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Low-Power Synthesizer-Free Self-Injection Locked Radar (Case No. 2024-190)
Summary: Researchers at UCLA’s Department of
Electrical
and Computer Engineering have developed a novel synthesizer-free phase imaging radar that generates high-resolution images with low power consumption. Background: Imaging radars are used in various applications, from self-driving cars and aircraft navigation to medical screening. Traditional...
Published: 6/16/2025
|
Inventor(s):
Sidharth Thomas
,
Wei Sun
,
Aydin Babakhani
Keywords(s):
Antennas/Wireless
,
Biosensor
,
Continuous-Wave Radar
,
Electrical
,
Frequency conversion
,
High-resolution
,
Image Resolution
,
Imaging
,
low-power device
,
Phase (Waves)
,
Phase-Contrast Imaging
,
Radar
,
Radar / Antennae
,
satellite imaging
,
Signal-To-Noise Ratio
Category(s):
Electrical
> Imaging
,
Software & Algorithms > Image Processing
,
Electrical
,
Electrical
> Wireless > Antennas
Electrical
Stimulation for Acute Stroke (Case No. 2020-787)
Summary: Researchers at the UCLA Department of Neurology have developed an individualized method of delivering non-invasive
electrical
stimulation to treat acute human ischemic stroke. Background: Stroke is a leading cause of mortality and morbidity across the world. Over 80% of strokes are ischemic due to blockage of blood vessels, causing a low...
Published: 2/14/2025
|
Inventor(s):
Mersedeh Bahr Hosseini
,
Jeffrey Saver
,
Marom Bikson
Keywords(s):
Acute ischemic stroke
,
CNS Rehabilitation
,
Electrical
,
Electrical
Engineering
,
Electrical
stimulation
,
Neurocognitive
,
Neuroimaging
,
Neurointervention
,
neurological disorders
,
Neurology
,
Neuromodulation
,
Neuron
,
Neuropathology
,
Neuropsychological Test
,
neuroscience
,
Neurostimulation
,
Neurosurgery
,
soft
electrical
circuits
,
Stroke
,
Stroke Geriatrics Energy Accounting Local Area Network
,
stroke rehabilitation
,
stroke therapeutics
,
Transcutaneous
Electrical
Nerve Stimulation
Category(s):
Electrical
,
Electrical
> Flexible Electronics
,
Medical Devices
,
Medical Devices > Cardiac
,
Medical Devices > Hospital Systems
Feedback-Free Relays for Future 5G, 6G and mmWave Networks (Case No. 2024-188)
Summary: Researchers in the Department of Computer Science have developed a novel relay system to increase the range of 5G and 6G wireless networks. Background: Advances in high-speed computing have created emerging technologies like telesurgery, robotic automation, and augmented reality that have wide-ranging applications in many fields. These...
Published: 4/21/2025
|
Inventor(s):
Omid Abari
,
Tianxiang Li
,
Mohammad Hossein Mazaheri Kalahrody
Keywords(s):
Antennas/Wireless
,
Duplex (Telecommunications)
,
Electrical
,
Electrical
Engineering
,
electrical
ly small antennas (ESAs)
,
energy-efficient wireless communication
,
self-powered wireless sensor solutions
,
signal decoding
,
Signal Processing
,
Signal-To-Noise Ratio
,
Telecom & Data
,
Telecommunication
,
Wireless
,
wireless capsule endoscopy
,
wireless communication
,
wireless connectivity
,
wireless energy harvesting
,
Wireless LAN LTE (Telecommunication)
,
Wireless Sensor Network
,
wireless spectrum
Category(s):
Electrical
,
Electrical
> Signal Processing
,
Electrical
> Wireless
,
Electrical
> Wireless > Antennas
Bringing Millimeter Wave Technology to Any IOT Device (Case No. 2023-280)
Summary: UCLA researchers in the Department of Computer Science have developed a novel method of enabling any existing Internet of Things (IoT) device to operate at higher frequencies of the wireless spectrum. Background: The growing presence of smart devices that can communicate, sense, and process data places demands on current wireless networks....
