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Self-Healing Techniques for Robust mm-Wave Power Amplification
Jenny Yi Chun Liu
*
, Zhiwei Xu, Qun Jane Gu, Mau Chung Frank Chang
*
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引文 斯高帕斯(Scopus)
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Keyphrases
Power Amplifier
100%
Millimeter Wave
100%
Power Amplification
100%
MmWave Systems
100%
Self-healing Technique
100%
Wave Power
100%
Power Output
66%
Popular
33%
Controller
33%
CMOS Technology
33%
Process Variation
33%
High Sensitivity
33%
Digital Signal Processing
33%
On-a-chip
33%
Data Quality
33%
Silicon CMOS
33%
Control Knob
33%
Self-healing
33%
Adaptive Adjustment
33%
Communication Link
33%
Environment Change
33%
Target Power
33%
Information Processing Capability
33%
Performance Boost
33%
Multi-Gbps
33%
Automobile
33%
Low-cost Substrates
33%
Environment Condition
33%
Bias Network
33%
Low Breakdown Voltage
33%
Transmission Data
33%
Communication Distance
33%
60 GHz Band
33%
Yield Improvement
33%
File Transfer
33%
Point-to-point Communication
33%
Self-healing Capability
33%
Fabrication Yield
33%
Performance Condition
33%
Embedded Control
33%
Power Nonlinearity
33%
Adaptive Bias
33%
Backhaul Networks
33%
Amplification System
33%
Output Temperature
33%
Mm-wave Power Amplifier
33%
Output Nonlinearity
33%
Engineering
Power Amplifier
100%
Wave Power
100%
Output Power
50%
Breakdown Voltage
25%
Digital Signal Processing
25%
Potential Application
25%
Optimum Condition
25%
Communication Link
25%
Quality Data
25%
Nonlinearity
25%
Process Variation
25%