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BU-63147F3-801K

MIL-STD-1553 Data Bus Transceiver, PDFP36, FP-36

器件类别:无线/射频/通信    电信电路   

厂商名称:Data Device Corporation

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器件参数
参数名称
属性值
Objectid
1329659365
包装说明
DFP,
Reach Compliance Code
compliant
JESD-30 代码
R-PDFP-F36
长度
48.26 mm
功能数量
1
端子数量
36
最高工作温度
70 °C
最低工作温度
封装主体材料
PLASTIC/EPOXY
封装代码
DFP
封装形状
RECTANGULAR
封装形式
FLATPACK
座面最大高度
5.08 mm
标称供电电压
5 V
表面贴装
YES
电信集成电路类型
MIL-STD-1553 DATA BUS TRANSCEIVER
温度等级
COMMERCIAL
端子形式
FLAT
端子节距
2.54 mm
端子位置
DUAL
宽度
20.32 mm
文档预览
BU-63147 and BU-63157
Make sure the next
Card you purchase
has...
TM
®
MIL-STD-1553 DATA BUS
+5V DUAL TRANSCEIVER
FEATURES
+5V Power Supply
Low Power
Conforms Fully To MIL-STD-1553A
and 1553B
Dual Transceiver
Available with MIL-STD-1760
Compliant Transmitter Voltage
Available with McAir Compatible
Waveform
36-Pin DIP or Flat Pack
HARRIS I/O Compatibility
Radiation Tolerant Version Available
DESCRIPTION
The BU-63147/157 transceiver is a complete dual transmitter and receiver
pair conforming fully to MIL-STD-1553A and 1553B. Features include: mono-
lithic design, +5V power supply voltage, Harris type decoder interface, com-
pletely independent dual redundant operation, and small size (36-pin DIP or
flat pack). The receiver section of the BU-63147/157 series accepts phase-
modulated bipolar data from a MIL-STD-1553 Data Bus and produces TTL
Signal data at its output.
The RX DATA OUT and RX DATA OUT outputs represent positive and nega-
tive variations of the input data signals beyond an internally fixed threshold
level. An external STROBE input enables or disables the receiver’s outputs.
The transmitter section accepts bi-phase TTL signal data at its
TX DATA IN and TX DATA IN inputs and produces phase-modulated
bipolar data at the TX DATA OUT and TX DATA OUT outputs. The transmit-
ter’s output voltage level is typically about 11Vpp. An external input, INHIBIT,
takes priority over the transmitter inputs and disables the transmitter when
activated with a logic “1”.
The small size, +5V power supply voltage, and compliance with MIL-
STD-1553 simplify engineering design, making it an excellent choice for
interfacing with any MIL-STD-1553 system.
WARNING: EXPORT CONTROLLED PRODUCT
This data sheet or product brief consists of Data
Device Corporation general product information that
does not contain controlled technical data as defined
in the International in Arms Regulations (ITAR) Part
120.10 or Export Administration Regulations (EAR) Part
734.7-11. The technology described herein is controlled
under the EAR and may not be exported without proper
authorization by the U.S. Department of Commerce as
determined on a case by case basis.
FOR MORE INFORMATION CONTACT:
Data Device Corporation
105 Wilbur Place
Bohemia, New York 11716
631-567-5600 Fax: 631-567-7358
www.ddc-web.com
Technical Support:
1-800-DDC-5757 ext. 7771
All trademarks are the property of their respective owners.
