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Integrated Circuits and Systems for Smart Sensory Applications

Integrated Circuits and Systems for Smart Sensory Applications

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Connected intelligent sensing reshapes our society by empowering people with increasing new ways of mutual interactions. As integration technologies keep their scaling roadmap, the horizon of sensory applications is rapidly widening, thanks to myriad light-weight low-power or, in same cases even self-powered, smart devices with high-connectivity capabilities. CMOS integrated circuits technology is the best candidate to supply the required smartness and to pioneer these emerging sensory systems. As a result, new challenges are arising around the design of these integrated circuits and systems for sensory applications in terms of low-power edge computing, power management strategies, low-range wireless communications, integration with sensing devices. In this Special Issue recent advances in application-specific integrated circuits (ASIC) and systems for smart sensory applications in the following five emerging topics: (I) dedicated short-range communications transceivers; (II) digital smart sensors, (III) implantable neural interfaces, (IV) Power Management Strategies in wireless sensor nodes and (V) neuromorphic hardware.

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Keywords

  • AC coupling
  • ACE-Q100
  • area-efficient design
  • artificial intelligence
  • Artificial Neural Networks
  • asynchronous control logic
  • capacitance-to-digital converter
  • capacitive digital to analog converter (CDAC)
  • closed-loop neurostimulator
  • CMOS
  • CMOS capacitive sensor interface
  • CMOS neural amplifier
  • dedicated short range communication (DSRC)
  • digital controller
  • digital temperature sensor
  • EEPROM reprogrammable fuses
  • electronic toll collection (ETC) system
  • Epilepsy
  • feature extraction
  • History of engineering & technology
  • image classification
  • implantable medical device
  • Integrated circuits
  • iterative-delay-chain discharge
  • leaky integrate and fire
  • low power consumption
  • low-noise amplifier
  • low-power
  • memory cells
  • multichannel neural recording
  • multiphase operation
  • negative temperature coefficient
  • Neuromorphic
  • nonlinear distortion
  • piezoresistive
  • power management
  • power mode
  • pressure sensor
  • pseudoresistor
  • Reliability
  • seizure
  • sensor node
  • Spiking Neural network
  • successive approximation register (SAR)
  • switched capacitor
  • Technology, engineering, agriculture
  • Technology: general issues
  • temperature compensation
  • temperature sensor with digital serial interface
  • trimming techniques with fuses
  • variable frequency
  • voltage converter
  • wake-up receiver
  • wide load range
  • wireless access in vehicular environments (WAVE)
  • Wireless sensor networks

Links

DOI: 10.3390/books978-3-0365-3265-3

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