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Product life management concepts were first introduced where safety and control have been extremely important, notably the aerospace, medical device, military and nuclear industries. These industries originated the discipline of configuration management (CM), which evolved into electronic data management systems (EDMS), which then further evolved to product data management (PDM).\r\nOver the last ten years, manufacturers of instrumentation, industrial machinery, consumer electronics, packaged goods and other complex engineered products have discovered the benefits of PLM management and are adopting efficient PLM software in increasing numbers.\r\n<p class=\"align-center\"><span style=\"font-weight: bold;\">The PLM Stages</span></p>\r\n<span style=\"font-weight: bold; \">Beginning of Life (BOL):</span> The beginning of life phase includes all of the design and manufacturing, which consists of the initial conceptualization and development, and any prototypes built. Initial development has multiple sub-actions that identify all the requirements, concepts, and necessary testing. \r\n<span style=\"font-weight: bold; \">Middle of Life (MOL):</span> The middle of life phase is post-manufacturing, when your product is distributed, used, and serviced. At this point, your product is in the hands of the end user. You can collect data on any failures, maintenance rates, and user experience to get information for immediate fixes and future development.\r\n<span style=\"font-weight: bold; \">End of Life (EOL):</span> The end of life phase is the retiring, recycling, or disposing of your product. At this point, the reverse logistics happen for the company. EOL starts when users no longer have a need for the product. At this stage, companies collect information about what parts and materials are still valuable.\r\n<span style=\"font-weight: bold;\">Product lifecycle management software</span> is used to deliver all kinds of products to market, which means there are a lot of different providers out there. Its purpose today is to help organizations: \r\n<ol><li>Develop new products using CAD software</li><li>Produce and manufacture new products</li><li>Bring those products to market</li></ol>\r\nAnd increasingly, product life management software has to process the feedback from the market back to the design and production processes. To achieve these goals, product lifecycle management solutions have to do four things:\r\n<ul><li>Link together CAD metadata with a bill of materials</li><li>Manage workflows for organizations needed to bring products to market</li><li>Manage product data as they move through the product development lifecycle stages</li><li> Hook in auxiliary suppliers and business stakeholders to a shared version of truth or single source of truth.</li></ul>\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Top PLM System Software Requirements</h1>\r\n<span style=\"font-weight: bold; \">Bill of Materials.</span> Having a common source of information across your company is incredibly important during product development. That’s why a bill of materials (BOM) is key to include in your list of product lifecycle management requirements. At the very least, your system should provide a single definition of a particular product and its components. More advanced options include features specifically designed for different team members such as designers, engineers and other professionals who frequently collaborate.\r\n<span style=\"font-weight: bold; \">Computer-Aided Design Management.</span> Managing your CAD activities and documents is more than useful when it comes to PLM. Your solution should be able to manage changes to product configurations while maintaining the functional and physical attributes of a product throughout its lifecycle. Production engineering changes should proliferate throughout your processes, with the changes evident in the subsequent BOMs and plans.\r\n<span style=\"font-weight: bold; \">Manufacturing Product Management.</span> During a product’s lifecycle, you want to keep an eye on your portfolio. With portfolio management, users can determine the proper investment balance to maximize their research and development investment returns. Some systems provide strategy tools to spotlight priorities and support planning. Top PLM software can even determine the best possible investment scenario. Users can also track project progress to completion, which is automatically documented in the product record. This allows greater insight into your processes, facilitating better resource management and allocation.\r\n<span style=\"font-weight: bold; \">Product Regulation and Governance.</span> Failing to follow regulation and compliance standards is one of the quickest ways to earn your business a bad reputation. But having the right tools built into your product life management system can make staying compliant much easier than it would be otherwise. Your solution should be able to centralize relevant information and documentation, making it easier for enterprise organizations to achieve and maintain compliance. You also may choose a system that can comply with medical, environmental, safety, FSA and ISO standards depending on your industry.\r\n<span style=\"font-weight: bold; \">Project and Component Maintenance.</span> Project management tools are vital for providing users visibility into daily processes and progress. These features include tracking and scheduling capabilities, which enable you to manage product development along with resource allocation in real time. Users can also see upcoming milestones and constraints for further planning.\r\n<span style=\"font-weight: bold; \">Quote Process Management.</span> Data from many different sources is often needed during the quote process. PLM’s inherent coordination capabilities gather and organize data pertaining to product design to support your engineering teams. This includes teams developing engineer-to-order and configure-to-order products. The system only shares the necessary data, meaning your team members can spend more time focusing on their work and less on hunting down information. \r\n<span style=\"font-weight: bold; \">Risk Management. </span>This feature brings risks to users’ attention, allowing them to manage, report and mitigate those instabilities. Reducing risks early on prevents issues from growing as they move through product development unseen, reducing the overall cost of development. Some systems do this by “detecting” or “highlighting” risks, whereas some systems simply offer full visibility through PM tools.\r\n<span style=\"font-weight: bold;\">Workflow and Change Management.</span> Plainly said, this suite of PLM software tools gives users insight into product activities. Users can determine phases for a project, as well as assign milestones to keep projects on track. Some systems allow users to see all pending and implemented changes, as well as all items that endure the subsequent effects. This visibility extends to portfolio and resource management, also.\r\n\r\n","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/PLM_-_Product_Lifecycle_Management.png"},{"id":259,"title":"Quality and Life-Cycle Tools","alias":"quality-and-life-cycle-tools","description":" Assuring quality, reliability, and safety is an integral part of product development. But companies often address product quality too late, using disjoint processes with inadequate cross-functional communication. Not managing quality in an integrated way throughout the product lifecycle is costly to companies, both in profitability and reputation.\r\nAchieving product quality is a multidimensional challenge for discrete manufacturers. With an increasingly global workforce, a widespread network of contractors and suppliers, technically complex products to deliver, and a highly competitive marketplace, quality is often sacrificed in the name of globalization, profitability, or time to market – sometimes with disastrous results.\r\nTo be most effective, quality should be managed early in the product development lifecycle and consistently throughout the entire process, using cross-functional, collaborative methods so that the quality information obtained in one lifecycle stage is available to relevant processes in other lifecycle stages. What’s more, quality information must be highly visible throughout an organization to ensure that any and all decisions that may require quality data or impact product quality are informed in a timely, efficient, and accurate fashion.\r\nQuality Lifecycle Management, or QLM, provides a formalized, systematic solution to manage all aspects of product quality, reliability, and risk using methods that are fully integrated into the product development lifecycle and highly visible to all personnel with a stake in product quality.","materialsDescription":" <span style=\"font-weight: bold;\">Why manage product quality?</span>\r\nIn a perfect world, manufacturers would have a complete, accurate picture of quality as it develops and matures throughout the product lifecycle. This information would:\r\n<ul><li>Serve as a "single source of truth" providing insight for all stakeholders into the current state of product quality.</li><li>Connect top management and decision-makers with critical information to make informed decisions that impact the quality.</li><li>Help personnel across the product development lifecycle understand the quality impact of their development activities.</li><li>Unite the quality-related processes that occur throughout the product lifecycle.</li></ul>\r\n<span style=\"font-weight: bold;\">For what is QLM used?</span>\r\nQLM is used to:\r\n<ul><li>Build quality, reliability, and risk planning into the entire lifecycle.</li><li>Align functional needs to product requirements.</li><li>Ensure requirements are met by specific product characteristics.</li><li>Track characteristics systematically throughout the lifecycle.</li><li>Identify quality issues and initiate corrective actions.</li><li>Communicate and reuse corrective actions to improve products.</li></ul>\r\n<span style=\"font-weight: bold;\">What are the benefits of QLM?</span>\r\nQLM links together each of the quality, reliability, and safety activities that take place across every stage of the product development lifecycle. Through QLM, one lifecycle stage informs the next, and feedback from each stage is automatically fed into other relevant stages, creating a unified, holistic model of overall product quality.\r\nWith numerous quality, reliability, and safety processes united into a single software platform, QLM enables:\r\n<ul><li>A highly structured solution automating the workflow of quality information and feedback between product lifecycle stages.</li><li>Complete management visibility into key dimensions of product safety and reliability at any lifecycle stage.</li><li>Cross-functional collaboration across multiple departments and teams responsible for product quality, safety, and reliability.</li><li>Functional links between product requirements, product characteristics, and quality activities at each lifecycle stage.</li><li>A fully documented history of product development from a quality perspective.</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Quality_and_Life-Cycle_Tools__1_.png"}],"characteristics":[],"concurentProducts":[{"id":5918,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/AssetWise_CONNECTEdition_Logo.jpg","logo":true,"scheme":false,"title":"AssetWise","vendorVerified":0,"rating":"0.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":1,"alias":"assetwise","companyTitle":"Bentley Systems","companyTypes":["vendor"],"companyId":2776,"companyAlias":"bentley-systems","description":"Intelligently plan and implement asset performance and reliability strategies. AssetWise provides informed decision support from capital planning through proactive asset maintenance, enabling you to mitigate risk, increase operational efficiency, and ensure regulatory compliance. With improved information flow and interoperability you can collect, analyze, and control relevant asset information. AssetWise delivers actionable information that supports your business processes and drives the performance of your infrastructure assets.\r\nAligned with BIM, PAS, and ISO asset management standards, AssetWise leverages a connected data environment to facilitate the interoperation of multiple data sources, providing a common view of data that delivers accurate and reliable information when it is needed to operations, maintenance, and engineering. With AssetWise CONNECT Edition, your organization can maximize collaboration by communicating critical requirements more effectively across IT, OT, and ET disciplines, and across the entire lifecycle of your assets. Multi-phase deployment allows you to spread investment over time, minimizing operational disruptions.<br /><br />With AssetWise Asset Reliability you can:\r\n<ul><li>Identify assets posing the greatest risk to your business and rank assets by failure consequence and relative risk</li></ul>\r\n<ul><li>View asset condition data and trends in an asset health dashboard to analyze and strategically plan inspections and maintenance</li></ul>\r\n<ul><li>Perform asset condition analytics for linear assets to enhance predictive maintenance and planning</li></ul>\r\n<ul><li>Provide proof of regulatory compliance with historical and real-time condition reports</li></ul>\r\n<ul><li>Manage assets spread across a wide geographic area with a solution that supports your mobile workforce</li></ul>\r\n<ul><li>Optimize worker safety by minimizing unplanned outages, preventing catastrophic failure, and maximizing worker engagement in the field</li></ul>","shortDescription":"AssetWise: Ensuring safe, reliable, compliant, and cost-effective operations","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":0,"sellingCount":0,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"AssetWise","keywords":"","description":"Intelligently plan and implement asset performance and reliability strategies. AssetWise provides informed decision support from capital planning through proactive asset maintenance, enabling you to mitigate risk, increase operational efficiency, and ensure re","og:title":"AssetWise","og:description":"Intelligently plan and implement asset performance and reliability strategies. AssetWise provides informed decision support from capital planning through proactive asset maintenance, enabling you to mitigate risk, increase operational efficiency, and ensure re","og:image":"https://old.roi4cio.com/fileadmin/user_upload/AssetWise_CONNECTEdition_Logo.jpg"},"eventUrl":"","translationId":5918,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":417,"title":"Product Life-Cycle Management Applications","alias":"product-life-cycle-management-applications","description":"","materialsDescription":"","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Product_Life_Cycle_Management_Applications.png"},{"id":64,"title":"PLM - Product Lifecycle Management","alias":"plm-product-lifecycle-management","description":"<span style=\"font-weight: bold; \">Product lifecycle management,</span> sometimes "product life cycle management", PLM, represents an all-encompassing vision for managing all data relating to the design, production, support and ultimate disposal of manufactured goods. Product life management concepts were first introduced where safety and control have been extremely important, notably the aerospace, medical device, military and nuclear industries. These industries originated the discipline of configuration management (CM), which evolved into electronic data management systems (EDMS), which then further evolved to product data management (PDM).