
Academic Journal
Q1IEEE Journal of Solid-State Circuits
About IEEE Journal of Solid-State Circuits
IEEE Journal of Solid-State Circuits is a scholarly journal published by Institute of Electrical and Electronics Engineers Inc.. SCImago 2025 places it in Q1 with an SJR of 5.013 and an H-index of 248.
Its listed coverage is 1966-2026 and its research categories include Electrical and Electronic Engineering (Q1). The 2025 dataset reports 496 documents and 7779 citations across the latest three-year reporting window.
The IEEE Journal of Solid-State Circuits (JSSC) is one of the premier publications in the field of electronics, with a specific focus on solid-state circuits. Published by the Institute of Electrical and Electronics Engineers (IEEE), it serves as an authoritative resource for engineers, researchers, and academics involved in the design, development, and application of semiconductor devices and circuits. With its rigorous peer-review process and cutting-edge research, the JSSC remains a vital source of information for professionals in the industry.
Overview of IEEE Journal of Solid-State Circuits
The IEEE Journal of Solid-State Circuits is dedicated to publishing high-quality research papers that delve into the latest advancements in solid-state circuit design, including analog, digital, mixed-signal, and power electronics circuits. The journal is widely recognized for its technical excellence and has established itself as a cornerstone of knowledge in the field of solid-state electronics.
The journal covers a wide array of topics such as integrated circuit (IC) design, system-level design, circuit modeling, testing, and device physics. Its interdisciplinary approach makes it essential reading for engineers and researchers working on integrated circuits and related technologies. The JSSC provides insights into novel circuit architectures, new methodologies, and emerging trends in the field, ensuring that its readers stay updated with the latest developments.
Key Features of IEEE Journal of Solid-State Circuits
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Comprehensive Research: The JSSC features cutting-edge research that spans the entire spectrum of solid-state circuits. From basic device physics to advanced applications, the journal offers a comprehensive overview of both theoretical and practical aspects of circuit design.
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High-Impact Studies: The articles published in the JSSC are peer-reviewed and represent the highest standards of scientific research. The journal has a significant impact factor in the academic and professional communities, making it a valuable resource for anyone looking to advance their knowledge in solid-state electronics.
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Interdisciplinary Focus: While the primary focus is on circuits, the JSSC also explores related fields such as microelectronics, semiconductor devices, and system-level integration. This interdisciplinary focus enables researchers from various domains to gain a holistic understanding of solid-state technologies.
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Technical Innovation: The journal regularly features groundbreaking innovations in solid-state circuit design, from new materials and fabrication techniques to novel applications in communications, medical devices, automotive systems, and more. Researchers can find the latest trends and state-of-the-art technologies that are shaping the future of the electronics industry.
Topics Covered in IEEE JSSC
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Analog Circuits: Research on low-noise amplifiers, oscillators, voltage-controlled oscillators, and other analog circuits.
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Digital Circuits: Innovations in logic gates, memory systems, processors, and digital signal processing.
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Mixed-Signal Circuits: Advancements in circuits that combine analog and digital functions for applications like data conversion and communication systems.
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Power Electronics: Research on power management circuits, voltage regulators, and efficient power conversion systems.
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Circuit Modeling and Simulation: Development of tools and techniques for modeling and simulating solid-state circuits at various levels of abstraction.
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Semiconductor Devices: Studies on new materials and devices that enhance circuit performance, including MOSFETs, transistors, and emerging technologies like memristors.
Why Subscribe to IEEE JSSC?
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Cutting-Edge Knowledge: The IEEE JSSC provides access to the latest findings in solid-state electronics, making it an invaluable resource for keeping up with technological advances.
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Academic and Professional Development: With its emphasis on high-impact research, the journal helps both academics and professionals stay at the forefront of the industry.
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Networking Opportunities: Subscribers can engage with leading experts in the field and gain insights into industry trends, which can lead to collaborations and new opportunities.
Journal Metrics
Metrics can change by reporting year. Verify time-sensitive values with the publisher or indexing service.
Aims & Scope
The IEEE Journal of Solid-State Circuits (JSSC) stands as one of the premier publications in the field of solid-state circuit design and analysis. With a focus on cutting-edge advancements in circuit technologies, the journal offers an authoritative platform for researchers, engineers, and academicians to share their innovative work. The scope of JSSC covers a wide range of topics related to the design, analysis, and implementation of solid-state circuits, making it a valuable resource for those involved in semiconductor and electronics engineering.
