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          • 您現(xiàn)在的位置:買賣IC網(wǎng) > PDF目錄166587 > BU-61865G3-440 (DATA DEVICE CORP) 2 CHANNEL(S), 1M bps, MIL-STD-1553 CONTROLLER, CQFP72 PDF資料下載
          參數(shù)資料
          型號: BU-61865G3-440
          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, CQFP72
          封裝: 25.40 X 25.40 MM, 2.54 MM HEIGHT, CERAMIC, QFP-72
          文件頁數(shù): 13/60頁
          文件大?。?/td> 457K
          代理商: BU-61865G3-440
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          20
          Data Device Corporation
          www.ddc-web.com
          BU-6174X/6184X/6186X
          F-10/02-300
          8
          TABLE 37. BC CONDITION CODES
          BIT
          CODE
          LT/GP0
          EQ/GP1
          RETRY0
          RETRY1
          RETRY0
          RETRY1
          D
          E
          GP2
          GP3
          GP4
          GP5
          GP6
          GP7
          NORESP
          GD BLK
          XFER
          NAME
          (BIT 4 = 0)
          These two bits reflect the retry status of the most recent message. The number of times that the mes-
          sage was retried is delineated by these two bits as shown below:
          RETRY COUNT 1
          RETRY COUNT 0
          Number of
          (bit 14)
          (bit 13)
          Message Retries
          0
          1
          0
          N/A
          1
          2
          FUNCTIONAL DESCRIPTION
          INVERSE
          (BIT 4 = 1)
          GT-EQ/
          GP0
          NE/GP1
          0
          ALWAYS
          Less than or GP0 flag. This bit is set or cleared based on the results of the compare. If the value of the
          CMT's parameter is less than the value of the message time counter, then the LT/GP0 and NE/GP1
          flags will be set, while the GT-EQ/GP0 and EQ/GP1 flags will be cleared. If the value of the CMT's
          parameter is equal to the value of the message time counter, then the GT-EQ/GP0 and EQ/GP1 flags
          will be set, while the LT/GP0 and NE/GP1 flags will be cleared. If the value of the CMT's parameter is
          greater than the current value of the message time counter, then the GT-EQ/GP0 and NE/GP1 flags will
          be set , while the LT/GP0 and EQ/GP1 flags will be cleared. Also, General Purpose Flag 1 may be also
          be set or cleared by a FLG operation.
          NEVER
          F
          GP2
          GP3
          GP4
          GP5
          GP6
          GP7
          1
          RESP
          Equal Flag. This bit is set or cleared after CFT or CMT operation. If the value of the CMT's parameter is
          equal to the value of the message time counter, then the EQ/GP1 flag will be set and the NE/GP1 bit
          will be cleared. If the value of the CMT's parameter is not equal to the value of the message time
          counter, then the NE/GP1 flag will be set and the EQ/GP1bit will be cleared. Also, General Purpose
          Flag 1 may be also be set or cleared by a FLG operation.
          GD BLK
          XFER
          BAD
          MESSAGE
          GOOD
          MESSAGE
          The ALWAYS bit should be set (bit 4 = 0) to designate an instruction as unconditional. The NEVER bit
          (bit 4 = 0) can be used to implement an NOP or “skip” instruction.
          C
          BAD MESSAGE indicates either a format error, loop test fail, or no response error for the most recent
          message. Note that a "Status Set" condition has no effect on the "BAD MESSAGE/GOOD MESSAGE"
          condition code.
          FMT ERR
          9
          FMT ERR indicates that the received portion of the most recent message contained one or more viola-
          tions of the 1553 message validation criteria (sync, encoding, parity, bit count, word count, etc.), or the
          RT's status word received from a responding RT contained an incorrect RT address field.
          MASKED
          STATUS
          BIT
          MASKED
          STATUS
          BIT
          B
          General Purpose Flags may be set, cleared, or toggled by a FLG operation. The host processor can
          set, clear, or toggle these flags in the same way as the FLG instruction by means of the BC GENERAL
          PURPOSE FLAG REGISTER.
          Indicates that one or both of the following conditions have occurred for the most recent message: (1) If
          one (or more) of the Status Mask bits (14 through 9) in the BC Control Word is logic "0" and the corre-
          sponding bit(s) is (are) set (logic "1") in the received RT Status Word. In the case of the RESERVED
          BITS MASK (bit 9) set to logic "0", any or all of the 3 Reserved Status Word bits being set will result in
          a MASKED STATUS SET condition; and/or (2) If BROADCAST MASK ENABLED/XOR (bit 11 of
          Configuration Register #4) is logic "1" and the MASK BROADCAST bit of the message's BC Control
          Word is logic "0" and the BROADCAST COMMAND RECEIVED bit in the received RT Status Word is
          logic "1".
          2
          3
          4
          5
          6
          7
          NORESP indicates that an RT has either not responded or has responded later than the BC No
          Response Timeout time. The Enhanced Mini-ACE's/-ACE’s No Response Timeout Time is defined per
          MIL-STD-1553B as the time from the mid-bit crossing of the parity bit of the last word transmitted by
          the BC to the mid-sync crossing of the RT Status Word. The value of the No Response Timeout value
          is programmable from among the nominal values 18.5, 22.5, 50.5, and 130 s (±1 s) by means of bits
          10 and 9 of Configuration Register #5.
          A
          For the most recent message, GD BLK XFER will be set to logic "1" following completion of a valid
          (error-free) RT-to-BC transfer, RT-to-RT transfer, or transmit mode code with data message. This bit is
          set to logic "0" following an invalid message. GOOD DATA BLOCK TRANSFER is always logic "0" fol-
          lowing a BC-to-RT transfer, a mode code with data, or a mode code without data. The Loop Test has
          no effect on GOOD DATA BLOCK TRANSFER. GOOD DATA BLOCK TRANSFER may be used to
          determine if the transmitting portion of an RT-to-RT transfer was error free.
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