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Search Results - power+transmission
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Chip-Scale Monolithic Led-Photovoltaic Voltage Boost Conversion (Case No. 2025-033)
Summary: UCLA researchers in the Department of Materials Science and Engineering have developed a non-switching optoelectronic voltage conversion platform capable of voltage boost conversion at low input voltages on a miniature scale. Background: Voltage conversion is crucial for powering industrial systems, home appliances, electric vehicles, and...
Published: 12/4/2024
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Inventor(s):
Pattabhi "Aaswath" Raman
,
Parthiban Santhanam
Keywords(s):
Application-Specific Integrated Circuit
,
Audio Power Amplifier
,
Autonomous Energy
,
clean energy
,
clean energy consumption
,
Compressed Air Energy Storage
,
Concentrated Solar Power
,
Concentrated Solar Power Chemical Engineering
,
conversion efficiency photoelectric
,
Doping (Semiconductor)
,
Electronics & Semiconductors
,
Energy & Water
,
Energy Balance (Biology)
,
energy conversion
,
energy conversion applications
,
Energy Density
,
Energy Density Boiling Point
,
Energy Density Silicide
,
Energy Density Strong Interaction
,
Energy Efficiency
,
energy efficient IoT
,
Energy Generation & Storage
,
Energy Generation, Transmission, or Storage
,
Energy Harvesting
,
Energy Harvesting Evaporation
,
energy management
,
Energy Management System
,
Energy positive
,
energy recycle
,
Energy Recycling
,
Energy Security
,
high-powered laser systems
,
Integrated Circuit
,
Integrated Circuit Standing Wave
,
Integrated Circuit Via (Electronics)
,
interaction-powered
,
low-power device
,
Microelectronics Semiconductor Device Fabrication
,
Mixed-Signal Integrated Circuit
,
Monolithic Microwave Integrated Circuit
,
nanophotonic
,
nanophotonic structures
,
nanophotonics
,
Network Analysis (Electrical Circuits)
,
Neuromorphic circuits
,
OLED
,
Optoelectronics
,
Optoelectronics Waveguide (Electromagnetism)
,
Organic Semiconductor
,
people-as-power
,
photonic
,
Photonic Integrated Circuit
,
photonic materials
,
Photonic structures
,
Photonics
,
power amplifier
,
Power Amplifier Circuit
,
power conversion efficiency
,
Power distribution & grids
,
Power Electronics
,
Power Transmission
,
Printed Circuit Board
,
self-powered wireless sensor solutions
,
Semiconductor
,
semiconductor chip foundries
,
Semiconductor Device
,
Semiconductor Device Fabrication
,
Semiconductor Ohmic Contact
,
Semiconductor Risk Assessment
,
Semiconductor Sapphire
,
Semiconductors
,
Short Circuit
,
soft electrical circuits
,
thermal circuit
,
Three-Dimensional Integrated Circuit
,
wearable electronics
,
zero-carbon emission power
,
zzsemiconducting materials
Category(s):
Electrical
,
Electrical > Electronics & Semiconductors
,
Materials
,
Materials > Semiconducting Materials
,
Electrical > Electronics & Semiconductors > Circuits
,
Energy & Environment
,
Energy & Environment > Energy Efficiency
,
Optics & Photonics
Charge Trap Transistors - Subramanian Iyer
Background: Due to their chemical makeup and heat generation, devices such as high-k/metal gate (HKMG) CMOS often accumulate charges can lead to variation in integrated circuits. Charge Trap Transistors (CTT's) utilize accumulating charge in semiconducting devices as embedded non-volatile memory (eNVM). The introduction of CTT's can prove an...
Published: 7/19/2023
|
Inventor(s):
Subramanian Iyer
Keywords(s):
Charge Carrier
,
CMOS
,
Dynamic Random-Access Memory
,
Electrical
,
Electrical Engineering
,
Electrical Load
,
Electrical Resistance And Conductance
,
Logic Gate
,
Magnetoresistive Random-Access Memory
,
Medical Device
,
Memory
,
Power Electronics
,
Power Transmission
,
Programmable Logic Device
,
Random-Access Memory
,
Resistive Random-Access Memory
,
Semiconductor Device
,
Semiconductor Device Fabrication
,
Static Random-Access Memory
,
Transistor
Category(s):
Electrical
,
Electrical > Electronics & Semiconductors > Memory
,
Electrical > Electronics & Semiconductors
2022-005-METAL PARTICLE/GRAPHENE EXTRACELLUAR MATRIX FOR ENHANCED CHARGE TRANSFER EFFICIENCY IN MICROBIAL FUEL CELLS
SUMMARY: UCLA researchers in the Department of Materials Science and Engineering have developed a method that boosts the electron extraction efficiency and enables high-performance microbial fuel cells (MFCs) with record-high power output. BACKGROUND:: Fuel cells have garnered increased attention as a means of obtaining green energy. They are capable...
Published: 7/19/2023
|
Inventor(s):
Keywords(s):
Biofilm
,
Electron
,
Fuel Cell
,
Materials
,
Microbiology
,
Nanomaterials
,
Nanoparticles
,
Power Transmission
Category(s):
Materials
,
Materials > Membranes
,
Materials > Metals
,
Materials > Nanotechnology
,
Chemical
,
Energy & Environment > Energy Generation > Biofuels