- Multi-amplifier Sensing Charge-coupled Devices for Next Generation Spectroscopy
2024/09/01 by Kenneth W. Lin, Armin Karcher, Julien Guy +11 · 1 citation
Chemical Engineering · Chemistry · Engineering · Environmental Science · #Amplifier #Analytical Chemistry and Sensors #CMOS #Charge (physics) #Computer science #Electrical engineering #Engineering #Materials science #Optoelectronics #Physics #Spectroscopy #Spectroscopy and Laser Applications #Water Quality Monitoring and Analysis
- Wideband LNA Employing Intrinsic Feedback and Back-Gate Resistance for Noise and Input Power Matching
2023/11/06 by Mohammad Radpour, Leonid Belostotski · 1 citation
Engineering · Mathematics · Physics and Astronomy · #Amplifier #Arithmetic #Artificial intelligence #Bandwidth (computing) #Computer network #Computer science #Electrical engineering #Electronic engineering #Engineering #Mathematics #Microwave Engineering and Waveguides #Network topology #Noise (video) #Notation #Radio Frequency Integrated Circuit Design #Semiconductor Quantum Structures and Devices #Telecommunications #Topology (electrical circuits) #Wideband
- Understanding the Excess 1/f Noise in MOSFETs at Cryogenic Temperatures
2023/01/06 by Ruben Asanovski, R. Asanovski, Alexander Grill +8 · 1 citation
Engineering · Physics and Astronomy · #Advancements in Semiconductor Devices and Circuit Design #Amplifier #CMOS #Computer science #Condensed matter physics #Electrical engineering #Engineering #Flicker noise #Materials science #Noise (video) #Noise figure #Optoelectronics #Physics #Quantum #Quantum and electron transport phenomena #Quantum decoherence #Quantum mechanics #Qubit #Semiconductor materials and devices
- A Coupler Balun Load-Modulated Power Amplifier With Extremely Wide Bandwidth
2022/12/23 by Tzu-Yuan Huang, Naga Sasikanth Mannem, Sensen Li +3 · 1 citation
Engineering · #Acoustics #Advanced Power Amplifier Design #Amplifier #Balun #Bandwidth (computing) #Broadband #CMOS #Computer science #Electrical engineering #Electronic engineering #Engineering #Hybrid coupler #Materials science #Microwave Engineering and Waveguides #Modulation (music) #Optoelectronics #Physics #Power dividers and directional couplers #Radio Frequency Integrated Circuit Design #Telecommunications #Wideband
- A 211-to-263-GHz Dual-LC-Tank-Based Broadband Power Amplifier With 14.7-dBm P SAT and 16.4-dB Peak Gain in 130-nm SiGe BiCMOS
2022/07/25 by Jiayang Yu, Jixin Chen, Peigen Zhou +8 · 2 citations
Engineering · #Advanced Power Amplifier Design #Amplifier #Balun #CMOS #Electrical engineering #Electronic engineering #Engineering #Materials science #Microwave Engineering and Waveguides #Optics #Physics #Power dividers and directional couplers #Power gain #RF power amplifier #Radio Frequency Integrated Circuit Design #Splitter
- High Efficiency D-Band Multiway Power Combined Amplifiers With 17.5–19-dBm Psat and 14.2–12.1% Peak PAE in 45-nm CMOS RFSOI
2022/02/07 by Siwei Li, Gabriel M. Rebeiz · 2 citations
Engineering · #Advanced Power Amplifier Design #Amplifier #Balun #CMOS #Cascode #Computer science #Electrical engineering #Electronic engineering #Engineering #Microwave Engineering and Waveguides #Power gain #Radio Frequency Integrated Circuit Design #Topology (electrical circuits)
- Doherty Power Amplifier With Extended High-Efficiency Range Based on the Utilization of Multiple Output Power Back-Off Parameters
2022/02/02 by Young Chan Choi, Woojin Choi, Hansik Oh +7 · 2 citations
Engineering · #Advanced Power Amplifier Design #Amplifier #Bandwidth (computing) #CMOS #Computer science #Electrical engineering #Electronic engineering #Engineering #Linearization #Nonlinear system #PAPR reduction in OFDM #Physics #Predistortion #RF power amplifier #Radio Frequency Integrated Circuit Design #Radio frequency #Telecommunications #dBc #dBm
- A Multiband/Multistandard 15–57 GHz Receive Phased-Array Module Based on 4 × 1 Beamformer IC and Supporting 5G NR FR2 Operation
2022/01/07 by Abdulrahman Alhamed, Oguz Kazan, Gökhan Gültepe +2 · 4 citations
Engineering · #Advanced Power Amplifier Design #Amplifier #Antenna (radio) #Beamforming #BiCMOS #CMOS #Chip #Computer science #Electrical engineering #Electronic engineering #Engineering #Insertion loss #Microwave Engineering and Waveguides #Noise figure #Operational amplifier #Phase shift module #Phased array #Physics #Radio Frequency Integrated Circuit Design #True time delay #Variable-gain amplifier #Video Graphics Array #Wideband
