
In today’s world of fast-paced product innovation and growing regulatory demands, product development teams need a robust and integrated way to manage the entire lifecycle of complex systems. That’s where Codebeamer, a powerful Application Lifecycle Management (ALM) solution by PTC, comes into play. If you’re looking for a way to unify teams, streamline compliance, and deliver high-quality products faster, Codebeamer might be your answer.
Let’s explore what is PTC Codebeamer, how it helps organizations in regulated industries, and why it stands out as a next-generation ALM tool.
What is Codebeamer?
PTC Codebeamer is a modern, cloud-ready ALM platform designed to support complex product and software development processes. It provides end-to-end traceability, collaborative workflows, and built-in support for compliance management.
From requirements capture and risk management to testing and quality assurance, Codebeamer consolidates every step of the development lifecycle into a single platform. It enables teams to collaborate in real-time while maintaining full traceability and regulatory alignment.
Why Codebeamer Was Built: Solving Modern ALM Challenges
The development of Codebeamer was driven by a growing need in the industry for a more cohesive, scalable, and compliance-oriented approach to ALM. As products become increasingly complex and interdisciplinary, and as regulatory scrutiny intensifies across industries, traditional methods and legacy tools can’t keep up. Development teams need solutions that not only track progress but actively facilitate collaboration, traceability, and quality.
Legacy ALM tools and document-based processes often fall short in today’s environment of continuous innovation and regulatory pressure. Teams struggle with:
- Disconnected systems and data silos
- Manual compliance documentation
- Inconsistent version control
- Lack of visibility into project progress
Codebeamer was purpose-built to eliminate these issues. By connecting stakeholders across the development lifecycle, it fosters collaboration and ensures that quality, safety, and compliance are built into every step. Its integrated and modern architecture helps reduce risk, streamline documentation, and improve overall product development agility.
Key Features of Codebeamer
In a complex product development environment, teams need more than just a basic task tracker or document repository. They need a solution that brings structure, consistency, and traceability to every phase of development. Codebeamer delivers this with a rich suite of integrated features tailored to meet the needs of highly regulated industries and cross-functional engineering teams. From capturing requirements to automating compliance tasks, Codebeamer equips teams with the tools they need to work efficiently and deliver with confidence.
Requirements Management
Capture, analyze, and manage requirements in real-time. Codebeamer offers traceable requirement hierarchies and collaborative tools to ensure every stakeholder is aligned.
Risk Management
Integrated risk management tools help teams conduct FMEA, hazard analysis, and implement mitigation plans. Built-in support for ISO 14971 and other standards makes it ideal for regulated industries.
Test Management
Manage both manual and automated testing from a unified dashboard. Track test coverage, link tests to requirements, and generate audit-ready reports.
Compliance Automation
With templates and frameworks for ISO 13485, IEC 62304, ASPICE, and FDA requirements, Codebeamer automates much of the documentation and validation process.
Workflow Automation & Collaboration
Build custom workflows to streamline development, reviews, and approvals. With role-based access, teams can collaborate securely across global locations.
Codebeamer in Regulated Industries
Codebeamer plays a crucial role in helping highly regulated industries stay compliant, efficient, and innovative. These sectors face strict guidelines, frequent audits, and intense pressure to ensure product quality and safety. Codebeamer is designed to simplify compliance while improving traceability and development agility. With its built-in support for global standards and frameworks, it enables companies to operate confidently within even the most complex regulatory landscapes.
Codebeamer shines in industries where compliance, quality, and traceability are non-negotiable:
- Medical Devices: Aligns with FDA, EU MDR, ISO 13485, and IEC 62304.
- Automotive: Meets ASPICE and ISO 26262 standards.
- Aerospace & Defense: Supports DO-178C and related compliance frameworks.
Built-in templates and best practices help organizations pass audits faster and with fewer headaches. In an environment where missteps can be costly, Codebeamer offers peace of mind and a path toward continuous improvement.