1. Advanced Circuit Design and Development
JSSC emphasizes innovative research in the design of solid-state circuits. This includes digital, analog, and mixed-signal circuits. Papers published in the journal often explore new methods for enhancing performance, power efficiency, and integration of circuits. Researchers delve into novel design techniques for systems such as microprocessors, memory devices, and radio-frequency circuits. Moreover, JSSC focuses on improving circuit reliability, scalability, and overall functionality through groundbreaking approaches.
2. Semiconductor Device Technology
At the core of solid-state circuit design is semiconductor device technology. JSSC publishes research that explores the design and application of various semiconductor devices such as transistors, diodes, and integrated circuits. The journal also highlights developments in material science and the fabrication processes that impact the performance of solid-state devices. This includes emerging materials like graphene and carbon nanotubes, which promise to revolutionize the performance and power consumption of circuits in the near future.
3. Low Power Circuits and Energy-Efficient Solutions
The push for low-power circuits and energy-efficient designs is a central theme within JSSC. With the growing demand for portable electronics and the rise of mobile computing, energy efficiency is paramount. The journal showcases research that focuses on minimizing power consumption while maintaining high performance in circuits for applications ranging from mobile devices to industrial systems. Papers on low-power circuit design techniques, energy-efficient communication systems, and power management strategies are prevalent in the journal.
4. High-Speed and High-Performance Circuits
High-speed circuits are critical in applications where data processing and communication speeds are essential, such as in telecommunications, computing, and data centers. JSSC frequently publishes papers that explore high-performance circuit designs optimized for speed, bandwidth, and low latency. These include advanced clocking techniques, signal integrity solutions, and high-frequency components that push the boundaries of data transfer rates and processing capabilities.
5. Analog and Mixed-Signal Circuitry
Analog and mixed-signal circuits play a crucial role in bridging the gap between the digital world and the real world, such as in sensors, actuators, and signal processing systems. The IEEE Journal of Solid-State Circuits explores the latest advancements in analog and mixed-signal designs, including techniques for reducing noise, improving linearity, and enhancing the overall quality of analog-to-digital and digital-to-analog conversion processes. This area of the journal also covers integrated solutions for analog and digital components, which are increasingly required for the integration of complex systems on chips (SoCs).
6. Signal Processing and Communication Systems
Signal processing is a pivotal aspect of solid-state circuits. JSSC regularly features research on the design and implementation of circuits for communication systems, including those for wireless communication, satellite systems, and high-speed networking. Signal processing circuits, whether for audio, video, or data, are essential for ensuring quality transmission and reception in modern communication systems. This encompasses innovations in encoding, decoding, modulation, and error correction.
7. Circuit Modeling and Simulation
Understanding and predicting the behavior of solid-state circuits is key to optimizing their design. JSSC welcomes papers that address advancements in circuit modeling, simulation tools, and techniques. Research that improves the accuracy and efficiency of circuit simulation methods—whether through machine learning, quantum computing, or other modern approaches—also finds a place in the journal.
Recent Research Articles
Latest publications matched automatically by ISSN.
A High-Linearity Shunt-Based In-Line Current Sensor With Self-Heating Compensation and 14.4 V 2 MHz PWM Rejection
Heng Ma, Huajun Zhang, Yuyan Liu, Marco Berkhout et al.
2026-09 · DOI: 10.1109/jssc.2026.3685735IEEE Journal of Solid-State Circuits Information for Authors
2026-09 · DOI: 10.1109/jssc.2026.3721996An 18.3- μ W 108.3-dB DR Discrete-Time Delta-Sigma Modulator Using a Loop Filter Auto-Shift Technique
Cong Wei, Ziqiang Peng, Lijie Huang, Jinze Lai et al.
2026-09 · DOI: 10.1109/jssc.2026.3684106A 3.47 NEF 175.2-dB FoMs Direct Digitization Front-End Featuring Delta Amplification Noise-Shaping SAR ADC for Biosignal Acquisition
Kyeongwon Jeong, Can Livanelioglu, Jiawei Liao, Inhee Lee et al.
2026-09 · DOI: 10.1109/jssc.2026.3685168A Continuous-Time Zoom Sensor Readout Frontend With Fast Tracking and Floating-Gm-CCO Integrator
Haoyang Luo, Zongnan Wang, Jiarui Wang, Bingrui Li et al.
2026-09 · DOI: 10.1109/jssc.2026.3677053A 77-dB DR Two-Stage SAR ADC for Low-Gain Analog Front-Ends Using Asynchronous Pipelining and RC Snubber Reference Stabilization
Jun Feng, Rares Bodnar, Roberto Maurino, Marcel J. M. Pelgrom et al.