©
2000 Data Device Corporation
Data Device Corporation
www.ddc-web.com
+5 V
RECEIVER STROBE
BI PHASE
TTL DATA
COMPARATOR
COMPARATOR
1553
DATA
BUS
PHASE MODULATED
BIPOLAR DATA
RECEIVER SECTION
RECEIVER SECTION
FILTER
LIMITER
FILTER
RX DATA IN
RX DATA IN
FILTER
COMPARATOR
COMPARATOR
TRANSMITTER SECTION
RX DATA OUT
RX DATA OUT
DECODER
SHORT OR
LONG STUB
COUPLING
ISOLATION
TRANSFORMER
2
TX Data Out
DRIVER
SHAPING
NETWORK
DRIVER
TRANSMITTER SECTION
SHAPING
NETWORK
TX DATA IN
TX Data Out
SHAPING
NETWORK
TX DATA IN
TX INHIBIT
ENCODER
SHAPING
NETWORK
CASE/GND
BU-63147
R-10/14-0
FIGURE 1. BU-63147/-157 BLOCK DIAGRAM (ONE CHANNEL SHOWN)
TABLE 1. BU-63147/157 SPECIFICATIONS
PARAMETER
ABSOLUTE MAXIMUM RATING
Supply Voltage
• +5 V (Vcc)
Receiver
• Input Voltage (differential)
Logic
• Voltage Input Range
MIL-STD-1553 Signals
• Powered Input Range (Note 11)
• Unpowered Input Range
MIN
TYP
MAX
UNITS
-0.3
5.0
7.0
20
V
Vp-p
V
V
V
-0.3
-5V_XCVR - 0.3
-1.5
Vcc+10%
5V_XCVR + 0.3
+1.5
RECEIVER
Differential Input Resistance (Notes 1-6)
Differential Input Capacitance (Notes 1-6)
Threshold Level (Note 7)
Common Mode Voltage (Note 8)
2.5
0.20
5
0.860
10
kohm
pF
Vp-p
Vpeak
TRANSMITTER
Differential Output Voltage
• Direct Coupled Across 35 ohms, Measured on Bus
• Transformer Coupled Across 70 ohms, Measured on Stub:
• BU-63147/157XX-XX0
• BU-63147X3-XX2 (Note 9)
Output Noise, Differential (Direct Coupled)
Output Offset Voltage, Transformer Coupled Across 70 ohms
Rise/Fall Time
• BU-63147/157X3
• BU-63147X4
LOGIC
V
IH
V
IL
I
IH
Tx
Data In
, Tx
Inhibit
, Rx
Strobe
I
IL
Tx
Data In
, Tx
Inhibit
, Rx
Strobe
V
OH
(Vcc=4.75V,I
OH
=max)
V
OL
(Vcc=4.75V,I
OH
=max)
I
OL
I
OH
6
18
20
-250
100
200
7
20
22
150
150
250
9
27
27
10
250
300
300
Vp-p
Vp-p
Vp-p
mVp-p, diff
mVp-p, diff
ns
ns
2.0
20
-100
2.4
0.4
3.4
-3.4
0.8
100
-20
V
V
µA
µA
V
V
mA
mA
POWER SUPPLY REQUIREMENTS
Voltages/Tolerances
• +5V
Current Drain (Total Hybrid)
BU-63147/157/XX-XX0
• Idle (Both Channels)
• 25% Transmitter Duty Cycle (One Channel)
• 50% Transmitter Duty Cycle (One Channel)
• 100% Transmitter Duty Cycle (One Channel)
BU-63147/X3-XX2
• Idle (Both Channels)
• 25% Transmitter Duty Cycle (One Channel)
• 50% Transmitter Duty Cycle (One Channel)
• 100% Transmitter Duty Cycle (One Channel)
4.75
5.0
80
199
286
455
80
210
308
500
5.25
100
229
348
535
100
240
370
580
V
mA
mA
mA
mA
mA
mA
mA
mA
Data Device Corporation
www.ddc-web.com
3
BU-63147
R-10/14-0
TABLE 1. BU-63147/157 SPECIFICATIONS (CONT.)
