List of Siemens NX MCD Customers
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Since 2010, our global team of researchers has been studying Siemens NX MCD 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 Siemens NX MCD for Digital Twin 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 Siemens NX MCD for Digital Twin include: Festo, a Germany based Manufacturing organisation with 20545 employees and revenues of $4.03 billion, Middlesex University, a United Kingdom based Education organisation with 3355 employees and revenues of $178.0 million, Comecer, a Italy based Manufacturing organisation with 550 employees and revenues of $147.0 million, A.G. Stacker, a United States based Manufacturing organisation with 70 employees and revenues of $7.0 million and many others.
Contact us if you need a completed and verified list of companies using Siemens NX MCD, 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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A.G. Stacker | Manufacturing | 70 | $7M | United States | Siemens Digital Industries Software | Siemens NX MCD | Digital Twin | 2024 | n/a |
In 2024, A.G. Stacker implemented Siemens NX MCD in the Digital Twin category to support machine design and validation. The deployment used Siemens NX Mechatronics Concept Designer to create digital representations of machine concepts and to drive early-stage validation of mechanical and control interactions.
Configuration emphasis centered on building synchronized multi-domain models and concept-level mechatronic assemblies, enabling kinematic and system-level validation before physical prototyping. Siemens NX Mechatronics Concept Designer was applied to model-based design workflows that combine mechanical geometry, motion simulation, and control strategy emulation within a single design environment.
The implementation was integrated into engineering and validation workflows for machine engineering, with digital twin models used during concept reviews and design verification cycles. Siemens highlights A.G. Stacker as a customer success for NX Mechatronics Concept Designer, reflecting operational adoption, while the public source does not detail specific integrations, governance structures, or module-level scope for the implementation.
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Comecer | Manufacturing | 550 | $147M | Italy | Siemens Digital Industries Software | Siemens NX MCD | Digital Twin | 2022 | n/a |
In 2022 Comecer implemented Siemens NX MCD to create a Digital Twin for its Baby Phill automatic filling, stoppering and capping machine. The Digital Twin deployment targeted complex mechanical kinematics that impeded motor sizing, and Siemens collaborated with Comecer's internal Application Center of Bologna to virtualize product development and accelerate time to market.
The implementation developed a full Digital Twin of the machine inside Siemens NX MCD, capturing torque information from simulated operation to dimension motors and inform mechanical design. The project also established a Software in the Loop simulation approach to compress software development cycles, and enabled end to end virtual testing of every component prior to physical fabrication.
Integration work included coupling the NX MCD Digital Twin with PLC SIM Advanced for control logic simulation, and validating final hardware choices by configuring the Digital Twin to the target automation stack. Baby Phill is now fully Siemens equipped with an S7 1516T controller and twelve S210 drives with related 1FK2 motors, and the Digital Twin served as the virtual prototype for those components.
Operational coverage focused on product engineering and controls within Comecer SpA Castel Bolognese Italy, impacting mechanical design, controls engineering, software development and validation workflows. The Digital Twin replaced the need for iterative mechanical prototyping for motor selection and informed the integration between the isolator and the machine design.
Governance and rollout emphasized virtual validation prior to mechanical realization, with Siemens providing lead technical support and the internal Application Center of Bologna participating in simulation and testing activities. The explicit outcomes reported include a reduction in software development time through fully Software in the Loop simulation and Comecer's first integrated digitalization of isolator and machine systems.
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Festo | Manufacturing | 20545 | $4.0B | Germany | Siemens Digital Industries Software | Siemens NX MCD | Digital Twin | 2017 | n/a |
In 2017, Festo deployed Siemens NX MCD in Esslingen, Germany to design and virtually commission flexible packaging and transport systems for the cosmetics industry. Siemens NX MCD was applied as a Digital Twin platform to represent mechanical, electrical, and control behavior of modular packaging equipment prior to physical assembly.
The implementation centered on virtual commissioning and multi-domain modeling, with engineers using Siemens NX MCD to simulate kinematics, validate control logic sequences, and test machine-to-machine material flows. Configuration work emphasized re-usable machine templates and parameterized modules to support flexible product variants common in cosmetics packaging.
Operational coverage was focused on the Esslingen engineering site, affecting mechatronics, controls engineering, and prototyping functions within product development. The workflow shifted validation earlier into the design phase, so software-in-the-loop and controller emulation steps were embedded into release gates for new machine designs.
Outcomes reported included the ability to validate machine behavior before building physical prototypes and a reduction in development time of up to 30 percent as a result of virtual commissioning with Siemens NX MCD. The engagement highlights how a Digital Twin approach can shorten iteration cycles and reduce dependence on physical prototype builds in discrete manufacturing engineering.
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Middlesex University | Education | 3355 | $178M | United Kingdom | Siemens Digital Industries Software | Siemens NX MCD | Digital Twin | 2019 | n/a |
In 2019 Middlesex University implemented Siemens NX MCD to create a Digital Twin capability within its mechatronics curriculum. The deployment used Siemens NX Mechatronics Concept Designer alongside Siemens TIA Portal and PLCSIM Advanced to model and virtually commission a conveyor belt system, establishing Siemens NX MCD as the primary digital modeling and virtual commissioning tool for the project.
The implementation focused on digital twin modeling, virtual commissioning workflows, and PLC simulation, enabling students to execute control logic tests and commissioning sequences against a simulated plant model. The functional configuration emphasized model-driven design, automated simulation runs, and student-accessible simulation sessions that replicated conveyor belt behaviors, sensors, actuators, and PLC I O interactions.
Integrations were explicit, with Siemens NX MCD connected to TIA Portal for control configuration and to PLCSIM Advanced for realistic PLC simulation, creating an end to end virtual commissioning architecture. Operational scope targeted the mechatronics teaching labs and coursework, enabling remote students to complete practical commissioning tasks when they lacked access to the physical lab. Governance and rollout concentrated on embedding virtual commissioning into assessment workflows and lab procedures, allowing students to test and commission designs without access to the physical equipment as part of the connected curriculum during Covid-19.
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