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Electronics for Sensors

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CMOS image sensor; linearity; adaptive nonlinear ramp; fully differential pipeline; double auto-zeroing; high framerate; fixed pattern noise; floating diffusion; readout scheme; ramp generator circuit; ultrasound; PMUT; high-voltage (HV) transmitter; low-voltage receiver (RX) amplifier; ultrasound application-specific integrated circuit (ASIC); monolithical integration; CMOS; MEMS; electrical impedance spectroscopy (EIS); time-to-digital converter (TDC); time interpolator; phase; polar demodulator; quantization; reconfigurability; current mode; sensor interface; silicon photomultiplier; transimpedance amplifier; voltage current conveyor; field-programmable gate arrays (FPGA); non-uniform multiphase (NUMP) method; temperature correction; radiation sensor interface; silicon photomultiplier (SiPM); mobile dosimeter; analog-to-digital converter (ADC); magnetic bioreactor; magnetoactive scaffolds; tissue engineering; magnetic actuator; magnetoelectric stimulation; selectable gain amplifier; resistive-sensor; current divider; current reference; front-end electronics; single-photon response; timing accuracy; ultrasonic gas flowmeter; the principle of time-difference method; data filtering; low-power measurement; auto-balancing bridge method; FIR filter; FPGA; impedance; inductive-loop sensor; multifrequency; vehicle magnetic profile; vector voltmeter; signal processing; background radiation monitoring system; Atmel AVR ATmega328 microcontroller (MC); Geiger-Mueller counter; Petri net model; fifth-order low-pass filter; operational transconductance amplifier; multiple-input bulk-driven technique; subthreshold region; nanopower; temperature compensation; hysteresis; quartz flexible accelerometer; aerial inertial navigation system; thermal effect; creep effect; electronic nose; convolutional neural network; component analysis; xenon TPC; trigger concepts; data acquisition circuits; n/a

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-0365-1241-9

País de edición

Suiza