Synopsis
Electronic Components Handbook, Volume 3: Sensors, Transducers, and Sensing Technologies is a practical engineering reference for understanding how modern sensors work, how to select them, how to connect them to electronic systems, and how to test their performance in real applications.
Written for engineering students, technicians, technologists, electronics professionals, makers, and practicing engineers, this volume brings together the main areas of sensor technology, measurement systems, industrial instrumentation, signal conditioning, data acquisition, sensor interfacing, calibration, and troubleshooting in one clear reference.
The book begins with the fundamentals of sensors and transducers, including sensitivity, range, resolution, accuracy, repeatability, linearity, drift, hysteresis, response time, calibration, measurement error, and uncertainty. It then moves into practical signal conditioning and interfacing, including excitation methods, bridge circuits, amplification, filtering, noise control, analog-to-digital conversion, and measurement-system design.
Readers will study the operation, selection, and application of major sensor families, including:
- Temperature sensors, thermocouples, RTDs, and thermistors
- Strain gauges, load cells, force sensors, and torque sensors
- Pressure and vacuum sensors
- Position, displacement, proximity, speed, and rotation sensors
- Accelerometers, vibration sensors, tilt sensors, and inertial sensors
- Flow and level sensors
- Optical, infrared, color, and imaging sensors
- Hall-effect, magnetoresistive, electric-field, and current sensors
- Acoustic, ultrasonic, and piezoelectric sensors
- Humidity, moisture, gas, chemical, and environmental sensors
- Biosensors and biomedical sensing principles
- MEMS sensors, smart sensors, digital interfaces, and wireless sensor nodes
The later chapters connect individual sensors to complete
measurement and instrumentation systems. Topics include I²C and SPI interfaces, embedded compensation, sensor diagnostics, wireless sensor networks, sensor fusion, timing and synchronization, power management, calibration records, system verification, and long-term maintenance.
A strong part of the book is its focus on
sensor selection and practical engineering decisions. Readers learn how to compare technologies based on range, accuracy, bandwidth, environmental limits, installation conditions, power requirements, interface type, stability, cost, and maintenance needs.
The book also gives careful attention to
sensor calibration, measurement uncertainty, testing, fault isolation, and sensor troubleshooting. Worked examples show how important equations are applied, while practice problems help readers check their understanding and build confidence with real engineering calculations.
Clear diagrams and comparison tables make complex sensing principles easier to understand. The book also explains common installation problems, environmental effects, cross-sensitivity, interference, drift, loading, alignment errors, wiring problems, and other issues that can affect measurement quality.
Whether you are learning
industrial instrumentation, designing an embedded sensing system, studying
measurement systems engineering, working with
MEMS and smart sensors, building a
data acquisition system, or selecting sensors for a practical project, this handbook provides a structured reference that connects sensor principles with real engineering use.
Electronic Components Handbook, Volume 3 is designed to help readers move beyond knowing what a sensor is to understanding how to
select, interface, calibrate, test, troubleshoot, and integrate sensors into dependable electronic and measurement systems.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.