System-on-Chip SoC Design Companies - List of Top Suppliers

Welcome to AnySilicon’s directory of System-on-Chip SoC Design Companies. This list connects you with top providers of System-on-Chip SoC Design Services, from RTL design and verification to back-end implementation, tapeout, and turnkey solutions.

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InCirT

Germany

InCirT is a German company that provides ultra-wideband data converters, ultra-low jitter programmable PLLs, high-speed interface, and many other IPs.

Services

IC design and services, Silicon IP design and services, ASIC design services, DPD design services, PCB design services

IP Cores

RF-DAC, High speed DAC and ADC, General purpose clock generator - PLL, High speed bi-directional Interface (SerDes)

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AnalogueSmith

Singapore

We provide RFIC, analogue, and mixed signal ASIC design services focused on IoT sensor node design and other markets.

Services

RFIC Design, IoT Sensor Node Design

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Karmic Design

India

KARMIC Design Private Ltd is a pioneer and leader in the semiconductor design and development industry. We have expertise in Analog, RF/mmwave, Mixed Signal, Memory ,IO and Digital domains; providing design services and solutions globally. We also provide Embedded/Firmware support and Board testing.

Services

PHYSICAL LAYOUT, VERIFICATION, MODELING, PDK DEVELOPMENT, LIBRARY (LAYOUT/ CHAR), EMBEDDED SERVICES

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ams OSRAM

Austria

ams OSRAM, a global leader in light and sensor solutions with over 110 years of experience, combines engineering excellence and manufacturing to innovate in sensing, illumination, and visualization across various industries.

Services

Implementation Feasibility, ASIC Concept, ASIC Design, ASIC Manufacturing, Assembly and Test, ASIC Qualification and Failure Analysis , ASIC Logistics

IP Cores

Low-Noise and Low-Power Front-End Amplifiers, High-Precision Analog-to-Digital Converters, Voltage Regulators and Charge Pumps, Custom IP Solutions

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Bruco Integrated Circuits

The Netherlands

Bruco IC is a European fabless analog, mixed-signal and high-voltage IC Design Service company, offering exclusive solutions for the automotive, ISM and consumer market.

Services

Smart Integrated Power, Wireless Communications, RF-Energy, Characterization and Testing, EDA, Consultancy and Training Services, Supply Chain Management, Certifications

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Avnet ASIC Israel

Israel

AAI is a leading provider of complete ASIC design (Front End, Back End and Verification) and turnkey manufacturing services for fabless companies and OEM's, which develops advanced SoC devices.

Services

Logic Design (Front-End), ASIC Design RTL to GDS2, Analog & RF Design, Productization, Production, Additional Services

IP Cores

CPU & SoC, Security, General Purpose IP, Analog IP

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IC-Logic

Germany

IC-LOGIC is a Microchip design company with focus on analog, digital and mixed signal ASIC designs.

Services

ASIC Specifications & Design, Hi-Rel, Automotive and Industrial ASICs, Supply Chain Services

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Swindon Silicon Systems

UK

Swindon is a leader in the design, production test and supply of industrial and automotive mixed signal ASICs (Custom ICs).

Services

Custom IC Solutions, Design and Supply of Industrial ASICs , Design and Supply of Automotive ASICs

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Sofics

Belgium

Sofics is an IP provider improving reliability of ICs through innovative designs. Sofics offers 3 products: TakeCharge®, PowerQubic® and CustomIO®.

Services

IP Provider for unique I/O and ESD protection, Custom I/O and ESD Design

IP Cores

Low Voltage ESD/EOS protection (up to 5V), HV/BCD EOS/ESD protection (5V and higher), LIN PHY (transceiver) , Programmable Clipping Circuit for Antenna pins, Radiation hard circuits, IP for chiplet Die-2-Die interfaces

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Alphacore

USA

Innovative Data Conversion Microelectronics. Our high-performance/low-power data converter IP and other analog/mixed-signal products and design services will shorten your time-to-market.

Services

IC Design Services, Imaging System Development, IP Design Services , Custom Engineering IC Services, Testing Services

IP Cores

Analog, Mixed-Signal, RF IC’s and IP’s, Imaging Products and IPs, Radiation Hardened Electronics, Power and RF Components and IPs, CyberSecurity & Reliability Monitors

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Tessolve Semiconductor

USA

Tessolve is the market leader in providing engineering solution for silicon and systems development. We offer a unique combination of both pre-silicon and post silicon expertise to provide an efficient turnkey solution for silicon bring up, spec to product.