\r\nOver the last ten years, manufacturers of instrumentation, industrial machinery, consumer electronics, packaged goods and other complex engineered products have discovered the benefits of PLM management and are adopting efficient PLM software in increasing numbers.\r\n<p class=\"align-center\"><span style=\"font-weight: bold;\">The PLM Stages</span></p>\r\n<span style=\"font-weight: bold; \">Beginning of Life (BOL):</span> The beginning of life phase includes all of the design and manufacturing, which consists of the initial conceptualization and development, and any prototypes built. Initial development has multiple sub-actions that identify all the requirements, concepts, and necessary testing. \r\n<span style=\"font-weight: bold; \">Middle of Life (MOL):</span> The middle of life phase is post-manufacturing, when your product is distributed, used, and serviced. At this point, your product is in the hands of the end user. You can collect data on any failures, maintenance rates, and user experience to get information for immediate fixes and future development.\r\n<span style=\"font-weight: bold; \">End of Life (EOL):</span> The end of life phase is the retiring, recycling, or disposing of your product. At this point, the reverse logistics happen for the company. EOL starts when users no longer have a need for the product. At this stage, companies collect information about what parts and materials are still valuable.\r\n<span style=\"font-weight: bold;\">Product lifecycle management software</span> is used to deliver all kinds of products to market, which means there are a lot of different providers out there. Its purpose today is to help organizations: \r\n<ol><li>Develop new products using CAD software</li><li>Produce and manufacture new products</li><li>Bring those products to market</li></ol>\r\nAnd increasingly, product life management software has to process the feedback from the market back to the design and production processes. To achieve these goals, product lifecycle management solutions have to do four things:\r\n<ul><li>Link together CAD metadata with a bill of materials</li><li>Manage workflows for organizations needed to bring products to market</li><li>Manage product data as they move through the product development lifecycle stages</li><li> Hook in auxiliary suppliers and business stakeholders to a shared version of truth or single source of truth.</li></ul>\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Top PLM System Software Requirements</h1>\r\n<span style=\"font-weight: bold; \">Bill of Materials.</span> Having a common source of information across your company is incredibly important during product development. That’s why a bill of materials (BOM) is key to include in your list of product lifecycle management requirements. At the very least, your system should provide a single definition of a particular product and its components. More advanced options include features specifically designed for different team members such as designers, engineers and other professionals who frequently collaborate.\r\n<span style=\"font-weight: bold; \">Computer-Aided Design Management.</span> Managing your CAD activities and documents is more than useful when it comes to PLM. Your solution should be able to manage changes to product configurations while maintaining the functional and physical attributes of a product throughout its lifecycle. Production engineering changes should proliferate throughout your processes, with the changes evident in the subsequent BOMs and plans.\r\n<span style=\"font-weight: bold; \">Manufacturing Product Management.</span> During a product’s lifecycle, you want to keep an eye on your portfolio. With portfolio management, users can determine the proper investment balance to maximize their research and development investment returns. Some systems provide strategy tools to spotlight priorities and support planning. Top PLM software can even determine the best possible investment scenario. Users can also track project progress to completion, which is automatically documented in the product record. This allows greater insight into your processes, facilitating better resource management and allocation.\r\n<span style=\"font-weight: bold; \">Product Regulation and Governance.</span> Failing to follow regulation and compliance standards is one of the quickest ways to earn your business a bad reputation. But having the right tools built into your product life management system can make staying compliant much easier than it would be otherwise. Your solution should be able to centralize relevant information and documentation, making it easier for enterprise organizations to achieve and maintain compliance. You also may choose a system that can comply with medical, environmental, safety, FSA and ISO standards depending on your industry.\r\n<span style=\"font-weight: bold; \">Project and Component Maintenance.</span> Project management tools are vital for providing users visibility into daily processes and progress. These features include tracking and scheduling capabilities, which enable you to manage product development along with resource allocation in real time. Users can also see upcoming milestones and constraints for further planning.\r\n<span style=\"font-weight: bold; \">Quote Process Management.</span> Data from many different sources is often needed during the quote process. PLM’s inherent coordination capabilities gather and organize data pertaining to product design to support your engineering teams. This includes teams developing engineer-to-order and configure-to-order products. The system only shares the necessary data, meaning your team members can spend more time focusing on their work and less on hunting down information. \r\n<span style=\"font-weight: bold; \">Risk Management. </span>This feature brings risks to users’ attention, allowing them to manage, report and mitigate those instabilities. Reducing risks early on prevents issues from growing as they move through product development unseen, reducing the overall cost of development. Some systems do this by “detecting” or “highlighting” risks, whereas some systems simply offer full visibility through PM tools.\r\n<span style=\"font-weight: bold;\">Workflow and Change Management.</span> Plainly said, this suite of PLM software tools gives users insight into product activities. Users can determine phases for a project, as well as assign milestones to keep projects on track. Some systems allow users to see all pending and implemented changes, as well as all items that endure the subsequent effects. This visibility extends to portfolio and resource management, also.\r\n\r\n","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/PLM_-_Product_Lifecycle_Management.png"},{"id":377,"title":"IT Asset Management","alias":"it-asset-management","description":" IT asset management is the set of business practices that join financial, contractual and inventory functions to support life cycle management and strategic decision making for the IT environment. Assets include all elements of software and hardware that are found in the business environment.\r\nIT asset management generally uses automation to manage the discovery of assets so inventory can be compared to license entitlements. Full business management of IT assets requires a repository of multiple types of information about the asset, as well as integration with other systems such as supply chain, help desk, procurement and HR systems and ITSM.\r\nHardware asset management entails the management of the physical components of computers and computer networks, from acquisition through disposal. Common business practices include request and approval process, procurement management, life cycle management, redeployment and disposal management. A key component is capturing the financial information about the hardware life cycle which aids the organization in making business decisions based on meaningful and measurable financial objectives.\r\nSoftware Asset Management is a similar process, focusing on software assets, including licenses. Standards for this aspect of data center management are part of ISO/IEC 19770.","materialsDescription":" <span style=\"font-weight: bold;\">What is Information Technology Asset Management?</span>\r\nIT asset management (information technology asset management, or ITAM) is a set of business practices that combines financial, inventory and contractual functions to optimize spending and support lifecycle management and strategic decision-making within the IT environment.\r\n<span style=\"font-weight: bold;\">What is the purpose of IT asset management?</span>\r\nAsset management allows the organization to keep track of all their assets. It can tell where the assets are located, how they are used, and when changes were made to them. The data from the asset management solution can ensure that asset recovery will lead to better returns.\r\n<span style=\"font-weight: bold;\">What are the benefits of asset management?</span>\r\nWith a structure asset management framework in place, organizations will realize these and other benefits:\r\nGood Business Practice. Asset management results in better decisions;\r\n<ul><li>Improved Regulatory Compliance;</li><li>Improved Reliability;</li><li>Long Term System Integrity;</li><li>Cost Savings;</li><li>Eligibility for Federal Funding.</li></ul>\r\n<span style=\"font-weight: bold;\">What are the types of asset management?</span>\r\nThere are 7 types of asset management:\r\n<ul><li>Financial Asset Management.</li><li>Enterprise Asset Management.</li><li>Infrastructure Asset Management.</li><li>Public Asset Management.</li><li>IT Asset Management.</li><li>Fixed Assets Management.</li><li>Digital Asset Management.</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_IT_Asset_Management.png"},{"id":285,"title":"Operations and Manufacturing Applications","alias":"operations-and-manufacturing-applications","description":" Manufacturing operations management (MOM) is a collection of systems for managing end-to-end manufacturing processes with a view to optimizing efficiency.\r\nThere are many types of MOM software, including production management, performance analysis, quality and compliance, and human-machine interface (HMI). Production management software provides real-time information about jobs and orders, labor and materials, machine status, and product shipments. Performance analysis software displays metrics at the machine, line, plant, and enterprise-level for situational or historical analysis. Quality and compliance software are used to promote compliance with standards and specifications for operational processes and procedures. HMI software is a form of manufacturing operations management (MOM) software that enables operators to manage industrial and process control machinery using a computer-based interface.\r\nAdvancements in technology and market demands are enabling new capabilities in MOM software platforms, gradually closing gaps in end-user needs.\r\n<ul><li>Collaboration Capabilities: Collaboration and workflow services support people-to-people, people-to-systems, and systems-to-systems interactions, enforcing procedures and rules while flexibly adapting to real-time situations with alternate workflows and processes.</li><li>Security Services: Future manufacturing platforms will leverage common security services that determine roles, responsibilities, authorities, and access across all systems and application functions while fitting into corporate IT security schemes.</li><li>Asset & Production Model: Future manufacturing platforms will have a unified asset and production model that supports all of the interrelationships between physical production equipment, facilities, inventory/materials, and people, as well as production definitions such as the manufacturing bill of materials, productions orders, etc. This contrasts with older systems that either had subsets of these interrelationships across multiple databases or could not effectively deal with federating across multiple systems of record.</li><li>Operations Database & Historians: Evolving from older systems that had separate historians and production databases that were difficult to correlate across, service-based platforms will have a unified operations database and historian. This will capture and aggregate all time-series and production event information surrounding everything involved in each product and production run with a full genealogy of components and materials, related performance information, and federation across other systems and devices of record.</li><li>Visualization and Mobility: Today, different MOM applications support different graphical user interfaces, Web interfaces, specific mobile applications, etc. The future manufacturing platform will provide common visualization and mobility for a consistent user interface experience across different form factors, supporting dedicated and mobile workers that are orchestrated by consistent workflows and procedures.