Fiber laser is a type of high-precision, high-efficiency, and high-energy laser commonly used in industrial production. The core of a fiber laser cutting machine is the fiber laser cutting controller. Because fiber lasers have high energy and the laser spot becomes extremely small after focusing, fiber laser cutting control systems are used in scenarios requiring fine cutting. In practical processing applications, the cutting surface produced by a fiber laser cutting controller is smooth and the edges are neat. Compared with other types of laser controllers, secondary processing is typically unnecessary.
Ultraviolet (UV) laser marking uses high-energy photons to directly break the molecular chains of materials, forming marks without the need for thermal processing, and is therefore often referred to as "cold processing."
EtherCAT laser controller are a core upgrade direction for laser processing equipment. By replacing traditional pulse control methods with industrial Ethernet EtherCAT technology, EtherCAT laser controller enable high-speed digital communication between the controller and devices such as lasers, servo motors, and sensors. They are widely used in cutting, engraving, welding, and other fields, and are currently the mainstream solution in high-power, high-precision laser processing.
Laser cutting is a processing technology that uses a high-energy laser beam to cut materials along a designed path. Today, laser cutting has become a very common processing method.
Protective film generally refers to a thin film attached to the surface of a product to protect it from contamination, scratches, and other damage. Common application areas include electronic products, medical devices, and the optical field.
A visual laser control system, as its name suggests, is a combination of a vision system and a laser control system, just like giving a laser control machine both eyes and a brain at the same time.
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