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Design engineers, especially new engineering graduates, are always ready to come up with innovative and cool new products and ingenious systems. Yet, design for manufacturability (DFM) comes to ...
Design for manufacturing (DfM) is evolving from traditional engineering practices into a data-intensive discipline that requires real-time integration of manufacturing capabilities, supplier ...
The need for Design for Manufacture and Assembly (DFMA) began shortly after the dawn of the Industrial Revolution, but it took a hundred years for it to ultimately come into focus in the 1960s, and it ...
This third installment in the golf putter design series moves the process from reverse engineering and additive manufacturing to CAD/CAM software. Turning attention to the role of CAD/CAM software in ...
The Department of Engineering Design and Manufacturing is involved in a variety of research and training activities. The following is an overview of the areas that research teams work in, with some ...
At each transition to more advanced design and manufacturing technologies, the physical design process has undergone a transformation in breadth of requirements and depth of capability... At each ...
Electronics design engineers spend substantial effort on schematics, simulation, and layout. Yet, a component’s long-term success also depends on how well its physical form aligns with downstream ...
Technical personnel such as engineers and designers need to have input on a device's features and intended functions. In the fiercely competitive medical device and instrumentation industry, speeding ...
Product design engineers today face so many pressures associated with cost and turn-around time, that manufacturing considerations sometimes end up on the back burner. MD+DI recently interviewed three ...
The gate-all-around (GAA) semiconductor manufacturing process, also known as gate-all-around field-effect transistor (GAA-FET) technology, defies the performance limitations of FinFET by reducing the ...