Imec has produced record results for indium gallium arsenide (InGaAs) gate-all-around (GAA)-channel devices on 300mm silicon wafers. The peak transconductance (gm) for the GAA transistors was as high as 2200μS/μm for the 50nm gate-length GAA channel device, while the subthreshold swing (SSSAT) was as low as 110mV/decade. The drain bias was 0.5V. The GAA structure was ...
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Imec’s record-breaking GaAs transistors
Imec has produced record results for indium gallium arsenide (InGaAs) gate-all-around (GAA)-channel devices on 300mm silicon wafers. The peak transconductance (gm) for the GAA transistors was as high as 2200μS/μm for the 50nm gate-length GAA channel device, while the subthreshold swing (SSSAT) was as low as 110mV/decade. The drain bias was 0.5V. The GAA structure was ...
Imec’s record-breaking GaAs transistors
Imec has produced record results for indium gallium arsenide (InGaAs) gate-all-around (GAA)-channel devices on 300mm silicon wafers. The peak transconductance (gm) for the GAA transistors was as high as 2200μS/μm for the 50nm gate-length GAA channel device, while the subthreshold swing (SSSAT) was as low as 110mV/decade. The drain bias was 0.5V. The GAA structure was ...
Imec’s record-breaking GaAs transistors
Imec has produced record results for indium gallium arsenide (InGaAs) gate-all-around (GAA)-channel devices on 300mm silicon wafers. The peak transconductance (gm) for the GAA transistors was as high as 2200μS/μm for the 50nm gate-length GAA channel device, while the subthreshold swing (SSSAT) was as low as 110mV/decade. The drain bias was 0.5V. The GAA structure was ...
Imec’s record-breaking GaAs transistors
Imec has produced record results for indium gallium arsenide (InGaAs) gate-all-around (GAA)-channel devices on 300mm silicon wafers. The peak transconductance (gm) for the GAA transistors was as high as 2200μS/μm for the 50nm gate-length GAA channel device, while the subthreshold swing (SSSAT) was as low as 110mV/decade. The drain bias was 0.5V. The GAA structure was ...
Researchers make single chip electronic-photonic processor
Researchers at MIT, UC Berkeley and the University of Colorado have produced a processor combining electronics and photonics on the same chip. The chip integrates over 70 million transistors and 850 photonic components to provide logic, memory, and interconnect functions. “This system is a realisation of a microprocessor that uses on-chip photonic devices to directly ...
Researchers make single chip electronic-photonic processor
Researchers at MIT, UC Berkeley and the University of Colorado have produced a processor combining electronics and photonics on the same chip. The chip integrates over 70 million transistors and 850 photonic components to provide logic, memory, and interconnect functions. “This system is a realisation of a microprocessor that uses on-chip photonic devices to directly ...
Researchers make single chip electronic-photonic processor
Researchers at MIT, UC Berkeley and the University of Colorado have produced a processor combining electronics and photonics on the same chip. The chip integrates over 70 million transistors and 850 photonic components to provide logic, memory, and interconnect functions. “This system is a realisation of a microprocessor that uses on-chip photonic devices to directly ...
Researchers make single chip electronic-photonic processor
Researchers at MIT, UC Berkeley and the University of Colorado have produced a processor combining electronics and photonics on the same chip. The chip integrates over 70 million transistors and 850 photonic components to provide logic, memory, and interconnect functions. “This system is a realisation of a microprocessor that uses on-chip photonic devices to directly ...
Researchers make single chip electronic-photonic processor
Researchers at MIT, UC Berkeley and the University of Colorado have produced a processor combining electronics and photonics on the same chip. The chip integrates over 70 million transistors and 850 photonic components to provide logic, memory, and interconnect functions. “This system is a realisation of a microprocessor that uses on-chip photonic devices to directly ...