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WARNING ::"EFFECT AND CAUSE IS NOT HANDLED MY THIS ACCOUNT THIS IS FOR LEARNING PURPOSE AND DO IT IN SAFE PLAY GROUND"
Reverse engineering (also known as backwards engineering or back engineering) is a process or method through which one attempts to understand through deductive reasoning how a previously made device, process, system, or piece of software accomplishes a task with very little (if any) insight into exactly how it does so.
Reverse engineering is applicable in the fields of computer engineering, mechanical engineering, design, electronic engineering, software engineering, chemical engineering,[1] and systems biology.[2]
To reverse engineer a physical product, an organization will typically acquire an example of the product in question and take it apart to examine its internal mechanisms. This way, engineers can unveil information about the original design and construction of the product.
When reverse engineering a mechanical product, you start by analyzing the dimensions and attributes of the product in question, be it an aircraft, ship, vehicle, computer or piece of industrial machinery. During this analysis, you make measurements of the widths, lengths and heights of key components in the product, as these dimensions often relate to the product’s performance capacity.
Today, some engineers use 3D scanning technologies to make these kinds of measurements. With three-dimensional scanners, engineers can gain accurate readings of the product’s specs and have this information automatically logged in their databases. 3D scanning technologies include coordinate measuring machines (CMM), industrial computed tomography (CT) scanners, laser scanners and structured light digitizers.
After all the pertinent information has been gathered and recorded, you can use this data to create computer-aided design (CAD) drawings for subsequent analysis and development. CAD drawings are digital two-dimensional and three-dimensional representations of the products, which you can use to analyze the product’s design. These digital models help to unveil design intent and inform the creation of a reverse-engineered component.
Reverse engineering is often necessary in the development of computer parts due to the obsolescence of parts from prior years. For example, you might have one product with a unique innovation from two year’s earlier, but the manufacturer has since gone out of business. To link that innovation to a newer product for convenience and continuity’s sake, the engineering team will need to examine the obsolete product for its technological makeup.
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