Services

Design Verification, Physical Design , Design for Test (DFT) , Analog & Mixed Signal (AMS) Design, Embedded & Product Engineering Services

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DA-Integrated

Canada

DA-Integrated is a leading global provider of Comprehensive Production Test Solutions and Custom ASIC Design and Supply.

Services

ASIC Design and Supply, Comprehensive Test Solutions

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Chain-IC

The Netherlands

Analog and mixed-signal IC development company based in the Netherlands.

Services

IC Design Services, Data converters, Power & Power management, High performance analog, Digital control, Lab validation

IP Cores

SARADC – 37.5 MS/s 12 bit SAR ADC, SARADC – 2MS/s 14 bit SAR ADC w/o Calibration, LLSDADC – High Resolution Low Latency ΣΔ ADC, SDCRDAC – 24 bit Sigma-Delta DAC, CRDAC – 12 bit charge-redistribution DAC, FIRDAC – High Accuracy Low OOBN ΣΔ DAC

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Advanced Silicon

Switzerland

Advanced Silicon is a fabless mixed-signal IC solution provider for High-Voltage, High-pin count, and ultra-low noise peripheral SOCs.

Services

ASIC Design, Embedded Algorithms Design, Wafer Testing, Packaging , Quality

IP Cores

High-Voltage IP Cores, Analog IP Cores , Digital IP Cores

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iSine

USA

iSine was founded in 1981 to provide ASIC design, development and manufacturing solutions. Patented LED ballast chips are in production.

Services

Fabless Semicoductor Supplier, Design Services – Analog & Digital ASIC design, Design Services – FPGAs, Design Services – IC Lifecycle Management – EOL Redesign

IP Cores

Analog IP Cores, Digital IP Cores

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Sigenics

USA

Sigenics Inc. specializes in designing, testing and delivering custom integrated circuits for sensor, analog, and mixed-signal applications within various markets.

Services

Integrated Circuit (IC) Design, Full Turn-Key ASIC Supplier, Fabless Manufacturing

IP Cores

Logic Families, Analog

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IC Enable

USA

Since 2004, IC Enable has successfully delivered design and layout services with exemplary quality from test chips to full-custom ASICs.

Services

Turnkey ASIC / SOC Development, Technology Development Platform, Technology Development Platform, Analog Circuit Design, Integrated Circuit Layout, Digital Design (RTL Design) and Verification, Digital Physical Design

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Black Forest Engineering

USA

30 years of cutting-edge mixed-signal design expertise to provide solutions to your most challenging problems.

Services

Turnkey ASIC Design , Post Fabrication – Packaging & Testing, Consultation Services, Custom ROIC & ASIC Design

IP Cores

Column ADC Patent, Extensive IP Library

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Faraday Technology Corporation

Taiwan

A leading fabless ASIC / SoC design service and silicon IP provider with 20 years of experience.

Services

Intellectual Property (IP) & Process Technology, SoC/ASIC Development Platform, Design Flow, Packaging & Testing, Production Service, Application-Oriented Value-Added Services

IP Cores

USB3.1 Gen1 IP Solutions, Technology Optimized Standard Cell Library, ESD Robust Multi-Voltage I/O, Low Power SRAM with High Production Yield

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GEDEC

Italy

GEDEC (GEnova DEsign Center) is an independent electronic system and integrated circuit design house, mainly focused in advanced electronic and ICs microelectronics design.

Services

ICs Design Service, ICs Layout Design Service, Power Management Circuit Consulting and Development, Analog Layout Resource Rraining, Automatic Test Equipment Full Support

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In the rapidly evolving world of electronics, System-on-Chip (SoC) technology stands as a cornerstone of innovation and efficiency. With the ability to integrate multiple functionalities into a single chip, SoCs have become indispensable in modern electronics, powering everything from mobile devices to smart home systems and are listed among the top companies in the industry. As we look towards 2025, the landscape of SoC design companies continues to expand, driven by advancements in semiconductor technology and the growing demand for high-performance, low-power solutions.