- Millimeter-Wave Frequency Reconfigurable Dual-Band CMOS Power Amplifier for 5G Communication Radios
2021/11/03 by Jaehun Lee, Ji-Seon Paek, Songcheol Hong · 2 citations
Engineering · #Amplifier #Antenna (radio) #CMOS #Computer science #Electrical engineering #Electronic engineering #Energy Harvesting in Wireless Networks #Engineering #Extremely high frequency #Microwave Engineering and Waveguides #Multi-band device #Physics #Radio Frequency Integrated Circuit Design #Radio frequency #Telecommunications
- A High-Efficiency 142–182-GHz SiGe BiCMOS Power Amplifier With Broadband Slotline-Based Power Combining Technique
2021/09/01 by Xingcun Li, Wenhua Chen, Shuyang Li +5 · 4 citations
Engineering · #Advanced Power Amplifier Design #Amplifier #Bandwidth (computing) #BiCMOS #Broadband #CMOS #Computer science #Coplanar waveguide #Electrical engineering #Electronic engineering #Engineering #Extremely high frequency #Insertion loss #Materials science #Microwave #Microwave Engineering and Waveguides #Optoelectronics #Physics #Radio Frequency Integrated Circuit Design #Telecommunications #Transistor #Voltage
- Dynamics of Time-Delayed Optoelectronic Oscillators With Nonlinear Amplifiers and Its Potential Application to Random Numbers Generation
2021/07/01 by Jimmi H. Talla Mbe, Jimmi Hervé Talla Mbé, William N. Atchoffo +4 · 1 citation
Computer Science · Mathematics · Physics and Astronomy · #Amplifier #Chaos control and synchronization #Chaotic #Combinatorics #Computer science #Control theory (sociology) #Dynamical systems theory #Lyapunov exponent #Mathematics #Neural Networks and Reservoir Computing #Nonlinear Dynamics and Pattern Formation #Nonlinear system #Optoelectronics #Physics #Quantum mechanics #Statistical physics #Topology (electrical circuits) #Transfer function
- A 24–28-GHz Four-Element Phased-Array Transceiver Front End With 21.1%/16.6% Transmitter Peak/OP1dB PAE and Subdegree Phase Resolution Supporting 2.4 Gb/s in 256-QAM for 5-G Communications
2021/04/22 by Wei Zhu, Jiawen Wang, Xiaohan Zhang +4 · 2 citations
Engineering · #Amplifier #Antenna (radio) #CMOS #Channel (broadcasting) #Computer science #Electrical engineering #Engineering #Insertion loss #Microwave Engineering and Waveguides #Millimeter-Wave Propagation and Modeling #Noise figure #Optics #Optoelectronics #Phase shift module #Phased array #Physics #Radio Frequency Integrated Circuit Design #Transceiver #Transmitter
- Design and Analysis of a 28 GHz T/R Front-End Module in 22-nm FD-SOI CMOS Technology
2021/03/01 by Xinyan Tang, Yao Liu, Giovanni Mangraviti +10 · 1 citation
Engineering · #Advanced Power Amplifier Design #Advancements in Semiconductor Devices and Circuit Design #Amplifier #CMOS #Computer science #Electrical engineering #Electronic engineering #Engineering #Optoelectronics #Physics #Radio Frequency Integrated Circuit Design #Silicon #Silicon on insulator #Topology (electrical circuits) #Transformer
- Design of Low-Power Sub-2.4 dB Mean NF 5G LNAs Using Forward Body Bias in 22 nm FDSOI
2020/08/12 by Omar El-Aassar, Gabriel M. Rebeiz · 4 citations
Engineering · #Advancements in Semiconductor Devices and Circuit Design #Amplifier #Bandwidth (computing) #CMOS #Cascode #Computer science #Electrical engineering #Electronic engineering #Engineering #Linearity #Low-noise amplifier #Noise figure #Physics #Radio Frequency Integrated Circuit Design #Semiconductor materials and devices #Telecommunications #Topology (electrical circuits)
- 300-GHz-Band 120-Gb/s Wireless Front-End Based on InP-HEMT PAs and Mixers
2020/07/13 by Hiroshi Hamada, Takuya Tsutsumi, Hideaki Matsuzaki +8 · 4 citations
Engineering · #Amplifier #CMOS #Electrical engineering #Engineering #High-electron-mobility transistor #Materials science #Microwave Engineering and Waveguides #Millimeter-Wave Propagation and Modeling #Optoelectronics #RF power amplifier #Radio Frequency Integrated Circuit Design #Radio frequency #Transceiver #Transistor #Transmitter #Voltage #Wideband
- A 22–44-GHz Phased-Array Receive Beamformer in 45-nm CMOS SOI for 5G Applications With 3–3.6-dB NF
