• Conductive Backscatter Communication for Dual-Chamber Leadless Pacemakers 

      Noormohammadi, Reza; Khaleghi, Ali; Bergsland, Jacob; Balasingham, Ilangko (Peer reviewed; Journal article, 2022)
      Dual-chamber and multichamber leadless pacemakers (PMs) are emerging solutions for reducing the limitations of conventional wire-based PMs. One of the main challenges in migrating to leadless PMs is having reliable and ...
    • Development and in vivo performance evaluation of 10-60-MHz band impulse-radio-based transceiver for deep implantation having 10 Mbps 

      Wang, Jianqing; Nomura, Kohei; Narita, Hiroki; Ito, Fuminori; Anzai, Daisuke; Bergsland, Jacob; Balasingham, Ilangko (Journal article; Peer reviewed, 2018)
      In view of the requirements for high-speed highly reliable wireless implant communication, we have developed an implant transceiver working at a 10-60-MHz band. The developed transceiver is based on an impulse radio ...
    • Efficient Multisignal 2–4-GHz Power Amplifier With Power Tracking 

      Duffy, Maxwell R; Lasser, Gregor; Olavsbråten, Morten; Berry, Eric; Popovic, Zoya (Journal article; Peer reviewed, 2018)
      The goal of the work presented in this paper is to demonstrate an efficient method of amplifying multiple concurrent signals over a large bandwidth using a supply modulation approach. A single-stage octave bandwidth (2–4 ...
    • Radio frequency backscatter communication for high data rate deep implants 

      Khaleghi, Ali; Hasanvand, Aminolah; Balasingham, Ilangko (Journal article; Peer reviewed, 2019)
      In this paper, we study the radio frequency (RF) backscatter for high data rate wireless communication with deep medical implants. The radar approach permits remote reading of the implant's information. This means that the ...