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Offers a number of solved problems to help students gain hands-on experience of problem solving. Provides several chapter-end questions and problems to assist students in reinforcing their knowledge. Author by: Sergey YurishLanguage: enPublisher by: Lulu.comFormat Available: PDF, ePub, MobiTotal Read: 18Total Download: 253File Size: 48,7 MbDescription: 'Modern Sensors, Transducers and Sensor Networks is the first book from the Advances in Sensors: Reviews book Series contains dozen collected sensor related, advanced state-of-the-art reviews written by 31 internationaly recognized experts from academia and industry. Built upon the series Advances in Sensors: Reviews - a premier sensor review source, it presents an overview of highlights in the field. Coverage includes current developments in sensing nanomaterials, technologies, MEMS sensor design, synthesis, modeling and applications of sensors, transducers and wireless sensor networks, signal detection and advanced signal processing, as well as new sensing principles and methods of measurements.
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Each of the hands-on unit is self-contained and can be postponed or visited asynchronously if desired. Author by: Ian FairweatherLanguage: enPublisher by: CRC PressFormat Available: PDF, ePub, MobiTotal Read: 94Total Download: 654File Size: 40,7 MbDescription: LabVIEWTM has become one of the preeminent platforms for the development of data acquisition and data analysis programs. LabVIEWTM: A Developer’s Guide to Real World Integration explains how to integrate LabVIEW into real-life applications.
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It includes projects and virtual instrumentation for most of the programs and utilities described. Many of the authors’ own software contributions are available on the accompanying CD-ROM. Author by: Dan Mihai StefanescuLanguage: enPublisher by: Springer Science & Business MediaFormat Available: PDF, ePub, MobiTotal Read: 23Total Download: 824File Size: 40,7 MbDescription: Part I introduces the basic 'Principles and Methods of Force Measurement' according to a classification into a dozen of force transducers types: resistive, inductive, capacitive, piezoelectric, electromagnetic, electrodynamic, magnetoelastic, galvanomagnetic (Hall-effect), vibrating wires, (micro)resonators, acoustic and gyroscopic. Two special chapters refer to force balance techniques and to combined methods in force measurement. Part II discusses the '(Strain Gauge) Force Transducers Components', evolving from the classical force transducer to the digital / intelligent one, with the incorporation of three subsystems (sensors, electromechanics and informatics). The elastic element (EE) is the 'heart' of the force transducer and basically determines its performance. A 12-type elastic element classification is proposed (stretched / compressed column or tube, bending beam, bending and/or torsion shaft, middle bent bar with fixed ends, shear beam, bending ring, yoke or frame, diaphragm, axial-stressed torus, axisymmetrical and voluminous EE), with emphasis on the optimum location of the strain gauges.
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The main properties of the associated Wheatstone bridge, best suited for the parametrical transducers, are examined, together with the appropriate electronic circuits for SGFTs. The handbook fills a gap in the field of Force Measurement, both experts and newcomers, no matter of their particular interest, finding a lot of useful and valuable subjects in the area of Force Transducers; in fact, it is the first specialized monograph in this inter- and multidisciplinary field. Author by: Clarence W. De SilvaLanguage: enPublisher by: CRC PressFormat Available: PDF, ePub, MobiTotal Read: 25Total Download: 376File Size: 41,8 MbDescription: An engineering system contains multiple components that interconnect to perform a specific task. Starting from basic fundamentals through to advanced applications, Sensors and Actuators: Engineering System Instrumentation, Second Edition thoroughly explains the inner workings of an engineering system. The text first provides introductory material—practical procedures and applications in the beginning—and then methodically integrates more advanced techniques, theory, and concepts throughout the book.
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The book features extensive coverage of the modeling and simulation of physical systems made possible by block-diagrams, the modified analogy approach to modeling, and state-of-the-art visual simulation software. A collection of case studies drawn from a variety of industries (complete with parts, lists, setup, and instructions) are used to support the authors' applied, design-oriented approach. Readers of this text will be equipped with all the tools necessary to plan, test, and implement a well-designed mechatronic system.
Important Notice: Media content referenced within the product description or the product text may not be available in the ebook version. Author by: Clarence W.
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Inductive TransducersThe inductive transducers work on the principle of the magnetic induction of magnetic material. Just as the resistance of the electric conductor depends on number of factors, the induction of the magnetic material depends on a number of variables like the number of turns of the coil on the material, the size of the magnetic material, and the permeability of the flux path.
In the inductive transducers the magnetic materials are used in the flux path and there are one or more air gaps. The change in the air gap also results in change in the inductance of the circuit and in most of the inductive transducers it is used for the working of the instrument.There are two common type inductive transducers: simple inductance type and two-coil mutual inductance type. Both have been described below along with their circuits. 1) Simple Inductance Type Inductive TransducersIn the simple inductance type of the inductive transducers simple single coil is used as the transducer. When the mechanical element whose displacement is to be measured is moved, it changes the permeance of the flux path generated by the circuit, which changes the inductance of the circuit and the corresponding output.
The output from the circuit is calibrated directly against the value of the input, thus it directly gives the valve of the parameter to be measured.The figure 1 below shows the single coil inductive circuit. Here the magnetic material is connected to the electric circuit and it is excited by the alternating current.
At the bottom there is another magnetic material that acts as the armature. As the armature is moved, the air gap between the two magnetic material changes and the permeance of the flux generated by the circuit changes that changes the inductance of the circuit and its output.
The output meter directly gives the valve of the input mechanical quantity.In the figure 2, coil is wound around the round hollow magnetic material and there is magnetic core that moves inside hollow magnetic material. In the above circuits the change in the air gap or the change in the amount of the magnetic material in the circuit can be used to produce the output proportional to the input.Another arrangement of the coils is shown in figure 3, where two coils are used. In this circuit the movement of the core changes the relative inductance of the two coils and over all inductance of the circuit. This system is used in the devices along with the inductive bridge circuit. In this circuit the change in the induction ratio of the two coils provides the output proportional to the mechanical input.In the above arrangements the supply of the current and the output is obtained from the same coil or circuit. Simple Inductance Type Inductive Transducers.
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2) Two-Coil Mutual Inductance Type Inductive TransducerIn the two coil arrangement there are two different coils. In the first coil the excitation is generated by external source of the power and in the second coil the output is obtained. The output is proportional to the mechanical input.As shown in the figure 4 below, A is the excitation coil and B is the output coil. The inductance of the output coil changes due to change in position of the armature which is connected to the mechanical element whose motion is to be measured. As the armature position changes, the air gap between the fixed magnetic material and the armature changes. The arrangement shown in figure 5 also works in the similar manner.
Two-Coil Mutual Inductance Type Inductive Transducer.
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