2020/07/03 by Li Gao, Gabriel M. Rebeiz · 5 citations
Engineering · #Amplifier #Attenuation #Attenuator (electronics) #Automatic gain control #Bandwidth (computing) #Beamforming #CMOS #Electrical engineering #Electronic engineering #Engineering #Extremely high frequency #Insertion loss #Materials science #Microwave Engineering and Waveguides #Millimeter-Wave Propagation and Modeling #Operational amplifier #Optics #Phase shift module #Phased array #Physics #Radio Frequency Integrated Circuit Design #Telecommunications #Variable-gain amplifier #Wideband
- A QPSK 110-Gb/s Polarization-Diversity MIMO Wireless Link With a 220–255 GHz Tunable LO in a SiGe HBT Technology
2020/06/05 by Pedro Rodriguez-Vazquez, Pedro Rodríguez-Vázquez, Janusz Grzyb +3 · 7 citations
Engineering · #Amplifier #Baseband #Bit error rate #CMOS #Chip #Electrical engineering #Electronic engineering #Engineering #Link budget #Local oscillator #Microwave Engineering and Waveguides #Millimeter-Wave Propagation and Modeling #Optics #Optoelectronics #Phase noise #Phase-shift keying #Physics #Radio Frequency Integrated Circuit Design #Telecommunications #Transmitter #Wireless
- A High-Power 24–40-GHz Transmit–Receive Front End for Phased Arrays in 45-nm CMOS SOI
2020/06/05 by Mustafa Lokhandwala, Li Gao, Gabriel M. Rebeiz · 2 citations
Engineering · #Amplifier #Bandwidth (computing) #CMOS #Electrical engineering #Engineering #Extremely high frequency #Front and back ends #Insertion loss #Materials science #Microwave Engineering and Waveguides #Millimeter-Wave Propagation and Modeling #Noise figure #Optics #Optoelectronics #Physics #Radio Frequency Integrated Circuit Design #Silicon #Silicon on insulator #Telecommunications #Wideband #dBm
- Pseudo-Doherty Load-Modulated Balanced Amplifier With Wide Bandwidth and Extended Power Back-Off Range
2020/04/20 by Yuchen Cao, Kenle Chen · 1 citation
Engineering · #Advanced Power Amplifier Design #Amplifier #Bandwidth (computing) #Computer science #Doherty amplifier #Electrical engineering #Electronic engineering #Engineering #Full-Duplex Wireless Communications #Power bandwidth #Power-added efficiency #RF power amplifier #Radio Frequency Integrated Circuit Design #Telecommunications #Wideband #dBm
- A comprehensive study of speech separation: spectrogram vs waveform separation
2019/05/17 by Fahimeh Bahmaninezhad, Bahmaninezhad, Fahimeh, Jian Wu +11 · 1 citation
Computer Science · Engineering · #Advanced Adaptive Filtering Techniques #Amplifier #Audio and Speech Processing (eess.AS) #Background noise #Bandwidth (computing) #Blind Source Separation Techniques #Blind signal separation #Channel (broadcasting) #Computer science #Distortion (music) #FOS: Computer and information sciences #FOS: Electrical engineering #Frequency domain #Machine Learning (cs.LG) #Machine learning #Microphone #Microphone array #Separation (statistics) #Sound (cs.SD) #Source separation #Spectrogram #Speech and Audio Processing #Speech enhancement #Speech recognition #Telecommunications #Waveform #electronic engineering #information engineering
- A Wideband 28-GHz Transmit–Receive Front-End for 5G Handset Phased Arrays in 40-nm CMOS
2019/05/16 by Sherif Shakib, Mohamed Elkholy, Jeremy Dunworth +3 · 5 citations
Engineering · #Amplifier #Antenna (radio) #CMOS #Electrical engineering #Electrical impedance #Electronic engineering #Engineering #Full-Duplex Wireless Communications #Handset #Impedance matching #Insertion loss #Low-noise amplifier #Microwave Engineering and Waveguides #Noise figure #Phase shift module #Phased array #Radio Frequency Integrated Circuit Design #Wideband
- A CMOS Highly Linear Doherty Power Amplifier With Multigated Transistors
2019/03/12 by Doohwan Jung, Huan Zhao, Hua Wang · 3 citations
Engineering · Physics and Astronomy · #Advanced Power Amplifier Design #Amplifier #CMOS #Computer science #Electrical engineering #Electronic engineering #Engineering #GaN-based semiconductor devices and materials #Materials science #Optoelectronics #Physics #Power (physics) #RF power amplifier #Radio Frequency Integrated Circuit Design #Transistor #Voltage
- A 230–260-GHz Wideband and High-Gain Amplifier in 65-nm CMOS Based on Dual-Peak G_max -Core
2019/03/08 by Dae‐Woong Park, Dae-Woong Park, Dzuhri Radityo Utomo +4 · 3 citations
