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lami
Laboratory for Micro- & Photonelectronics
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Opto & bio-electronics

GHz- THz domain research

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About lami
Recent - lami Publications
The Laboratory for Micro- & Photonelectronics (LAMI) was founded in 1987. In 1988 a close collaboration with the Inter-university Microelectronics Centre (IMEC) in Leuven was started. LAMI's main field of research then was about optoelectronic devices in the fields of parallel optical interchip connections and medium infrared modulators. Its most successful achievement during that period was the development of high speed optical thyristors in collaboration with IMEC and the use of these devices in optical computing and optical communication schemes in collaboration with the photonics department (PHOT) of the VUB. Activities that were directly related to the optical interconnect work included the development of small-area interface electronic circuitry, micro-optics technology and technology for photonic-to-silicon conversion. In 1998 LAMI became an associated research laboratory of IMEC's. Today, the scope of the research activities has widened. It now includes work on high brightness LEDs; equalizing techniques for high speed electronic data communication; 3-D image acquisition; high power detectors & modulators and passive optical components for the 10 μm wavelength region; devices, quasi-optical components, technology and systems for millimeter wave imaging; the study of the foundations of computing and of living systems.

“Altered transient brain dynamics in multiple sclerosis: Treatment or pathology?”

In Human Brain Mapping

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“Process-Induced Power-Performance Variability in Sub-5-nm III–V Tunnel FETs”

In IEEE Transactions on Electron Devices

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“First Demonstration of 3D stacked Finfets at a 45nm fin pitch and 110nm gate pitch technology on 300mm wafers”

In 64th Annual IEEE International Electron Devices Meeting, IEDM 2018

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“A 112-142GHz Power Amplifier with Regenerative Reactive Feedback achieving 17dBm peak Psat at 13% PAE”

In ESSCIRC 2019 - IEEE 45th European Solid State Circuits Conference

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“A 5ps resolution, 8.6ns delay range digital delay line using combinatorial redundancy”

In 15th Conference on PhD Research in Microelectronics and Electronics

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other recent publications ...

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