Mark Yeck

Orcid: 0000-0002-0089-8362

According to our database1, Mark Yeck authored at least 14 papers between 2017 and 2023.

Collaborative distances:
  • Dijkstra number2 of four.
  • Erdős number3 of four.

Timeline

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On csauthors.net:

Bibliography

2023
Cryogenic CMOS: design considerations for future quantum computing systems.
Proceedings of the IEEE Custom Integrated Circuits Conference, 2023


2022
A 24-30-GHz 256-Element Dual-Polarized 5G Phased Array Using Fast On-Chip Beam Calculators and Magnetoelectric Dipole Antennas.
IEEE J. Solid State Circuits, 2022

A Cryo-CMOS Low-Power Semi-Autonomous Transmon Qubit State Controller in 14-nm FinFET Technology.
IEEE J. Solid State Circuits, 2022

A 0.31V Vmin Cryogenic SRAM in 14 nm FinFET for Quantum Computing.
Proceedings of the IEEE Symposium on VLSI Technology and Circuits (VLSI Technology and Circuits 2022), 2022

A 24-to-30GHz 256-Element Dual-Polarized 5G Phased Array with Fast Beam-Switching Support for >30, 000 Beams.
Proceedings of the IEEE International Solid-State Circuits Conference, 2022



2020
A 250-mW 60-GHz CMOS Transceiver SoC Integrated With a Four-Element AiP Providing Broad Angular Link Coverage.
IEEE J. Solid State Circuits, 2020

2018
Fully Integrated 94-GHz Dual-Polarized TX and RX Phased Array Chipset in SiGe BiCMOS Operating up to 105 °C.
IEEE J. Solid State Circuits, 2018

A 128-element Dual-Polarized Software-Defined Phased Array Radio for mm-wave 5G Experimentation.
Proceedings of the 2nd ACM Workshop on Millimeter Wave Networks and Sensing Systems, 2018

Scaling Millimeter-Wave Phased Arrays: Challenges and Solutions.
Proceedings of the 2018 IEEE BiCMOS and Compound Semiconductor Integrated Circuits and Technology Symposium (BCICTS), 2018

2017
A 28-GHz 32-Element TRX Phased-Array IC With Concurrent Dual-Polarized Operation and Orthogonal Phase and Gain Control for 5G Communications.
IEEE J. Solid State Circuits, 2017

7.2 A 28GHz 32-element phased-array transceiver IC with concurrent dual polarized beams and 1.4 degree beam-steering resolution for 5G communication.
Proceedings of the 2017 IEEE International Solid-State Circuits Conference, 2017


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