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Software Functionality Revealed in Detail
We’ve opened the hood on every major category of enterprise software. Learn about thousands of features and functions, and how enterprise software really works.
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 jit lean manufacturing


Lean Manufacturing: A Primer
Lean manufacturing emphasizes the minimization of the amount of all the resources (including time) used in the various activities of the enterprise. The typical

jit lean manufacturing  just-in-case rather than just-in-time (JIT). Traditionally, manufacturers have used the concept of economic order quantity (EOQ), which is also known as economic lot size or minimum cost order quantity, to determine their optimal manufacturing batch and lot sizes or quantities of purchased materials. EOQ is a type of fixed order quantity model that determines the amount of an item to be purchased or manufactured at one time, with the intent of minimizing the combined costs of acquiring and carrying

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Software Functionality Revealed in Detail

We’ve opened the hood on every major category of enterprise software. Learn about thousands of features and functions, and how enterprise software really works.

Get free sample report
Compare Software Solutions

Visit the TEC store to compare leading software by functionality, so that you can make accurate and informed software purchasing decisions.

Compare Now

ERP for Manufacturing (SMB)

TEC's new ERP for Manufacturing (SMB) evaluation model targets the software requirements of small and medium enterprises. If your organization doesn't have many sites to operate, seeks a solid base of ERP functionality, but doesn't want every possible feature of the biggest systems on the market, this model is a good starting place for your research. It covers fully featured accounting solutions with necessary manufacturing, inventory, human resources, purchasing, quality, and sales management functionality. 

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Documents related to » jit lean manufacturing

Manual versus Information Technology Enabled Lean Manufacturing


All good lean systems have both physical systems in the plant and near real time information technology backbones that centralize data. The primary advantage of enterprise systems is that they can handle considerably more information than can be accommodated manually.

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Enterprise Resource Planning Vendors Address Lean Manufacturing


Intentia, Fujitsu Glovia, QAD, and SSA Global's solutions supporting lean manufacturing are examined. Which areas the extended enterprise resource planning (ERP) vendors excel in depends on their original ERP system's suitability for repetitive versus to-order environments.

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How to Achieve Lean Manufacturing


Lean manufacturing is a transformational exercise that requires an organization to cast aside long-held beliefs and business processes. The five main steps to achieving lean transition are defining value, mapping the value stream, making the activities flow, responding to customer demand, and continuous improvement.

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The Theory of Constraints Enters the Lean Manufacturing Arena


Lean principles are difficult to employ in complex environments, but materials requirement planning has well-known limitations. The theory of constraints, which is complementary to lean manufacturing when it comes to low volumes and complex environments, may provide an answer.

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Process Manufacturing (ERP)


The simplified definition of enterprise resource planning (ERP) software is a set of applications that automate finance and human resources departments and help manufacturers handle jobs such as order processing and production scheduling. ERP began as a term used to describe a sophisticated and integrated software system used for manufacturing. In its simplest sense, ERP systems create interactive environments designed to help companies manage and analyze the business processes associated with manufacturing goods, such as inventory control, order taking, accounting, and much more. Although this basic definition still holds true for ERP systems, today its definition is expanding. Today's leading ERP systems group all traditional company management functions (finance, sales, manufacturing, human resources) and include, with varying degrees of acceptance and skill, many solutions that were formerly considered peripheral (product data management (PDM), warehouse management, manufacturing execution system (MES), reporting, etc.). While during the last few years the functional perimeter of ERP systems began an expansion into its adjacent markets, such as supply chain management (SCM), customer relationship management (CRM), business intelligence/data warehousing, and e-Business, the focus of this knowledge base is mainly on the traditional ERP realms of finance, materials planning, and human resources. The old adage is "Such a beginning, such an end", and, consequently, many ERP systems' failures could be traced back to a bad software selection. The foundation of any ERP implementation must be a proper exercise of aligning customers' IT technology with their business strategy, and subsequent software selection. This is the perfect time to create the business case and energize the entire organization towards the vision sharing and a buy in, both being the Key Success Factors (KSFs). Yet, these steps are very often neglected despite the amount of expert literature and articles that emphasize their importance.  

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MISys Manufacturing


A modular system, the first level of MISys Manufacturing provides the basic functionality common to all manufacturing firms' needs. Additional MISys modules include serial/lot tracking, bin tracking, manufacturing orders, master production scheduling (MPS), material requirements planning (MRP), shop floor control, capacity planning, and more.  

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Manufacturing Strategy: An Adaptive Perspective


Adaptive manufacturing enables companies to produce goods efficiently and manage variability proactively. However, it must be managed as an end-to-end, closed-loop process with tight linkages between manufacturing applications, adjacent enterprise applications, and—most importantly—the technology behind these applications. Such integrated networks enable the process visibility and collaboration capabilities that, ultimately, are the key to building an adaptive manufacturing enterprise.

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How to Choose a Manufacturing System


If you’ve worked for more than one manufacturing company, you know that each one is different. Different processes, systems, problems—all these variations mean you need a system tailored to your needs. And with so many available solutions, you could spend months looking at demos, and still not find it. However, you can start by asking yourself eight simple questions.

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Manufacturing Software for an Integrated Steel Plant


Manufacturing processes for an integrated steel plant typically encompass three distinct types of manufacturing: flow manufacturing, process manufacturing, and mill manufacturing, meaning that such a plant is effectively a mixed-mode manufacturer. Software systems for these manufacturers' diverse needs are of critical importance. Learn about specific software capabilities you should be looking for.

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Manufacturing in the Cloud


Cloud services will be a leading driver of productivity for manufacturers over the next decade. Businesses focused on reducing costs and improving the quality of manufacturing solutions will increasingly turn to the cloud for SaaS solutions. Read this white paper by president and CEO of inKumo, Inc., and find out how this new era of technology will dramatically improve productivity and cost savings in the industry.

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