</li><li>Smaller and Focused 'Apps': Today’s monolithic systems and applications have too many interdependencies of databases, operate inconsistently, and are not inherently integrated. Being able to take advantage of many of the common software platform services described above, modular apps will be significantly smaller, simpler, and focused. These apps will be much lighter weight in functionality, and, as a result, significantly easier and faster to develop.</li></ul>","materialsDescription":" <span style=\"font-weight: bold;\">What is a manufacturing operating system?</span>\r\nA Manufacturing Execution System manages manufacturing operations such as product production rules, bill of materials, recipe data (product definition), resource management, scheduling, work batching (JiT Just in Time manufacturing), production data/logs, production performance, and some analysis.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Operations_and_Manufacturing_Applications_1_.png"},{"id":166,"title":"MES - Manufacturing Execution System","alias":"mes-manufacturing-execution-system","description":"<span style=\"font-weight: bold; \">Manufacturing execution systems (MES) </span> are computerized systems used in manufacturing, to track and document the transformation of raw materials to finished goods. MES software provides information that helps manufacturing decision makers understand how current conditions on the plant floor can be optimized to improve production output. Manufacturing execution solutions work in real time to enable the control of multiple elements of the production process (e.g. inputs, personnel, machines and support services).\r\nThe idea of Execution System might be seen as an intermediate step between, on the one hand, an enterprise resource planning (ERP) system, and a supervisory control and data acquisition (SCADA) or process control system on the other; although historically, exact boundaries have fluctuated. Industry groups such as MESA International— Manufacturing Enterprise Solutions Association were created in the early 1990s in order to address the complexity, and advise on execution, of MES Systems.\r\n<span style=\"color: rgb(97, 97, 97); \">Manufacturing execution software comes with a whole bunch of concepts and terms that help provide a better understanding of what they actually are. Here are some of the more common terms and concepts associated with MES:</span>\r\n<ul><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Enterprise resource planning (ERP) system</span>— strategic business process management tools that integrate all facets of an enterprise into one comprehensive information system that can be accessed by individuals across an entire organization.</span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">MESA-11</span>— published in 1997, this model — created by the Manufacturing Enterprise Solutions Association (MESA)— indicated the 11 core functions of a standard MES.</span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">ANSI/ISA-95 standard </span>— created for global manufacturers by the International Society of Automation, this is a standard set of guidelines for developers to follow when creating software that automatically links enterprise systems—like ERP—and control systems.</span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Overall equipment effectiveness (OEE)</span> — a general unit of measure that evaluates how well a machine works compared to its full potential.</span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Supervisory Control and Data Acquisition (SCADA) </span>— a system of software and hardware elements that allows manufacturers to maintain efficiency, process data for smarter decisions, and communicate system issues to help reduce downtime.</span></li></ul>\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \"><span style=\"color: rgb(97, 97, 97); \">Core MES Functionality</span></span></p>\r\n<ul><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Operations management.</span> Offer employees a global view of planned production orders and their production routing. <br /></span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Dispatching production units.</span> Manage the bidirectional flow of production data in real time between the ERP and the workshop. This ensures production data is always accurate, consistent, and up to date.</span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Product tracking and genealogy.</span> Group final parts or batches with all their corresponding manufacturing data—from the raw material to the component assembly. This data is especially useful for manufa</span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Labor management.</span> Manages people, products, and/or operations and track any skills or authorizations they require.<br /></span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Quality management.</span> Manages the quality of manufacturing process and units. This function can be integrated directly into the Manufacturing execution system software or can use external software.</span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Maintenance management.</span> More easily and accurately plans preventative machine maintenance to reduce downtime and production interruptions.</span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Data collection and acquisition.</span> Tracks and gathers essential data and easily recall that data when needed.</span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Process management.</span> Provides process routing and operational sequencing—including full production traceability.</span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Performance analysis.</span> Consolidates data to calculate key performance indicators (KPIs) like rework, scrap, process capability, OEE, and more. <br /></span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Document control.</span> Provides a simple way for operators to access important documents—including instructions, drawings, notes, and more—when they need them. <br /></span></li><li><span style=\"color: rgb(97, 97, 97); \"><span style=\"font-weight: bold; \">Resource allocation and status.</span> Defines and tracks the status of resources and how they are used in the production process.</span></li></ul>\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Is an MES right for my business?</h1>\r\n<p class=\"align-left\">There are plenty of benefits—including increased productivity, improved data capture, real-time visibility into your operations, an optimized workforce, and more. MES manufacturing software provides materials traceability, which is invaluable for manufacturers that must adhere to strict regulations. Manufacturers in the food and beverage, medical device, aeronautics and aerospace, and defense industries require this traceability to ensure they are compliant with regulations.</p>\r\n<p class=\"align-left\">However, manufacturing enterprise system isn’t for everyone. Smaller manufacturers may find that their production operations aren’t large enough to justify an additional software system like an MES. Additionally, they may feel that their profit margins don’t allow for this type of investment. Like any piece of technology, you have to weigh your options and decide if an MES is worth it for your manufacturing enterprise.</p>\r\n<h1 class=\"align-center\">How do MES and ERP systems work together?</h1>\r\n ERP and MES systems play separate but complementary roles in manufacturing operations. ERP systems integrate all facets of an enterprise into one comprehensive information system. For example, employees in planning and scheduling have access to the same data as the staff in financial management. All the data is also available in real time, which enables production managers to make faster, more informed business decisions.Meanwhile, MES is the layer between your manufacturing shop floor systems—like machines and supervisory systems—and your business, planning, and logistics systems—basically, your ERP solution. \r\nMES and ERP integrate with each other to provide a single source of truth throughout your organization. ERP systems can show you that you might need to improve your production output—MES management shows you how.\r\n<h1 class=\"align-center\">What should I be careful about as I pursue my MES strategy? </h1>\r\nKnow what you need. Know your own best-practices requirements. Know your production hardware and equipment inside out so you can be sure that it can be monitored and controlled by a prospective MES vendor's products. Don't believe every claim you hear from an MES software vendor. Ask them to prove their claims by checking with clients who've installed their applications and are seeing them work every day.\r\nKnow the vendor's responsibilities to uptime, production needs, tech support, training, and every other conceivable detail before you sign a contract. Know the answer to your question before you even ask the vendor, because you already did the research and know it from every angle. Be sure your prospective vendors value your critical business processes as much as their own before you put your factories and production into their hands.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/MES_-_Manufacturing_Execution_System1.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},{"id":6639,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/dassault.png","logo":true,"scheme":false,"title":"BIOVIA POWERED BY THE 3DEXPERIENCE® PLATFORM","vendorVerified":0,"rating":"0.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"biovia-na-baze-platformy-3dexperience","companyTitle":"Dassault Systèmes","companyTypes":["supplier","vendor"],"companyId":2774,"companyAlias":"dassault-systemes","description":"BIOVIA provides a scientific collaborative environment for advanced biological, chemical and materials experiences. They allow science-driven companies access, organize, analyze and share data in unprecedented ways throughout the product lifecycle. BIOVIA’s sophisticated enterprise portfolio helps drive innovation, increase productivity, improve quality and compliance, reduce costs and accelerate time to market.\r\n<h1>Data Science</h1>\r\n<h1>DRIVE KNOWLEDGE-BASED DECISIONS</h1>\r\n<p class=\"align-left\">Organizations therefore need a scalable framework to create, validate, and consume data science workflows. From accessing and aggregating data to sophisticated analytics, modeling and reporting, automating these processes allows novice users to get the most of their data while freeing up expert users to focus on more value-added tasks. Utilizing a common framework also ensures best practices are captured and shared enterprise-wide. Democratizing data science helps teams do more with less and unlock the innovations that today’s businesses need to survive and thrive.</p>\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">Benefits</span></p>\r\n<ul><li>33% decrease in time and cost to develop models</li><li> 50% reduction in time for aggregating data</li><li> 38% reduction in development time</li></ul>\r\n<h1>Laboratory Informatics</h1>\r\n<h1 class=\"align-left\">OPTIMIZE LAB PRODUCTIVITY AND COMPLIANCE</h1>\r\n<p class=\"align-left\">Science-based organizations need to optimize operations by improving efficiency while maximizing quality and adhering to regulations, while driving innovation. These challenges also apply to the lab environment, which needs to remove inefficiencies and compliance risks from lab processes and to provide a collaborative environment for innovation.</p>\r\n<p class=\"align-left\">The solution is to remove disconnected and paper-based processes that are error-prone and hamper access of relevant data throughout the research, development and manufacturing lifecycle. It is imperative to make decisions as early as possible in the lifecycle, in order to drive innovation and to optimize processes and products. Digital Laboratory Informatics capabilities allow for streamlined and more efficient lab workflows, harmonization and standardization and a fully integrated and automated easy-to-deploy process.<span style=\"font-weight: bold; \"></span></p>\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">Benefits</span> </p>\r\n<ul><li>30% reduction in errors</li><li>50% reduction in documentation time</li><li> 40% increase in lab productivity</li></ul>\r\n<h1 class=\"align-left\"> Quality & Compliance</h1>\r\n<h1 class=\"align-left\">DRIVE DATA-CENTRIC QUALITY EXCELLENCE IN BIOPHARMA</h1>\r\n<p class=\"align-left\">The integrated capabilities include Quality Document and Content Management with automated tasks, electronic signatures, standardized controlled processes and audit trails, Quality Process Management (like CAPA investigations or root-cause analysis) with immediate access to data and documents through a single user interface. Quality Intelligence provides trends and insights for data-driven decisions.<span style=\"font-weight: bold; \"></span></p>\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">Benefits</span><span style=\"font-weight: normal;\"></span><span style=\"font-weight: normal;\"></span></p>\r\n<h1 class=\"align-center\"></h1>\r\n<h1></h1>\r\n<ul><li>60% increase in right first time submisssions</li><li>80% reduction approval times</li><li>85% improvement in regulatory compliance </li></ul>\r\n<h1>Manufacturing Analytics</h1>\r\n<h1>EMPOWER OPERATIONS IN PROCESS INDUSTRIES </h1>\r\nOrganizations need to maximize efficiency, reduce costs and control product quality, variability and yield. BIOVIA provides process development, quality, and manufacturing users with self-service, on-demand access to process and quality data from disparate databases and paper records. It automatically aggregates and contextualizes the data and enables ad-hoc statistical investigations. Teams across different departments, organizations and geographies can collaborate and gain actionable insights.\r\nThe discipline supports three major areas that empower production operations, shorten time to market, and maximize profitability. It helps improve process design by understanding the critical process parameters, increase process performance by monitoring variability enabling preemptive action and drive process improvement by understanding and control process and product variability.