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Fingerprint Dive into the research topics where John Taylor is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

Engineering & Materials Science

Electrodes
Energy harvesting
Signal processing
Electric power utilization
Application specific integrated circuits
Arthroplasty
Biosensors
Fibers
CMOS integrated circuits
Integrated circuits
Sensors
Ferroelectric materials
Porosity
Electric delay lines
Networks (circuits)
Metals
Bandwidth
Alumina
Costs
Transducers
Capacitors
Neurons
SPICE
Electric potential
Barium titanate
Permittivity
Signal to noise ratio
Biocompatibility
Electrophysiology
Calibration
Rats
Time delay
Grain boundaries
Neurology
Signal generators
Bandpass filters
Electric properties
Charge injection
Communication
Harmonic analysis
Sandwich structures
Field programmable gate arrays (FPGA)
Hooks
Spectroscopy
Cables
Bioelectric potentials
Analog circuits
Differential amplifiers
Testing
Transconductance

Chemical Compounds

Energy harvesting
Electrodes
CMOS integrated circuits
Metals
Ferroelectric materials
Porosity
Biosensors
Aluminum Oxide
Integrated circuits
MOSFET devices
Barium titanate
Permittivity
Artificial Receptors
Costs
Field effect transistors
Grain boundaries
Plasma (human)
Arthroplasty
Electric properties
Sensors
Sandwich structures
Fibers
Spectroscopy
Transducers
Electrophysiology
Porous materials
Application specific integrated circuits
Prostate-Specific Antigen
Oxides
Capacitors
Temperature
Thermogravimetric analysis
Bacteria
Electron tubes
Screening
Semiconductor materials
Anisotropy
Dielectric properties
Thermal energy
Calibration
Substrates
Aluminum

Medicine & Life Sciences

Electrodes
Semiconductors
Action Potentials
Oxides
Biosensing Techniques
Anura
Metals
Neural Prostheses
Equipment and Supplies
Technology
Peripheral Nerves
Noise
Neurosciences
Costs and Cost Analysis
Aluminum Oxide
Swine
Median Nerve
Nerve Fibers
Information Systems
Cell Adhesion
Transducers