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  • 參數(shù)資料
    型號: KMPC8343CZQAGD
    廠商: Freescale Semiconductor
    文件頁數(shù): 68/80頁
    文件大?。?/td> 0K
    描述: IC MPU PWRQUICC II 620-PBGA
    標(biāo)準(zhǔn)包裝: 2
    系列: MPC83xx
    處理器類型: 32-位 MPC83xx PowerQUICC II Pro
    速度: 400MHz
    電壓: 1.2V
    安裝類型: 表面貼裝
    封裝/外殼: 620-BBGA 裸露焊盤
    供應(yīng)商設(shè)備封裝: 620-PBGA(29x29)
    包裝: 托盤
    MPC8343EA PowerQUICC II Pro Integrated Host Processor Hardware Specifications, Rev. 11
    70
    Freescale Semiconductor
    Thermal
    that the thermocouple junction rests on the package. A small amount of epoxy is placed over the
    thermocouple junction and over about 1 mm of wire extending from the junction. The thermocouple wire
    is placed flat against the package case to avoid measurement errors caused by cooling effects of the
    thermocouple wire.
    20.2.4
    Heat Sinks and Junction-to-Case Thermal Resistance
    Some application environments require a heat sink to provide the necessary thermal management of the
    device. When a heat sink is used, the thermal resistance is expressed as the sum of a junction-to-case
    thermal resistance and a case-to-ambient thermal resistance:
    RθJA = RθJC + RθCA
    where:
    RθJA = junction-to-ambient thermal resistance (°C/W)
    RθJC = junction-to-case thermal resistance (°C/W)
    RθCA = case-to-ambient thermal resistance (°C/W)
    RθJC is device-related and cannot be influenced by the user. The user controls the thermal environment to
    change the case-to-ambient thermal resistance, RθCA. For instance, the user can change the size of the heat
    sink, the air flow around the device, the interface material, the mounting arrangement on printed-circuit
    board, or change the thermal dissipation on the printed-circuit board surrounding the device.
    The thermal performance of devices with heat sinks has been simulated with a few commercially available
    heat sinks. The heat sink choice is determined by the application environment (temperature, air flow,
    adjacent component power dissipation) and the physical space available. Because there is not a standard
    application environment, a standard heat sink is not required.
    Table 60 shows heat sink thermal resistance for PBGA of the MPC8343EA.
    f
    Table 60. Heat Sink and Thermal Resistance of MPC8343EA (PBGA)
    Heat Sink Assuming Thermal Grease
    Air Flow
    29
    × 29 mm PBGA
    Thermal Resistance
    AAVID 30
    × 30 × 9.4 mm pin fin
    Natural convection
    13.5
    AAVID 30
    × 30 × 9.4 mm pin fin
    1 m/s
    9.6
    AAVID 30
    × 30 × 9.4 mm pin fin
    2 m/s
    8.8
    AAVID 31
    × 35 × 23 mm pin fin
    Natural convection
    11.3
    AAVID 31
    × 35 × 23 mm pin fin
    1 m/s
    8.1
    AAVID 31
    × 35 × 23 mm pin fin
    2 m/s
    7.5
    Wakefield, 53
    × 53 × 25 mm pin fin
    Natural convection
    9.1
    Wakefield, 53
    × 53 × 25 mm pin fin
    1 m/s
    7.1
    Wakefield, 53
    × 53 × 25 mm pin fin
    2 m/s
    6.5
    MEI, 75
    × 85 × 12 no adjacent board, extrusion
    Natural convection
    10.1
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