PTC Codebeamer vs Legacy ALM Tools
Unlike legacy ALM systems or spreadsheets, Codebeamer provides real-time traceability and centralized data access. It replaces fragmented, error-prone processes with a single digital thread across the development cycle. This results in:
- Faster innovation
- Reduced compliance risk
- Improved team productivity
As product development becomes more complex and global, the need for modern, integrated ALM platforms becomes critical. Codebeamer gives teams the visibility, traceability, and automation they need to stay ahead of the curve.
Codebeamer Integration with PLM and DevOps
PTC Codebeamer integrates seamlessly with Windchill PLM, GitHub, Jenkins, Jira, and other DevOps tools. This helps teams link software development with hardware design and manage the entire product lifecycle under one roof.
The synergy between Codebeamer and PLM tools ensures better change control, faster releases, and fewer miscommunications.
Benefits of Using Codebeamer
When it comes to modern product development, having the right ALM tool can make all the difference. Codebeamer offers a comprehensive platform that improves productivity, enhances compliance, and promotes innovation across cross-functional teams. Its intuitive interface, real-time dashboards, and robust integrations help reduce overhead and eliminate bottlenecks.
For organizations working in high-stakes, highly regulated environments, these benefits can translate into:
- Improved time-to-market
- Simplified compliance and audits
- Ensured quality through real-time test and risk tracking
- Enabled collaboration across departments and time zones
- Connected software, hardware, and regulatory processes in one system
Why Engineers and Quality Teams Are Adopting Codebeamer
Codebeamer provides engineering and QA teams with a flexible, scalable platform tailored to their unique challenges. Whether it’s tracing a bug back to a requirement or preparing for an FDA audit, Codebeamer simplifies the process. Its visual dashboards, process templates, and customizable workflows empower teams to focus on innovation instead of paperwork.
Frequently Asked Questions About PTC Codebeamer
When exploring application lifecycle management (ALM) solutions, decision-makers often seek clarity on what sets each platform apart, especially when it comes to managing complex, regulated, and connected product development. The following FAQs address the most common questions engineering leaders, IT managers, and executives ask when evaluating PTC Codebeamer. From its core functionality and compliance capabilities to its role in agile and hybrid development, these answers explain how Codebeamer supports digital transformation across the entire product lifecycle.
What is PTC Codebeamer and how does it work?
PTC Codebeamer is an application lifecycle management (ALM) platform that centralizes the management of requirements, risks, tests, and releases across the entire development lifecycle. It connects teams through digital traceability, ensuring all stakeholders (engineering, quality, etc) work from a shared, up-to-date source of truth. Codebeamer provides configurable workflows, templates, and integrations to align development with compliance and quality standards. This unified approach helps teams deliver safer, more reliable, and higher-quality products faster.
What is ALM (Application Lifecycle Management) and why do companies need it?
ALM, or Application Lifecycle Management, is the process of managing a product’s software lifecycle, from planning and design to development, testing, deployment, and maintenance. Companies need ALM to coordinate cross-functional teams, maintain traceability, and ensure consistent quality across evolving software systems. As products become more software-driven, ALM bridges engineering and IT disciplines, reducing risk and rework. With tools like Codebeamer, organizations can streamline collaboration and ensure that business, development, and compliance goals stay aligned.
How does Codebeamer differ from traditional PLM or project management tools?
Unlike PLM (Product Lifecycle Management) systems that focus primarily on mechanical and hardware product data, Codebeamer is purpose-built for managing software and systems development. It provides capabilities for requirements management, test management, and risk tracking, which traditional PLM and project tools often lack. While PLM manages “what is built,” ALM (and Codebeamer specifically) manages “how it’s built.” The two systems are complementary. When integrated, they deliver a seamless digital thread between design, engineering, and software delivery.
What are the key features of Codebeamer ALM?
