• 參數(shù)資料
    型號(hào): 24AA16SL
    廠(chǎng)商: Microchip Technology Inc.
    英文描述: 16K 1.8V I 2 C O Serial EEPROM
    中文描述: 16K的1.8VI 2二氧化碳串行EEPROM
    文件頁(yè)數(shù): 6/12頁(yè)
    文件大?。?/td> 76K
    代理商: 24AA16SL
    24AA16
    DS21054E-page 6
    1996 Microchip Technology Inc.
    5.0
    ACKNOWLEDGE POLLING
    Since the device will not acknowledge during a write
    cycle, this can be used to determine when the cycle is
    complete (this feature can be used to maximize bus
    throughput). Once the stop condition for a write com-
    mand has been issued from the master, the device ini-
    tiates the internally timed write cycle. ACK polling can
    be initiated immediately. This involves the master send-
    ing a start condition followed by the control byte for a
    write command (R/W = 0). If the device is still busy with
    the write cycle, then no ACK will be returned. If the
    cycle is complete, then the device will return the ACK
    and the master can then proceed with the next read or
    write command. See Figure 5-1 for flow diagram.
    FIGURE 5-1:
    ACKNOWLEDGE POLLING
    FLOW
    6.0
    WRITE PROTECTION
    The 24AA16 can be used as a serial ROM when the
    WP pin is connected to V
    CC
    . Programming will be inhib-
    ited and the entire memory will be write-protected.
    Send
    Write Command
    Send Stop
    Condition to
    Initiate Write Cycle
    Send Start
    Send Control Byte
    with R/W = 0
    Did Device
    Acknowledge
    (ACK = 0)
    Next
    Operation
    NO
    YES
    7.0
    READ OPERATION
    Read operations are initiated in the same way as write
    operations with the exception that the R/W bit of the
    slave address is set to one. There are three basic types
    of read operations: current address read, random read,
    and sequential read.
    7.1
    Current Address Read
    The 24AA16 contains an address counter that main-
    tains the address of the last word accessed, internally
    incremented by one. Therefore, if the previous access
    (either a read or write operation) was to address n, the
    next current address read operation would access data
    from address n + 1. Upon receipt of the slave address
    with R/W bit set to one, the 24AA16 issues an acknowl-
    edge and transmits the 8-bit data word. The master will
    not acknowledge the transfer but does generate a stop
    condition and the 24AA16 discontinues transmission
    (Figure 7-1).
    7.2
    Random Read
    Random read operations allow the master to access
    any memory location in a random manner. To perform
    this type of read operation, first the word address must
    be set. This is done by sending the word address to the
    24AA16 as part of a write operation. After the word
    address is sent, the master generates a start condition
    following the acknowledge. This terminates the write
    operation, but not before the internal address pointer is
    set. Then the master issues the control byte again but
    with the R/W bit set to a one. The 24AA16 will then
    issue an acknowledge and transmits the eight bit data
    word. The master will not acknowledge the transfer but
    does generate a stop condition and the 24AA16 discon-
    tinues transmission (Figure 7-2).
    7.3
    Sequential Read
    Sequential reads are initiated in the same way as a ran-
    dom read except that after the 24AA16 transmits the
    first data byte, the master issues an acknowledge as
    opposed to a stop condition in a random read. This
    directs the 24AA16 to transmit the next sequentially
    addressed 8-bit word (Figure 7-3).
    To provide sequential reads the 24AA16 contains an
    internal address pointer which is incremented by one at
    the completion of each operation. This address pointer
    allows the entire memory contents to be serially read
    during one operation.
    7.4
    Noise Protection
    The 24AA16 employs a V
    CC
    threshold detector circuit
    which disables the internal erase/write logic if the V
    CC
    is below 1.5 volts at nominal conditions.
    The SCL and SDA inputs have Schmitt trigger and filter
    circuits which suppress noise spikes to assure proper
    device operation even on a noisy bus.
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