Engineering
Front End
100%
Vortex
73%
Analog Front
61%
Piezoelectric
61%
Choppers (Circuits)
48%
Electric Power Utilization
47%
Amplifier
44%
Magnetic Tunnel Junction
36%
Microscale
36%
Light-Emitting Diode
36%
Energy Engineering
32%
Measurement System
32%
Pulse Duration
32%
Low Power Consumption
32%
System-on-Chip
32%
Medical Implant
32%
Transmissions
28%
Battery (Electrochemical Energy Engineering)
28%
Output Power
28%
Pulse Width Modulation
24%
Channel Recorder
24%
Operating Frequency
24%
Acquisition System
24%
Sound Navigation and Ranging
24%
Cavity Surface
24%
Conversion Time
24%
Input Impedance
24%
Drug Delivery
24%
Slew Rate
24%
Operational Amplifier
24%
Integrated System
24%
Impedance
24%
Piezoelectric Material
24%
Parallel Resistance
24%
Emitting Laser
24%
Optical Power
24%
District Heating
24%
Clinical Application
24%
Time-Domain Reflectometry
24%
Applicability
24%
Ultrasonics
24%
Feasibility Study
24%
Pattern Recognition Systems
24%
Learning Algorithm
24%
Network-on-Chip
24%
Diamond
24%
Powered Device
24%
Transducer
24%
Material Characteristic
24%
Illustrates
24%
Keyphrases
Chopper
24%
Operational Amplifier
24%
Slew Rate
24%
Power Pattern
24%
Learning Algorithm
24%
Digital Hardware Implementation
24%
Resume
24%
Neuromorphic Computing
24%
Oscillator Systems
24%
Spin-torque Nano-oscillator
24%
Synaptic Operation
24%
Hopfield
24%
Oscillatory Neural Networks
24%
Diamond
24%
Spiking Neural Networks
24%
Real-time Processing
24%
Ultrasound-based
24%
Wireless Power
24%
Load Capacitor
16%
Rail to Rail Inputs
16%
180 Nm Technology
16%
Spike-timing-dependent Plasticity Learning
16%
Network on chip
14%
Fsync
14%
Spin Torque
14%
28 Nm CMOS
13%
Neuromorphic System
9%
Router
9%
DC Gain
8%
PMOS
8%
Three-stage Amplifier
8%
Chopper-stabilized
8%
Gain Bandwidth
8%
Unity Gain
8%
Differential Pair
8%
Subthreshold Region
8%
Large Signal
8%
Noise Density
8%
Maximum Offset
8%
Input Bias Current
8%
High Slew Rate
8%
Modified Bootstrap
8%
Corner Frequency
8%
Flicker Noise
8%
Signal Transition
8%
Wide Bandwidth
8%
Unity Gain Bandwidth
8%
Adaptive Biasing
8%
Very Low Power
8%
NMOS
8%