Integrating physical modeling, mathematical analysis, and computer simulation, this book explores a variety of specific and practical instrumentation design situations. The author uses MATLAB® and Simulink® for dynamic system simulation, Minitab® for statistical applications, and Mathcad for general engineering computations. Sharply focused, user-friendly mini-manuals for the software can be found in the appendices. The book explains how to protect sensitive instruments and machines from damaging shock and vibration environments, shows how to design piezoelectric actuators for precision…mehr
Integrating physical modeling, mathematical analysis, and computer simulation, this book explores a variety of specific and practical instrumentation design situations. The author uses MATLAB® and Simulink® for dynamic system simulation, Minitab® for statistical applications, and Mathcad for general engineering computations. Sharply focused, user-friendly mini-manuals for the software can be found in the appendices. The book explains how to protect sensitive instruments and machines from damaging shock and vibration environments, shows how to design piezoelectric actuators for precision nanometer motion control, and details the mechanical, fluid, thermal, and control aspects of designing a viscosimeter.
Ernest O. Doebelin is Professor Emeritus in the College of Engineering at Ohio State University, where he received the Alumni Award for Distinguished Teaching and the Charles E. MacQuigg Award for Outstanding Teaching.
Inhaltsangabe
Introduction to Statistical Design of Experiments: Experimental Modeling of a Cooling System for Electronic Equipment. Vibration Isolation for Sensitive Instruments and Machines. Design of a Vibrating Cylinder, High-Accuracy Pressure Transducer. A Fast ("Cold-Wire") Resistance Thermometer for Temperature Measurements in Fluids. Piezoelectric Actuation for Nanometer Motion Control. Preliminary Design of a Viscosimeter. Infrasonic and Ultrasonic Microphones. Some Basic Statistical Tools for Experiment Planning. Multi-Axial Force/Torque Measurement: Thrust Stands for Jet and Rocket Engines. Shock Calibrator for Accelerometers. Shock Testing and the Shock Response Spectrum (SRS). Appendices.
Introduction to Statistical Design of Experiments: Experimental Modeling of a Cooling System for Electronic Equipment. Vibration Isolation for Sensitive Instruments and Machines. Design of a Vibrating Cylinder, High-Accuracy Pressure Transducer. A Fast ("Cold-Wire") Resistance Thermometer for Temperature Measurements in Fluids. Piezoelectric Actuation for Nanometer Motion Control. Preliminary Design of a Viscosimeter. Infrasonic and Ultrasonic Microphones. Some Basic Statistical Tools for Experiment Planning. Multi-Axial Force/Torque Measurement: Thrust Stands for Jet and Rocket Engines. Shock Calibrator for Accelerometers. Shock Testing and the Shock Response Spectrum (SRS). Appendices.
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