Sensors, Update 2
Heinrich P. Baltes, Henry Baltes, Wolfgang Göpel, Joachim Hesse
John Wiley & Sons, 1996 - Technology & Engineering - 248 pages
Sensors Update ensures that you stay at the cutting edge of the field. Built upon the series Sensors, it presents an overview of highlights in the field. Coverage includes current developments in materials, design, production, and applications of sensors, signal detection and processing, as well as new sensing principles. Furthermore, the sensor market as well as peripheral aspects such as standards are covered.
Each volume is divided into four sections. Sensor Technology, reviews highlights in applied and basic research, Sensor Applications, covers new or improved applications of sensors, Sensor Markets, provides a survey of suppliers and market trends for a particular area. With this unique combination of information in each volume, Sensors Update will be of value for scientists and engineers in industry and at universities, to sensors developers, distributors, and users.
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Acoustic Wave Sensors
Chips and Computers for Artificial Neural Nets
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acoustic wave devices acoustic wave sensors Actuators adsorbed adsorption algorithms Anal analysis analyte applications attenuation Baltes Biosensors calculated cavitand changes Chem chemical sensors chemisorption Chemometrics chips cluster coefficient concentration conductivity density detection effects electrical electronic nose element energy Equation evaluation example frequency function gas phase gas sensors gases Germany Gopel IDTs image sensors input interactions layer linear liquid materials matrix measured methods microsystems mixtures modulus monitoring MOSFET neural network neurocomputers noise nonlinear output oxygen parameters particle displacements pattern recognition perceptron photodiode piezoelectric pixel polymer predicted principal component principal component analysis Proc processor properties reaction resonance samples SAW devices self-organizing map semiconductor Sens sensor array sensor responses sensor signals sensor systems SH-APM shear shown in Figure silicon substrate surface Surface Acoustic Wave techniques temperature thermal thin film Transducers TSM devices TSMRs typical values vapor sensor vector viscoelastic wave velocity