Published: 5/6/2025
|
Inventor(s):
Mohammad Hossein Mazaheri Kalahrody
,
Joerg Widmer
,
Domenico Giustiniano
,
Rafael Ruiz
,
Omid Abari
Keywords(s):
BLE
,
Communication & Networking
,
Communications Satellite
,
device enhancement
,
downlink
,
Electrical
,
Electrical
Brain Stimulation
,
Electrical
Breakdown
,
Electrical
Engineering
,
Electrical
Impedance
,
Electrical
Load
,
Electrical
Load Equation Of State
,
Electrical
Resistance And Conductance
,
Electrical
Resistivity And Conductivity
,
electrical
ly small antennas (ESAs)
,
electrical
ly-mediated sensing
,
energy efficient IoT
,
energy-efficient wireless communication
,
Internet of Things (IoT)
,
IoT communication
,
IoT connectivity
,
LoRa
,
low-power device
,
Network Analysis (
Electrical
Circuits)
,
operating range
,
Optical Communication
,
power conversion efficiency
,
quantum communication
,
RGID
,
scalable communication
,
smart connectivity
,
smart technology
,
strength-
electrical
conductivity
,
Telecommunication
,
Transcutaneous
Electrical
Nerve Stimulation
,
uplink
,
WiFi
,
wireless communication
,
wireless connectivity
,
wireless spectrum
Category(s):
Electrical
,
Electrical
> Wireless
,
Software & Algorithms
,
Software & Algorithms > Communication & Networking
Field-Effect Transistor Biosensors Integrated With Porous Media (Case No. 2023-093)
Summary: UCLA researchers in the Department of
Electrical
and Computer Engineering in collaboration with the University of Chicago have developed a new diagnostic biosensor by combining field-effect transistors with porous media. Background: Point-of-care (POC) and self-testing tools rely on the real-time monitoring of biomarkers in bodily fluids....
Published: 2/14/2025
|
Inventor(s):
Aydogan Ozcan
,
Hyouarm Joung
,
Hyun-June Jang
,
Junhong Chen
Keywords(s):
Biomarker
,
biomarkers
,
Biomaterial
,
Biosensor
,
Computer-Aided Diagnosis
,
Diagnostic Markers & Platforms
,
Diagnostic Platform Technologies (E.G. Microfluidics)
,
Diagnostic Test
,
Electrical
,
Electrical
Engineering
,
electrical
ly-mediated sensing
,
electrochemical sensors
,
enzyme functionalization
,
field-effect transistors (FETs)
,
Medical diagnostics
,
multiplexed analysis
,
Point Of Care
,
point-of-care
,
porous media
,
sample matrix effects
,
transistors
Category(s):
Electrical
,
Electrical
> Sensors
,
Medical Devices
,
Medical Devices > Monitoring And Recording Systems
,
Diagnostic Markers
,
Diagnostic Markers > Targets And Assays
,
Platforms
,
Platforms > Diagnostic Platform Technologies
Rapid Sensing of Hidden Objects and Defects Using a Single-Pixel Diffractive Terahertz Processor (Case No. 2023-184)
Summary: UCLA researchers have developed a diffractive sensor that leverages deep-learning-optimized diffractive layers to rapidly detect hidden objects and defects within a 3D sample without scanning or image processing. Background: Inspecting hidden structures is a critical requirement in various fields, including security, manufacturing, and...