 

Overview of SoC Technology

System-on-Chip technology represents a paradigm shift in the design and manufacturing of integrated circuits. Unlike traditional integrated circuit designs that require multiple chips to perform different functions, a system on a chip integrates all necessary components onto a single die. SoCs consolidate these functions into a single chip. This integration not only optimizes space but also enhances performance and reduces power consumption, making it a key feature of modern system on a chip designs. SoCs are the backbone of modern electronics, enabling devices to become smarter, faster, and more efficient.

What is a System-on-Chip?

 

A System-on-Chip (SoC) is an integrated circuit that consolidates all the components of a computer or other electronic system onto a single chip. This includes various essential elements:

  • The central processing unit (CPU)
  • Memory integration is crucial in modern system on a chip designs, contributing to overall efficiency.
  • Input/output ports
  • In some cases, additional features like wireless connectivity and analog signal processing

SoCs are the heart of mobile devices, IoT gadgets, and automotive systems, providing a compact and efficient solution to the ever-increasing demands for computational power and connectivity.

 

Key Features of SoC Designs

 

The key features of SoC designs include their ability to integrate digital, analog, mixed-signal, and often radio frequency (RF) functions onto a single chip. This integration leads to significant improvements in performance and power efficiency in the design of microchips. Here are some important aspects of SoC designs:

  1. High-speed data processing capabilities, low power consumption, and advanced connectivity options such as 5G and IoT.
  2. The design flow of a system on a chip involves multiple stages, from RTL design and physical design to final manufacturing, often facilitated by leading semiconductor companies like TSMC and Qualcomm, which are recognized as top companies in the industry.

 

Importance of SoCs in Modern Electronics

In modern electronics, the importance of system on a chip (SoC) solutions cannot be overstated. They are crucial in the development of compact and efficient devices, allowing for high-performance computing and seamless connectivity. SoCs play a pivotal role in the Internet of Things (IoT), enabling smart devices to communicate and process data efficiently through advanced system on chip architectures. The automotive industry also benefits significantly from SoC technology, which facilitates advanced driver-assistance systems (ADAS) and autonomous driving capabilities. As the demand for smarter, more connected devices grows, SoCs will continue to be at the forefront of technological innovation.

Leading SoC Design Companies

Qualcomm: A Pioneer in SoC Development

Qualcomm stands as a trailblazer in the realm of system on chip (SoC) development, consistently recognized among the top companies in the field., renowned for its cutting-edge innovations in wireless communication and mobile technologies, Qualcomm remains a leading provider in the system on chip sector. As a leading semiconductor company, Qualcomm has consistently pushed the boundaries of SoC designs, providing high-performance solutions that integrate advanced CPU cores, 5G connectivity, and AI capabilities. Their commitment to reducing power consumption while enhancing computational power has made Qualcomm a preferred supplier for mobile devices and IoT applications worldwide.

MediaTek: Innovative Solutions for Various Industries

MediaTek has carved out a significant niche in the SoC market by delivering innovative solutions that cater to a wide array of industries, including automotive, smart home, and consumer electronics. Known for its high-speed, low-power SoCs, MediaTek excels in creating integrated circuits that seamlessly blend digital and analog design capabilities. Their SoC technology supports diverse applications, from high-performance computing to advanced connectivity features, making MediaTek a formidable player among top SoC companies.

Broadcom: Diverse Applications of SoC Technology

Broadcom is a prominent name in the semiconductor industry, recognized as one of the top companies in the global system-on-chip market, specializing in various SoC solutions., offering a diverse range of SoC technologies that cater to various applications such as networking, broadband, and data centers, as listed in the latest list of SoC innovations. With a focus on mixed-signal and analog design, Broadcom’s System-on-Chip solutions are integral to the development of high-speed, reliable communication systems. Their expertise in integrating wireless and core computing functionalities onto a single chip exemplifies the versatility and adaptability of SoC technology in meeting the demands of modern electronics.

Semiconductor Manufacturing Services

Role of TSMC in SoC Fabrication

TSMC, the world’s largest foundry, plays a pivotal role in the fabrication of SoCs, providing essential semiconductor manufacturing services that enable the realization of advanced SoC designs. By leveraging cutting-edge process technology, including the 3nm process, TSMC supports the development of high-performance, energy-efficient integrated circuits. Their manufacturing capabilities are critical for fabless SoC companies, allowing for the production of sophisticated microchips that power everything from mobile devices to complex IoT systems.

