Computer Interface Engineering for Real-time Systems: A Model-based Approach

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Prentice-Hall, 1987 - Technology & Engineering - 292 pages
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Contents

Operational and Instrumentation Amplifiers
30
Filters for Measurement Signals
63
Analog Signal Acquisition Conditioning
95
Copyright

6 other sections not shown

Common terms and phrases

A/D converter accuracy achieved active filter Alias Band aliasing amplitude amplitude error analog Analog Devices analog signal aperture applications assembly language attenuation bandlimiting bandpass bandpass filter bandwidth baseband Bessel filters binary bits Butterworth Butterworth filter capacitance capacitor channel circuit CMOS CMRR common-mode interference component computer vision conversion system crowbar circuit cutoff frequency data acquisition data bus data conversion described Design devices differential differential amplifiers Digital-to-Analog Converter Direct memory access Electronic Englewood equation error budget Ethernet FIFO filter full-scale function gain GOSUB half-duplex HERTZ heterodyned However HPIB I/O port I/O system IBM Token Ring input signal instrumentation amplifier Intel interfacing interference interpolation intersample error intersymbol interference JFET ladder logic linear linear filter linear interpolator local area network lowpass lowpass filter LPRINT microcomputer Microprocessor MTBF multiplexer noise nomograph nonlinearity offset open-loop gain operational amplifier OSI model output signal parameters passband percent phase-locked loop photodiodes photomultiplier piezoresistor port Preamplifier PRINT ENTER provides quantization quantization error RC time constant reed relays resistors sample rate sampled signal sampled-data Scott-T Transformer sensor Sensor Fusion shown in Figure signal conditioning signal processing signal quality signal reconstruction sinc function sinusoidal slew rate source bands source resistance stopband subtractor switch system error Table tempco temperature thermal noise thermocouple Topology transducer typically UART University of Cincinnati values voltage voltage-controlled oscillator volts wordlength

About the author (1987)

Garrett is an electrical engineering faculty member at the University of Cincinnati, where he has developed courses in manufacturing, controls, and process instrumentation.

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