Wednesday, October 13, 2010

the latest in block printer driver series

VersaLaser proudly boasts the latest in block printer driver series devices coming from next generation lasers that regulate a variety of functions, such as power, speed, pulses per inch, and other operational parameters, setting VersaLASER apart from others. The custom VersaLASER cabinet assemblies are placed in a re-locatable position for maximum portability. Features like a job time estimator, a heat- and scratch-resistant laminated safety glass outlet, a work table entry door with gas lift struts, along with a highly improved graphical user interface (and much more) are unique attributes that set these machines apart from the competition.

The best part is that you get all these superior features at unbeatable prices all across the industry. Most parts are maintenance-free (like the motors) while the others can be repaired at absolutely negligible costs. Along with that, the system has HPDFO (that is High Power Density Focusing Optics), which can intensify the power density of the beam generated, so that a variety of substrates can be marked with ease and perfection. With the lowest ownership costs, and, arguably, the best products, VersaLaser assures customer satisfaction with a highly dependable and supportive team service that you can rely upon.

the industrial application a way above the rest

Laser has made a special niche for itself in the world of industrial systems, accompanied by cutting-edge technology, clarity, and synthesis of techniques that stand way above the rest when compared to manual (or even mechanical) ways of cutting, engraving and marking. Industrial laser systems have advanced speed, precision, and versatility, which cannot be matched by any other machinery.

Laser cutting is highly acknowledged because of the greatly reduced contamination of the piece of work, and they also feature a much easier work managing capacity. The laser beam not only provides improved levels of precision, but also does not suffer from premature wear during the process. Apart from this, certain materials are very difficult to work on, and for this reason, laser technology scores above other traditional means since it can cut to the width of the laser beam, which is a hundredth of a millimeter. Mechanical techniques leave a rougher finish at the edge in comparison to laser techniques, and because of this, they require additional processing to get that standard finish that is so effortlessly achieved through the use of laser technology.

Laser acts as a medium for cutting of high quality products and gives the products an enhanced look in a lot less time. Nowadays, many objects and items are made with the help of this technology. Also, many hard materials are easily cut by the use of laser. Some of the best benefits of this technology are that it has high tolerance, repeatability, and consistency, along with high cutting speed. The qualities of cutting are vastly superior, and totally do away with dye use.

the laser cutting services

If laser cutting services are used during large quantities of manufacturing, it can be an extremely cost-effective process. Laser engraving, or laser marking, is also an important industrial process that involves extraction of tiny spots of the substance on which the procedure is being performed, so that it is delicately engraved (or “marked”) in the process. This technique is usually very complex, and for this reason it uses computer systems that make monitoring and controlling the entire movement a lot easier. Despite complex technicalities involved, this process renders very clear and clean engravings that are superior to other mechanical methods of engraving.

These procedures readily prove that laser systems have taken a great leap to accommodate all that was required out of industrial applications like cutting, marking, and engraving. With the more user-friendly and versatile systems, industrial work was never this easy before.

The Laser applications

Apart from cutting, the laser is particularly preferred for marking a wide variety of substrates with permanent aesthetic markings. Ranging from kitchen patterns to stained-glass windows, laser leaves its mark everywhere. The preference of laser marking over other methods is due to a variety of reasons, which include faster repeatability and finer precision. Similar to marking, laser engraving is also used by a range of industries, and can be performed on a wide variety of substrates like acrylic, glass, crystal, marble, granite, stone, metal, plastic, wood, and even rubber stamping material.  

mechanical engravers leave a rougher edge finish, but laser solutions, by contrast, can cut to the width of the laser beam (measured in hundredths of a millimeter), that is finer. Arrays of tiny dots are finely engraved on the material in this process. This technique is usually very exact, and for this reason, it uses computer systems that make monitoring and controlling the entire movements a lot easier.

