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A Dual-Mode Coil-Reuse Data Acquisition System for Miniaturized Wirelessly Powered Biopotential Sensing Nodes (Case No. 2024-173)
Summary: UCLA researchers in the Department of Electrical and Computer Engineering have developed a dual-mode, batteryless coil-reuse system for biosensing devices that enables efficient wireless power transfer and long-range data transmission in a compact form. Background: A vast majority of wearable and implantable medical devices require two wireless...
Published: 5/8/2025
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Inventor(s):
Aydin Babakhani
,
Hamid Jafarisharemi
Keywords(s):
Antennas/Wireless
,
battery-less
,
battery-less IoT
,
Bioelectromagnetics
,
bioelectronics
,
Bioinformatics
,
bioinformatics pipeline
,
Biomedical Engineering
,
biomedical implantation
,
biomedical sensors
,
Biomonitoring
,
Biosensor
,
Cardiac failure
,
coil design
,
Data Acquisition
,
Data Analytics
,
Electrical stimulation
,
electrochemical sensors
,
implantable sensors
,
low-power architecture
,
low-power device
,
medical device cardiac monitoring
,
Medical Devices and Materials
,
node architecture
,
non-invasive cardiac monitoring
,
radiofrequency (RF) coil
,
radiofrequency signaling
,
Rechargeable Battery
,
self-powered wireless sensor solutions
,
Sensor
,
Sensors
,
Smart Antenna
,
soft electrical circuits
,
wearable
,
wearable electronics
,
wearable medical device
,
wearable medical devices
,
wearable sensors
Category(s):
Electrical
,
Electrical > Flexible Electronics
,
Electrical > Sensors
,
Electrical > Wireless
,
Medical Devices
,
Medical Devices > Monitoring And Recording Systems
A Millimeterwave Backscatter Network (Case No. 2024-040)
Summary: UCLA researchers in the Department of Computer Science have developed the first millimeter wave communication network that enables both uplink and downlink communication as well as accurate localization using energy-efficient backscattering techniques. Background: Millimeter wave (mmWave) technology is an emerging wireless communication...
Published: 2/14/2025
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Inventor(s):
Omid Abari
,
Mohammad Hossein Mazaheri Kalahrody
,
Haofan Lu
Keywords(s):
accurate localization
,
backscatter node
,
Bandwidth (Computing)
,
Bandwidth (Signal Processing)
,
efficiency bandwidth products
,
energy-efficient
,
energy-efficient wireless communication
,
Extremely High Frequency
,
frequency modulation
,
high-data-rate links
,
high-frequency signals
,
large bandwidth
,
millimeter-wave
,
Millimeterwave network
,
mmWave backscatter network
,
node architecture
,
Radio Frequency
,
Waveform
,
Waveguide (Electromagnetism)
,
Wavelength
Category(s):
Electrical
,
Electrical > Wireless
,
Electrical > Signal Processing
,
Electrical > Instrumentation
,
Energy & Environment
,
Energy & Environment > Energy Efficiency