Published: 6/11/2025
|
Inventor(s):
Aydogan Ozcan
,
Jingxi Li
Keywords(s):
Deep learning-based sensing
,
Electrical
,
Electrical
Engineering
,
Image Processing
,
Machine Learning
,
real-time sensing/monitoring/tracking
,
Remote Sensing
,
smart sensing
,
target detection
,
Traitler
Category(s):
Electrical
,
Electrical
> Sensors
,
Optics & Photonics > Spectroscopy
,
Software & Algorithms > Artificial Intelligence & Machine Learning
Stain-Free, Rapid, and Quantitative Viral Plaque Assay Using Deep Learning and Holography (Case No. 2022-326)
Intro Sentence: UCLA researchers in the Department of
Electrical
and Computer Engineering have developed a rapid and stain-free quantitative assay using lens-free holography and deep learning to efficiently and cost-effectively determine the presence of viral plaque-forming units (PFUs) in samples. Background: A broad range of viruses have caused...
Published: 2/14/2025
|
Inventor(s):
Aydogan Ozcan
,
Yuzhu Li
,
Tairan Liu
Keywords(s):
Antiviral Drug
,
Artifical Intelligence (Machine Learning, Data Mining)
,
Assay
,
Bioassay
,
Computer Aided Learning
,
Diagnostic Markers & Platforms
,
Diagnostic Platform Technologies (E.G. Microfluidics)
,
Diagnostic Test
,
Digital Holography
,
Electrical
,
Electrical
Brain Stimulation
,
Electrical
Breakdown
,
Electrical
Engineering
,
Electrical
Impedance
,
Electrical
Load
,
Electrical
Load Equation Of State
,
Electrical
Resistance And Conductance
,
Electrical
Resistivity And Conductivity
,
Holography
,
Immunoassay
,
Immunoassay Sense (Molecular Biology)
,
Lentivirus Viral Vector
,
Machine Learning
,
Machine Learning Autonomous Car Gradient Descent
,
Machine Learning Pain Management
,
Machine Learning Particulates Global Climate Model
,
Network Analysis (
Electrical
Circuits)
,
Perceptual Learning
,
Plasmid Trabecular Meshwork Aqueous Humour Viral Vector
,
Targets And Assays
,
Transcutaneous
Electrical
Nerve Stimulation
,
Transfection Viral Vector
,
Unsupervised Learning
,
Viability Assay
,
Viral Delivery Systems
,
Viral Envelope
,
Viral Load
Category(s):
Diagnostic Markers
,
Diagnostic Markers > Targets And Assays
,
Electrical
,
Life Science Research Tools
,
Life Science Research Tools > Research Methods
,
Life Science Research Tools > Other Reagents
,
Software & Algorithms > Artificial Intelligence & Machine Learning
2022-284 Non-Contact Force Sensing
Summary: Researchers in the Department of
Electrical
and Computer Engineering at UCLA have developed a non-contact force sensor that relies on laser speckle imaging to precisely sense changing forces on the surface of a variety of materials. Background: Force sensing capabilities enable the ubiquity of a wide range of modern technologies, from touch...
Published: 2/14/2025
|
Inventor(s):
Yang Zhang
,
Achuta Kadambi
,
Siyou Pei
,
Pradyumna Venkatesh Chari
,
Xue Wang
,
Xiaoying Yang
Keywords(s):
Atomic Force Microscopy
,
Electric Vehicle
,
Electrical
,
Force sensor
,
force-sensing
,
HCI (Human Computer Interaction)
,
interaction modality
,
interactive sensing application
,
interactive system
,
laser speckle imaging
,
machine perception
,
non-contact
,
Piezoelectric Sensor
,
pressure sensitive
,
Sensor
,
Sensors
,
Sensory System
,
Ubiquitous force signals
Category(s):
Electrical
,
Electrical
> Signal Processing
,
Electrical
> Sensors
,
Electrical
> Displays
,
Software & Algorithms
,
Software & Algorithms > Image Processing
2022-230 Polarization Multiplexed Diffractive Computing: All-Optical Implementation of a Group of Linear Transformations Through a Polarization-Encoded Diffractive Network
Summary: UCLA researchers in the Department of
Electrical
and Computer Engineering have developed an all-optical diffractive network that can find applications in machine learning-related vision tasks and all-optical computing systems. Background: Optical computing is a gateway to the future, as it can revolutionize computation by making classically...
