List of Synopsys TCAD Customers
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Since 2010, our global team of researchers has been studying Synopsys TCAD customers around the world, aggregating massive amounts of data points that form the basis of our forecast assumptions and perhaps the rise and fall of certain vendors and their products on a quarterly basis.
Each quarter our research team identifies companies that have purchased Synopsys TCAD for Computer-Aided Design (CAD) from public (Press Releases, Customer References, Testimonials, Case Studies and Success Stories) and proprietary sources, including the customer size, industry, location, implementation status, partner involvement, LOB Key Stakeholders and related IT decision-makers contact details.
Companies using Synopsys TCAD for Computer-Aided Design (CAD) include: IBM, a United States based Professional Services organisation with 293000 employees and revenues of $67.54 billion, GlobalFoundries, a United States based Manufacturing organisation with 14000 employees and revenues of $6.79 billion, Industrial Technology Research Institute, a Taiwan based Non Profit organisation with 6000 employees and revenues of $1.50 billion, imec, a Belgium based Professional Services organisation with 4000 employees and revenues of $777.0 million, Skywater Technology, a United States based Manufacturing organisation with 731 employees and revenues of $342.0 million and many others.
Contact us if you need a completed and verified list of companies using Synopsys TCAD, including the breakdown by industry (21 Verticals), Geography (Region, Country, State, City), Company Size (Revenue, Employees, Asset) and related IT Decision Makers, Key Stakeholders, business and technology executives responsible for the software purchases.
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| Logo | Customer | Industry | Empl. | Revenue | Country | Vendor | Application | Category | When | SI | Insight |
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GlobalFoundries | Manufacturing | 14000 | $6.8B | United States | Synopsys | Synopsys TCAD | Computer-Aided Design (CAD) | 2017 | n/a |
In 2017 GlobalFoundries implemented Synopsys TCAD as a core Computer-Aided Design (CAD) capability to support device modeling and performance analysis across semiconductor technology nodes. The deployment positioned Synopsys TCAD as the canonical simulation environment for compact modelling and device physics studies within the company research and development toolset.
Synopsys TCAD was configured to support compact modelling workflows using BSIM for MOSFETs and diode device types, enabling parameter extraction, model calibration, and node-to-node transfer of model files. The implementation emphasized process and device simulation chains, combining process evolution, doping and profile simulation, and electrical device simulation to produce calibrated BSIM model decks for downstream circuit and design teams.
Operational coverage encompassed device engineering, process integration, and modeling groups engaged in technology node characterization and design enablement. Workflows centered on cross-functional handoffs from process engineers to compact modelling teams, integrating simulation outputs into device performance analysis routines and model libraries consumed by design verification and circuit simulation environments.
Governance and workflow controls were established around model validation, version control, and node-specific calibration procedures, with structured review gates for model release into production design flows. The implementation narrative for Synopsys TCAD reflects an emphasis on reproducible compact modelling using BSIM and on embedding device physics simulation into GlobalFoundries device engineering and process development practices.
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IBM | Professional Services | 293000 | $67.5B | United States | Synopsys | Synopsys TCAD | Computer-Aided Design (CAD) | 2018 | n/a |
In 2018, IBM deployed Synopsys TCAD as part of a Design-Technology Co-Optimization collaboration in the United States. The Synopsys TCAD implementation addressed Computer-Aided Design (CAD) needs for post-FinFET node evaluation, focusing on device and process engineering workflows for transistor architecture and process option assessment.
The implementation used Sentaurus TCAD simulation capabilities to model new transistor architectures and to run variation-aware process experiments. Functional capabilities documented in the collaboration include TCAD device physics simulation, process option evaluation, and extraction of variation-aware compact models for downstream circuit and design flows.
Operationally the work was scoped to DTCO workflows in process development and device engineering teams within IBM in the United States, integrating TCAD-driven model extraction into IBM process pathfinding activities. The deployment centralized simulation driven decision making for process options and compact model generation, linking device simulation outputs to compact model extraction workflows used by design teams.
Synopsys and IBM reported that the joint DTCO use of Sentaurus TCAD accelerated IBM process pathfinding and enabled extraction of variation-aware compact models, outcomes intended to reduce wafer iterations and shorten time-to-market as stated in Synopsys 2018 announcement.