<span style=\"font-weight: bold; \"></span>\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">Benefits </span></p>\r\n<ul><li>95% reduction in time for data aggregation</li><li>90% reduction in time for APR generation</li><li>10% - 15% improvement in manufacturing productivity</li></ul>\r\n<ul> </ul>","shortDescription":"BIOVIA PROVIDES GLOBAL, COLLABORATIVE PRODUCT LIFECYCLE EXPERIENCES TO TRANSFORM SCIENTIFIC INNOVATION\r\n\r\n","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":0,"sellingCount":0,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"BIOVIA POWERED BY THE 3DEXPERIENCE® PLATFORM","keywords":"","description":"BIOVIA provides a scientific collaborative environment for advanced biological, chemical and materials experiences. They allow science-driven companies access, organize, analyze and share data in unprecedented ways throughout the product lifecycle. BIOVIA’s so","og:title":"BIOVIA POWERED BY THE 3DEXPERIENCE® PLATFORM","og:description":"BIOVIA provides a scientific collaborative environment for advanced biological, chemical and materials experiences. They allow science-driven companies access, organize, analyze and share data in unprecedented ways throughout the product lifecycle. BIOVIA’s so","og:image":"https://old.roi4cio.com/fileadmin/user_upload/dassault.png"},"eventUrl":"","translationId":6639,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":57,"title":"Engineering Applications","alias":"engineering-applications","description":"Specific segmentations of <span style=\"font-weight: bold;\">Engineering Applications</span> include software packages, such as 2D CAD, 3D CAD, engineering analysis, project software and services, collaborative engineering software, and asset information management. These tools are used not only for asset creation but also to manage data and information throughout the lifecycle of physical assets in both infrastructure and industry. Application of optimization techniques in engineering provides as-built information to owners for operations and maintenance requirements, as well as a document for any modifications to the facility.<span style=\"font-weight: bold; \"></span>\r\n<span style=\"font-weight: bold; \">Computer-aided design (CAD)</span> is the use of computers (or workstations) to aid in the creation, modification, analysis, or optimization of a design. CAD software is used to increase the productivity of the designer, improve the quality of design, improve communications through documentation, and to create a database for manufacturing. Computer engineering and intelligent systems output is often in the form of electronic files for print, machining, or other manufacturing operations. \r\nIts use in designing electronic systems is known as electronic design automation (EDA). Application of CAD in mechanical engineering is known as mechanical design automation (MDA) or computer-aided drafting (CAD), which includes the process of creating a technical drawing with the use of computer software.\r\nCAD software for mechanical design uses either vector-based graphics to depict the objects of traditional drafting, or may also produce raster graphics showing the overall appearance of designed objects. However, it involves more than just shapes. As in the manual drafting of technical and engineering drawings, the output of CAD must convey information, such as materials, processes, dimensions, and tolerances, according to application-specific conventions.\r\nCAD is an important industrial art extensively used in many engineering applications, including automotive, shipbuilding, and aerospace industries, industrial and architectural design, electrical engineering app, prosthetics, environmental engineering applications, and many more. \r\nEngineering apps and software are: 2D layout and CAD software, 3D design and visualization systems, Pre-engineering and FEED applications, Engineering information management systems, Asset lifecycle information management systems, Asset performance management systems, P&ID and piping layout design, 3D laser scanning and point cloud modeling, 3D augmented reality simulation systems, 3D virtual reality simulation based on other technologies (photometry, etc.), 3D virtual simulation for operator training, Electrical Engineering applications and HVAC design, Engineering analysis tools, Civil engineering design packages, Fabrication and construction management systems, Software implementation services, Software maintenance & support services, Software as a service including deployment (Cloud, subscription, etc.), Collaborative software for engineering workflows, Associated databases and interfaces.","materialsDescription":"<h1 class=\"align-center\">2D and 3D CAD software</h1>\r\n<p class=\"align-left\">General-purpose CAD software includes a wide range of 2D and 3D software. Before delving into the more specific types of CAD software, it’s important to understand the difference between 2D and 3D CAD and the various industries that leverage them.</p>\r\n<p class=\"align-left\">2D CAD software offers a platform to design in two dimensions. Since 2D CAD does not allow for the creation of perspectives or scale, it is often used for drawing, sketching and drafting conceptual designs. 2D CAD is often used for floor plan development, building permit drawing and building inspection planning. Since it is mainly used as a tool for conceptual design, it is also a great starting point for most 3D designs. This gives users a basic overview of dimension and scale before they move on to 3D design. 2D CAD typically runs at a significantly lower price since it does not provide the same scale of tools and breadth of features.</p>\r\n<p class=\"align-left\">3D CAD provides a platform for designing 3D objects. The main feature of this type of CAD software is 3D solid modeling. This lets designers create objects with length, width and height, allowing more accurate scaling and visualization. With this feature, users can push and pull surfaces and manipulate designs to adjust measurements. Once the 3D design is to your liking, you can transfer it to a 3D rendering software and place the designs in fully realized 3D landscapes.</p>\r\n<h1 class=\"align-center\">BIM software</h1>\r\n<p class=\"align-left\">One of the more specific types of 3D CAD software is building information modeling software, also known as BIM software. BIM software is intended to aid in the design and construction of buildings specifically. BIM software provides users with the ability to break down building parts and see how they fit into a single finalized structure. Users can isolate walls, columns, windows, doors, etc., and alter the design. Engineers, architect, and manufacturers are just some of the professionals that use BIM software on a regular basis.</p>\r\n<h1 class=\"align-center\">Civil engineering design software</h1>\r\n<p class=\"align-left\">Civil engineering design software allows users to design 3D models of municipal buildings and structures. This includes tools for railway modeling, highway design and city infrastructure planning. Similar to BIM, civil engineering design software helps in every stage of the design process by breaking it down to drafting, designing and visualizing the final product. Best app for civil engineering also helps designers determine building costs. Civil engineering design software is perfect for engineers working in public and civil departments including transportation, structural and geotech.</p>\r\n<h1 class=\"align-center\">3D printing software</h1>\r\n<p class=\"align-left\">3D printing software facilitates the printing of real-life 3D objects. When users design an object, it can bу translated into a 3D printing software. The software then relays instructions on how to print that design to an actual 3D printer. The 3D printing software sends instructions to just print out certain parts of an object, or it can print out the entirety of an object. Some CAD software doubles as 3D printing software so you can seamlessly produce actual 3D objects all from one platform. 3D printing software can be used by manufacturers and architects to build machine or building parts. This greatly reduces production costs, as manufacturers no longer need offsite locations for manufacturing. It also gives companies a rapid test drive to see how a product would look if it were mass produced.</p>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Engineering_Applications.png"},{"id":333,"title":"Collaborative Product Data Management","alias":"collaborative-product-data-management","description":" Collaborative Product Data Management (cPDM) is software that is used to manage and integrate product data into a centralized system for better tracking and enhanced collaboration among business units. cPDM software solutions help enterprises streamline manufacturing and production processes by applying a consistent set of business solutions that collaboratively provide efficient methods to manage the functions of product lifecycle management (PLM). These solutions also help organizations to boost efficient business operations and launch innovative and profitable products in the evolving e-business web-enabled environment. The cPDM software packages also help in sharing data among supply chain partners, thereby enhancing the capability, efficiency, and effectiveness of an enterprise.\r\nPLM is a strategic business approach that applies a consistent set of business solutions to help the collaborative creation, management, and dissemination across the extended enterprise from the concept to end of life. CPDM also allows the organization to maintain system architecture, deployment of security mechanism, and prototype development and enables them in forming a collaborative architecture, shared resources and shared team spaces to work together as virtual teams.\r\nCPDM help in effective product data management, collaborative product commerce, collaborative product visualization, effective integration of CPDM with enterprise applications and supplier relationship management. Its solutions assist in manufacturing and production processes for efficient business operations. Ultimately, it helps in bringing innovative and profitable products that enables in evolving the e business web based environment.\r\nThese software solutions are adopted by industries such as electronics, automotive, industrial machinery, aerospace, defense, petrochemical, and process packaged goods. Automotive manufactures face product recalls across wide ranging categories due to which PLM software such as CPDM, CAD, CAE and CAM help them in reducing defects which eventually help them in catering maximum demand.","materialsDescription":" <span style=\"font-weight: bold; \">What are the technologies and methods used?</span>\r\nClearly, general collaborative software such as email and chat (instant messaging) is used within the CPD process. One important technology is application and desktop sharing, allowing one person to view what another person is doing on a remote machine. For CAD and product visualization applications an ‘appshare’ product that supports OpenGL graphics is required. Another common application is Data sharing via Web-based portals.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Specific to product data</span></span>\r\nWith product data, an important addition is the handling of high volumes of geometry and metadata. Exactly what techniques and technology are required depends on the level of collaboration being carried out and the commonality (or lack thereof) of the partner sites’ systems.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Specific to PLM and CAx collaboration</span></span>\r\nCollaboration using PLM and CAx tools requires technology to support the needs of:\r\n<ol><li><span style=\"font-weight: bold; \">People:</span> Personnel of different disciplines and skill levels;</li><li><span style=\"font-weight: bold; \">Organizations:</span> Organizations throughout an enterprise or extended enterprise with different rules, processes and objectives;</li><li><span style=\"font-weight: bold; \">Data:</span> Data from different sources in different formats.</li></ol>\r\nAppropriate technologies are required to support collaboration across these boundaries.\r\n<span style=\"font-style: italic; \">People</span>\r\nEffective PLM collaboration will typically require the participation of people who do not have high-level CAD skills. This requires improved user interfaces including tailorable user interfaces that can be tailored to the skill level and specialty of the user.\r\nImproved visualization capabilities, especially those that provide a meaningful view of complex information such as the results of a fluid flow analysis will leverage the value of all participants in the collaboration process. Effective collaboration requires that a participant is freed from the burden of knowing the intent history typically embedded within and constricting the use of parametric models.\r\n<span style=\"font-style: italic; \">Organizations</span>\r\nCommunity collaboration requires that companies, suppliers, and customers share information in a secure environment, ensure compliance with enterprise and regulatory rules and enforce the process management rules of the community as well as the individual organizations.\r\n<span style=\"font-style: italic; \">Data</span>\r\nThe most basic collaboration data need is the ability to operate in a MultiCAD environment. That is, however, only the beginning. Models from multiple CAD sources must be assembled into an active digital mockup allowing change and/or design in context.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Real-time collaborative product design</span></span>\r\nProduct design is typically a highly iterative and interactive activity involving a group of designers who are geographically dispersed. A neutral modeling command (NMC) based method is proposed to construct a real-time collaborative product design platform within heterogeneous CAD systems.[1] Different from the visualization-based approaches, models can be constructed and modified synchronously from various sites in the proposed collaborative design environment. Based on a translation mechanism between system modeling operations (SMO) and neutral modeling commands (NMC), every operation given by a user on one site will be translated into an NMC and be sent to all the other sites through the network. When the other sites receive this command, it is converted into the corresponding SMOs on the local system. In this way, the real-time collaborative product design with heterogeneous CAD systems is achieved.