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    參數(shù)資料
    型號: M34514M8
    廠商: Mitsubishi Electric Corporation
    英文描述: SINGLE-CHIP 4-BIT CMOS MICROCOMPUTER
    中文描述: 單芯片4位微機(jī)的CMOS
    文件頁數(shù): 51/106頁
    文件大?。?/td> 1304K
    代理商: M34514M8
    51
    4513/4514 Group
    SINGLE-CHIP 4-BIT CMOS MICROCOMPUTER
    MITSUBISHI MICROCOMPUTERS
    PRELIMINARY
    Notice: This is not a final specification.
    change.
    Some parametric limits are subject to
    RAM BACK-UP MODE
    The 4513/4514 Group has the RAM back-up mode.
    When the EPOF and POF instructions are executed continuously,
    system enters the RAM back-up state. The POF instruction is
    equal to the NOP instruction when the EPOF instruction is not ex-
    ecuted before the POF instruction.
    As oscillation stops retaining RAM, the function of reset circuit and
    states at RAM back-up mode, current dissipation can be reduced
    without losing the contents of RAM. Table 20 shows the function
    and states retained at RAM back-up. Figure 38 shows the state
    transition.
    (1) Identification of the start condition
    Warm start (return from the RAM back-up state) or cold start (re-
    turn from the normal reset state) can be identified by examining the
    state of the power down flag (P) with the SNZP instruction.
    (2) Warm start condition
    When the external wakeup signal is input after the system enters
    the RAM back-up state by executing the EPOF and POF instruc-
    tions continuously, the CPU starts executing the program from
    address 0 in page 0. In this case, the P flag is “1.”
    (3) Cold start condition
    The CPU starts executing the program from address 0 in page 0
    when;
    reset pulse is input to RESET pin, or
    reset by watchdog timer is performed, or
    voltage drop detection circuit detects the voltage drop.
    In this case, the P flag is “0.”
    Table 20 Functions and states retained at RAM back-up
    Function
    Program counter (PC), registers A, B,
    carry flag (CY), stack pointer (SP) (Note 2)
    Contents of RAM
    Port level
    Timer control register W1
    Timer control registers W2 to W4, W6
    Clock control register MR
    Interrupt control registers V1, V2
    Interrupt control registers I1, I2
    Timer 1 function
    Timer 2 function
    Timer 3 function
    Timer 4 function
    A-D conversion function
    A-D control registers Q1, Q2
    Voltage comparator function
    Voltage comparator control register Q3
    Serial I/O function
    Serial I/O mode register J1
    Pull-up control register PU0
    Key-on wakeup control register K0
    Direction register FR0
    External 0 interrupt request flag (EXF0)
    External 1 interrupt request flag (EXF1)
    Timer 1 interrupt request flag (T1F)
    Timer 2 interrupt request flag (T2F)
    Timer 3 interrupt request flag (T3F)
    Timer 4 interrupt request flag (T4F)
    Watchdog timer flags (WDF1, WDF2)
    Watchdog timer enable flag (WEF)
    16-bit timer (WDT)
    A-D conversion completion flag (ADF)
    Serial I/O transmission/reception completion flag
    (SIOF)
    Interrupt enable flag (INTE)
    RAM back-up
    O
    O
    O
    O
    (Note 3)
    (Note 3)
    (Note 3)
    O
    O (Note 5)
    O
    O
    O
    O
    O
    (Note 3)
    (Note 3)
    (Note 3)
    (Note 4)
    (Note 4)
    (Note 4)
    Notes 1:“O” represents that the function can be retained, and “
    ” repre-
    sents that the function is initialized.
    Registers and flags other than the above are undefined at RAM
    back-up, and set an initial value after returning.
    2: The stack pointer (SP) points the level of the stack register and is
    initialized to “7” at RAM back-up.
    3: The state of the timer is undefined.
    4: Initialize the watchdog timer with the WRST instruction, and then
    execute the POF instruction.
    5: The state is retained when the voltage comparator function is se-
    lected with the voltage comparator control register Q3.
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