The applications of electromagnetic radiation

The applications of electromagnetic radiation were discovered many years ago, but from then until now, this technology has constantly evolved to provide tailor-made laser systems that can be widely used in a variety of different applications. Centralizing the usage of laser technology to the sector of industrial requirements such as cutting, engraving and marking, this technology is achieving the best possible standards to provide a “perfectionist” approach towards achieving the finest precision, highest accuracy, and improved laser cutting quality. In comparison to all other available mediums, laser is one such means through which all materials can be subjected to rapid processing and consistent, cutting-edge quality. A high output beam laser is focused on the material and is controlled through the computer.

The fine, narrow beam of the laser leaves a good, high quality finish on the surface. A variety of metals such as carbon steel, aluminum, stainless steel, copper, and other alloys can be effectively marked with the help of laser systems. With high-volume cutting rates, the potential of laser systems will score well above mechanical systems (or techniques) in terms of the advantages like exactness, quality of the cutting results, immensely improved productivity, better efficiency, and the economy of the techniques is particularly applied to material fabrication industries. Laser systems immensely reduce contamination involved in other mechanical cutting techniques, which leave behind a rougher finish and also consume more energy in comparison to laser systems.

Friday, September 3, 2010

modern CO2 laser technology to laser mark

Unlike mechanical engravers, VersaLASER uses non-contact, modern CO2 laser technology to laser mark, cut and engrave a broad range of materials, like plastic, metal, glass, wood, ceramic, fabric, paper and more. VersaLASER functions like a printer and runs from Windows-based graphics programs.

Laser systems are currently being used in a variety of venues, unlike several decades ago when they were only at the beginning of this great journey that has led to the laser systems un-estimable popularity. Apart from uses in scientific, medical, and military applications, laser technology is also used in multiple commercial applications like cutting, engraving, etching, and marking. The application of laser technology in the materials cutting business is an integration that is superior to mechanical cutting solutions, due to various reasons that include a laser precise cutting capabilities, low materials loss due to its narrow-width beam, and complete flexibility in programming.

The laser advantage in cutting is attributed to a directed, high-output, adjustable-lightwave beam that is controlled via computer; the material that is to be cut is subjected to this variable-intensity, precision aligned beam that leaves a good, high-quality finish on the surface. A variety of materials, such as leather, acrylic, fabric, wood, or rubber can be effectively cut with the help of laser systems. This technology is widely used in industries of high-speed fabrication because of the three-fold cutting speed and capacity of laser systems that score well above mechanical cutting systems. Standard techniques, in terms of advantages like precision, quality of the cutting results, improved productivity, higher efficiency, and the related economics, simply do not match the perfection of laser cutting systems.

For more information about Laser Cutting and touch laser photo please visit http://www.versalaser.com/

Mechanical techniques

Properly developed Laser cutting procedures involve greatly reduced contamination of the piece of work and also includes improved work holding capacity, which is dependent upon the configuration of the laser cutting machine. The laser beam of this cutter not only provides improved levels of precision, but also does not suffer from reduced output during the process. Apart from this, certain materials are very difficult to work with, and for this reason laser technology is a superior option when compared to other traditional means since it can cut to the width of the laser beam (that is a hundredth part of a tiny millimeter).

Mechanical techniques leave a significantly rougher finish at the edges in comparison to laser techniques, and because of this, they require an additional layer of processing to get that “standard finish” that is so effortlessly achieved through the usage of laser machines. Apart from its ability to efficiently cut materials, the laser is also used in other industry applications, like engraving and marking.

Laser engraving involves using a versatile laser system to remove tiny dots of the material so that it is finely engraved (or marked) in the process. This technique is usually very complex, and for this reason it uses precision-designed computer systems to make monitoring and controlling the laser’s movement a lot easier. Despite the technicalities, this process renders very clear and detailed engravings.

This attribute is widely used in one-touch laser photo imaging that uses the laser to engrave photographs or pictures on a variety of substrates without any third party editing, saving a significant amount of time and effort in the process. It is easy to see that laser systems are making leaps and bounds in terms of their recognition and utility among various manufacturing, processing, and machining industries.