PARAMETER
POWER DISSIPATION (NOTE 10)
Total Hybrid
BU-63147/157/XX-XX0
• Idle (Both Channels)
• 25% Transmitter Duty Cycle (One Channel)
• 50% Transmitter Duty Cycle (One Channel)
• 100% Transmitter Duty Cycle (One Channel)
BU-63147/X3-XX2
• Idle (Both Channels)
• 25% Transmitter Duty Cycle (One Channel)
• 50% Transmitter Duty Cycle (One Channel)
• 100% Transmitter Duty Cycle (One Channel)
Hottest Die
BU-63147/157/XX-XX0
• Idle (One Channel)
• 25% Transmitter Duty Cycle (One Channel)
• 50% Transmitter Duty Cycle (One Channel)
• 100% Transmitter Duty Cycle (One Channel)
BU-63147/X3-XX2
• Idle (One Channel)
• 25% Transmitter Duty Cycle (One Channel)
• 50% Transmitter Duty Cycle (One Channel)
• 100% Transmitter Duty Cycle (One Channel)
THERMAL
• Thermal Resistance, Junction-to-Case, Hottest Die (θ
JC
)
• Operating Junction Temperature
• Storage Temperature
• Lead Temperature (soldering, 10 sec.)
PHYSICAL CHARACTERISTICS
Size
36-Pin DIP
36-Lead Flat pack
Weight
MIN
TYP
MAX
UNITS
0.4
0.65
0.73
0.88
0.4
0.7
0.84
1.1
0.2
0.43
0.59
0.78
0.2
0.48
0.7
1.00
0.5
0.8
1.04
1.28
0.5
0.85
1.15
1.50
0.25
0.6
0.84
1.13
0.25
0.65
0.95
1.35
12
150
150
+300
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
W
°C/W
°C
°C
°C
-55
-65
1.900 x .800 x .205
(48.26 x 20.32 x 5.21)
1.900 x .800 x .200
(48.26 x 20.32 x 5.08)
0.6
(17)
in.
(mm)
in.
(mm)
oz
(g)
Notes:
Notes 1 through 6 are applicable to the Receiver Differential Resistance and Differential Capacitance specifications:
(1) Specifications include both transmitter and receiver (assumed tied together externally).
(2) Impedance parameters are specified directly between pins TX/RX A(B) and TX/RX A(B) hybrid.
(3) It is assumed that all power and ground inputs to the hybrid are connected and that the hybrid case is connected to ground for the impedance measurement.
(4) The specifications are applicable for both unpowered and powered conditions.
(5) The specifications assume a 2 volt rms balanced, differential, sinusoidal input. The applicable frequency range is 75 kHz to 1 MHz.
(6) Minimum resistance and maximum capacitance parameters are guaranteed over the operating range, but are not tested.
(7) The Threshold Level, as referred to in this specification, is meant to be the maximum peak-to-peak voltage (measured on the data bus) that can be applied to the
receiver's input without causing the output to change from the OFF state.
(8) Assumes a common mode voltage within the frequency range of dc to 2 MHz, applied to pins of the isolation transformer on the stub side (either direct or transformer
coupled), and referenced to transceiver ground. Transformer must be a DDC recommended transformer or other transformer that provides an equivalent minimum
CMRR.
(9) MIL-STD-1760 requires minimum output voltage of 20 Vp-p on the stub connection. The -XX2 option is
not
available for the BU-63147X4 or BU-63157 versions.
(10) Power dissipation specifications assume a transformer coupled configuration, with external dissipation (while transmitting) of 0.14 watts for the active isolation trans-
former, 0.08 watts for the active coupling transformer, 0.45 watts for each of the two bus isolation resistors, and 0.15 watts for each of the two bus termination resistors.
(11) Assuming the use of isolation transformers with the turns ratios shown in Figure 3 and in the absence of common mode signal on the 1553 stub, this equates to a
nominal stub voltage of 38 Volts
PK-to-PK
transformer-coupled, or 53 Volts
PK-to-PK
direct-coupled.