\r\n<span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Different levels of collaboration</span></span>\r\nIf the collaborating parties have the same PDM and CAD systems the task usually involves the direct access and transfer of data between sites. The PDM system will have data storage at more than one site for the large graphics files, a file may be copied between sites, how they are synchronized being controlled by the server(s). For the management server and metadata, there are a number of options. There could be a single server that is accessed from all locations or multiple PDM servers that communicate with one another. In both cases, the PDM software controls access for groups defining what data they can see and edit.\r\nWith different CAD systems, the approach varies slightly depending on whether the ownership and therefore authorship, of components changes or not. If geometry only has to be viewed then a Product visualization neutral file format (e.g.JT) can be used for tasks such as viewing, markup (redlining) or multi-cad digital mock-up (DMU). It may be that authorship does not change but components from one group need to be placed in the assembly of another group so that they can construct their parts, so-called work in context. This requires the transfer of geometry from one format to another by means of a visualization format or full data translation. Between some systems, there is the possibility of ‘data interoperability’ where geometry from one format can be associatively copied to another. If the ownership of a particular file is being transferred, then full data translation is required using some form of CAD data exchange technology. For the translation process Product Data Quality (PDQ) checkers are often employed to reduce problems in transferring the work. If different PDM/EDM systems are in use, then either data structures or metadata can be transferred using STEP or communication between databases can be achieved with tools based around XML data transfer.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Collaborative_Product_Data_Management.png"},{"id":63,"title":"PDM - Product Data Management","alias":"pdm-product-data-management","description":"<span style=\"font-weight: bold; \">Product data management (PDM)</span> is a system for managing design data and engineering processes in one central location. Engineering teams use PDM software to organize product-related information, track revisions, collaborate, manage change orders, generate Bills of Materials (BOMs), and more. With a single source for project data, engineers save time and avoid mistakes.\r\nThe product means, as a rule, some kind of high-tech products (automobiles, ships, airplanes, etc.) in the design, production, operation and utilization of which it is necessary to process and control large volumes of engineering and technical data.\r\n<span style=\"font-weight: bold; \">PDM system uses several technologies:</span>\r\n<ul><li>EDM (engineering data management).</li><li>PIM (product information management).</li><li>TDM (technical data management).</li><li>TIM (technical information management).</li><li>Managing images and documents, manipulating information related to the product.</li></ul>\r\nPDM systems provide the data necessary for the correct operation of MRP (material requirements planning) and CRP systems (capacity requirements planning). Unlike traditional databases, product data management system can accumulate data of any format and type: text documents, geometric models, the data needed for automatic production lines, CNC machines, etc. There can be so much data that it can be used as a "digital layout" of the product.\r\nThe PDM integration with existing CAD systems at the enterprise can significantly increase the efficiency of their use. This happens due to the fact that after integration, it becomes possible to organize work on the project in multi-user mode, to exchange information between developers (possibly in different places) in real time. At the same time, in order to avoid unauthorized modification of documents, different access modes are provided to different users.\r\nEnterprise PDM software can help you create better designs, reduce errors, and build a more efficient development cycle with <span style=\"font-weight: bold;\">features </span>including:\r\n<ul><li><span style=\"font-weight: bold;\">CAD file management.</span> Take control of your valuable design files with PDM. Direct CAD-integration keeps your data in sync in real time.</li><li><span style=\"font-weight: bold;\">Revision control.</span> Automatically capture the revision history on documents as you work. Never lose track of changes.</li><li><span style=\"font-weight: bold;\">Business system integration.</span> Integrate design data with systems like MRPs and ERPs.</li><li><span style=\"font-weight: bold;\">Access control.</span> Strengthen data security by controlling access with permissions for version control and retrieval.</li><li><span style=\"font-weight: bold;\">Engineering change orders.</span> Easily manage engineering change orders (ECOs) with a workflows that help automate the process.</li><li><span style=\"font-weight: bold;\">External collaboration.</span> Share 2D or 3D views of your work with others and get comments and feedback directly inside your product.</li></ul>\r\n<br /><br />","materialsDescription":"<h1 class=\"align-center\">What is PDM or PLM software?</h1>\r\n<span style=\"font-weight: bold; \">PLM </span>stands for <span style=\"font-weight: bold; \">Product Lifecycle Management.</span> It’s a tool that guides products through the product development lifecycle. And as products and supply chains get more complex, a way to manage the development process becomes more and more important. PLMs usually give organizations:\r\n<ul><li>Workflows</li><li>Milestones or stage gates</li><li>CAD/BOM syncing</li><li>Change management processes.</li></ul>\r\n<span style=\"font-weight: bold; \">PDM </span>stands for <span style=\"font-weight: bold; \">Product Data Management.</span> Product data management tools manage data as it moves through the product lifecycle. Specifically, product data management solutions keep CAD files organized and version controlled. This is usually achieved with a check-in/check-out file structure and a centralized storage solution, either in an on-premise server, a privately managed network or, increasingly, a cloud server.\r\nIn a nutshell, PLM is responsible for the process and the system that product development happens in. PDM is responsible for managing the actual digital product files that move through that PLM process.\r\nData management system software is focused on capturing and maintaining information on products and/or services through its development and useful life. Typical information managed in the PDM module include:\r\n<ul><li>Brand name;</li><li>Part number;</li><li>Part description;</li><li>Supplier/vendor;</li><li>Vendor part number and description;</li><li>Unit of measure;</li><li>Cost/price;</li><li>Schematic or CAD drawing;</li><li>Material data-sheets.</li></ul>\r\n<h1 class=\"align-center\">Why you need a PDM</h1>\r\nThe problem is that engineering data is clunky and complex. Engineering teams manage enormous assemblies that can only be manipulated by specific programs. Maintaining consistency across versions, especially for companies with global design offices, is difficult. PDM data management software makes this easier by:\r\n<ul><li>Ensuring there’s a single version of every file</li><li>Tracking each change as new versions come in</li><li>Creating unique part numbers for every individual part/file that make up the overall assembly</li><li>Check-in/check-out file formats.</li></ul>\r\n\r\n","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/PDM_-_Product_Data_Management1.png"},{"id":64,"title":"PLM - Product Lifecycle Management","alias":"plm-product-lifecycle-management","description":"<span style=\"font-weight: bold; \">Product lifecycle management,</span> sometimes "product life cycle management", PLM, represents an all-encompassing vision for managing all data relating to the design, production, support and ultimate disposal of manufactured goods. Product life management concepts were first introduced where safety and control have been extremely important, notably the aerospace, medical device, military and nuclear industries. These industries originated the discipline of configuration management (CM), which evolved into electronic data management systems (EDMS), which then further evolved to product data management (PDM).\r\nOver the last ten years, manufacturers of instrumentation, industrial machinery, consumer electronics, packaged goods and other complex engineered products have discovered the benefits of PLM management and are adopting efficient PLM software in increasing numbers.\r\n<p class=\"align-center\"><span style=\"font-weight: bold;\">The PLM Stages</span></p>\r\n<span style=\"font-weight: bold; \">Beginning of Life (BOL):</span> The beginning of life phase includes all of the design and manufacturing, which consists of the initial conceptualization and development, and any prototypes built. Initial development has multiple sub-actions that identify all the requirements, concepts, and necessary testing. \r\n<span style=\"font-weight: bold; \">Middle of Life (MOL):</span> The middle of life phase is post-manufacturing, when your product is distributed, used, and serviced. At this point, your product is in the hands of the end user. You can collect data on any failures, maintenance rates, and user experience to get information for immediate fixes and future development.\r\n<span style=\"font-weight: bold; \">End of Life (EOL):</span> The end of life phase is the retiring, recycling, or disposing of your product. At this point, the reverse logistics happen for the company. EOL starts when users no longer have a need for the product. At this stage, companies collect information about what parts and materials are still valuable.\r\n<span style=\"font-weight: bold;\">Product lifecycle management software</span> is used to deliver all kinds of products to market, which means there are a lot of different providers out there. Its purpose today is to help organizations: \r\n<ol><li>Develop new products using CAD software</li><li>Produce and manufacture new products</li><li>Bring those products to market</li></ol>\r\nAnd increasingly, product life management software has to process the feedback from the market back to the design and production processes. To achieve these goals, product lifecycle management solutions have to do four things:\r\n<ul><li>Link together CAD metadata with a bill of materials</li><li>Manage workflows for organizations needed to bring products to market</li><li>Manage product data as they move through the product development lifecycle stages</li><li> Hook in auxiliary suppliers and business stakeholders to a shared version of truth or single source of truth.</li></ul>\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Top PLM System Software Requirements</h1>\r\n<span style=\"font-weight: bold; \">Bill of Materials.</span> Having a common source of information across your company is incredibly important during product development. That’s why a bill of materials (BOM) is key to include in your list of product lifecycle management requirements. At the very least, your system should provide a single definition of a particular product and its components. More advanced options include features specifically designed for different team members such as designers, engineers and other professionals who frequently collaborate.\r\n<span style=\"font-weight: bold; \">Computer-Aided Design Management.</span> Managing your CAD activities and documents is more than useful when it comes to PLM. Your solution should be able to manage changes to product configurations while maintaining the functional and physical attributes of a product throughout its lifecycle. Production engineering changes should proliferate throughout your processes, with the changes evident in the subsequent BOMs and plans.\r\n<span style=\"font-weight: bold; \">Manufacturing Product Management.</span> During a product’s lifecycle, you want to keep an eye on your portfolio. With portfolio management, users can determine the proper investment balance to maximize their research and development investment returns. Some systems provide strategy tools to spotlight priorities and support planning. Top PLM software can even determine the best possible investment scenario. Users can also track project progress to completion, which is automatically documented in the product record. This allows greater insight into your processes, facilitating better resource management and allocation.\r\n<span style=\"font-weight: bold; \">Product Regulation and Governance.</span> Failing to follow regulation and compliance standards is one of the quickest ways to earn your business a bad reputation. But having the right tools built into your product life management system can make staying compliant much easier than it would be otherwise. Your solution should be able to centralize relevant information and documentation, making it easier for enterprise organizations to achieve and maintain compliance. You also may choose a system that can comply with medical, environmental, safety, FSA and ISO standards depending on your industry.\r\n<span style=\"font-weight: bold; \">Project and Component Maintenance.</span> Project management tools are vital for providing users visibility into daily processes and progress. These features include tracking and scheduling capabilities, which enable you to manage product development along with resource allocation in real time. Users can also see upcoming milestones and constraints for further planning.\r\n<span style=\"font-weight: bold; \">Quote Process Management.