Manufacturable
Manufacturable, an adjective, describes a design, process, or product that can be efficiently and effectively created in a manufacturing environment. It implies that the item's components, assembly, and overall structure are suited for mass production, considering factors like cost, materials, ease of assembly, quality control, and scalability. A manufacturable item is designed with the limitations and capabilities of manufacturing processes in mind, minimizing waste, reducing lead times, and ensuring consistent quality across all produced units. This contrasts with designs that are impractical or overly complex for industrial production.
Manufacturable meaning with examples
- The engineers revised the prototype's design to make it manufacturable, simplifying the assembly process and selecting readily available, cost-effective materials. They ensured the revised model was suitable for large-scale production. The goal was to create a product that could be consistently and affordably made in high volumes to meet the predicted market demand.
- Before launching the new phone model, the company performed extensive simulations to assess the manufacturability of the design. This included testing various production line configurations, simulating assembly procedures, and evaluating the suitability of different materials for high-speed manufacturing.
- The primary challenge was making the intricate design of the microchip manufacturable. Researchers spent considerable time optimizing the layout and processes to ensure that it could be produced with high yields in the existing semiconductor fabrication facilities.
- During the product development phase, the team focused on creating a design that was both innovative and manufacturable. They sought a balance between cutting-edge features and the practical constraints of their existing manufacturing infrastructure.
- The successful integration of robotics into the production line significantly improved the manufacturability of the product. The automated assembly processes reduced the time required per unit and helped to minimize errors, making the production more efficient overall.