Keyphrases
65nm CMOS
54%
Active Electrode
10%
Biomedical Implants
16%
Channel Select Filter
8%
Charge Balance
21%
Chip Area
12%
Closed-loop
16%
CMOS Process
26%
Crosstalk Current
8%
DC Current
11%
Efficiency Theory
8%
Electrode Driver
19%
Epiretinal Prosthesis
36%
Flexible Electrode
8%
Gaussian Frequency Shift Keying
8%
High Density
12%
High Efficiency
12%
High-density Electrode Array
10%
Human Head Model
8%
Implantable Devices
28%
Independency
8%
Inductive Coil
26%
Inductive Coupling
10%
Inductive Link
21%
Inductive Power
8%
Low Power
27%
Measurement Results
9%
Medical Implant Communications Service (MICS) Band
8%
MICS Band
32%
Multielectrode Array
8%
Multistage Coupling
8%
Power Consumption
16%
Power Supply
9%
Power Transfer
14%
Power Transfer Efficiency
10%
Receiver Front End
10%
Retinal Prosthesis
65%
Return Electrode
10%
Stimulus Current
11%
Subthreshold
13%
Super-low
24%
Transmitting Coil
9%
Ultra-low Power
16%
Voltage Reference
8%
Wireless Power
16%
Wireless Power Delivery
8%
Wireless Power Transfer
12%
Wireless Power Transfer System
8%
Wireless Technology
8%
Wirelessly
11%
Engineering
Band Channel
8%
Biomedical Device
10%
Bit Error Rate
5%
Chip Area
16%
Circuit Design
5%
Closed Loop
16%
Communication Service
8%
Conductive
12%
Conversion Gain
8%
Crosstalk
9%
Current Measurement
8%
Current Source
8%
Demodulator
8%
Dynamic Range
8%
Electric Field
8%
Electric Power Utilization
16%
Electrode Array
18%
Flexible Electrode
8%
Front End
22%
Gaussian Frequency Shift Keying
8%
High Resolution
8%
Implant
18%
Implanted Device
17%
Inductive Coupling
9%
Input Range
8%
Input Voltage
8%
Maximum Data Rate
5%
Medical Implant
8%
Mixers (Machinery)
8%
Multistage
8%
Noise Attenuation
8%
Noise Figure
12%
Power Supply
17%
Power Transmission
8%
Prosthetics
8%
Pulse Duration
5%
Q Factor
8%
Quality Factor
9%
Rate Distribution
8%
Retinal Prosthesis
100%
Saline Solution
5%
Simplifies
5%
Simulation Result
5%
Specific Absorption Rate
8%
Stimulator
24%
Supply Voltage
14%
Temperature Coefficient
8%
Transmissions
6%
Wireless Power Transfer
12%
Wireless Technologies
8%