Codebeamer includes end-to-end traceability, configurable workflows, integrated risk and test management, and advanced reporting dashboards. It offers requirements versioning, change control, compliance templates, and collaboration tools to improve transparency and quality throughout development. Built-in integrations connect to tools like Jira, GitHub, and PTC Windchill, creating a unified digital ecosystem. Together, these capabilities help organizations manage complexity while improving speed, visibility, and governance.
How does Codebeamer support requirements management?
Codebeamer provides a structured framework for capturing, organizing, and linking requirements with downstream development and testing activities. It ensures every requirement is traceable to its implementation and validation, helping teams maintain compliance and quality assurance. Version control and baselining features preserve a complete history of changes, reducing confusion and ensuring audit readiness. This makes Codebeamer a powerful solution for managing both simple and highly complex requirements workflows.
Who uses Codebeamer and what industries benefit from it?
Codebeamer is used across industries where product complexity, regulation, and safety are high priorities, such as medical devices, automotive, aerospace, defense, and industrial automation. It supports organizations that need to manage software-driven innovation while meeting strict quality and compliance standards. Engineering, quality assurance, and regulatory teams benefit most from its structured workflows and traceability. Companies building connected, high-tech, or safety-critical products find Codebeamer essential for managing lifecycle visibility.
Can small or mid-sized companies use Codebeamer, or is it just for large enterprises?
While Codebeamer is built to scale for large enterprises, it’s also an excellent fit for small-to-mid-sized organizations that want to mature their development processes. Its modular design and cloud deployment options allow companies to start small and expand as their needs evolve. PTC offers flexible licensing and implementation paths tailored to business size and industry. Even smaller teams gain enterprise-level control and visibility, without the overhead of a complex setup.
What are the core modules or capabilities of Codebeamer?
Codebeamer includes key modules for requirements management, risk and test management, change and configuration control, and reporting and analytics. Each module integrates seamlessly, ensuring a continuous digital thread from concept to release. Specialized templates and frameworks, such as ISO 26262 (automotive), IEC 62304 (medical), and DO-178C (aerospace), are built-in to streamline compliance. Together, these modules create a unified environment for managing all aspects of complex product development.
How does Codebeamer help manage complex product development and software delivery?
Codebeamer connects multiple disciplines – hardware, software, and systems engineering – into a single collaborative environment. It synchronizes development tasks, tests, and requirements to ensure teams stay aligned even in fast-paced, iterative projects. By automating traceability and approval workflows, it reduces errors and accelerates decision-making. The platform’s scalability and integrations make it ideal for managing highly complex, regulated, or geographically distributed development efforts.
What makes Codebeamer unique compared to other ALM tools?
Codebeamer stands out for its deep compliance support, end-to-end traceability, and configurable process templates designed for regulated industries. It’s one of the few ALM platforms that seamlessly connects with PTC’s ecosystem – including Windchill and ThingWorx – enabling a true digital thread across engineering and software domains. Its no-code workflow engine allows teams to tailor processes without development overhead. In short, Codebeamer offers the flexibility of an agile tool with the rigor of enterprise-grade compliance management.
Does Codebeamer support traceability across development, testing, and release?
Yes, traceability is one of Codebeamer’s strongest features. Every artifact – from requirements and risks to tests and releases -is linked, allowing teams to visualize dependencies and verify full coverage. Its Traceability Browser lets users drill down into upstream and downstream relationships to assess change impacts instantly. This level of visibility ensures nothing is missed and that regulatory documentation is always audit-ready.
How does Codebeamer help with audits and regulatory compliance (e.g., ISO, FDA, automotive)?
Codebeamer simplifies compliance by automating documentation and aligning workflows with key industry standards. It includes templates for ISO 26262 (automotive), IEC 62304 (medical), and FDA 21 CFR Part 11 (life sciences), among others. Teams can generate pre-configured audit trails and traceability reports on demand, saving time and reducing risk. Its built-in e-signatures, permissions, and validation workflows make it ideal for highly regulated environments.
