参数资料
型号: BU-64703B3-200
厂商: DATA DEVICE CORP
元件分类: 微控制器/微处理器
英文描述: 2 CHANNEL(S), 1M bps, MIL-STD-1553 CONTROLLER, CBGA80
封装: CERAMIC, BGA-80
文件页数: 21/48页
文件大小: 405K
代理商: BU-64703B3-200
28
Data Device Corporation
www.ddc-web.com
BU-64703
D-03/06-0
1553 BUS CONNECTIONS
The isolation transformers should be placed as physically close
as possible to the respective TX/RX pins on the SSRT Mark3.
Also, the distance from the isolation transformers to any connec-
tors or cables leaving the board should be as short as possible.
In addition to limiting the voltage drops in the analog signal
traces when transmitting, reducing the hybrid-to-transformer and
transformer-to-connector spacing serves to minimize crosstalk
from other signals on the board.
The general practice in connecting the stub side of a trans-
former (or direct) coupled terminal to an external system con-
nector is to make use of 78 ohm twisted-pair shielded cable.
This minimizes impedance discontinuities. The decision of
whether to isolate or make connections between the center tap
of the isolation transformer's secondary, the stub shield, the bus
shield, and/or chassis ground must be made on a system basis,
as determined by an analysis of EMI/RFI and lightning consid-
erations.
In most systems, it is specified that the 1553 terminal's input
impedance must be measured at the system connector. This is
despite the fact that the MIL-STD-1553B requirement is for it to
be measured looking directly in from the bus side of the isolation
transformer.
The effect of a relatively long stub cable will be to reduce the
measured impedance (looking in from the bus). In order to keep
the impedance above the required level of 1000 ohms (for trans-
former-coupled stubs), the length of any cable between the 1553
RT and the system connector should be minimized.
"SIMULATED BUS" (LAB BENCH) INTERCONNEC-
TIONS
For purposes of software development and system integration, it
is generally not necessary to integrate the required couplers, ter-
minators, etc., that comprise a complete MIL-STD-1553B bus. In
most instances, a simplified electrical configuration will suffice.
The three connection methods illustrated in FIGURE 16 allow the
SSRT Mark3 to be interfaced over a "simulated bus" to simula-
tion and test equipment. It is important to note that the termina-
tion resistors indicated are necessary in order to ensure reliable
communications
between
the
SSRT
Mark3
and
the
simulation/test equipment.
FIGURE 16. "SIMULATED BUS" (LAB BENCH) INTERCONNECTIONS (SHOWN FOR +3.3V TRANSCEIVERS)
SSRT
HYBRID
TEST/
SIMULATION
EQUIPMENT
STUB
COUPLING
STUB
COUPLING
ISOLATION
TRANSFORMER
78
1.5W
(A)
TEST/
SIMULATION
EQUIPMENT
DIRECT
COUPLING
DIRECT
COUPLING
ISOLATION
TRANSFORMER
39
0.5W
(B)
55
1W
55
1W
55
55
TEST/
SIMULATION
EQUIPMENT
STUB
COUPLING
DIRECT
COUPLING
ISOLATION
TRANSFORMER
39
0.5W
(C)
55
1W
55
1W
20
0.5W
20
0.5W
(A) TRANSFORMER COUPLED TO TRANSFORMER COUPLED
(B) DIRECT COUPLED TO DIRECT COUPLED
(C) DIRECT COUPLED TO TRANSFORMER COUPLED
3.3V
.01F
10F +
3.3V
.01F
10F +
3.3V
.01F
10F +
Mark3
SSRT
HYBRID
Mark3
SSRT
HYBRID
Mark3
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