Peter Toth, Paul Shine Eugine, Yerzhan Kudabay, Kaoru Yamashita, Sebastian Halama, Judi Parvizinejad, Marco Bonkowski, Hiroki Ishikuro, Christian Ospelkaus, Vadim Issakov, “A Cryo-BiCMOS Controller for Quantum Computers based on Trapped Beryllium Ions,” in IEEE Journal of Solid-State Circuits, 2024.
Similar posts
13.3 A Cryo-BiCMOS Controller for 9Be+-Trapped-Ion-Based Quantum Computers
January 12, 2026Peter Toth, Paul Shine Eugine, Yerzhan Kudabay, Kaoru Yamashita, Sebastian Halama, Hiroki Ishikuro, Christian Ospelkaus, Vadim Issakov, “13.3 A Cryo-BiCMOS Controller for 9Be+-Trapped-Ion-Based Quantum Computers,” 2025 IEEE International Solid-State Circuits Conference (ISSCC), San Francisco, CA, USA, 2025.
A 4.6-373K Functional 800MS/s 12b Buffer-then-Amplify Charge-Pump-Based Pipelined TI-SAR ADC with Integrated-Active-Hold Technique
January 12, 2026K. Yamashita, K. Yoshioka, C. Ziegler, V. Issakov and H. Ishikuro, “A 4.6-373K Functional 800MS/s 12b Buffer-then-Amplify Charge-Pump-Based Pipelined TI-SAR ADC with Integrated-Active-Hold Technique,” 2025 IEEE Custom Integrated Circuits Conference (CICC), Boston, MA, USA, 2025.
A 4.6–400 K Functional Ringamp-Based 250 MS/s 12 b Pipelined ADC With PVT-Robust Unity-Gain-Frequency-Aware Bias Calibration
January 12, 2026K. Yamashita, B. Hershberg, K. Yoshioka and H. Ishikuro, “A 4.6–400 K Functional Ringamp-Based 250 MS/s 12 b Pipelined ADC With PVT-Robust Unity-Gain-Frequency-Aware Bias Calibration,” in IEEE Journal of Solid-State Circuits, vol. 59, no. 3, pp. 740-752, March 2024

No Comments Yet