How does Codebeamer support agile, DevOps, and hybrid development methodologies?
Codebeamer’s flexible architecture supports agile, waterfall, and hybrid methodologies, allowing teams to customize workflows to their preferred approach. It integrates seamlessly with DevOps tools such as Jenkins, GitLab, and Jira, creating continuous integration and delivery pipelines. Backlogs, sprints, and user stories can be managed alongside compliance and risk processes in one platform. This hybrid adaptability helps organizations modernize without abandoning established practices.
What reporting and analytics capabilities does Codebeamer provide?
Codebeamer offers configurable dashboards, KPIs, and reports to track progress, quality, and compliance metrics across projects. Real-time analytics visualize dependencies, bottlenecks, and change impacts, helping teams make data-driven decisions. Reports can be exported or shared automatically for audits, management reviews, or performance tracking. These insights improve transparency and promote continuous improvement across development teams.
Does Codebeamer support risk management and mitigation workflows?
Yes, Codebeamer includes built-in risk management modules that help identify, assess, and mitigate risks throughout the development lifecycle. Risks can be linked to requirements, tests, and controls, maintaining full traceability for compliance documentation. Configurable risk matrices and failure mode analyses (FMEA) ensure proactive decision-making. This structured approach reduces the chance of costly errors and strengthens product safety and reliability.
Is Codebeamer Right for You?
If your organization develops complex products, especially in regulated industries, PTC Codebeamer is an ALM platform worth considering. It delivers speed, compliance, and collaboration in a single solution, making it easier to innovate with confidence.
At EAC, we work alongside manufacturers and product development teams to fix the broken parts of product development by connecting systems, people, and processes. We help organizations implement and optimize platforms like Codebeamer so their teams can manage complex development lifecycles with confidence and maintain compliance without slowing innovation. We also share practical insights and resources that help engineering leaders evaluate their options and make well-informed decisions.
Looking to better understand how essential ALM is to regulated companies? Check out our guide Digital Transformation for Engineering Leaders: Why ALM is the Foundation.

In today’s world, it’s not uncommon for companies to be rich in data but poor in insights. Despite having access to a wealth of information, organizations struggle to properly analyze performance and drive transformational improvements. This is where ThingWorx Digital Performance Management (DPM) steps in to bridge the gap.
This week in your factory, you’ve applied maximum effort, pouring countless hours into perfecting your product. As the work week ends, a feeling of slight disappointment remains.
Could you have accomplished more? Where did it go awry? You may not be able to find the answers on your own, leaving your factory inefficient and operating below its full potential.
If this is you, look no further. With the capabilities of Thingworx Digital Performance Management, you will unleash an untapped potential of data and boost your manufacturing processes.
What is Digital Performance Management?
ThingWorx Digital Performance Management (DPM) is a cutting-edge solution designed to help organizations identify, prioritize, and improve production issues.
By capturing lost production hours and their causes, DPM indicates where to focus for the most critical impact. Also, it optimizes the finite time available, allowing organizations to reclaim lost hours and increase effective time by 20% or more. Thus, directly impacting the bottom line.
How Does DPM Work?
Consider a manufacturing facility that can produce one unit per hour. In a week with 88 hours worked, the facility manages to manufacture only 44 units. Let’s say 12 hours are lost through planned downtime and 14 hours are lost due to changeovers.
That leaves about 18 hours unaccounted for. Where did those come from? With ThingWorx DPM, you can quickly identify issues, and why they happened, and then take appropriate actions to fix them.
Moreover, DPM calculates and analyzes discrepancies, providing valuable insights to improve productivity. DPM is a comprehensive toolset that propels organizations towards peak performance by tracking performance, conducting in-depth analysis, planning, and validating improvements.
