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MUX8531-7 PDF预览

MUX8531-7

更新时间: 2024-11-20 01:07:55
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艾法斯 - AEROFLEX /
页数 文件大小 规格书
8页 91K
描述
MUX8531 16-Channel Analog Multiplexer Module Radiation Tolerant and ESD Protected Kelvin Measurement Configured

MUX8531-7 数据手册

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Standard Products  
MUX8531 16-Channel Analog Multiplexer Module  
Radiation Tolerant & ESD Protected  
Kelvin Measurement Configured  
www.aeroflex.com/mux  
May 17, 2011  
FEATURES  
16 Kelvin measurement channels provided by two 16-channel multiplexers  
Radiation performance  
- Total dose:  
- SEU:  
- SEL:  
150 krads(Si), Dose rate = 50 - 300 rads(Si)/s  
Immune up to 90 MeV-cm2/mg  
Immune by process design  
Full military temperature range  
Low power consumption < 30mW  
One address bus (A0-3), and one enable line  
All channel inputs protected by ±20V nominal Transorbs  
Fast access time < 500ns typical  
Break-Before-Make switching  
High analog input impedance (power on or off )  
Designed for aerospace and high reliability space applications  
Packaging – Hermetic ceramic  
- 56 leads, 0.80"Sq x 0.20"Ht quad flat pack  
- Typical Weight 6 grams  
GENERAL DESCRIPTION  
Aeroflex’s MUX8531 is a radiation tolerant, 16 Kelvin measurement channel multiplexer MCM (Multi  
Chip Module) with electrostatic discharge (ESD) protection on all channel inputs.  
The MUX8531 has been specifically designed to meet exposure to radiation environments. It is available  
in a 56 lead High Temperature Co-Fired Ceramic (HTCC) Quad Flatpack (CQFP). It is guaranteed  
operational from -55°C to +125°C. Available screened in accordance with MIL-PRF-38534, the  
MUX8531 is ideal for demanding military and space applications.  
ORGANIZATION AND APPLICATION  
The MUX8531 consists of two 16 channel multiplexers arranged as shown in the block diagram,  
addressable by bus A0~A3 including enable which connects the addressed channel to two separate outputs,  
"Output" and "Current". This technique enables selecting and reading a remote resistive sensor without the  
MUX resistance being part of the measurement. For grounded sensors, this is done by passing current to  
the sensor by means of the "Current" pin and reading the resultant voltage (proportional to the sensor  
resistance) at the "Output" pin.  
SCD8531 Rev B  

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