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  • 參數(shù)資料
    型號(hào): MAX16031
    廠商: Maxim Integrated Products, Inc.
    英文描述: EEPROM-Based System Monitors with Nonvolatile Fault Memory
    中文描述: 基于EEPROM的系統(tǒng)監(jiān)控器,提供非易失故障存儲(chǔ)
    文件頁數(shù): 37/42頁
    文件大小: 396K
    代理商: MAX16031
    M
    EEPROM-Based System Monitors
    with Nonvolatile Fault Memory
    ______________________________________________________________________________________
    37
    Exit2-DR:
    A rising edge on TCK with TMS high while in
    this state puts the controller in the update-DR state. A
    rising edge on TCK with TMS low enters the Shift-DR
    state.
    Update-DR:
    A falling edge on TCK while in the update-
    DR state latches the data from the shift register path of
    the test data registers into a set of output latches. This
    prevents changes at the parallel output because of
    changes in the shift register. On the rising edge of TCK,
    the controller goes to the run-test/idle state if TMS is
    low or it goes to the select-DR-scan state if TMS is high.
    Select-IR-Scan:
    All test data registers retain their previ-
    ous state. The instruction register remains unchanged
    during this state. With TMS low, a rising edge on TCK
    moves the controller into the capture-IR state. TMS high
    during a rising edge on TCK puts the controller back
    into the test-logic-reset state.
    Capture-IR:
    Use the capture-IR state to load the shift
    register in the instruction register with a fixed value.
    This value is loaded on the rising edge of TCK. If TMS
    is high on the rising edge of TCK, the controller enters
    the exit1-IR state. If TMS is low on the rising edge of
    TCK, the controller enters the shift-IR state.
    Shift-IR:
    In this state, the shift register in the instruction
    register is connected between TDI and TDO and shifts
    data one stage for every rising edge of TCK toward the
    TDO serial output while TMS is low. The parallel outputs
    of the instruction register as well as all test data regis-
    ters remain at their previous states. A rising edge on
    TCK with TMS high moves the controller to the exit1-IR
    state. A rising edge on TCK with TMS low keeps the
    controller in the shift-IR state while moving data one
    stage through the instruction shift register.
    Figure 7. TAP Controller State Diagram
    TEST-LOGIC-RESET
    1
    1
    1
    1
    0
    0
    RUN-TEST/IDLE
    0
    0
    0
    0
    1
    1
    1
    0
    0
    1
    0
    1
    1
    0
    1
    0
    1
    SELECT-DR-SCAN
    SELECT-IR-SCAN
    CAPTURE-DR
    CAPTURE-IR
    SHIFT-DR
    SHIFT-IR
    EXIT1-DR
    EXIT1-IR
    PAUSE-DR
    PAUSE-IR
    EXIT2-DR
    EXIT2-IR
    UPDATE-DR
    UPDATE-IR
    0
    0
    0
    0
    1
    1
    0
    1
    1
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