</span> Data from many different sources is often needed during the quote process. PLM’s inherent coordination capabilities gather and organize data pertaining to product design to support your engineering teams. This includes teams developing engineer-to-order and configure-to-order products. The system only shares the necessary data, meaning your team members can spend more time focusing on their work and less on hunting down information. \r\n<span style=\"font-weight: bold; \">Risk Management. </span>This feature brings risks to users’ attention, allowing them to manage, report and mitigate those instabilities. Reducing risks early on prevents issues from growing as they move through product development unseen, reducing the overall cost of development. Some systems do this by “detecting” or “highlighting” risks, whereas some systems simply offer full visibility through PM tools.\r\n<span style=\"font-weight: bold;\">Workflow and Change Management.</span> Plainly said, this suite of PLM software tools gives users insight into product activities. Users can determine phases for a project, as well as assign milestones to keep projects on track. Some systems allow users to see all pending and implemented changes, as well as all items that endure the subsequent effects. This visibility extends to portfolio and resource management, also.\r\n\r\n","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/PLM_-_Product_Lifecycle_Management.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},{"id":265,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/Teamcenter.gif","logo":true,"scheme":false,"title":"Teamcenter","vendorVerified":0,"rating":"1.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":1,"alias":"teamcenter","companyTitle":"Siemens","companyTypes":["vendor"],"companyId":2795,"companyAlias":"siemens","description":"Take control of your lifecycle.\r\nTeamcenter’s complete portfolio of lifecycle applications helps people make good decisions for their tasksat-hand, while unifying the various work streams within a single source of product and process knowledge:\r\n•<span style=\"white-space:pre\">\t</span>Systems engineering and requirements management\r\n•<span style=\"white-space:pre\">\t</span>Portfolio, program and project management\r\n•<span style=\"white-space:pre\">\t</span>Engineering process management\r\n•<span style=\"white-space:pre\">\t</span>Bill of materials management\r\n•<span style=\"white-space:pre\">\t</span>Compliance management\r\n•<span style=\"white-space:pre\">\t</span>Content and document management\r\n•<span style=\"white-space:pre\">\t</span>Formula, package and brand management\r\n•<span style=\"white-space:pre\">\t</span>Supplier relationship management\r\n•<span style=\"white-space:pre\">\t</span>Mechatronics process management\r\n•<span style=\"white-space:pre\">\t</span>Manufacturing process management\r\n•<span style=\"white-space:pre\">\t</span>Simulation process management\r\n•<span style=\"white-space:pre\">\t</span>Maintenance, repair and overhaul\r\n•<span style=\"white-space:pre\">\t</span>Reporting and analytics\r\n•<span style=\"white-space:pre\">\t</span>Community collaboration\r\n•<span style=\"white-space:pre\">\t</span> Lifecycle visualization\r\n•<span style=\"white-space:pre\">\t</span>Platform extensibility services\r\n•<span style=\"white-space:pre\">\t</span>Enterprise knowledge foundation\r\nMake smarter decisions in high definition. Decisions are easier to make when you can visualize their impact. From Active Workspace, you can locate, browse, and visualize your products in context-aware high definition, enabling you to investigate your 3D product data in greater detail. Seamlessly collaborating with others, you can easily compare and graphically report on product information, directly on the 3D product model.\r\nAccess PLM anytime, anywhere. Teamcenter Mobility enables PLM decision-making at the time and place a decision needs to be made. You can respond to workflows and review associated documents, browse product structures, 2D drawings and 3D models directly on mobile devices, making smarter product decisions in the context of the task at hand.\r\nWith Teamcenter Mobility, you have access to your organization’s PLM environment whenever and wherever you need it. ","shortDescription":"Teamcenter helps you deliver increasingly complex products to market while maximizing productivity and streamlining global operations.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":7,"sellingCount":19,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Teamcenter","keywords":"management, product, process, your, Teamcenter, decisions, knowledge, Mobility","description":"Take control of your lifecycle.\r\nTeamcenter’s complete portfolio of lifecycle applications helps people make good decisions for their tasksat-hand, while unifying the various work streams within a single source of product and process knowledge:\r\n•<span style=\"","og:title":"Teamcenter","og:description":"Take control of your lifecycle.\r\nTeamcenter’s complete portfolio of lifecycle applications helps people make good decisions for their tasksat-hand, while unifying the various work streams within a single source of product and process knowledge:\r\n•<span style=\"","og:image":"https://old.roi4cio.com/fileadmin/user_upload/Teamcenter.gif"},"eventUrl":"","translationId":266,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":64,"title":"PLM - Product Lifecycle Management","alias":"plm-product-lifecycle-management","description":"<span style=\"font-weight: bold; \">Product lifecycle management,</span> sometimes "product life cycle management", PLM, represents an all-encompassing vision for managing all data relating to the design, production, support and ultimate disposal of manufactured goods. Product life management concepts were first introduced where safety and control have been extremely important, notably the aerospace, medical device, military and nuclear industries. These industries originated the discipline of configuration management (CM), which evolved into electronic data management systems (EDMS), which then further evolved to product data management (PDM).\r\nOver the last ten years, manufacturers of instrumentation, industrial machinery, consumer electronics, packaged goods and other complex engineered products have discovered the benefits of PLM management and are adopting efficient PLM software in increasing numbers.\r\n<p class=\"align-center\"><span style=\"font-weight: bold;\">The PLM Stages</span></p>\r\n<span style=\"font-weight: bold; \">Beginning of Life (BOL):</span> The beginning of life phase includes all of the design and manufacturing, which consists of the initial conceptualization and development, and any prototypes built. Initial development has multiple sub-actions that identify all the requirements, concepts, and necessary testing. \r\n<span style=\"font-weight: bold; \">Middle of Life (MOL):</span> The middle of life phase is post-manufacturing, when your product is distributed, used, and serviced. At this point, your product is in the hands of the end user. You can collect data on any failures, maintenance rates, and user experience to get information for immediate fixes and future development.\r\n<span style=\"font-weight: bold; \">End of Life (EOL):</span> The end of life phase is the retiring, recycling, or disposing of your product. At this point, the reverse logistics happen for the company. EOL starts when users no longer have a need for the product. At this stage, companies collect information about what parts and materials are still valuable.\r\n<span style=\"font-weight: bold;\">Product lifecycle management software</span> is used to deliver all kinds of products to market, which means there are a lot of different providers out there. Its purpose today is to help organizations: \r\n<ol><li>Develop new products using CAD software</li><li>Produce and manufacture new products</li><li>Bring those products to market</li></ol>\r\nAnd increasingly, product life management software has to process the feedback from the market back to the design and production processes. To achieve these goals, product lifecycle management solutions have to do four things:\r\n<ul><li>Link together CAD metadata with a bill of materials</li><li>Manage workflows for organizations needed to bring products to market</li><li>Manage product data as they move through the product development lifecycle stages</li><li> Hook in auxiliary suppliers and business stakeholders to a shared version of truth or single source of truth.</li></ul>\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Top PLM System Software Requirements</h1>\r\n<span style=\"font-weight: bold; \">Bill of Materials.</span> Having a common source of information across your company is incredibly important during product development. That’s why a bill of materials (BOM) is key to include in your list of product lifecycle management requirements. At the very least, your system should provide a single definition of a particular product and its components. More advanced options include features specifically designed for different team members such as designers, engineers and other professionals who frequently collaborate.\r\n<span style=\"font-weight: bold; \">Computer-Aided Design Management.</span> Managing your CAD activities and documents is more than useful when it comes to PLM. Your solution should be able to manage changes to product configurations while maintaining the functional and physical attributes of a product throughout its lifecycle. Production engineering changes should proliferate throughout your processes, with the changes evident in the subsequent BOMs and plans.\r\n<span style=\"font-weight: bold; \">Manufacturing Product Management.</span> During a product’s lifecycle, you want to keep an eye on your portfolio. With portfolio management, users can determine the proper investment balance to maximize their research and development investment returns. Some systems provide strategy tools to spotlight priorities and support planning. Top PLM software can even determine the best possible investment scenario. Users can also track project progress to completion, which is automatically documented in the product record. This allows greater insight into your processes, facilitating better resource management and allocation.\r\n<span style=\"font-weight: bold; \">Product Regulation and Governance.</span> Failing to follow regulation and compliance standards is one of the quickest ways to earn your business a bad reputation. But having the right tools built into your product life management system can make staying compliant much easier than it would be otherwise. Your solution should be able to centralize relevant information and documentation, making it easier for enterprise organizations to achieve and maintain compliance. You also may choose a system that can comply with medical, environmental, safety, FSA and ISO standards depending on your industry.\r\n<span style=\"font-weight: bold; \">Project and Component Maintenance.</span> Project management tools are vital for providing users visibility into daily processes and progress. These features include tracking and scheduling capabilities, which enable you to manage product development along with resource allocation in real time. Users can also see upcoming milestones and constraints for further planning.\r\n<span style=\"font-weight: bold; \">Quote Process Management.</span> Data from many different sources is often needed during the quote process. PLM’s inherent coordination capabilities gather and organize data pertaining to product design to support your engineering teams. This includes teams developing engineer-to-order and configure-to-order products. The system only shares the necessary data, meaning your team members can spend more time focusing on their work and less on hunting down information. \r\n<span style=\"font-weight: bold; \">Risk Management. </span>This feature brings risks to users’ attention, allowing them to manage, report and mitigate those instabilities. Reducing risks early on prevents issues from growing as they move through product development unseen, reducing the overall cost of development. Some systems do this by “detecting” or “highlighting” risks, whereas some systems simply offer full visibility through PM tools.\r\n<span style=\"font-weight: bold;\">Workflow and Change Management.</span> Plainly said, this suite of PLM software tools gives users insight into product activities. Users can determine phases for a project, as well as assign milestones to keep projects on track. Some systems allow users to see all pending and implemented changes, as well as all items that endure the subsequent effects. This visibility extends to portfolio and resource management, also.\r\n\r\n","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/PLM_-_Product_Lifecycle_Management.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},{"id":713,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/Platforma_3DEXPERIENCE.jpg","logo":true,"scheme":false,"title":"3DEXPERIENCE platform","vendorVerified":0,"rating":"1.00","implementationsCount":2,"suppliersCount":0,"supplierPartnersCount":0,"alias":"3dexperience-platform","companyTitle":"Dassault Systèmes","companyTypes":["supplier","vendor"],"companyId":2774,"companyAlias":"dassault-systemes","description":"With a single, easy-to-use interface, it powers Industry Solution Experiences – based on 3D design, analysis, simulation, and intelligence software in a collaborative, interactive environment. It is available on premise and on cloud.\r\nDassault Systèmes offers industry-leading applications delivered on the 3DEXPERIENCE platform: Design & Engineering, Manufacturing & Production, Simulation, Governance & Lifecycle, 3D Design Experience for Professionals, as well as a broad catalog of services.","shortDescription":"The 3DEXPERIENCE® platform is a business experience platform.\r\n\r\nIt provides software solutions for every organization in your company – from marketing to sales to engineering – that help you, in your value creation process, to create differentiating consumer experiences. 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These industries originated the discipline of configuration management (CM), which evolved into electronic data management systems (EDMS), which then further evolved to product data management (PDM).\r\nOver the last ten years, manufacturers of instrumentation, industrial machinery, consumer electronics, packaged goods and other complex engineered products have discovered the benefits of PLM management and are adopting efficient PLM software in increasing numbers.