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5962R8864401QUXC PDF预览

5962R8864401QUXC

更新时间: 2024-02-07 18:14:33
品牌 Logo 应用领域
其他 - ETC 总线收发器
页数 文件大小 规格书
23页 557K
描述
MIL-STD-1553A/B Bus Transceiver

5962R8864401QUXC 技术参数

生命周期:Obsolete包装说明:DIP, DIP24,.6
Reach Compliance Code:unknown风险等级:5.84
Is Samacsys:N差分输出:YES
驱动器位数:1高电平输入电流最大值:0.00004 A
JESD-30 代码:R-XDIP-T24端子数量:24
最小输出摆幅:6 V最大输出低电流:0.004 A
封装主体材料:CERAMIC封装代码:DIP
封装等效代码:DIP24,.6封装形状:RECTANGULAR
封装形式:IN-LINE电源:5,5/15,-15 V
认证状态:Not Qualified筛选级别:38535V;38534K;883S
子类别:Line Driver or Receivers表面贴装:NO
技术:BIPOLAR端子形式:THROUGH-HOLE
端子节距:2.54 mm端子位置:DUAL
总剂量:100k Rad(Si) VBase Number Matches:1

5962R8864401QUXC 数据手册

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TRANSMITTER  
The transmitter section accepts Manchester II biphase TTL data  
and converts this data into differential phase-modulated current  
drive. Transmitter current drivers are coupled to a MIL-STD-  
1553 data bus via a transformer driven from the TXOUT and  
TXOUT terminals. Transmitter output terminals’ non-  
transmitting state is enabled by asserting TXIHB (logic 1), or  
by placing both TXIN and TXIN at the same logic level. Table  
1, Transmit Operating Mode, lists the functions for the output  
data in reference to the state of TXIHB. Figure 3 shows typical  
transmitter waveforms.  
TXIN  
TXIN  
BOTH HIGH  
OR  
BOTH LOW  
TXIHB  
LINE-TO-LINE  
DIFFERENTIAL  
OUTPUT  
90%  
10%  
RECEIVER  
TXOUT, TXOUT  
The receiver section accepts biphase differential data from a  
MIL-STD-1553 data bus at its RXIN and RXIN inputs. The  
receiver converts input data to biphase Manchester II TTL  
format and is available for decoding at the RXOUT and RXOUT  
terminals. The outputs RXOUT andRXOUT represent positive  
and negative excursions (respectively) of the inputs RXIN and  
RXIN. Figure 4 shows typical receiver output waveforms.  
TXIN  
TXIN  
Models UT63M105, UT63M107, UT63M125, and UT63M127  
idle in the “0” state when disabled or receiving no signal.  
tTXDD  
Figure 3. Typical Transmitter Waveforms  
POWER SUPPLY VOLTAGES  
The UT63M1XX series meets device requirements over a wide  
range of power supply voltages. Table 2 shows the overall  
capabilities of all available devices. Each channel of the dual  
transceiver is electrically and physically separate from the other  
andfullyindependent, includingallpowerandsignallines. Thus  
there will be no interaction between the channels.  
Table 1. Transmit Operating Mode  
TXIN  
TXIN  
TXIHB  
TXOUT  
1
2
x
x
0
1
0
1
1
x
0
0
x
Off  
3
0
0
1
1
Off  
On  
On  
3
Off  
Notes:  
1. x = Don’t care.  
2. Transmitter output terminals are in the non-transmitting mode during Off  
time.  
3. Transmitter output terminals are in the non-transmitting mode during Off  
time, independent of TXIHB status.  
5

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