Engineering · Physics and Astronomy · #Amplifier #Bandwidth (computing) #CMOS #Computer science #Electrical engineering #Electronic engineering #Engineering #Optoelectronics #Photonic and Optical Devices #Physics #Power gain #Radio Frequency Integrated Circuit Design #Semiconductor Quantum Structures and Devices #Telecommunications #Wideband
- Improved Three-Stage Doherty Amplifier Design With Impedance Compensation in Load Combiner for Broadband Applications
2018/12/14 by Jing Xia, Wenhua Chen, Fan Meng +3 · 8 citations
Engineering · #Adjacent channel #Advanced Power Amplifier Design #Amplifier #Bandwidth (computing) #Broadband #Damping factor #Doherty amplifier #Electrical engineering #Electrical impedance #Electronic engineering #Engineering #Impedance bridging #Impedance matching #Input impedance #Microwave Engineering and Waveguides #Output impedance #RF power amplifier #Radio Frequency Integrated Circuit Design #Telecommunications
- Analysis and Design of a Doherty-Like RF-Input Load Modulated Balanced Amplifier
2018/12/01 by Prathamesh H. Pednekar, William Hallberg, Christian Fager +2 · 3 citations
Engineering · #Advanced Power Amplifier Design #Amplifier #CMOS #Doherty amplifier #Electrical engineering #Electronic engineering #Engineering #Full-Duplex Wireless Communications #Linear amplifier #Physics #Power-added efficiency #RF power amplifier #Radio Frequency Integrated Circuit Design #Radio frequency #Splitter
- Postmatching Doherty Power Amplifier With Extended Back-Off Range Based on Self-Generated Harmonic Injection
2018/01/01 by Xin Yu Zhou, Shao Yong Zheng, Wing Shing Chan +2 · 3 citations
Engineering · Physics and Astronomy · #Acoustics #Advanced Power Amplifier Design #Amplifier #CMOS #Electrical engineering #Electronic engineering #Engineering #GaN-based semiconductor devices and materials #Gallium nitride #Harmonic #High-electron-mobility transistor #Materials science #Optoelectronics #Physics #Radio Frequency Integrated Circuit Design #Transistor #Voltage #Waveform #Wideband
- A Design Strategy for Bandwidth Enhancement in Three-Stage Doherty Power Amplifier With Extended Dynamic Range
2017/09/21 by Ayushi Barthwal, Karun Rawat, Shiban K. Koul · 2 citations
Engineering · #Advanced DC-DC Converters #Advanced Power Amplifier Design #Amplifier #Bandwidth (computing) #Broadband #Code division multiple access #Doherty amplifier #Dynamic range #Electrical engineering #Electronic engineering #Engineering #Materials science #Power bandwidth #RF power amplifier #Radio Frequency Integrated Circuit Design #Telecommunications #Transistor #Voltage #W-CDMA
- Doherty Power Amplifier Based on the Fundamental Current Ratio for Asymmetric cells
2017/05/25 by Hansik Oh, Hyunuk Kang, Hwiseob Lee +10 · 2 citations
Engineering · #Advanced Power Amplifier Design #Amplifier #CMOS #Electrical engineering #Electronic engineering #Engineering #Linear amplifier #Materials science #Microwave Engineering and Waveguides #Physics #Power (physics) #Power bandwidth #Power gain #Power-added efficiency #RF power amplifier #Radio Frequency Integrated Circuit Design #dBm
- InP HBT Technologies for THz Integrated Circuits
2017/05/02 by Miguel Urteaga, Zach Griffith, Munkyo Seo +3 · 14 citations
Engineering · #Amplifier #Bandwidth (computing) #Bipolar junction transistor #CMOS #Circuit design #Electrical engineering #Electronic circuit #Engineering #Gallium arsenide #Heterojunction bipolar transistor #Indium phosphide #Integrated circuit #Materials science #Microwave Engineering and Waveguides #Optoelectronics #Photonic and Optical Devices #Radio Frequency Integrated Circuit Design #Telecommunications #Terahertz radiation #Transistor #Voltage
- A High-Gain mm-Wave Amplifier Design: An Analytical Approach to Power Gain Boosting
2017/01/24 by Hadi Bameri, Omeed Momeni · 7 citations
Engineering · Physics and Astronomy · #Amplifier #Artificial intelligence #CMOS #Computer science #Electrical engineering #Electronic engineering #Embedding #Engineering #Microwave Engineering and Waveguides #NMOS logic #Physics #Power gain #Radio Frequency Integrated Circuit Design #Semiconductor Quantum Structures and Devices #Topology (electrical circuits) #Transistor
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