\r\n<p class=\"align-center\"><span style=\"font-weight: bold;\">The PLM Stages</span></p>\r\n<span style=\"font-weight: bold; \">Beginning of Life (BOL):</span> The beginning of life phase includes all of the design and manufacturing, which consists of the initial conceptualization and development, and any prototypes built. Initial development has multiple sub-actions that identify all the requirements, concepts, and necessary testing. \r\n<span style=\"font-weight: bold; \">Middle of Life (MOL):</span> The middle of life phase is post-manufacturing, when your product is distributed, used, and serviced. At this point, your product is in the hands of the end user. You can collect data on any failures, maintenance rates, and user experience to get information for immediate fixes and future development.\r\n<span style=\"font-weight: bold; \">End of Life (EOL):</span> The end of life phase is the retiring, recycling, or disposing of your product. At this point, the reverse logistics happen for the company. EOL starts when users no longer have a need for the product. At this stage, companies collect information about what parts and materials are still valuable.\r\n<span style=\"font-weight: bold;\">Product lifecycle management software</span> is used to deliver all kinds of products to market, which means there are a lot of different providers out there. Its purpose today is to help organizations: \r\n<ol><li>Develop new products using CAD software</li><li>Produce and manufacture new products</li><li>Bring those products to market</li></ol>\r\nAnd increasingly, product life management software has to process the feedback from the market back to the design and production processes. To achieve these goals, product lifecycle management solutions have to do four things:\r\n<ul><li>Link together CAD metadata with a bill of materials</li><li>Manage workflows for organizations needed to bring products to market</li><li>Manage product data as they move through the product development lifecycle stages</li><li> Hook in auxiliary suppliers and business stakeholders to a shared version of truth or single source of truth.</li></ul>\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Top PLM System Software Requirements</h1>\r\n<span style=\"font-weight: bold; \">Bill of Materials.</span> Having a common source of information across your company is incredibly important during product development. That’s why a bill of materials (BOM) is key to include in your list of product lifecycle management requirements. At the very least, your system should provide a single definition of a particular product and its components. More advanced options include features specifically designed for different team members such as designers, engineers and other professionals who frequently collaborate.\r\n<span style=\"font-weight: bold; \">Computer-Aided Design Management.</span> Managing your CAD activities and documents is more than useful when it comes to PLM. Your solution should be able to manage changes to product configurations while maintaining the functional and physical attributes of a product throughout its lifecycle. Production engineering changes should proliferate throughout your processes, with the changes evident in the subsequent BOMs and plans.\r\n<span style=\"font-weight: bold; \">Manufacturing Product Management.</span> During a product’s lifecycle, you want to keep an eye on your portfolio. With portfolio management, users can determine the proper investment balance to maximize their research and development investment returns. Some systems provide strategy tools to spotlight priorities and support planning. Top PLM software can even determine the best possible investment scenario. Users can also track project progress to completion, which is automatically documented in the product record. This allows greater insight into your processes, facilitating better resource management and allocation.\r\n<span style=\"font-weight: bold; \">Product Regulation and Governance.</span> Failing to follow regulation and compliance standards is one of the quickest ways to earn your business a bad reputation. But having the right tools built into your product life management system can make staying compliant much easier than it would be otherwise. Your solution should be able to centralize relevant information and documentation, making it easier for enterprise organizations to achieve and maintain compliance. You also may choose a system that can comply with medical, environmental, safety, FSA and ISO standards depending on your industry.\r\n<span style=\"font-weight: bold; \">Project and Component Maintenance.</span> Project management tools are vital for providing users visibility into daily processes and progress. These features include tracking and scheduling capabilities, which enable you to manage product development along with resource allocation in real time. Users can also see upcoming milestones and constraints for further planning.\r\n<span style=\"font-weight: bold; \">Quote Process Management.</span> Data from many different sources is often needed during the quote process. PLM’s inherent coordination capabilities gather and organize data pertaining to product design to support your engineering teams. This includes teams developing engineer-to-order and configure-to-order products. The system only shares the necessary data, meaning your team members can spend more time focusing on their work and less on hunting down information. \r\n<span style=\"font-weight: bold; \">Risk Management. </span>This feature brings risks to users’ attention, allowing them to manage, report and mitigate those instabilities. Reducing risks early on prevents issues from growing as they move through product development unseen, reducing the overall cost of development. Some systems do this by “detecting” or “highlighting” risks, whereas some systems simply offer full visibility through PM tools.\r\n<span style=\"font-weight: bold;\">Workflow and Change Management.</span> Plainly said, this suite of PLM software tools gives users insight into product activities. Users can determine phases for a project, as well as assign milestones to keep projects on track. Some systems allow users to see all pending and implemented changes, as well as all items that endure the subsequent effects. This visibility extends to portfolio and resource management, also.\r\n\r\n","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/PLM_-_Product_Lifecycle_Management.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},{"id":1484,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/Platforma_3DEXPERIENCE.jpg","logo":true,"scheme":false,"title":"My Operations (3DEXPERIENCE)","vendorVerified":0,"rating":"1.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"my-operations-3dexperience","companyTitle":"Dassault Systèmes","companyTypes":["supplier","vendor"],"companyId":2774,"companyAlias":"dassault-systemes","description":"Retailers across all product categories are pressured to generate growth even in the midst of continued economic slowdown and reduced consumer spending. Market volatility and fluctuating demand require planning foresight and flexibility to bring the right products to the right market at the right time. No brand wants a potential consumer to walk out of their store because the skirt or pants that go with the jacket they picked out has not yet been delivered. Mishaps like these adversely affect a brand’s image and ultimately its business.\r\nIn such a demanding market, companies need intelligent planning! What forecasts to use? What demand signals to prioritize? How to position materials and production in the supply chain for better response? How to streamline workflow between different production sites to manufacture and ship products at the lowest possible cost? How to fulfill orders in an omni-channel environment where consumers have multiple delivery choices? With efficient and intelligent planning through the entire value chain, brands and retailers can reduce their cost of goods sold while improving consumer satisfaction and loyalty.\r\nMy Operations Industry Solution Experience delivers intelligent planning solutions for end-to-end operations optimization, from demand to delivery. Tailored to the Consumer Goods and Retail industry, My Operations provides a powerful planning environment and real-time access to information for the entire value chain.\r\nDassault Systèmes’ planning solutions are fully integrated, enabling companies to achieve the kind of enterprise-wide transformation not possible with a diverse and incompatible array of planning solutions. With My Operations, Consumer Goods and Retail companies can solve complex and fluctuating operational challenges by streamlining and simplifying their supply chain. From demand planning to delivery, they fulfill consumers’ “want it now” expectations while mitigating delays and unwelcome costs.","shortDescription":"My Operations (3DEXPERIENCE) Intelligent Planning from Demand to Fulfillment:\r\n- My Demand Planning\r\n- My Supply Planning\r\n- My Production Planning\r\n- My Logistics Planning","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":6,"sellingCount":19,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"My Operations (3DEXPERIENCE)","keywords":"","description":"Retailers across all product categories are pressured to generate growth even in the midst of continued economic slowdown and reduced consumer spending. 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It utilizes the resource allocation of activities of employees, materials and production capacity, in order to serve different customers.<br />Different types of production methods, such as single item manufacturing, batch production, mass production, continuous production etc. have their own type of production planning. Production planning can be combined with production control into production planning and control, or it can be combined with <span style=\"font-weight: bold; \">enterprise resource planning (ERP)</span>. \r\nProduction planning can help in efficient manufacturing or setting up of a production site by facilitating required needs.A production plan is made periodically for a specific time period, called the <span style=\"font-weight: bold; \">planning horizon.</span>\r\nIn order to develop production plans, the <span style=\"font-weight: bold; \">production planner</span> or <span style=\"font-weight: bold; \">production planning department</span> needs to work closely together with the marketing department and sales department. They can provide sales forecasts, or a listing of customer orders.\r\n<span style=\"font-weight: bold; \">Production scheduling</span> is the process of syncing and planning the steps in the manufacturing process to ensure that production runs smoothly and customers receive what they ordered on schedule.\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">Areas of production scheduling</span></p>\r\n<ul><li><span style=\"font-weight: bold;\">Procurement</span>: Production can't proceed if you don't have the materials necessary for manufacturing. Procurement scheduling is an art and a science that involves keeping enough on hand without carrying a bloated inventory. You can tighten procurement systems by using digital or manual spreadsheets to track inventory and by developing relationships with suppliers who can get you what you need consistently and quickly.</li><li><span style=\"font-weight: bold;\">Personnel</span>: Planning and scheduling employee time is critical to developing a successful production work flow plan. There should be enough workers on hand to finish projects within the promised time frame but not enough to bloat your payroll or create inefficiencies by crowding your work space. It helps to understand the strengths and weaknesses of each staff member so you can leverage employee skills and circumvent potential difficulties.</li><li><span style=\"font-weight: bold;\">Machinery</span>: Like your employees, your equipment has a limited number of capacity hours that should be scheduled thoughtfully. Machines should be well maintained according to a schedule that doesn't take them out of production any longer than necessary.</li></ul>\r\n<p class=\"align-center\"><span style=\"font-weight: bold;\">Tools for Scheduling Production </span></p>\r\n<ul><li><span style=\"font-weight: bold;\">Software</span>: Once the logistics of your production schedule become complex enough to bog you down, there is a range of software options available to help you manage the details. Programs help you to set priorities, coordinate processes and manage staffing.</li><li><span style=\"font-weight: bold;\">Written documents</span>: If your production processes are relatively simple, you may be able to effectively create useful and meaningful lists so team members and managers have a clear idea of what needs to happen and in what order. Timelines and flow charts can help to provide useful visuals to help staff understand how processes interface.</li><li><span style=\"font-weight: bold;\">Custom spreadsheet</span>s: You can also design your own spreadsheets to plan and communicate work flow. Custom spreadsheets offer the advantage of being tailored specifically to your company and your processes. They pose the disadvantage of potentially being less robust or nimble than a software system designed by professionals drawing on a deeper and broader database of scheduling tools and knowledge.</li></ul>\r\n<p class=\"align-left\"><br /><br /></p>","materialsDescription":"<h1 class=\"align-center\"> <span style=\"font-weight: normal;\">What is production planning?</span></h1>\r\n<span style=\"font-weight: bold;\">Production planning</span> – a systematic approach, which helps to calculate and estimate goals and stages of manufacturing process during the constant changes of multiple factors. Some of these factors might include an increase of product range, introduction of new manufacturing equipment, changing inventory stock and others.<br /><br />For a manufacturers it is very important to be able to make calculations and estimates of these factors as precisely, as possible. As a result they want to be able to answer all of the following questions:\r\n<ul><li>What are we planning to produce?</li><li>What do we need for that?</li><li>What do we have?</li><li>What else is needed?</li></ul>\r\n<h1 class=\"align-center\"><span style=\"font-weight: normal;\">What are the types of production planning software?