2026-09 · DOI: 10.1109/jssc.2026.3686660A 1.8-to-3.0-GHz Fully Integrated All-in-One CMOS Frequency Management Module Achieving −47-/+42-ppm Inaccuracy From −40 ∘ C to 95 ∘ C and −150/+70 ppm After Accelerated Aging
Runtao Huo, Tong Zhang, Weihao Jie, Yanling Zheng et al.
2026-09 · DOI: 10.1109/jssc.2026.3677418An Ultralow Cross-Regulation Single-Inductor Multiple-Output (SIMO) Buck Converter Using Reordered Power-Distributive Control
Baochuang Wang, Xiaonan Wu, Minghao Shang, Lin Cheng et al.
2026-09 · DOI: 10.1109/jssc.2026.3680424A Low-Jitter Fractional- N Sampling PLL With Voltage-Domain Quantization-Error Cancellation Using a Nonlinearity-Replication Technique
Yuhwan Shin, Juyeop Kim, Junseok Lee, Yongwoo Jo et al.
2026-09 · DOI: 10.1109/jssc.2026.3681940A 6.3--18.4 GHz I/Q Receiver With RF and LO Path Reconfigurability for 6G FR3 Applications in 22-nm FD-SOI
Haisu Ju, Yingtao Zou, Gabriel M. Rebeiz
2026-09 · DOI: 10.1109/jssc.2026.3698025A Compact Energy-Efficient Unified Micro-Robotic Processor With Flexible Visual Perception
Shuyuan Zhang, Yujin Wang, Xizhu Chen, Huazhong Yang et al.
2026-09 · DOI: 10.1109/jssc.2026.3677826A 95.3% Efficiency APT/AET/SPT Multimode Multiband CMOS/GaN Envelope Tracking for 6G-Oriented Systems
Chun-Yuan Chen, Yi-Chun Huang, Ke-Horng Chen, Ying-Hsi Lin et al.
2026-09 · DOI: 10.1109/jssc.2026.3681319A MEMS-Free 4096-Pixel CMOS E-Nose Array With MOF-Based Molecular Selectivity, In-Pixel Thermal Regeneration, and a Compact Single-Coefficient Bandpass Sigma--Delta ADC
Marco Saif, Adam Y. Wang, Shao-Wei Lo, Fuze Jiang et al.
2026-09 · DOI: 10.1109/jssc.2026.3685410A 6.8--14-GHz Ring-Based Sampling-PLL Achieving 69.3-fs Jitter Under 50-mV Supply Noise
Mahmoud A. Khalil, Mohamed Badr Younis, Ruhao Xia, Ahmed E. Abdelrahman et al.
2026-09 · DOI: 10.1109/jssc.2026.3683111Self-Enabled Write Assist Cells for High-Density SRAM in Resistance-Dominated Technology Node
Minjune Yeo, Seungjae Yei, Keonhee Cho, Giseok Kim et al.
2026-09 · DOI: 10.1109/jssc.2026.3681916Corrections to "A Quadrature-Rotation Phased-Array Transmitter With High-Resolution Phase Tuning and Complex Domain Power Back-Off Efficiency Enhancement"
Jie Zhou, Bingzheng Yang, Hongxin Tang, Xun Luo et al.
2026-09 · DOI: 10.1109/jssc.2026.3709547A Single-Stage CSCR-Based SIDO/DISO Converter With Almost-Lossless Path Switching
Yuanfei Wang, Yan Lu, Ping Luo, Rui P. Martins et al.
2026-09 · DOI: 10.1109/jssc.2026.3680968A 34 Gb/s 5 m DSP-Free PMF Active Cable in 22 nm FDSOI CMOS
Dragan Simic, Gabriel Guimaraes, Valdrin Qunaj, Joren Vaes et al.
2026-09 · DOI: 10.1109/jssc.2026.3687479A 28-nm Digital Transpose SRAM Compute-in-Memory Macro With Accurate/Approximate Dual Mode for Floating-Point Edge Training and Inference
Yiyang Yuan, Bingxin Zhang, Yiming Yang, Yishan Luo et al.
2026-09 · DOI: 10.1109/jssc.2026.3679560A 15-MHz, 2.7-mm 2 Notch-Free Hybrid Magnetic Current Sensor With Feedforward Ripple Cancellation and ±0.8% Local Gain Non-Uniformity
Feng Cheng, Jianlin Xia, Encheng Zhu, Long Zhang et al.
2026-09 · DOI: 10.1109/jssc.2026.3692476Reviews
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April 23, 2025 at 1:51 pm
April 23, 2025