Understanding ASIC and Integrated Circuit Design

Application-Specific Integrated Circuits (ASICs) are fundamental components in the world of SoC development, tailored to perform specific tasks within a larger system design. ASICs often incorporate both digital and analog elements, offering bespoke solutions that enhance the functionality and efficiency of SoCs. Understanding the intricacies of ASIC and integrated circuit design is crucial for semiconductor companies aiming to produce high-performance, low-power chips that meet specific design specifications in various applications.

IP Licensing in SoC Development

IP licensing is a cornerstone of SoC development, enabling companies like Socionext to innovate within the system on a chip landscape., enabling companies to integrate pre-designed intellectual property blocks into their systems on a chip, thereby accelerating the design flow and reducing time-to-market. This approach allows semiconductor companies to focus on differentiating their products by incorporating unique features while leveraging licensed IPs for core functions. Effective IP licensing strategies are essential in the competitive semiconductor landscape, ensuring that SoC designs remain innovative and efficient.

Future Trends in SoC Designs

Advancements in Automotive SoCs

The automotive industry is undergoing a significant transformation with the integration of system on chip technology, enhancing vehicle performance and connectivity. As vehicles become more connected and autonomous, automotive SoCs are playing a crucial role This integration plays a crucial role in enhancing safety, connectivity, and performance in global system-on-chip applications. These chips integrate high-speed processing capabilities with low power consumption, enabling advanced driver-assistance systems and real-time data processing. Leading semiconductor companies are developing automotive SoCs that support features such as wireless communication, infotainment systems, and vehicle-to-everything (V2X) connectivity, ensuring that future vehicles are smarter and more efficient.

Emerging Semiconductor Technologies for 2025

As we approach 2025, the semiconductor industry is poised for groundbreaking advancements that will redefine SoC designs. The introduction of new process technologies like the 3nm process is set to enhance the performance and efficiency of integrated circuits. These advancements will allow for the development of SoCs with higher compute capabilities and reduced power consumption, further solidifying their position in the global system-on-chip market. Additionally, the integration of mixed-signal and analog design capabilities will further enhance the versatility of SoCs, enabling them to cater to a broader range of applications, from mobile devices to complex IoT systems.

Impact of AI and IoT on SoC Designs

The proliferation of Artificial Intelligence (AI) and the Internet of Things (IoT) is profoundly impacting the designs of system on chips. AI-driven SoCs are being developed to handle complex data processing tasks within a system on a chip framework., enabling real-time analytics and decision-making through advanced processing capabilities found in leading system on a chip solutions. These chips are optimized for high-performance computing while maintaining low power requirements, making them ideal for IoT devices that require efficient data processing and connectivity. The fusion of AI and IoT in system on chip technology is paving the way for smarter, more responsive systems that can adapt to changing environments and user needs.

Conclusion and Insights

Summary of Key Players in the SoC Market

The System-on-Chip (SoC) market is characterized by the presence of several key players, each contributing to the advancement of semiconductor technology. Companies like Qualcomm, MediaTek, and Broadcom have established themselves as leaders in SoC development, offering innovative solutions for various industries. Their expertise in integrating high-speed processing, wireless communication, and analog design capabilities onto single microchips has made them a leading provider in the global SoC market. These companies continue to drive innovation, ensuring that SoCs remain at the forefront of technological progress.

Future Outlook for SoC Development

The future of SoC development is promising, with continued advancements in semiconductor technology and process innovations that will enhance wafer production capabilities. As the demand for high-performance, low-power solutions grows, the role of innovative microchip designs becomes increasingly vital. SoC designs will evolve to incorporate more sophisticated features and capabilities. The integration of AI and IoT functionalities will further enhance the adaptability and efficiency of SoCs, enabling new applications across various sectors. The ongoing collaboration between fabless companies and foundries will be crucial in meeting the design specifications and manufacturing requirements of next-generation SoCs.

Final Thoughts on Choosing SoC Suppliers

When selecting SoC suppliers, it is essential to consider factors such as the company’s expertise in semiconductor manufacturing, their track record of innovation, and the range of SoC design services they offer. Leading companies like TSMC, known for their advanced process technology and manufacturing services, are key players in the global system-on-chip ecosystem., play a vital role in the successful realization of complex SoC designs. By choosing suppliers that excel in delivering high-performance, low-power SoCs, businesses can ensure that their products remain competitive and aligned with the latest technological trends.

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