參數(shù)資料
型號(hào): BU-61582F3-391L
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, CDFP70
封裝: CERAMIC, DFP-70
文件頁數(shù): 9/48頁
文件大?。?/td> 378K
代理商: BU-61582F3-391L
17
Data Device Corporation
www.ddc-web.com
BU-61582
G-08/02-250
the BU-61582 provides an option to separate data received from
broadcast messages from nonbroadcast received data.
Besides supporting a global double buffering scheme (as in BC
mode), the SP’ACE RT provides a pair of 128-word Lookup
Tables for memory management control, programmable on a
subaddress basis (refer to TABLE 29). The 128-word tables
include 32-word tables for transmit message pointers and
receive message pointers. There is also a third, optional Lookup
Table for broadcast message pointers, providing Notice 2 com-
pliance, if necessary.
The fourth section of each of the RT Lookup Tables stores the 32
Subaddress Control Words (refer to TABLE 11 and TABLE 30).
The individual Subaddress Control Words may be used to select
the RT memory management option and interrupt scheme for
each transmit, receive, and (optionally) broadcast subaddress.
For each transmit subaddress, there are two possible memory
management schemes: (1) single message; and (2) circular
buffer. For each receive (and optionally broadcast) subaddress,
there are three possible memory management schemes: (1) sin-
gle message; (2) double buffered; and (3) circular buffer. For
each transmit, receive and broadcast subaddress, there are two
interrupt
conditions
programmable
by
the
respective
Subaddress Control Word: (1) after every message to the sub-
address; (2) after a circular buffer rollover. An additional table in
RAM may be used to enable interrupts following selected mode
code messages.
Circular Buffer of
Specified Size
8192-Word
1
4096-Word
0
1
1024-Word
0
1
512-Word
1
0
256-Word
0
1
0
128-Word
1
0
Single Message or Double Buffered
0
COMMENT
DESCRIPTION
MM0
MM1
MM2
TABLE 30. SUBADDRESS CONTROL WORD
MEMORY MANAGEMENT SUBADDRESS BUFFER
SCHEME
2048-Word
1
0
1
DATA
BLOCKS
DATA BLOCK
BLOCK STATUS WORD
TIME TAG WORD
DATA BLOCK POINTER
RECEIVED COMMAND
WORD
DESCRIPTOR
STACKS
LOOK-UP
TABLE ADDR
LOOK-UP TABLE
(DATA BLOCK ADDR)
15
13
0
CURRENT
AREA B/A
CONFIGURATION
REGISTER
STACK
POINTERS
(See note)
Note: Lookup table is not used for mode commands when enhanced mode codes are enabled.
FIGURE 5. RT MEMORY MANAGEMENT: SINGLE MESSAGE MODE
When using the circular buffer scheme for a given subaddress,
the size of the circular buffer is programmable by three bits of the
Subaddress Control Word (see TABLE 30). The options for circu-
lar buffer size are 128, 256, 512, 1024, 2048, 4096, and 8192
Data Words.
SINGLE MESSAGE MODE
FIGURE 5 illustrates the RT Single Message memory manage-
ment scheme. When operating the BU-61582 in its “AIM-HY”
(default) mode, the Single Message scheme is implemented for
all transmit, receive, and broadcast subaddresses. In the Single
Message mode (also in the Double Buffer and Circular Buffer
modes), there is a global double buffering scheme, controlled by
bit 13 of Configuration Register #1. This selects from between
the two sets of the various data structures shown in the figure:
the Stack Pointers (fixed addresses), Descriptor Stacks (user
defined addresses), RT Lookup Tables (fixed addresses), and
RT Data Word blocks (user defined addresses). FIGURES 5, 6,
and 7 delineate the “active” and ”nonactive” areas by the non-
shaded and shaded areas, respectively.
As shown, the SP’ACE stores the Command Word from each
message received, in the fourth location within the message
descriptor (in the stack) for the respective message. The T/R bit,
subaddress field, and (optionally) broadcast/own address, index
into the active area Lookup Table, to locate the data block point-
er for the current message. The BU-61582 RT memory manage-
ment logic then accesses the data block pointer to locate the
starting address for the Data Word block for the current mes-
sage. The maximum size for an RT Data Word block is 32 words.
For a particular subaddress in the Single Message mode, there
is overwriting of the contents of the data blocks for receive/broad-
cast subaddresses – or overreading, for transmit subaddresses.
In the single message mode, it is possible to access multiple
data blocks for the same subaddress. This, however, requires the
intervention of the host processor to update the respective
Lookup Table pointer. To implement a data wraparound subad-
dress, as required by Notice 2 of MIL-STD-1553B, the Single
Message scheme should be used for the wraparound subad-
dress. Notice 2 recommends subaddress 30 as the wraparound
subaddress.
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