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imec | Professional Services | 4000 | $777M | Belgium | Synopsys | Synopsys TCAD | Computer-Aided Design (CAD) | 2014 | n/a |
In 2014, imec expanded its TCAD collaboration with Synopsys by embedding Synopsys TCAD into its advanced-node research workflows. Synopsys TCAD, within the Computer-Aided Design (CAD) category, was used to run Sentaurus device and process simulation and to develop Sentaurus-calibrated models for nanowire, FinFET and emerging device architectures targeting 5 nm and beyond.
The implementation focused on device and process simulation capabilities of Sentaurus TCAD, producing calibrated compact and physics-based models for novel transistor geometries. Functional workstreams included model calibration, multi-architecture simulation for nanowire and FinFET designs, and early technology screening to prioritize device concepts before wafer prototyping.
Operational coverage centered on imec advanced-node R&D and device and process development teams, aligning simulation outputs with experimental test plans and wafer characterization cycles. The deployment supported engineering workflows for technology exploration, enabling simulation-driven decision gates within imec research programs.
Governance of the collaboration framed Synopsys TCAD outputs as calibrated model deliverables, enabling imec researchers to reduce costly wafer-based iterations by validating designs and process options in simulation. The work delivered Sentaurus-calibrated models used for early screening and R&D planning, explicitly targeting 5 nm and beyond device architectures.
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Industrial Technology Research Institute | Non Profit | 6000 | $1.5B | Taiwan | Synopsys | Synopsys TCAD | Computer-Aided Design (CAD) | 2011 | n/a |
In 2011, Industrial Technology Research Institute implemented Synopsys TCAD as part of its silicon carbide power device research program. The institute deployed Synopsys Sentaurus TCAD within the Computer-Aided Design (CAD) category to model electrical and thermal behavior of SiC power devices targeted at automotive and energy applications.
Configuration emphasized device-level electrical and thermal simulation, using TCAD workflows for doping profile definition, carrier transport analysis, and coupled electrothermal modeling to support design iteration without immediate wafer fabrication. Synopsys TCAD was used for physics-based prototyping and parameter sweeps to evaluate device geometries and material properties during optimization cycles.
Operational scope covered ITRI’s SiC power device research and development teams in Taiwan, integrating simulation outputs into laboratory characterization workflows to limit experimental wafer runs. According to the Synopsys announcement, the deployment accelerated SiC device optimization for automotive and energy applications and reduced the need for experimental wafers.
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Skywater Technology | Manufacturing | 731 | $342M | United States | Synopsys | Synopsys TCAD | Computer-Aided Design (CAD) | 2019 | n/a |
In 2019, Skywater Technology deployed Synopsys TCAD to introduce physics based device and process simulation into its semiconductor engineering toolchain. Skywater Technology implemented Synopsys TCAD as a Computer-Aided Design (CAD) tool to support Reliability Engineering and Process Engineering functions across its Minnesota headquarters and Florida and Texas sites, aligning simulation outputs with wafer, package, and product qualification workflows.
The implementation focused on core TCAD capabilities for process simulation, device simulation, and reliability physics modeling, including modules used for lifetime projection and accelerated stress modeling. Synopsys TCAD was configured to support parameter extraction, calibration to measured data, and automated simulation runs to feed statistical lifetime models, enabling reproducible inputs for Weibull and acceleration model workflows.
Operational use of Synopsys TCAD was coupled with established design and analysis tooling that the organization referenced, including device circuit simulation and statistical analysis environments, and with lab driven wafer and failure analysis activities. TCAD outputs were used to inform wafer level and package level test plans, to refine stress conditions and to guide targeted failure analysis experiments in the companys labs.
Governance around the deployment emphasized establishing a reliability plan of record, qualification roadmaps, and standardized reporting requirements, with responsibilities to define stress conditions, sample plans, and success criteria. The Synopsys TCAD deployment supported organizational efforts to standardize test and analysis workflows, promote automation and data quality practices, and provide technical inputs for executive program reviews and customer facing reliability discussions.
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Buyer Intent: Companies Evaluating Synopsys TCAD
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