List of Autodesk AutoCAD Customers
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United States
Since 2010, our global team of researchers has been studying Autodesk AutoCAD 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 Autodesk AutoCAD 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 Autodesk AutoCAD for Computer-Aided Design (CAD) include: Vinci, a France based Manufacturing organisation with 282241 employees and revenues of $83.88 billion, RTX Corporation Aerospace, a United States based Aerospace and Defense organisation with 185000 employees and revenues of $80.74 billion, Lockheed Martin, a United States based Aerospace and Defense organisation with 121000 employees and revenues of $71.04 billion, Boeing, a United States based Aerospace and Defense organisation with 172000 employees and revenues of $66.52 billion, General Dynamics, a United States based Aerospace and Defense organisation with 110000 employees and revenues of $47.72 billion and many others.
Contact us if you need a completed and verified list of companies using Autodesk AutoCAD, 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 PLM and Engineering software purchases.
The Autodesk AutoCAD customer wins are being incorporated in our Enterprise Applications Buyer Insight and Technographics Customer Database which has over 100 data fields that detail company usage of PLM and Engineering software systems and their digital transformation initiatives. Apps Run The World wants to become your No. 1 technographic data source!
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| Logo | Customer | Industry | Empl. | Revenue | Country | Vendor | Application | Category | When | SI | Insight |
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Acicluj | Construction and Real Estate | 283 | $56M | Romania | Autodesk | Autodesk AutoCAD | Computer-Aided Design (CAD) | 2020 | n/a |
In 2020, Acicluj implemented Autodesk AutoCAD to centralize surveying deliverables and site CAD workflows. The deployment focused on field-to-CAD processing and construction documentation for infrastructure and building projects across Romania, including work on the Someșului Riverbanks in Cluj-Napoca, the Robert Bosch office in Piața Mihai Viteazu, the Sports Hall in Blaj, UTCN Headquarters, the Child Neuropsychiatry Hospital in Cluj-Napoca, Olimpic Pool in Oradea, University of Oradea dorms, the Justice Court and Police Department in Cluj-Napoca, and the Stadium Arena in Targoviste. Acicluj Autodesk AutoCAD Computer-Aided Design (CAD) supports surveying and construction planning business functions.
The implementation emphasized configuration of drawing templates, coordinate system setup, and topographical plotting capabilities within Autodesk AutoCAD, with tailored precision settings and project coordinate elevation workflows. Surveying teams processed high precision field surveys in AutoCAD and maintained local coordinate networks to preserve site-level accuracy, while using project templates and standardized measurement record formats to ensure consistency across job sites. The deployment included automation-aligned practices typical of Computer-Aided Design (CAD) systems, such as layer management, annotation standards, and structured data export for reporting.
Operationally, Autodesk AutoCAD was integrated into on-site surveying processes that included robotic total stations and GPS based positioning systems for materializing project coordinates and executing elevation markings and building outlines from projected axes. Governance focused on formal measurement and reporting workflows, calibration practices, and multidisciplinary collaboration between surveying, project management, and construction teams to document site progress. Explicit outcomes recorded in project documentation included processing survey data in AutoCAD with an achieved error margin below 5 mm, and ongoing maintenance of local coordinate networks to support repeatable site measurements.
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Adams Consulting Engineers | Professional Services | 50 | $6M | Australia | Autodesk | Autodesk AutoCAD | Computer-Aided Design (CAD) | 2018 | n/a |
In 2018 Adams Consulting Engineers implemented Autodesk AutoCAD as its primary Computer-Aided Design (CAD) authoring platform. The deployment targeted the firm’s engineering and drafting teams across its Australia office, provisioning workstation-based CAD authoring with a central project file repository and standardized template library to support civil engineering drafting and structural detailing work.
Autodesk AutoCAD was configured to support core CAD capabilities typical of the Computer-Aided Design (CAD) category, including 2D drafting and documentation, 3D modeling and visualization, annotation and dimensioning, layer and block management, plotting and output standards, and scriptable customization for repetitive drafting tasks. Configuration work emphasized a consistent company CAD standards set, drawing templates, title blocks, and a managed block library to ensure uniform deliverables for engineering projects.
Rollout and governance focused on skills alignment and training, informed by internal skill records showing both AutoCAD and Revit expertise among staff and repeated investment in Revit and AutoCAD training. Implementation included staged user onboarding for drafting and structural personnel, establishment of file and template governance, and ongoing skill development to align Autodesk AutoCAD usage with the firm’s civil and structural engineering drafting practices.
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Airbus | Aerospace and Defense | 56000 | $34.0B | France | Autodesk | Autodesk AutoCAD | Computer-Aided Design (CAD) | 2016 | n/a |
In 2016, Airbus implemented Autodesk AutoCAD within its engineering toolchain as part of a broader Computer-Aided Design (CAD) strategy for product design and structural optimization. The rollout sat alongside active use of Autodesk Inventor and the Fusion 360 innovation platform to pursue generative design experiments led by the Emerging Technologies and Concepts Division in Hamburg, Germany.
The implementation emphasized generative design and topology optimization capabilities typical of Computer-Aided Design (CAD) workflows, leveraging cloud compute to iterate at scale. Engineers defined strict design objectives including maximum thickness, limited attachment points, load requirements and access openings, then used generative algorithms to explore structural lattice geometries inspired by bone growth and to evaluate resistance and manufacturability across thousands of permutations, with roughly 10,000 design variations produced for the partition described.
