Introduction to Automotive Sensor Technology in Q&A Format - Basics, Market, Reliability Evaluation
S11121
★ Ensuring durability and reliability even in harsh environments!! ★ What is driving environment recognition using onboard sensors? What is ISO/TS16949?
Lecturer Mr. Tomo Shimada, Ph.D. Koga Research Institute Co., Ltd. / Part-time Lecturer at Ibaraki University / Industry-Academia-Government Collaboration Coordinator Target Audience: Personnel involved in automotive and sensor-related technologies Venue: Kawasaki City Industrial Promotion Hall, 11th Floor, Room 5 [Kanagawa, Kawasaki City] 8-minute walk from JR Kawasaki Station West Exit Date and Time: November 24, 2011 (Thursday) 13:30-16:30 Capacity: 20 people *Registration will close once full. Please apply early. Participation Fee: [Early Bird Discount Price] 46,200 yen (tax included, including text costs) for up to 2 people per company *Limited to Tech-Zone members who apply by November 10. Membership registration is free. *After November 10, the [Regular Price] will be 49,350 yen (tax included, including text costs) for up to 2 people per company.
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basic information
【Purpose of the Course】 Modern automobiles use 30,000 parts. An average of 50 sensors are installed, which are used for controlling the engine and transmission, vehicle motion control, and information control using car navigation systems. These electronic components, including sensors, require durability and reliability of over 10 years. This course will clearly explain through the instructor's experience the development examples of automotive sensors, methods to achieve high reliability, and the fundamental knowledge of MEMS technology that supports this. It is aimed at engineers currently involved in sensor research and development, those who are about to start, and anyone interested in the development trends of MEMS-related sensors.
Price range
P2
Delivery Time
P2
Applications/Examples of results
1. Basic Edition - Sensors are the car's five senses 2. Market Edition - Sensors with a monthly production of 1 million units 3. Design Edition - 70% of reliability is determined by design 4. Manufacturing Process Edition (Front Process) - Various MEMS processes Q1. Is the MEMS process bulk or surface device process? Q2. Which should be processed first, elements or circuits? Q3. What are the forces acting on MEMS and what is stiction? 5. Implementation Edition (Back Process) - Implementation costs account for 60% Q1. What will the implementation structure be? Q3. What is wafer-level packaging? Q4. What is the airtightness of bonding and sealing parts? 6. Reliability Evaluation Edition - High reliability through active diagnostics 7. Application Edition - Examples of sensors that achieve cost-performance ratio Q1. What are the measurement principles and manufacturing processes of pressure sensors? Q2. What is an air flow sensor? Q3. What is an accelerometer for airbags? Q3. What is a gyroscope sensor for vehicle control? Q4. What are onboard CCD/CMOS sensors? Q5. What is a semiconductor sensor for TPMS (Tire Pressure Monitoring System)? 8. Topics Edition Q1. What is driving environment recognition using onboard sensors? Q2. What are the future directions? What are the technical challenges?
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