A Review of Integrated Systems and Components for 6G Wireless Communication in the D-Band

T Maiwald, T Li, GR Hotopan, K Kolb… - Proceedings of the …, 2023 - ieeexplore.ieee.org
The evolution of wireless communication points to increasing demands on throughput for
data-intensive applications in modern society. Integrated millimeter-wave systems with …

Terahertz waveguides for next generation communication network: Needs, challenges and perspectives

K Nallappan, H Guerboukha, Y Cao, G Xu… - Next Generation …, 2021 - taylorfrancis.com
The terahertz frequency band (0.1–10 THz) is a promising candidate to meet the high
bandwidth demand set by the next generation of wireless communications systems. So far …

Dispersion-limited versus power-limited terahertz communication links using solid core subwavelength dielectric fibers

K Nallappan, Y Cao, G Xu, H Guerboukha… - Photonics …, 2020 - opg.optica.org
Terahertz (THz) band (0.1–10 THz) is the next frontier for ultra-high-speed communication
systems. Currently, most of communications research in this spectral range is focused on …

Analysis and design of a foam-cladded PMF link with phase tuning in 28-nm CMOS

M De Wit, Y Zhang, P Reynaert - IEEE Journal of solid-state …, 2019 - ieeexplore.ieee.org
This paper presents a fully packaged 140-GHz dielectric waveguide (DWG) communication
link using a foam-cladded fiber. A novel frequency shift keying (FSK) demodulator topology …

Sub-THz/THz interconnect, complement to electrical and optical interconnects: Addressing fundamental challenges related to communication distances

QJ Gu - IEEE Solid-State Circuits Magazine, 2020 - ieeexplore.ieee.org
The big data era has witnessed expansion of information traffic at a 26% compound annual
growth rate (CAGR) during one decade, as shown in Figure 1 (a)[1],[2]. Rising data rates …

A PAM4 dielectric waveguide link in 28 nm CMOS

K Dens, J Vaes, S Ooms, M Wagner… - ESSCIRC 2021-IEEE …, 2021 - ieeexplore.ieee.org
This work presents a dielectric waveguide communication link at 135 GHz, reaching 27 Gb/s
non-return to-zero (NRZ) communication without any equalization at a bit-error-rate (BER) …

Polymer microwave fibers: A new approach that blends wireline, optical, and wireless communication

M De Wit, S Ooms, B Philippe, Y Zhang… - IEEE Microwave …, 2019 - ieeexplore.ieee.org
The demand for data communication capacity keeps increasing. Applications ranging from
wireless and hand-held mobile electronics to big data centers and backbone infrastructure …

A 50-Gb/s 134-GHz 16-QAM 3-m dielectric waveguide transceiver system implemented in 22-nm FinFET CMOS

TW Brown, GC Dogiamis, YS Yeh… - IEEE Solid-State …, 2021 - ieeexplore.ieee.org
This letter presents a 134-GHz superheterodyne transceiver system in 22-nm CMOS for
dielectric waveguides measured at reaches up to 3 m. Greater than 12 GHz of RF bandwidth …

150-ghz cmos tx/rx with digitally predistorted pam-4 modulation for terahertz contactless/plastic waveguide communications

Y Kim, B Hu, R Huang, A Tang, C Joye… - IEEE Transactions …, 2020 - ieeexplore.ieee.org
In this article, 150-GHz CMOS transmitter (TX) and receiver (RX) are presented for
contactless and plastic waveguide communications. The implemented system employs a …

Design of a Noncoherent 100-Gb/s 3-m Dual-Band PAM-4 Dielectric Waveguide Link in 28-nm CMOS

K Dens, J Vaes, C Bluemm… - IEEE Journal of Solid …, 2024 - ieeexplore.ieee.org
This work details the design of a plastic fiber link in 28-nm CMOS, operating in two adjacent
bands centered on 117.5 and 152.5 GHz. Each band supports multilevel (PAM-4) intensity …