List of Gleason KISSsoft Customers
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Since 2010, our global team of researchers has been studying Gleason KISSsoft 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 Gleason KISSsoft 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 Gleason KISSsoft for Computer-Aided Design (CAD) include: FAAC Technologies, a Italy based Manufacturing organisation with 4400 employees and revenues of $700.0 million, Marelli Europe, a Italy based Manufacturing organisation with 3864 employees and revenues of $640.0 million, Came Group, a Italy based Manufacturing organisation with 2750 employees and revenues of $406.0 million, Mecaer Aviation Group (MAG, a Italy based Aerospace and Defense organisation with 550 employees and revenues of $173.0 million and many others.
Contact us if you need a completed and verified list of companies using Gleason KISSsoft, 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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Came Group | Manufacturing | 2750 | $406M | Italy | Gleason | Gleason KISSsoft | Computer-Aided Design (CAD) | 2018 | n/a |
In 2018 Came Group implemented Gleason KISSsoft for Computer-Aided Design (CAD) to support R&D mechanical design and gearbox engineering within its engineering organization. The deployment targeted mechanical designers, project engineers, and the PDM Windchill administrator role, aligning gear design workflows with product development activities such as BOM management, supplier liaison, verification, assembly, and testing over multi-year projects.
Gleason KISSsoft was used for detailed gearbox design and gear calculation tasks, supporting geometry definition, strength and durability analysis, and the iterative sizing of gear trains that feed into CAD models and FEM validation. The implementation leveraged category-aligned capabilities for precision gear calculation and design validation, and Gleason KISSsoft was referenced directly in gear design and testing activities alongside CAD and simulation tools.
Operationally the Gleason KISSsoft capability operated in conjunction with Creo Parametric, Creo Simulate, Creo Mechanism, Inventor, and the company PDM system Windchill, forming an engineering toolchain for model creation, simulation-driven validation, and BOM synchronization. Use extended across the main CAME organization and acquired entities such as BPT, with KISSsoft outputs consumed by CAD files and PDM records to maintain traceability between calculations, component geometry, and manufacturing documentation.
Governance and rollout were administered by the PDM Windchill administrator and the CAD Manager, who organized PDM structures, standardized CAD practices for Creo Parametric, and embedded KISSsoft-driven gear design steps into existing verification and testing processes. The implementation emphasized process consistency for mechanical part design, test planning, and supplier data exchange, tying Gleason KISSsoft calculations into established engineering review and assembly workflows.
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FAAC Technologies | Manufacturing | 4400 | $700M | Italy | Gleason | Gleason KISSsoft | Computer-Aided Design (CAD) | 2018 | n/a |
In 2018, FAAC Technologies implemented Gleason KISSsoft within its R&D engineering toolchain to support Computer-Aided Design (CAD) workflows for transmission development. FAAC Technologies used Gleason KISSsoft to support Computer-Aided Design (CAD) activities in R&D mechanical engineering for swing gate door transmission concepts, aligning CAE-driven sizing and analysis with mechanical and oleo-pneumatic design work.
Gleason KISSsoft was configured to handle transmission calculation and component sizing tasks that fed into finite element analysis coordination led by R&D mechanical engineers. The implementation supported iterative CAE workflows, combining gear and shaft calculations, load assessment, and design variant studies typical of mechanical transmission engineering.
The KISSsoft deployment was integrated operationally with Siemens NX for CAD geometry exchange, Matlab and Simulink for control and actuation modeling, Python for scripting and automation of calculation routines, and Amesim for system-level simulation. Operational coverage included R&D mechanical engineering teams and the internal testing laboratory where test programmes for automation were designed and executed, enabling a design to test loop across virtual sizing and physical validation.
Governance centered on engineer-led coordination of finite element analysis across active project groups, with structured handoffs between sizing, CAE, and test program design. Workflows emphasized repeatable calculation procedures and traceable model inputs to support multi-disciplinary collaboration between mechanical design, simulation, and lab testing.
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Marelli Europe | Manufacturing | 3864 | $640M | Italy | Gleason | Gleason KISSsoft | Computer-Aided Design (CAD) | 2016 | n/a |
In 2016, Marelli Europe implemented Gleason KISSsoft as part of its Computer-Aided Design (CAD) toolset to support gear design and mechanical component validation workflows. Gleason KISSsoft was deployed to address verification, design and correction of gear wheels and to provide specialized gear calculation capabilities within the company CAD environment.
The implementation emphasized gear-specific calculation and validation capabilities, with Gleason KISSsoft used for tooth geometry, strength checks and correction design workflows. The application was operated alongside other CAE tools listed by the engineering simulation organization, including Ansys and Abaqus, enabling numerical-experimental correlation and software benchmarking across structural, modal, harmonic and NVH analysis disciplines.
Operational scope included R&D and Powertrain engineering functions, support for product lines, prototype departments and plant engineering, and coordination across Marelli sites including Bologna and the Modugno R&D center. The engineering simulation group led governance for the rollout, defining best practices for analysis and CAE methodology, coordinating national and international CAE analyst training and selection, and embedding Gleason KISSsoft into funded project workflows and benchmarking activities.
Marelli Europe Gleason KISSsoft Computer-Aided Design (CAD) was positioned as a discipline-specific design and verification capability within the broader simulation and calculation framework, supporting mechanical and mechatronic component development activities without explicit claims about measured outcomes or cost impacts.
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Mecaer Aviation Group (MAG | Aerospace and Defense | 550 | $173M | Italy | Gleason | Gleason KISSsoft | Computer-Aided Design (CAD) | 2020 | n/a |
In 2020, Mecaer Aviation Group implemented Gleason KISSsoft as part of its Computer-Aided Design (CAD) toolset to support mechanical design and gearbox analysis for aerospace applications. The deployment targeted engineering and R&D workflows within the Borgomanero facility in Piedmont, aligning with the companys aerospace and defense product portfolio and a 550-employee organizational scale.
Gleason KISSsoft was used for detailed gearbox and component-level analysis, supporting gear geometry modeling, strength and life assessment, and integration of component BOMs into mechanical assemblies. Engineers applied KISSsoft outputs alongside CATIA V5 models to validate gear interfaces and to inform sizing decisions, with configuration work focused on interoperability with CAD assemblies and export of calculation reports for qualification.
The implementation operated in conjunction with system-level simulation tools and engineering scripts used by the team, including ADAMS and AMESim for high-frequency hydraulics simulation and Python and MATLAB for thermal and circuit analysis. Operational scope covered hydraulics performance engineering, test bench design, component qualification and international supplier collaboration across Europe, with KISSsoft results feeding technical reports and experimental test plans.
Governance emphasized technical reporting and formal qualification documentation in English, and the tool supported end-to-end activities from component analysis to test-bench validation and production oversight. Practical outcomes documented in the engineering record include use of KISSsoft for gearbox analysis in proposals, contribution to test bench design, and linkage to R&D projects that led to a patent filing.
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