Minoru Ida

According to our database1, Minoru Ida authored at least 22 papers between 2002 and 2022.

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

Timeline

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On csauthors.net:

Bibliography

2022
110-GHz-Bandwidth InP-HBT AMUX/ADEMUX Circuits for Beyond-1-Tb/s/ch Digital Coherent Optical Transceivers.
Proceedings of the IEEE Custom Integrated Circuits Conference, 2022

2020
A Beyond-1-Tb/s Coherent Optical Transmitter Front-End Based on 110-GHz-Bandwidth 2: 1 Analog Multiplexer in 250-nm InP DHBT.
IEEE J. Solid State Circuits, 2020

Net 321.24-Gb/s IMDD Transmission Based on a >100-GHz Bandwidth Directly-Modulated Laser.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2020

An over 220-GHz-Bandwidth Distributed Active Power Combiner in 250-nm InP DHBT.
Proceedings of the IEEE BiCMOS and Compound Semiconductor Integrated Circuits and Technology Symposium, 2020

2019
InGaP/GaAsSb/InGaAsSb double heterojunction bipolar transistors with 703-GHz <i>f</i><sub>max</sub> and 5.4-V breakdown voltage.
IEICE Electron. Express, 2019

Digital-Preprocessed Analog-Multiplexed DAC for High-Speed Optical Communications.
Proceedings of the 2019 24th OptoElectronics and Communications Conference (OECC) and 2019 International Conference on Photonics in Switching and Computing (PSC), 2019

Ultra-High Bandwidth InP IQ Modulator for Beyond 100-GBd Transmission.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2019

192-Gbaud Signal Generation using Ultra-Broadband Optical Frontend Module Integrated with Bandwidth Multiplexing Function.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2019

A 110-GHz-Bandwidth 2: 1 AMUX-Driver using 250-nm InP DHBTs for Beyond-1-Tb/s/carrier Optical Transmission Systems.
Proceedings of the 2019 IEEE BiCMOS and Compound semiconductor Integrated Circuits and Technology Symposium (BCICTS), 2019

2018
Ultra-High Bandwidth InP IQ Modulator co-assembled with Driver IC for Beyond 100-GBd CDM.
Proceedings of the Optical Fiber Communications Conference and Exposition, 2018

Transmission of 400-Gbps Discrete Multi-Tone Signal Using >100-GHz-Bandwidth Analog Multiplexer and InP Mach-Zehnder Modulator.
Proceedings of the European Conference on Optical Communication, 2018

A 256-Gbps PAM-4 Signal Generator IC in 0.25-µm InP DHBT Technology.
Proceedings of the 2018 IEEE BiCMOS and Compound Semiconductor Integrated Circuits and Technology Symposium (BCICTS), 2018

2016
Type-II InGaAsSb-Base Double Heterojunction Bipolar Transistors Simultaneously Exhibiting over 600-GHz <i>f</i><sub>max</sub> and 5-V Breakdown Voltage.
IEICE Trans. Electron., 2016

An InP-Based 27-GHz-Bandwidth Limiting TIA IC Designed to Suppress Undershoot and Ringing in Its Output Waveform.
IEICE Trans. Electron., 2016

2012
Performance of InP/InGaAs HBTs with a Thin Highly <i>N</i>-Type Doped Layer in the Emitter-Base Heterojunction Vicinity.
IEICE Trans. Electron., 2012

A low-power wideband InP-HBT 2<sup>7</sup>-1 PRBS generator.
IEICE Electron. Express, 2012

2009
Emitter-metal-related degradation in InP-based HBTs operating at high current density and its suppression by refractory metal.
Microelectron. Reliab., 2009

2005
High-bit-rate low-power decision circuit using InP-InGaAs HBT technology.
IEEE J. Solid State Circuits, 2005

A 24-Gsps 3-Bit Nyquist ADC Using InP HBTs for DSP-Based Electronic Dispersion Compensation.
IEICE Trans. Electron., 2005

2004
A 39-to-45-Gbit/s multi-data-rate clock and data recovery circuit with a robust lock detector.
IEEE J. Solid State Circuits, 2004

High-bit-rate low-power decision circuit using InP/InGaAs HBT technology [master-slave D-type flip-flop].
Proceedings of the 33rd European Solid-State Circuits Conference, 2004

2002
Low-power 1: 16 DEMUX and one-chip CDR with 1: 4 DEMUX using InP-InGaAs heterojunction bipolar transistors.
IEEE J. Solid State Circuits, 2002


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