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      參數資料
      型號: MPC8535EAVTANG
      廠商: Freescale Semiconductor
      文件頁數: 3/126頁
      文件大小: 0K
      描述: MCU PWRQUICC II 800MHZ 783-PBGA
      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,FCBGA
      供應商設備封裝: 783-FCPBGA(29x29)
      包裝: 托盤
      MPC8535E PowerQUICC III Integrated Processor Hardware Specifications, Rev. 5
      Electrical Characteristics
      Freescale Semiconductor
      100
      VTX-DE-RATIO
      De- Emphasized
      Differential Output
      Voltage (Ratio)
      –3.0
      –3.5
      –4.0
      dB
      Ratio of the VTX-DIFFp-p of the second and following
      bits after a transition divided by the VTX-DIFFp-p of the
      first bit after a transition. See Note 2.
      TTX-EYE
      Minimum TX Eye
      Width
      0.70
      UI
      The maximum Transmitter jitter can be derived as
      TTX-MAX-JITTER = 1 – TTX-EYE= 0.3 UI.
      See Notes 2 and 3.
      TTX-EYE-MEDIAN-to-
      MAX-JITTER
      Maximum time
      between the jitter
      median and
      maximum
      deviation from the
      median.
      0.15
      UI
      Jitter is defined as the measurement variation of the
      crossing points (VTX-DIFFp-p = 0 V) in relation to a
      recovered TX UI. A recovered TX UI is calculated over
      3500 consecutive unit intervals of sample data. Jitter
      is measured using all edges of the 250 consecutive UI
      in the center of the 3500 UI used for calculating the TX
      UI. See Notes 2 and 3.
      TTX-RISE, TTX-FALL
      D+/D- TX Output
      Rise/Fall Time
      0.125
      UI
      See Notes 2 and 5
      VTX-CM-ACp
      RMS AC Peak
      Common Mode
      Output Voltage
      ——
      20
      mV
      VTX-CM-ACp = RMS(|VTXD+ +VTXD-|/2 – VTX-CM-DC)
      VTX-CM-DC = DC(avg) of |VTX-D+ +VTX-D-|/2
      See Note 2
      VTX-CM-DC-ACTIVE-
      IDLE-DELTA
      Absolute Delta of
      DC Common
      Mode Voltage
      During L0 and
      Electrical Idle
      0
      100
      mV
      |VTX-CM-DC (during L0) – VTX-CM-Idle-DC (During Electrical
      Idle)|<=100 mV
      VTX-CM-DC = DC(avg) of |VTX-D+ +VTX-D-|/2 [L0]
      VTX-CM-Idle-DC = DC(avg) of |VTX-D+ + VTX-D-|/2
      [Electrical Idle]
      See Note 2.
      VTX-CM-DC-LINE-DELTA Absolute Delta of
      DC Common
      Mode between D+
      and D–
      0—
      25
      mV
      |VTX-CM-DC-D+ – VTX-CM-DC-D-| <= 25 mV
      VTX-CM-DC-D+ = DC(avg) of |VTX-D+|
      VTX-CM-DC-D- = DC(avg) of |VTX-D-|
      See Note 2.
      VTX-IDLE-DIFFp
      Electrical Idle
      differential Peak
      Output Voltage
      0—
      20
      mV
      VTX-IDLE-DIFFp = |VTX-IDLE-D+ -VTX-IDLE-D-| <= 20 mV
      See Note 2.
      VTX-RCV-DETECT
      The amount of
      voltage change
      allowed during
      Receiver Detection
      600
      mV
      The total amount of voltage change that a transmitter
      can apply to sense whether a low impedance
      Receiver is present. See Note 6.
      VTX-DC-CM
      The TX DC
      Common Mode
      Voltage
      0
      3.6
      V
      The allowed DC Common Mode voltage under any
      conditions. See Note 6.
      ITX-SHORT
      TX Short Circuit
      Current Limit
      90
      mA
      The total current the Transmitter can provide when
      shorted to its ground
      TTX-IDLE-MIN
      Minimum time
      spent in Electrical
      Idle
      50
      UI
      Minimum time a Transmitter must be in Electrical Idle
      Utilized by the Receiver to start looking for an
      Electrical Idle Exit after successfully receiving an
      Electrical Idle ordered set
      Table 71. Differential Transmitter (TX) Output Specifications (continued)
      Symbol
      Parameter
      Min
      Nom
      Max
      Units
      Comments
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