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      參數(shù)資料
      型號(hào): BU-61583D3-411L
      廠商: DATA DEVICE CORP
      元件分類: 微控制器/微處理器
      英文描述: 2 CHANNEL(S), 1M bps, MIL-STD-1553 CONTROLLER, CQIP70
      封裝: CERAMIC, DIP-70
      文件頁數(shù): 14/48頁
      文件大?。?/td> 378K
      代理商: BU-61583D3-411L
      21
      Data Device Corporation
      www.ddc-web.com
      BU-61582
      G-08/02-250
      PROGRAMMABLE BUSY
      As a means of providing compliance with Notice 2 of MIL-STD-
      1553B, the BU-61582 RT provides a software controllable
      means for setting the Busy Status Word bit as a function of sub-
      address. By a Busy Lookup Table in the BU-61582 address
      space, it is possible to set the Busy bit based on command
      broadcast/own address, T/R bit, and subaddress. Another pro-
      grammable option, allows received Data Words to be either
      stored or not stored for messages, when the Busy bit is set.
      OTHER RT FUNCTIONS
      The BU-61582 allows the hardwired RT Address to be read by
      the host processor. Also, there are options for the RT FLAG
      Status Word bit to be set under software control and/or automat-
      ically following a failure of the loopback self-test. Other software
      controllable RT options include software programmable RT
      Status and RT BIT words, automatic clearing of the Service
      Request Status Word bit following a Transmit Vector Word mode
      command, capabilities to clear and/or load the Time Tag Register
      following receipt of Synchronize mode commands, options
      regarding Data Word transfers for the Busy and/or Message
      Error (Illegal) Status Word bits, and for handling of 1553A and
      reserved mode codes.
      MONITOR (MT) ARCHITECTURE
      The BU-61582 provides three bus monitor (MT) modes:
      (1) The “AIM-HY” (default) or “AIM-HY’er” Word Monitor mode.
      (2) A Selective Message Monitor mode.
      (3) A Simultaneous Remote Terminal/Selective Message Monitor
      mode.
      The strong recommendation for new applications is the use of
      the Selective Message Monitor, rather than the Word Monitor.
      Besides providing monitor filtering based on RT Address,T/R bit,
      and Subaddress, the Message Monitor eliminates the need to
      determine the start and end of messages by software. The devel-
      opment of such software tends to be a tedious task. Moreover, at
      run time, it tends to entail a high degree of CPU overhead.
      WORD MONITOR
      In the Word Monitor mode, the BU-61582 monitors both 1553
      buses. After initializing the Word Monitor and putting it on-line
      the BU-61582 stores all Command, Status, and Data Words
      received from both buses. For each word received from either
      bus, the BU-61582 stores a pair of words in RAM. The first word
      is the 16 bits of data from the received word. The second word is
      the Monitor Identification (ID), or “Tag” word. The ID Word con-
      tains information relating to bus channel, sync type, word validi-
      ty, and interword time gaps. The BU-61582 stores data and ID
      words in a circular buffer in the shared RAM address space.
      TABLE 25 shows the bit mapping for the Monitor ID word.
      MONITOR TRIGGER WORD
      There is a Trigger Word Register that provides additional flexibil-
      ity for the Word Monitor mode. The BU-61582 stores the value of
      the 16-bit Trigger Word in the MT Trigger Word Register. The con-
      tents of this register represent the value of the Trigger Command
      Word. The BU-61582 has programmable options to start or stop
      the Word Monitor, and/or to issue an interrupt request following
      receipt of the Trigger Command Word from the 1553 bus.
      SELECTIVE MESSAGE MONITOR MODE
      The BU-61582 Selective Message Monitor provides features to
      greatly reduce the software and processing burden of the host
      CPU. The Selective Message Monitor implements selective mon-
      itoring of messages from a dual 1553 bus, with the monitor fil-
      tering based on the RT Address, T/R bit, and Subaddress fields
      of received 1553 Command Words. The Selective Message
      Monitor mode greatly simplifies the host processor software by
      distinguishing between Command and Status Words. The
      Selective Message Monitor maintains two stacks in the
      BU-61582 RAM: a Command Stack and a Data Stack.
      SIMULTANEOUS RT/MESSAGE MONITOR MODE
      The Selective Message Monitor may function as a purely passive
      monitor or may be programmed to function as a simultaneous
      RT/Monitor. The RT/Monitor mode provides complete Remote
      Terminal (RT) operation for the BU-61582’s strapped RT address
      and bus monitor capability for the other 30 non-broadcast RT
      addresses. This allows the BU-61582 to simultaneously operate
      as a full function RT and “snoop” on all or a subset of the bus
      activity involving the other RTs on a bus. This type of operation
      is sometimes needed to implement a backup bus controller. The
      combined RT/Selective Monitor maintains three stack areas in
      the BU-61582 address space: an RT Command Stack, a Monitor
      Command Stack, and a Monitor Data Stack. The pointers for the
      various stacks have fixed locations in the BU-61582 address
      space.
      SELECTIVE MESSAGE MONITOR MEMORY
      ORGANIZATION
      TABLE 32 illustrates a typical memory map for the SP’ACE in the
      Selective Message Monitor mode. This mode of operation
      defines several fixed locations in the RAM. These locations allo-
      cate in a manner that is compatible with the combined
      RT/Selective Message Monitor mode. Refer to TABLE 32 for an
      example of a typical Selective Message Monitor Memory Map.
      The fixed memory map consists of two Monitor Command Stack
      Pointers (location 102h and 106h), two Monitor Data Stack
      Pointers (locations 103h and 107h), and a Selective Message
      Monitor Lookup Table (0280-02FFh) based on RT Address T/R,
      and subaddress. Assume a Monitor Command Stack size of 1K
      words, and a Monitor Data Stack size of 4K words.
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