• 參數(shù)資料
    型號: MPC8536AVTANG
    廠商: Freescale Semiconductor
    文件頁數(shù): 45/126頁
    文件大?。?/td> 0K
    描述: MPU PWRQUICC III 800MHZ 783PBGA
    標準包裝: 1
    系列: MPC85xx
    處理器類型: 32-位 MPC85xx PowerQUICC III
    速度: 800MHz
    電壓: 1V
    安裝類型: 表面貼裝
    封裝/外殼: 783-BBGA,F(xiàn)CBGA
    供應(yīng)商設(shè)備封裝: 783-FCPBGA(29x29)
    包裝: 托盤
    Electrical Characteristics
    MPC8536E PowerQUICC III Integrated Processor Hardware Specifications, Rev. 5
    Freescale Semiconductor
    25
    2.1.3
    Output Driver Characteristics
    This table provides information on the characteristics of the output driver strengths. The values are preliminary estimates.
    2.2
    Power Sequencing
    The chip requires its power rails to be applied in a specific sequence in order to ensure proper chip operation. These
    requirements are as follows for power up:
    1.
    VDD_PLAT, VDD_CORE (if POWER_EN is not used to control VDD_CORE), AVDD, BVDD, LVDD, OVDD,
    SVDD,S2VDD, TVDD, XVDD and X2VDD
    2.
    [Wait for POWER_EN to assert], then VDD_CORE (if POWER_EN is used to control VDD_CORE)
    3.
    GVDD
    All supplies must be at their stable values within 50 ms.
    Items on the same line have no ordering requirement with respect to one another. Items on separate lines must be ordered
    sequentially such that voltage rails on a previous step must reach 90% of their value before the voltage rails on the current step
    reach 10% of theirs.
    In order to guarantee MCKE low during power-up, the above sequencing for GVDD is required. If there is no concern about any
    of the DDR signals being in an indeterminate state during power-up, then the sequencing for GVDD is not required.
    From a system standpoint, if any of the I/O power supplies ramp prior to the VDD platform supply, the I/Os associated with
    that I/O supply may drive a logic one or zero during power-up, and extra current may be drawn by the chip.
    During the Deep Sleep state, the VDD core supply is removed. But all other power supplies remain applied. Therefore, there is
    no requirement to apply the VDD core supply before any other power rails when the silicon waking from Deep Sleep.
    Table 4. Output Drive Capability
    Driver Type
    Programmable
    Output Impedance
    (
    Ω)
    Supply
    Voltage
    Notes
    Local bus interface utilities signals
    25
    35
    BVDD = 3.3 V
    BVDD = 2.5 V
    1
    45(default)
    125
    BVDD = 3.3 V
    BVDD = 2.5 V
    BVDD = 1.8 V
    PCI signals
    25
    OVDD = 3.3 V
    2
    42 (default)
    DDR2 signal
    16
    32 (half strength mode)
    GVDD = 1.8 V
    3
    DDR3 signal
    20
    40 (half strength mode)
    GVDD = 1.5 V
    2
    TSEC signals
    42
    LVDD = 2.5/3.3 V
    DUART, system control, JTAG
    42
    OVDD = 3.3 V
    I2C
    150
    OVDD = 3.3 V
    Notes:
    1. The drive strength of the local bus interface is determined by the configuration of the appropriate bits in PORIMPSCR.
    2. The drive strength of the PCI interface is determined by the setting of the PCI1_GNT1 signal at reset.
    3. The drive strength of the DDR2 or DDR3 interface in half-strength mode is at Tj = 105°C and at GVDD (min)
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