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5962-9206110HZC

产品描述MIL-STD-1553 Data Bus Transceiver, FP-24
产品类别无线/射频/通信    电信电路   
文件大小737KB,共8页
制造商Cobham Semiconductor Solutions
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5962-9206110HZC概述

MIL-STD-1553 Data Bus Transceiver, FP-24

5962-9206110HZC规格参数

参数名称属性值
厂商名称Cobham Semiconductor Solutions
零件包装代码DFP
包装说明DFP,
针数24
Reach Compliance Codeunknown
JESD-30 代码R-XDFP-F24
JESD-609代码e4
功能数量2
端子数量24
最高工作温度125 °C
最低工作温度-55 °C
封装主体材料UNSPECIFIED
封装代码DFP
封装形状RECTANGULAR
封装形式FLATPACK
认证状态Not Qualified
筛选级别MIL-PRF-38534
座面最大高度3.18 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MILITARY
端子面层GOLD
端子形式FLAT
端子节距1.27 mm
端子位置DUAL
Base Number Matches1

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Standard Products
ACT4454/4460 Single Supply Dual Transceivers
for MIL-STD-1553A/B & MacAir A3818, A4905, A5232, A5690
& SAE-AS15531
www.aeroflex.com/Avionics
November 10, 2004
FEATURES
Small size, light weight and low standby power dual transceivers
Single +5V power supply
Monolithic construction
Input and output TTL compatible design
Designed for commercial, industrial and aerospace applications
Processed and screened to MIL-STD-883 specs
MIL-PRF-38534 compliant devices available
Aeroflex-Plainview is a Class H & K MIL-PRF-38534 manufacturer
DESC SMD# 5962–92061
ACT 4454
Case Style
Actual Size
GENERAL DESCRIPTION
The Aeroflex-Plainview ACT4454/4460 series are next generation monolithic transceiver designs which provides full
compliance with MIL-STD-1553A /B, MacAir A3818, A5690, A5232, A4905 and meets SAE-AS15531 requirements in the
smallest packages with low power consumption and single power supply operation. The series performs the front-end analog
function of inputting and outputting data through a transformer to the MIL-STD-1553 data bus.
The ACT4454/4460 series can be considered a "Universal" Transceiver in that it is compatible with MIL-STD-1553A & B,
Macair A-3818, A-4905, A-5232, A-5690, A-5690, and meets SAE-AS15531.
Design of these transceivers reflects particular attention to active filter performance. This results in low bit and word error rate
with superior waveform purity and minimal zero crossover distortion. Efficient transmitter electrical and thermal design provides
low internal power dissipation and heat rise at high as well as low duty cycles.
Each channel of the dual transceiver is completely separate from the other and fully independent. This includes power leads as
well as signal lines. Hence, each channel may be connected to a different data bus with no interaction.
TRANSMITTER
The Transmitter section accepts bi-phase TTL data at the input and when coupled to the data bus with a 1:2.5 ratio transformer
the data bus signal is typically 7.0 volts P-P at A-A' (See Figure 5). When both DATA and DATA inputs are held low or high, the
transmitter output becomes a high impedance and is “removed” from the line. In addition, an overriding “INHIBIT input
provides for the removal of the transmitter output from the line. A logic “1” applied to the “INHIBIT” takes priority over the
condition of the data inputs and disables the transmitter (See Figure 1 Transmitter Logic Waveform). The Transmitter may be
safely operated for an indefinite period with the bus (point A-A') short circuited at 100% duty cycle.
RECEIVER
The Receiver section accepts bi-phase differential data at the input and produces two TTL signals at the output. The outputs are
DATA and DATA, and represent positive and negative excursions of the input beyond a pre-determined threshold (See Figure 2
Receiver Logic Waveform) .
The pre-set internal thresholds will detect data bus signals exceeding 1.20 Volts P-P and reject signals less than 0.6 volts P-P
when used with a transformer (See Figure 5 for transformer data and typical connections).
A low level at the Strobe input inhibits the DATA and DATA outputs. If unused, a 2K pull-up to +5 Volts is recommended.
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