Mori and Honzo have received the Minister of Education, Culture, Sports, Science and Technology Award.
Publication Date: September 11, 2013 Format: B5 size, 197 pages Price: 52,290 yen (including tax) *Free trial reading available. Supervised by: Yoshio Mouri Writers: Yoshio Mouri, Emeritus Professor, Nagoya University, Senior Researcher, Nagoya Institute of Industrial Science and Technology Yasuo Ando, Professor, Graduate School of Engineering, Tohoku University, Department of Applied Physics Yoshinobu Honzo, Former Executive Director, Aichi Steel Corporation, Advisor Mikihiko Okane, Associate Professor, Graduate School of Engineering, Tohoku University, Department of Applied Physics Takeshi Uchiyama, Associate Professor, Graduate School of Engineering, Nagoya University, Department of Electronic Information Systems Hiroshi Nonoyama, Deputy Director, MEMS Device Research Laboratory, Electronic Device Research Division, Toyota Central R&D Labs, Inc.
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Chapter 1: Fundamentals of New Magnetic Sensors (1) Large Bulk Barkhausen Effect and Magnetic Impedance Effect of Amorphous Wires - MI Sensors 1. Amorphous Magnetic Alloys 2. Amorphous Alloy Wires 3. Large Bulk Barkhausen Effect of Amorphous Magnetic Alloy Wires 4. Other Application Examples 5. Large Bulk Barkhausen Effect of Zero Magnetostriction Single Crystal Wires 6. Magnetic Inductance Effect of Amorphous Wires 7. Magnetic Impedance Effect of Amorphous Wires Chapter 2: Fundamentals of New Magnetic Sensors (2) Magnetoresistance Effect 1. Introduction 2. Magnetoresistance Effect (MR) 3. Application of Magnetoresistance Elements to Sensors 4. Future Prospects of Magnetoresistance Sensors - Focusing on TMR - 5. Conclusion Chapter 3: Electronic Compass and Motion Sensors Using MI Sensors 1. Encountering Electronic Compass and MI Sensors 2. Evolution of Key Technologies for MI Sensors (1998 to 2012) 3. Development of Electronic Compass for Mobile Phones (First Generation, from 2000) 4. Second Generation Electronic Compass and 6-Axis Motion Sensors (from 2005) 5. Third Generation Electronic Compass and Gyro Fusion Sensors 6. Future Prospects
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Chapter 4: TMR and CPP-GMR Magnetic Heads 1. Magnetic Resistance Head 2. Tunnel Magnetic Resistance Head 3. Perpendicular Current Giant Magnetoresistance Head Chapter 5: PicoTesla MI Sensors and Medical Bio-Magnetic Measurement 1. PicoTesla MI Sensor 2. Micro Magnetic Field Measurement Technology 3. Bio-Magnetic Measurement Chapter 6: TMR Sensors and Medical Bio-Measurement 1. TMR Sensors for Medical Applications 2. Approaches to Bio-Magnetic Field Sensors 3. Future Prospects of TMR Bio-Magnetic Field Sensors 4. Conclusion Chapter 7: Automotive Magnetic Sensors 1. General Automotive Sensors 2. Torque Sensors 3. Rotation Angle and Rotation Speed Sensors 4. Automotive Position Detection Sensors 5. Summary of Automotive Magnetic Sensors Chapter 8: Vehicle Drowsy Driving Prevention Technology 1. Patent Application Status of Drowsy Driving Prevention Technology 2. Physiology of Wakefulness and Sleep Centers 3. Physiological Magnetic Stimulation of Wakefulness Centers 4. Awakening Effects of ELF Magnetic Stimulation on the Driver's Spine 5. Magnetic Stimulation of the Spine and Driving Characteristics 6. Evaluation of Awakening Effects of Magnetic Stimulation by Spinal Magnetic Fields
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