The Production Dashboard
One feature included with DPM is the Production Dashboard. The visual dashboard is a crucial tool for supervising shift performance and gathering vital data to inform reporting and analysis. It is designed for supervisors and line managers to track productivity across various production lines.

Some key features of the Production Dashboard include:
Provides insights into shift progress at the production block level
Allows for automated and manual data entry, including reason codes to capture all losses
And offers a simplified interface to minimize disruption
Bottleneck Analysis
The Bottleneck Analysis tool is designed to automatically detect and monitor the most significant bottlenecks in your factory, providing valuable analysis and insights into OEE and OLE.
One of the challenges that customers face is a lack of visibility into bottlenecks, which leads to a disconnect between continuous improvement efforts and their impact on the business. However, bottlenecks are often dynamic and complex.
To address these challenges, DPM offers key capabilities to help identify and resolve:
Automatically identifying and tracking bottlenecks.
Systematic identification of the top constraints, which can significantly increase factory efficiency by 5-20%.
Management of the dynamic nature of competing bottlenecks.
Overall, DPM works relentlessly, making up for lost time by tracing the root cause of issues and providing precise remedies to ensure smooth and efficient functionality. Consider DPM an invaluable employee, working tirelessly around the clock without additional overtime costs!
Accelerate Problem Solving with DPM
DPM’s capabilities extend beyond surface-level analysis. By combining Pareto analysis and time loss analytics, DPM users can uncover and address a significant percentage of production problems.
Additionally, with the further integration of AI and machine learning, DPM streamlines the identification of patterns in data, resulting in faster problem-solving and decision-making.
For instance, a DPM user noticed quality losses between 3 p.m. and 4 p.m. Thanks to DPM’s automated analysis, the manufacturing team quickly determined that the issue was caused by a glare from the sunset, making the inspection camera unreliable.
All in all, DPM helped accelerate the problem-solving process saving valuable time and resources.
Reap the Benefits
Digital Performance Management is as remarkable as it sounds. DPM holds the secret to your production improvements and is ready to share them with you. Discover the plethora of benefits that are tied to DPM:
Standardized Measurement: DPM provides a consistent and standardized approach to measure losses, ensuring accurate evaluation of bottlenecks, and their impact on performance.
Efficient Root Cause Analysis: Leveraging AI technology, DPM identifies the root causes of bottlenecks and facilitates their permanent resolution, eliminating recurring issues.
Automated Problem Identification: DPM’s powerful AI algorithms automate the process of surfacing common issues, exponentially reducing the time spent on problem-solving.
Real-time Insights: What once took months to identify critical insights now becomes easily accessible through DPM’s intuitive interface, providing teams with immediate access to actionable insights.
Get Started with DPM Today!
In conclusion, if you want to revolutionize your performance management and take your organization to new heights, it’s time to embrace Digital Performance Management.
Remember, in today’s fast-paced world, those who leverage technology to gain insights and make data-driven decisions are the ones who thrive.
Are you ready to unlock the true potential of your organization with Digital Performance Management? Talk with an expert now to take your first steps toward success.

I’m sure at least once in your life you’ve heard the saying, ‘Work smarter, not harder.’ But what a cliche, right?! Well, for those of you managing your Bill of Materials (BOMs) in Excel, it’s time to step away from the cell block prison (pun intended).
In this article, we’re going to break down what it actually means to revitalize your BOM strategy with the Digital Thread to start seeing the results you want.
What Is The Digital Thread?
First of all, let’s start with the basics. The Digital Thread is a term used to describe the seamless flow of information throughout the manufacturing process. From design and engineering to production and after-sales support. It provides a way to connect all the data and information generated at different stages and from systems of the product lifecycle.
Generally, the Digital Thread provides value by enabling better visibility and control of any processes that require or produce product data. It enables manufacturers to collaborate more effectively, automate and optimize workflows, and quickly respond to changes. All while adjusting quickly to customer needs.
