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Magnetic actuators and sensors / John R. Brauer.

By: Brauer, John R, 1943-.
Contributor(s): John Wiley & Sons [publisher.] | IEEE Xplore (Online service) [distributor.].
Material type: materialTypeLabelBookPublisher: Piscataway, New Jersey : IEEE Press, 2006Distributor: [Piscataqay, New Jersey] : IEEE Xplore, [2006]Description: 1 PDF (xii, 308 pages) : illustrations.Content type: text Media type: electronic Carrier type: online resourceISBN: 9780471777717.Subject(s): Actuators | Detectors | Acceleration | Actuators | Analytical models | Apertures | Atmospheric modeling | Books | Coils | Conductivity | Copper | Couplings | Eddy currents | Electric fields | Electric potential | Electrohydraulics | Electromagnetic interference | Electromagnetics | Equations | Finite element methods | Force | Geometry | Hall effect | Indexes | Inductance | Integrated circuit modeling | Iron | Magnetic circuits | Magnetic cores | Magnetic devices | Magnetic fields | Magnetic flux | Magnetic forces | Magnetic heads | Magnetic recording | Magnetic sensors | Magnetic tunneling | Magnetoresistance | Magnetostatics | Materials | Mathematical model | Measurement units | Mechanical sensors | Nickel | Noise | Orifices | Permeability | RLC circuits | SPICE | Sensor systems | Shape | Skin | Slabs | Solenoids | Steel | Temperature | Temperature sensors | Tensile stress | Terminology | Three dimensional displays | Transient analysis | Wheels | WireGenre/Form: Electronic books.Additional physical formats: Print version:: No titleDDC classification: 629.8315 Online resources: Abstract with links to resource Also available in print.
Contents:
Basic electromagnetics -- Reluctance method -- Finite-element method -- Magnetic force -- Other magnetic performance parameters -- Magnetic actuators operated by direct current -- Magnetic actuators operated by alternating current -- Magnetic actuator transient operation -- Hall effect and magnetoresistive sensors -- Other magnetic sensors -- Coil design and temperature calculations -- Electromagnetic compatibility -- Electromechanical finite elements -- Electromechanical analysis using systems models -- Coupled electrohydraulic analysis using systems models.
Summary: This practical text features computer-aided engineering methods for the design and application of magnetic actuators and sensors, using the latest software tools. John Brauer highlights the use of the electromagnetic finite element software package Maxwell? SV and introduces readers to applications using SPICE, MATLAB?, and Simplorer?. A free download of Maxwell? SV is available at the Ansoft site, and the software files for the examples are available at ftp://ftp.wiley.com/public/sci_tech_med/magnetic_actuators. The text is divided into four parts: * Part One, Magnetics, offers an introduction to magnetic actuators and sensors as well as basic electromagnetics, followed by an examination of the reluctance method, the finite element method, magnetic force, and other magnetic performance parameters * Part Two, Actuators, explores DC actuators, AC actuators, and magnetic actuator transient operation * Part Three, Sensors, details Hall effect and magnetoresistance as they apply to sensing position. Readers are introduced to many other types of magnetic sensors * Part Four, Systems, covers aspects of systems common to both magnetic actuators and sensors, including coil design and temperature calculations, electromagnetic compatibility, electromechanical finite elements, and electromechanical analysis using system models. The final chapter sets forth the advantages of electrohydraulic systems that incorporate magnetic actuators and/or sensors A major thrust of this book is teaching by example. In addition to solved examples provided by the author, problems at the end of each chapter help readers to confirm their understanding of new skills and techniques. References, provided in each chapter, help readers explore particular topics in greater depth. With its emphasis on problem solving and applications, this is an ideal textbook for electrical and mechanical engineers enrolled in upper-level undergraduate and graduate classes in electromechanical engineering.
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Includes bibliographical references and index.

Basic electromagnetics -- Reluctance method -- Finite-element method -- Magnetic force -- Other magnetic performance parameters -- Magnetic actuators operated by direct current -- Magnetic actuators operated by alternating current -- Magnetic actuator transient operation -- Hall effect and magnetoresistive sensors -- Other magnetic sensors -- Coil design and temperature calculations -- Electromagnetic compatibility -- Electromechanical finite elements -- Electromechanical analysis using systems models -- Coupled electrohydraulic analysis using systems models.

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This practical text features computer-aided engineering methods for the design and application of magnetic actuators and sensors, using the latest software tools. John Brauer highlights the use of the electromagnetic finite element software package Maxwell? SV and introduces readers to applications using SPICE, MATLAB?, and Simplorer?. A free download of Maxwell? SV is available at the Ansoft site, and the software files for the examples are available at ftp://ftp.wiley.com/public/sci_tech_med/magnetic_actuators. The text is divided into four parts: * Part One, Magnetics, offers an introduction to magnetic actuators and sensors as well as basic electromagnetics, followed by an examination of the reluctance method, the finite element method, magnetic force, and other magnetic performance parameters * Part Two, Actuators, explores DC actuators, AC actuators, and magnetic actuator transient operation * Part Three, Sensors, details Hall effect and magnetoresistance as they apply to sensing position. Readers are introduced to many other types of magnetic sensors * Part Four, Systems, covers aspects of systems common to both magnetic actuators and sensors, including coil design and temperature calculations, electromagnetic compatibility, electromechanical finite elements, and electromechanical analysis using system models. The final chapter sets forth the advantages of electrohydraulic systems that incorporate magnetic actuators and/or sensors A major thrust of this book is teaching by example. In addition to solved examples provided by the author, problems at the end of each chapter help readers to confirm their understanding of new skills and techniques. References, provided in each chapter, help readers explore particular topics in greater depth. With its emphasis on problem solving and applications, this is an ideal textbook for electrical and mechanical engineers enrolled in upper-level undergraduate and graduate classes in electromechanical engineering.

Also available in print.

Mode of access: World Wide Web

Description based on PDF viewed 12/21/2015.

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