
    DIE COAT
    WIRE BOND
    LEAD FRAME
    DIE
    STAINLESS STEEL
    METAL COVER
    EPOXY
    CASE
    RTV DIE
    BOND
    P1
    100
    0
    1
    2
    3
    4
    5
    6
    7
    8
    10
    20
    30
    40
    50
    PSI
    kPa0
    O
    PRESSURE DIFFERENTIAL
    OFFSET
    (TYP)
    OFFSET
    (VOFF)
    70
    O
    60
    50
    40
    30
    20
    10
    0
    0
    MAX
    POP
    SPAN
    (VFSS)
    PRESSURE (kPA)
    ACTUAL
    THEORETICAL
    LINEARITY
    90
    80
    70
    60
    50
    40
    30
    20
    10
    0
    SPAN
    RANGE
    (TYP)
    –40
    °
    C
    +125
    °
    C
    +25
    °
    C
    MPX50
    VS = 3 Vdc
    P1 > P2
    Figure 4 illustrates the differential or gauge configuration
    in the basic chip carrier (Case 344–15). A silicone gel iso-
    lates the die surface and wire bonds from the environment,
    while allowing the pressure signal to be transmitted to the sil-
    icon diaphragm.
    The MPX50 series pressure sensor operating characteris-
    tics and internal reliability and qualification tests are based
    on use of dry air as the pressure media. Media other than dry
    air may have adverse effects on sensor performance and
    long term reliability. Contact the factory for information re-
    garding media compatibility in your application.
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    參數(shù)描述
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