Bill of Materials (BOM)
Next, let’s break down the concept of a Bill of Materials. A complete Bill of Materials (BoM) list usually contains all of the parts and components needed to create or manufacture an end product. You might think of a BoM as a recipe ingredient list. The information about each part can include details such as part names, part numbers, quantity required, and cost per unit. Not to mention, BoMs contain other relevant part details such as material type, color, or size if applicable; supplier information; serial numbers, etc.
By consolidating and organizing all the pertinent information product information, the BoM becomes a centralized resource. A critical resource that facilitates the manufacturing processes of specified products.
Ultimately, the goal of the BoM is to help track inventory and verify missing parts during assembly. Equally as important, BoMs are critical to support a healthy supply chain, as well as help with purchasing decisions and more.
The Digital Thread and Bill of Materials Working Together
Balancing a plethora of product information – it’s no surprise, the best BoM management strategy used within the industry does not leverage solely Microsoft Excel. Nor does it rely upon one Enterprise resource planning (ERP) system. Instead it works to unite data from multiple systems into a single source of truth.
Sounds great doesn’t it? But, if you’re like most – your product data lives all over the place in different systems from different departments. This situation tends to create data siloes resulting in time-consuming manual tasks using outdated operational processes. Generally, these are some of the biggest problems that inhibit manufacturers from achieving their business initiatives.
Oftentimes, during our EAC Assessments, we hear multiple teams across the enterprise and different management levels are frustrated by broken processes. In short, there is a lack of key information employees need to do their jobs right, at the time they need it most.
Meanwhile, the digital thread uses advanced technology (such as product lifecycle management systems as well as the Internet of Things) to connect critical disparate processes. This, in turn, helps minimize manual tasks, and breaks down data siloes. Implementing the digital thread to your BoM strategy creates a major impact for all stakeholders involved. For instance, design teams, engineers, manufacturing, assembly, operations, finance, purchasing, and even marketing.
How The Digital Thread Supports Engineering
Furthermore, the Digital Thread plays a crucial role in supporting engineering and bill of materials (BOM) management by providing seamless connectivity and accessibility to relevant data throughout the product lifecycle. Here’s how the digital thread benefits these areas:
1. Engineering Collaboration
Firstly, the digital thread allows engineers to collaborate effectively by providing a centralized platform for sharing and accessing engineering data. This facilitates cross-functional collaboration, enables real-time communication, and reduces errors or miscommunications during the design and development process.
2. Design Consistency
Secondly, the digital thread ensures design consistency by maintaining a single source of truth for engineering data. Changes made in the design phase are automatically propagated throughout the digital thread, ensuring that all related documents, models, and specifications remain synchronized.
3. BOM Accuracy and Visibility
The digital thread integrates BOM management, configuration management, and BoM transformation capabilities. This enables accurate and up-to-date BOMs, as the data will automatically reflect changes. Additionally, it provides real-time visibility into the BoM status, including component availability, sourcing information, and cost implications.
4. Change Management
Next, the digital thread streamlines change management processes. By automating change notifications, approvals, and tracking. Essentially, it ensures that engineering changes are effectively communicated, documented, and implemented across the relevant stages of the product lifecycle, minimizing errors and delays.
5. Manufacturing Process Optimization
By connecting engineering data with manufacturing process management, the digital thread enables better coordination and optimization of production processes. By in large, system and data integration allows for improved manufacturing planning, efficient resource allocation, and reduced lead times.
6. Enhanced Visualization and Analysis
Another example includes leveraging augmented reality (AR) design sharing to provide visual representations of designs. In detail, enabling stakeholders to view and analyze products in a virtual environment. It’s recommended to use AR to enhance design reviews, simplify communication, and facilitate better decision-making.
Overall, the digital thread improves engineering and BoM management. Markedly, by streamlining processes, enhancing collaboration, ensuring data consistency, and providing visibility across the product lifecycle. It promotes efficiency, accuracy, and agility in engineering and BoM-related activities. Leading to improved product quality and faster time to market in the long run.
