List of FlexCompute Tidy3D Customers
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Since 2010, our global team of researchers has been studying FlexCompute Tidy3D 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 FlexCompute Tidy3D for Electromagnetic Field Simulation 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 FlexCompute Tidy3D for Electromagnetic Field Simulation include: Samsung Display, a South Korea based Manufacturing organisation with 21930 employees and revenues of $6.30 billion, Fonex Data Systems Canada, a Canada based Communications organisation with 100 employees and revenues of $10.0 million, Lumotive, a United States based Manufacturing organisation with 80 employees and revenues of $9.0 million and many others.
Contact us if you need a completed and verified list of companies using FlexCompute Tidy3D, 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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Fonex Data Systems Canada | Communications | 100 | $10M | Canada | Flexcompute | FlexCompute Tidy3D | Electromagnetic Field Simulation | 2024 | n/a |
In 2024, Fonex Data Systems Canada implemented FlexCompute Tidy3D for Electromagnetic Field Simulation to accelerate R&D on integrated external cavity lasers and micro-ring resonators. The deployment targeted engineering and optical design teams, centralizing simulation activities to support device modeling, parametric exploration, and pre-experimental validation within Fonex's Canadian R&D organization.
The implementation emphasized parametric study automation and rapid iteration workflows, with teams using FlexCompute Tidy3D to run batched parameter sweeps and refine resonator geometries. Configuration focused on optical component modeling capabilities common to electromagnetic field simulation, enabling tighter iteration cycles between design variants and simulation results.
Operationally, FlexCompute Tidy3D was embedded in the simulation-to-experiment workflow, supporting handoff of simulation-defined geometries and performance envelopes to laboratory test plans. The scope remained within R&D and design engineering functions, aligning simulation outputs with experimental validation activities for integrated external cavity lasers and micro-ring resonators.
Governance included centralized ownership by the R&D engineering group and reliance on vendor technical support to sustain simulation throughput. According to the implementation notes, the use of FlexCompute Tidy3D sped up parametric studies, improved iteration cadence, and provided responsive technical support, enabling faster progress from simulation to experiment.
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Lumotive | Manufacturing | 80 | $9M | United States | Flexcompute | FlexCompute Tidy3D | Electromagnetic Field Simulation | 2022 | n/a |
In 2022, Lumotive deployed FlexCompute Tidy3D in its United States R&D organization to run high-throughput, full-wave electromagnetic simulations of its Light Control Metasurface beam-steering chips. The deployment positioned FlexCompute Tidy3D as the core Electromagnetic Field Simulation capability for design exploration and enabled parameter sweeps that were previously impractical for the engineering team.
The implementation centered on full-wave electromagnetic solver workflows and automated parameter sweep orchestration to explore large design spaces for second-generation LCM designs. FlexCompute Tidy3D was used to codify simulation scenarios, run batched variation studies, and capture field solutions across steering angles and metasurface geometries, supporting design verification and early performance validation.
Operationally the system was embedded in Lumotive R&D processes, used by optical and device engineering teams to inform fabrication decisions and shorten iteration cycles. Simulation outputs were consumed as inputs to physical prototyping schedules, shifting more verification effort upstream into simulation-driven validation to reduce risky iterations in the fab cycle.
The implementation reduced end-to-end simulation time by months, lowered the number of fabrication iterations with savings measured in tens of thousands of dollars, and accelerated development of Lumotive second-generation LCM designs. Governance changes included formalizing simulation-run ownership within R&D and adopting repeatable parameter sweep workflows to make high-throughput Electromagnetic Field Simulation a routine aspect of the design lifecycle.
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Samsung Display | Manufacturing | 21930 | $6.3B | South Korea | Flexcompute | FlexCompute Tidy3D | Electromagnetic Field Simulation | 2025 | n/a |
In 2025 Samsung Display adopted FlexCompute Tidy3D as its Electromagnetic Field Simulation solution for optical display modeling within R&D and product development teams in South Korea. The deployment targeted thin film optics, light extraction engineering, and multiphysics display challenges to support next generation display innovations.
FlexCompute Tidy3D was configured to deliver high fidelity electromagnetic solvers and multiphysics coupling typical of Electromagnetic Field Simulation platforms, enabling time and frequency domain workflows, automated batch studies, and parameter sweeps. Configuration emphasized solver parallelism and mesh refinement controls to address nanometer scale thin film structures and light extraction geometries, and workflows were instrumented for iterative design sweeps and design of experiment runs.
Operational scope covered Samsung Display research and product development groups in South Korea, with governance organized to embed simulation checkpoints into existing design review processes. The collaboration with Flexcompute aimed to shorten design cycles, increase simulation fidelity, and improve throughput for next generation display innovations, aligning simulation outputs with engineering decision gates.
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