Integration points in the program included collaboration with Autodesk Research for algorithmic support and a production pathway into additive manufacturing, where over 100 ultra-resistant metal alloy components were 3D printed and assembled to form the bionic partition. Operational coverage spanned aerospace structural engineering, prototype manufacture and testing for Airbus A320 cabin architecture, with the part entering certification trials aimed at in-service introduction and later expansion to larger components such as cockpit walls and galleys.
Governance and workflow changes centered on upfront specification of objective-driven constraints, iterative simulation and validation cycles, and coordination between design, materials and manufacturing teams to align safety priorities with weight reduction targets. Outcomes cited by Airbus include a partition that is 45 percent lighter than prior designs, a 30 kilogram saving per partition and 500 kilograms per aircraft for the tested device, a projected annual fuel reduction figure tied to that weight saving, demonstration of a part able to withstand 16 g load conditions, and a manufacturing process that reduced raw material waste by about 95 percent compared with conventional milling.
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Akebono Brake Industry Co. | Manufacturing | 5826 | $1.0B | Japan | Autodesk | Autodesk AutoCAD | Computer-Aided Design (CAD) | 2014 | n/a |
In 2014, Akebono Brake Industry Co. implemented Autodesk AutoCAD as its Computer-Aided Design (CAD) tool to support engineering and product design activities. The deployment targeted design engineering teams based in Saitama, Japan, and established Autodesk AutoCAD as the primary environment for 2D drafting, part-level stress simulation, and engineering documentation.
Autodesk AutoCAD was used for preparing and revising 2D drawings and for performing stress simulation of parts as part of component verification workflows. The application operated alongside Creo Parametric and NX8 processes, enabling creation and revision of 3D parts and conversion of 3D assemblies into customer 3D deliverables for downstream exchange.
Operational workflows integrated Autodesk AutoCAD outputs with MS Excel for calculation reporting and with MS PowerPoint for investigation and customer-facing reports, and supported measurement-driven dimension evaluation during product inspections. The implementation emphasized consistent drawing revision processes, interoperability for assembly conversion, and engineering test and troubleshooting workflows to address customer claims.
Governance focused on engineering change control and drawing review procedures executed by design engineers, embedding Autodesk AutoCAD into routine technical support, continuous improvement, and testing activities. Autodesk AutoCAD, as a Computer-Aided Design (CAD) application, served as the central drafting and simulation tool within Akebono Brake Industry Co. engineering operations.
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Allison Transmission | Manufacturing | 3700 | $3.0B | United States | Autodesk | Autodesk AutoCAD | Computer-Aided Design (CAD) | 2019 | n/a |
In 2019 Allison Transmission implemented Autodesk AutoCAD to support manufacturing and fabrication engineering workflows, deploying Autodesk AutoCAD as the primary Computer-Aided Design (CAD) tool for production drawing and product tooling layouts. The deployment targeted manufacturing and fabrication engineers at Allison Transmission Inc, Indianapolis, IN, with the Senior Manufacturing Engineer role explicitly charged with maintaining manufacturing standards and participating in DFA and DFM activities that feed into new product processes and production equipment design.
The Autodesk AutoCAD environment was configured to deliver standard 2D drafting and 3D layout capabilities typical of Computer-Aided Design (CAD) implementations, including company drawing templates, layer and annotation standards, and centralized CAD libraries for repeatable components. Outputs from the CAD environment were used to generate detailed fabrication drawings and production documentation that inform CNC programming and CMM inspection programming, aligning design deliverables with shop floor fabrication requirements.
Operational scope emphasized manufacturing engineering, fabrication, and quality engineering functions, with Autodesk AutoCAD supporting activities related to throughput capability and continuous improvement of production equipment. The CAD workstreams were integrated into DFA and DFM review cycles and used to produce documentation that supports QS and TS quality system requirements, reflecting the role of CAD in cross-functional design for manufacturability processes.
Governance focused on formalizing drawing standards, revision control, and release workflows under the oversight of manufacturing engineering leadership, with the Senior Manufacturing Engineer accountable for enforcing standards and for driving process changes that align CAD outputs with manufacturing and quality controls. Configuration and role-based access were aligned to support iterative design reviews and to standardize how fabrication drawings are authored and handed off to production engineering teams.
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Utilities | 115 | $50M | New Zealand | Autodesk | Autodesk AutoCAD | Computer-Aided Design (CAD) | 2019 | n/a |
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Manufacturing | 125000 | $15.2B | United States | Autodesk | Autodesk AutoCAD | Computer-Aided Design (CAD) | 2020 | n/a |
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Manufacturing | 5000 | $600M | Vietnam | Autodesk | Autodesk AutoCAD | Computer-Aided Design (CAD) | 2022 | n/a |
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Consumer Packaged Goods | 4074 | $1.2B | Australia | Autodesk | Autodesk AutoCAD | Computer-Aided Design (CAD) | 2021 | n/a |
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Construction and Real Estate | 37246 | $8.6B | Canada | Autodesk | Autodesk AutoCAD | Computer-Aided Design (CAD) | 2019 | n/a |
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Buyer Intent: Companies Evaluating Autodesk AutoCAD
- noa, a United Kingdom based Professional Services organization with 160 Employees
- Van Berkom and Associates, a Canada based Banking and Financial Services company with 30 Employees
- Sweco, a Sweden based Professional Services organization with 18651 Employees
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