How A Digital Thread BoM Strategy Streamlines Manufacturing
Simultaneously, the digital thread plays a significant role in enhancing the bill of materials (BoM) management for manufacturing, assembly, and quality control processes. In sum, here’s how the digital thread benefits these areas:
1. Manufacturing and Assembly Planning
The digital thread enables seamless integration between the BoM and manufacturing planning systems. It provides real-time visibility into the BoM, ensuring accurate and up-to-date information for manufacturing and assembly operations. This allows for efficient production planning, optimized resource allocation, and improved scheduling in all.
2. Supply Chain Integration
By connecting the BoM with supply chain management systems, the digital thread enhances supply chain visibility and collaboration. It enables better coordination with suppliers, accurate tracking of component availability, and improved procurement processes. As a result, it minimizes the risk of production delays and ensures timely delivery of materials.
3. Work Instructions and Assembly Guidance
Thirdly, the digital thread facilitates the creation and dissemination of detailed work instructions and assembly guidance based on the BoM data. This ensures that assembly operators have access to accurate and step-by-step instructions, reducing errors and improving productivity on the shop floor.
4. Quality Control and Traceability
The digital thread enables better quality control and traceability throughout the manufacturing process. By integrating the BoM with quality management systems, it ensures that quality requirements and specifications are adhered to during production. It also enables traceability of components and materials, making it easier to identify and address any quality issues or recalls.
5. Continuous Improvement and Feedback Loop
Additionally, the digital thread supports continuous improvement initiatives by capturing data and feedback from manufacturing and quality control processes. It enables the analysis of production data, identifies areas for improvement, and facilitates data-driven decision-making to enhance manufacturing efficiency and product quality.
6. Post-Market Monitoring
Finally, the digital thread extends beyond the manufacturing phase to support post-market monitoring and quality assurance. Integrating BoM data with field service management systems and customer feedback enables organizations to identify and address product issues, initiate product improvements, and provide timely support and maintenance.
All in all, the digital thread enhances BoM management for manufacturing and assembly processes by ensuring accurate and up-to-date information, facilitating supply chain integration, enabling effective work instructions, improving quality control, supporting continuous improvement efforts, and enabling post-market monitoring. Concurrently, it streamlines operations, improves product quality, and enhances customer satisfaction.
The Polaris Story
Polaris utilized PTC Windchill, an advanced product lifecycle management system, to transform their Bill of Materials into a reliable new business model backbone. As a result, it allowed them to create a connected enterprise.
Windchill PLM combines the digital thread framework with a maximized BoM and change management strategy. This powerful product lifecycle management platform organizes all information associated with the development of its products, allowing every stakeholder to access the latest up-to-date information in a dynamic format.
Once it was clear to Polaris that they had outgrown certain tools and processes, they coordinated and synchronized a digital thread of data throughout the enterprise by leveraging PTC Windchill.
As of today, Polaris’ Windchill PLM system enables them to manage and organize the bill of materials (BoM) and implemented configuration management practices. This helped transform their BoMs as needed, effectively managing changes, overseeing manufacturing processes, and utilizing augmented reality (AR) design-sharing capabilities.
By orchestrating these elements, the digital thread ensured seamless connectivity and flow of information across different stages and departments within Polaris. This enabled improved collaboration, streamlined workflows, effective change control, and enhanced manufacturing processes. On top of giving the ability to share and visualize designs using AR technology.
Conclusion
To sum it up, it’s time to put Excel away and start working smarter, not harder. Successful BoM management derives from a single source of truth throughout the enterprise in regard to all the data contained in the Bill of Materials. The Digital Thread allows for the seamless automated flow of the BoM information to create a truly connected enterprise, working in sync along every step of the manufacturing process.
Not sure where to get started? We created our assessments to help. Click here to learn more or have a conversation with our experts.