</span></h1>\r\n<p class=\"align-left\">The development of technology has made production-planning process very easy to perform. While there are still manufacturing companies, utilizing pen and paper, when doing their MRP estimates, most manufacturing companies using one or the other type of software solution.</p>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">Spreadsheet based software </span>– Excel, Open Office or Google Documents. For example Microsoft Excel comes with a standard Microsoft Office package already preinstalled on every Windows PC, thus baring no additional expenses for business.</p>\r\n<p class=\"align-left\">In addition, Excel is a very easy tool to work with, it has a big user database worldwide, so any question that might occur will be answered. However, no matter how good of a tool Excel is, it has its limitations. One of these limitations is speed – the more different tables and individual files are being interlinked between each other, the slower is the performance of an Excel work file.<span style=\"font-weight: bold;\"></span></p>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">Custom made planning software </span>– this includes solutions done in-house. Companies that decide to go this route, most often than not have experience working with Excel or similar spreadsheet based software. By creating solution in-house manufacturer is thinking of increasing the productivity and reliability of its planning department. While idea of using some sort of software instead of a complex spreadsheet is a good one, creating a totally new planning software from scratch could be very challenging. <span style=\"font-weight: bold;\"></span></p>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">Specialized production planning software</span> – a professionally developed production planning software for small business offers the best of two worlds – it provides all the production planning features that a small business needs and unlike spreadsheet software it is fast and reliable.</p>\r\n<h1 class=\"align-center\"><span style=\"font-weight: normal;\">What is project management software?</span></h1>\r\nProject management software is a suite of tools that helps improve production teams’ efficiency. They usually come as cloud-based, multi-user platforms that host features such project planning and scheduling, collaboration, advanced reporting, and project budgeting, among many others. They are meant to ensure that all project stakeholders are constantly in the know and that every project is delivered on time.<br /> \r\n<h1 class=\"align-center\"><span style=\"font-weight: normal;\">What does project management software do?</span></h1>\r\n<p class=\"align-left\">Some of the best features revolve around the generation of repetitive and unique tasks and projects, team collaboration, project completion, proper tracking for the purposes of budgeting and due diligence, and effective documentation. But that’s par for the course for most applications in the market. </p>\r\n<ul><li><span style=\"font-weight: bold;\">Project tracking.</span> This is the most basic function of a project management software: tracking your projects. This includes being able to track who worked on which task last, the general overview of the entire project, identifying bottlenecks, and identifying performers.<span style=\"font-weight: bold;\"></span><span style=\"font-weight: bold;\"></span></li><li><span style=\"font-weight: bold;\">Easier collaboration.</span> It makes it easier for coworkers to check on the latest changes to a project, pick up where they left off, or pick up from where their colleagues left off.<span style=\"font-weight: bold;\"></span></li></ul>\r\n<ul><li><span style=\"font-weight: bold;\">Better communication. </span>Part of the collaborative effort involves better communication, and the best project management software should make person-to-person and department-to-department communication easier and more efficient.<span style=\"font-weight: bold;\"></span></li></ul>\r\n<ul><li><span style=\"font-weight: bold;\">Documentation. </span>Since tracking a project involves documenting the knowledge gained throughout the entire endeavor, proper documentation is key. This means your app should be able to help you and your team simplify the process of documenting changes, technology, project updates, and new intelligence.</li></ul>\r\n<ul><li><span style=\"font-weight: bold;\">Accurate dashboards for reporting. </span>This is an important purpose of productivity planner app and software. Accurate reporting is a key component of identifying your company’s KPI, and project management software should help you in generating the best reports for your business. </li></ul>\r\n<h1 class=\"align-center\"><span style=\"font-weight: normal;\">What are the factors to consider when getting a project management software?</span></h1>\r\n<ul><li><span style=\"font-weight: bold;\">Task and project creation.</span> Most of the time, you’ll be using your project management software as a task calendar to create cyclical, templated projects. But once in a while, you’ll want to create unique tasks and projects for your company’s needs. The flexibility between creating unique tasks and projects and setting up templated ones is integral in ensuring that you are able to tackle projects of different shapes and sizes.</li></ul>\r\n\r\n<ul><li><span style=\"font-weight: bold;\">Simple and efficient reporting.</span> If you’re going to be working with a project management system, you’ll need accurate report creation powers. This feature is found in all of the best organiser apps in the market. And for good reason: when you’re working on a project that blew up in terms of man-hours and budget, you will want to be able to pinpoint just how much you spent on the project, and what caused the problem. A good reporting feature in a productivity calendar will go a long way in helping with this.</li></ul>\r\n\r\n<ul><li><span style=\"font-weight: bold;\">File sharing options</span>. It’s always awesome whenever a project management solution offers decent storage space for all the files you’ll be sharing. But sometimes, having the option to use a third-party storage solution like Box or Dropbox can be helpful too, especially if you’re more familiar with another cloud storage provider.</li></ul>\r\n\r\n<ul><li><span style=\"font-weight: bold;\">Intuitive and clean UI. </span>A good user interface can make or break a good project management team. Sometimes, having an easy time using the application can be more important than what the application can do.</li></ul>\r\n\r\n<ul><li><span style=\"font-weight: bold;\">Reliable support.</span> Who are you going to call when something breaks in your project management software? Knowing that you’re working with people who are willing and able to help you come up with a solution to your app’s issues is a treasure</li></ul>\r\n<p class=\"align-left\"> </p>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Production_Planning.png"},{"id":64,"title":"PLM - Product Lifecycle Management","alias":"plm-product-lifecycle-management","description":"<span style=\"font-weight: bold; \">Product lifecycle management,</span> sometimes "product life cycle management", PLM, represents an all-encompassing vision for managing all data relating to the design, production, support and ultimate disposal of manufactured goods. Product life management concepts were first introduced where safety and control have been extremely important, notably the aerospace, medical device, military and nuclear industries. These industries originated the discipline of configuration management (CM), which evolved into electronic data management systems (EDMS), which then further evolved to product data management (PDM).\r\nOver the last ten years, manufacturers of instrumentation, industrial machinery, consumer electronics, packaged goods and other complex engineered products have discovered the benefits of PLM management and are adopting efficient PLM software in increasing numbers.\r\n<p class=\"align-center\"><span style=\"font-weight: bold;\">The PLM Stages</span></p>\r\n<span style=\"font-weight: bold; \">Beginning of Life (BOL):</span> The beginning of life phase includes all of the design and manufacturing, which consists of the initial conceptualization and development, and any prototypes built. Initial development has multiple sub-actions that identify all the requirements, concepts, and necessary testing. \r\n<span style=\"font-weight: bold; \">Middle of Life (MOL):</span> The middle of life phase is post-manufacturing, when your product is distributed, used, and serviced. At this point, your product is in the hands of the end user. You can collect data on any failures, maintenance rates, and user experience to get information for immediate fixes and future development.\r\n<span style=\"font-weight: bold; \">End of Life (EOL):</span> The end of life phase is the retiring, recycling, or disposing of your product. At this point, the reverse logistics happen for the company. EOL starts when users no longer have a need for the product. At this stage, companies collect information about what parts and materials are still valuable.\r\n<span style=\"font-weight: bold;\">Product lifecycle management software</span> is used to deliver all kinds of products to market, which means there are a lot of different providers out there. Its purpose today is to help organizations: \r\n<ol><li>Develop new products using CAD software</li><li>Produce and manufacture new products</li><li>Bring those products to market</li></ol>\r\nAnd increasingly, product life management software has to process the feedback from the market back to the design and production processes. To achieve these goals, product lifecycle management solutions have to do four things:\r\n<ul><li>Link together CAD metadata with a bill of materials</li><li>Manage workflows for organizations needed to bring products to market</li><li>Manage product data as they move through the product development lifecycle stages</li><li> Hook in auxiliary suppliers and business stakeholders to a shared version of truth or single source of truth.</li></ul>\r\n\r\n","materialsDescription":"<h1 class=\"align-center\">Top PLM System Software Requirements</h1>\r\n<span style=\"font-weight: bold; \">Bill of Materials.</span> Having a common source of information across your company is incredibly important during product development. That’s why a bill of materials (BOM) is key to include in your list of product lifecycle management requirements. At the very least, your system should provide a single definition of a particular product and its components. More advanced options include features specifically designed for different team members such as designers, engineers and other professionals who frequently collaborate.\r\n<span style=\"font-weight: bold; \">Computer-Aided Design Management.</span> Managing your CAD activities and documents is more than useful when it comes to PLM. Your solution should be able to manage changes to product configurations while maintaining the functional and physical attributes of a product throughout its lifecycle. Production engineering changes should proliferate throughout your processes, with the changes evident in the subsequent BOMs and plans.\r\n<span style=\"font-weight: bold; \">Manufacturing Product Management.</span> During a product’s lifecycle, you want to keep an eye on your portfolio. With portfolio management, users can determine the proper investment balance to maximize their research and development investment returns. Some systems provide strategy tools to spotlight priorities and support planning. Top PLM software can even determine the best possible investment scenario. Users can also track project progress to completion, which is automatically documented in the product record. This allows greater insight into your processes, facilitating better resource management and allocation.\r\n<span style=\"font-weight: bold; \">Product Regulation and Governance.</span> Failing to follow regulation and compliance standards is one of the quickest ways to earn your business a bad reputation. But having the right tools built into your product life management system can make staying compliant much easier than it would be otherwise. Your solution should be able to centralize relevant information and documentation, making it easier for enterprise organizations to achieve and maintain compliance. You also may choose a system that can comply with medical, environmental, safety, FSA and ISO standards depending on your industry.\r\n<span style=\"font-weight: bold; \">Project and Component Maintenance.</span> Project management tools are vital for providing users visibility into daily processes and progress. These features include tracking and scheduling capabilities, which enable you to manage product development along with resource allocation in real time. Users can also see upcoming milestones and constraints for further planning.\r\n<span style=\"font-weight: bold; \">Quote Process Management.</span> Data from many different sources is often needed during the quote process. PLM’s inherent coordination capabilities gather and organize data pertaining to product design to support your engineering teams. This includes teams developing engineer-to-order and configure-to-order products. The system only shares the necessary data, meaning your team members can spend more time focusing on their work and less on hunting down information. \r\n<span style=\"font-weight: bold; \">Risk Management. </span>This feature brings risks to users’ attention, allowing them to manage, report and mitigate those instabilities. Reducing risks early on prevents issues from growing as they move through product development unseen, reducing the overall cost of development. Some systems do this by “detecting” or “highlighting” risks, whereas some systems simply offer full visibility through PM tools.\r\n<span style=\"font-weight: bold;\">Workflow and Change Management.</span> Plainly said, this suite of PLM software tools gives users insight into product activities. Users can determine phases for a project, as well as assign milestones to keep projects on track. Some systems allow users to see all pending and implemented changes, as well as all items that endure the subsequent effects. 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