Data Device Corporation
www.ddc-web.com
4
BU-63147
R-10/14-0
TABLE 2. BU-63157 RADIATION SPECIFICATIONS*
PART NUMBER
BU-63157X3
TOTAL DOSE
100 KRAD
SINGLE EVENT
LATCHUP
IMMUNE
INTRODUCTION
The BU-63147/157 is a dual redundant transmitter and receiver
packaged in a 36-pin DDIP or flat pack. It is directly compatible to
Harris 15530 encoder/decoder and has internal (factory preset)
threshold levels. The dual transceiver only requires +5V power
and conforms to MIL-STD-1553A and 1553B. For McAir compat-
ibility, versions are available with rise/fall times of 200 to 300
nsec.
Figure 3 illustrates the connection between a BU-63147/157
transceiver and a MIL-STD-1553 Data Bus. After transformer
isolating the transceiver, it can be either direct coupled (short
stub) or transformer coupled (long stub) to the Data Bus.
*Note: Radiation parameters specified on this data sheet are derived from initial
qualification testing by DDC and published data from ASIC manufacturers. These
devices have not been evaluated for compliance to the RHA requirements stipu-
lated in MIL-PRF-38534, Appendix G.
TABLE 3. HIGH RELIABILITY SCREENING OPTIONS
FOR BU-63157
ELEMENT EVALUATION
Visual Inspection:
Integrated Circuits
Transistor & Diodes
Passive Components
METHOD
TRANSMIT OPERATING MODE
MIL-STD-883, Method 2010 Condition A
MIL-STD-750, Method 2072 and 2073
MIL-STD-883, Method 2032 Class S
SEM Analysis for Integrated MIL-STD-883, Method 2018
Circuits
Element Evaluation:
Visual, Electrical, Wire
Bondability, 24-Hour
Stabilization Bake, 10
Temperature Cycles,
5000 g’s constant accelera-
tion, 240-Hour Powered
Burn-In and 1000-Hour Life
Test (Burn-In and 1000-
Hour Life Test are Only
Required for Active
Components.)
ASSEMBLY & TEST
Particle Impact Noise
Detection (PIND)
320-Hour Burn-In
(Standard on this device)
100% Non-Destructive
Wirebond Pull
(Standard on this device)
Radiographic (X-Ray)
Analysis
QCI TESTING
Extended Temperature
Cycling:
20 Cycles Including
Radiographic (X-Ray)
Testing
Moisture Content Limit of
5000 PPM
MIL-STD-883, Method 2020
Condition A
MIL-STD-883, Method 1015
The transmitter section accepts encoded TTL data and converts
it to phase-modulated bipolar form using a waveshaping network
and driver circuits. The driver outputs TX DATA OUT and TX DATA
OUT are transformer coupled to the Data Bus.
The transmitter output terminals can be put into a high imped-
ance state by setting INHIBIT high, or setting TX DATA IN and TX
DATA IN to the same logic level. The operating modes are shown
in TABLE 4.
The transceivers are able to operate in a “wraparound” mode.
This allows output data to be monitored by the receiver section
and returned to the decoder where it is checked for errors.
MIL-PRF-38534
TABLE 4. TRANSMIT OPERATING MODE
TX DATA IN
X
0
0
MIL-STD-883, Method 2023
1
1
MIL-STD-883, Method 2012
TX DATA IN
X
0
1
0
1
TX INHIBIT
H
X
L
L
X
DRIVER OUTPUT
OFF (NOTE)
OFF
TX DATA OUT ON,
TX DATA OUT OFF
TX DATA OUT ON,
TX DATA OUT OFF
OFF
NOTE: DRIVER OUTPUT terminals are in the high impedance mode during
OFF time, independent of INHIBIT status.
MIL-STD-883, Method 1010 Condition C
and MIL-STD-883, Method 2012
MIL-STD-883, Method 1018
Data Device Corporation
www.ddc-web.com
5
BU-63147
R-10/14-0
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