Published: 2/14/2025
|
Inventor(s):
Aydogan Ozcan
,
Jingxi Li
Keywords(s):
Advanced Computing / AI
,
all-optical diffractive computing
,
all-optical transformation
,
Artifical Intelligence (Machine Learning, Data Mining)
,
Artificial Intelligence
,
artificial-intelligent materials
,
classification
,
Deep Learning
,
diffractive network
,
diffractive processor
,
Electrical
,
Electrical
Engineering
,
Internet of Things (IoT)
,
Machine Vision
,
machine vision task
,
multiplexing
,
Optical Coherence
,
Optical Communication
,
Optical Fiber Copper Wire And Cable
,
Optical Microscope
,
Optics
,
polarization multiplexed diffractive processor
,
polarization multiplexing
,
polarization-based machine vision tasks
,
polarization-encoded diffractive network
Category(s):
Electrical
,
Electrical
> Instrumentation
,
Software & Algorithms
,
Software & Algorithms > Artificial Intelligence & Machine Learning
,
Software & Algorithms > Data Analytics
,
Optics & Photonics
,
Electrical
> Electronics & Semiconductors
2022-241 A TSV-Less Architecture for Power Delivery and I/O for Interposers and Other Advanced Packaging Constructs
Summary: UCLA researchers led by Professor Iyer have developed a wafer-scale processor manufacturing method that does not require standard through-silicon vias (TSVs). Background: With the rise of machine learning applications, demand for devices capable of high-performance computing (HPC) has also increased. Popularity and demand for wafer-scale...
Published: 2/14/2025
|
Inventor(s):
Subramanian Iyer
,
Haoxiang Ren
,
Saptadeep Pal
Keywords(s):
Amorphous Silicon
,
Artifical Intelligence (Machine Learning, Data Mining)
,
Artificial Intelligence
,
Artificial Neural Network
,
Bandwidth (Signal Processing)
,
Brain-Computer Interface
,
Brain-Computer Interface Body Mass Index
,
Chipset
,
Clock Signal
,
Computer Aided Design & Manufacturing
,
Computer Aided Learning
,
Computer Architecture
,
Computer Monitor
,
Computer Security
,
Computer Virus
,
Computer Vision
,
Computer-Aided Design
,
Computer-Aided Diagnosis
,
Continuum Mechanics Computer Graphics Collision Detection
,
Digital Signal Processing
,
Doping (Semiconductor)
,
Electrical
,
Electrical
Engineering
,
Electrical
Impedance
,
Electrical
Load
,
Electrical
Resistance And Conductance
,
Electrical
Resistivity And Conductivity
,
Electronics & Semiconductors
,
Graphics Processing Unit
,
Graphics Processing Unit Analog Computer
,
Human-Computer Interaction
,
Machine Learning
,
Machine Vision
,
Manufacturing
,
Microelectronics Semiconductor Device Fabrication
,
Microprocessor
,
Network Analysis (
Electrical
Circuits)
,
Network On A Chip
,
Organic Semiconductor
,
Quantum Computer
,
Semiconductor
,
Semiconductor Device
,
Semiconductor Device Fabrication
,
Semiconductor Ohmic Contact
,
Semiconductor Risk Assessment
,
Semiconductor Sapphire
,
Semiconductors
,
Signal Processing
,
Silicon
,
Silicon Dioxide
,
Silicon Working Electrode Perovskite (Structure)
,
Silicon-Germanium
,
Supercomputer
,
System On A Chip
,
Tablet Computer
Category(s):
Electrical
,
Electrical
> Electronics & Semiconductors
,
Electrical
> Signal Processing
,
Materials > Semiconducting Materials
,
Electrical
> Electronics & Semiconductors > Circuits
,
Software & Algorithms > Artificial Intelligence & Machine Learning
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