QR codes, barcodes, serial number laser marking machine

QR codes, barcodes, serial number laser marking machines
Almost all the products we see in the food or manufacturing industry today have codes. Whether it's our favorite beverage or the soft drink you tried for the first time, or the vehicle parts you are exploring to purchase, the process of laser engraving QR codes or laser marking barcodes and serial numbers on various products is quite easy to understand. Although this may seem like a fancy addition to the technical design of these products, the existence of these codes is mandatory for more technical reasons, not just for creative appearance.
In fact, from clothing to accessories and technological products, the process of laser engraving QR codes and laser marking barcodes exists on various items, making it easier to access, track, and analyze the manufacturing and supply of these items. Moreover, since each industry produces thousands of products every day, there must be a logical method to track product/project numbers and their availability, right? Although early manufacturing managed the tracking and quantity analysis of different types of products in a more complex way, the innovation of laser technology and its application in laser engraving QR codes, barcodes, and serial numbers have made such processes easier and more sustainable.
After all, when the laser-engraved code appears on a piece of fabric of a metal machine, even if the product has been in use for many years, you can easily expect that the code will still remain in its position. Yes, this is the reliability and durability of laser technology, especially in today's developed countries in terms of maintenance and tracking of different manufacturing processes. But is this all there is to exploring laser technology and why it is used to engrave codes on different products used in our current daily lives? We believe that when it comes to the importance of laser technology for laser marking barcodes and serial numbers, there is still much more to explore. Therefore, without delay, let's delve into this process in detail below!
How common are laser marking in code production?
Laser technology is widely applied in developed countries today. We cannot ignore the significance of this technology, as it makes many daily manufacturing and design processes more reliable, more durable, and more convenient. In fact, the use of laser technology and laser equipment also limits the need for more physical labor through manual services in various ways. This might be one of the reasons why we consider technology as an advanced way to handle various types of tasks by itself and automatically.
However, when it comes to witnessing the same technologies, have you ever considered laser engraving QR codes and laser marking barcodes or serial numbers as a common practice similar to laser engraving of diamonds and metal components? We assume you have, because these barcodes, serial numbers, and QR codes are almost ubiquitous on every product today.
When it comes to this, every time you visit a grocery store or a shopping mall, you can easily find these human-unreadable codes on various products. From bar design to strange codes written in technical language (which we find difficult to understand), every item around us can easily have such serial numbers and QR codes. In fact, when processing our bills, these QR codes and serial numbers are often seen being read and tracked by computer systems. As it sounds here, this is precisely how these codes enable the computer system to analyze and track the products from the store's product records with such smoothness. In this way, the system hardly needs even a second or a minute to assess what the product is, its specifications, price, and batch number.
In conclusion, due to these laser-engraved QR codes and barcodes, this process is fast and smooth. This technology has been widely recognized in various industries today. Mainly, the ease of use or traceability of components or any project with such codes ensures the security and strict management of the technical records, without any human errors.
Therefore, if you haven't explored these codes on various products yet, it's time to start paying attention and understanding how these serial numbers and/or QR codes appear on the surfaces of various items, whether they are made of metal, fabric, plastic, or alloy. This is also one of the main reasons why manufacturing and production industries have become more advanced and balanced, resulting in convincing outcomes in both individual and large-scale production.
The demand for laser engraving and marking technology:
Although we have discussed how easy and widespread the process of finding laser-engraved QR codes or laser-marked barcodes is, is this process really important? Undoubtedly, for decades, the manufacturing and production industries have held the position of large-scale production. Therefore, for the growth of different production industries, this is certainly not a new process.
However, what makes the innovation of laser technology make this process more reliable and accessible in today's production industries? Even without using laser for engraving QR codes and laser for marking barcodes, can one still achieve convincing production results? The answer is no.
Although the process of handling products would still be possible without laser engraving and marking technology, it might not be as orderly and error-free as it is today. Some examples that can help understand the requirements of laser engraving and marking technology include:
Batch production industry:
This is a type of industry that produces most large quantities of products. It can include the automotive industry, the medical technology production industry, and even the electronics industry. In these industries, the existence and use of laser engraving technology can be used for engraving lines and QR codes, which are the serial numbers on the products. Since these industries produce a large number of similar products every day, such as single-brand medicines, single spare parts, etc.,
It is crucial to track the quantity of them as well as the quantity of each product that is manufactured in the same way as these. Although other tracking methods may help to continue this process with considerable accuracy, human error is an unavoidable factor that cannot be avoided in any way. Therefore, with the advancement of technology and the use of laser-engraved QR codes, as well as laser-marked barcodes on such items, it is easier to leverage highly reliable product and part traceability.
What do these codes mean?
Although it is not easy to engrave these barcodes and QR codes on large-scale manufactured items at present, once they are read by the computer system, you can still understand what they refer to. This includes data about the product/specific goods, which only helps to access detailed information about the item. This data can be:
Data matrix code or barcode
Part/attribute details
Production data Batch number
The price or value of the product Shape
Size
Used materials
Product type/category and more.
By laser engraving QR codes and laser marking barcodes on any type of products sold or distributed in the market, it is easier to ensure that these codes and the detailed information of the specific product can be accessed and read by electronic devices and professionals themselves.
Its significance: Do you really need it?
Ideal materials for laser engraving:
Although we have seen codes and serial numbers marked on various products, there are some limitations to the products that can be easily marked using these machines. Moreover, since laser technology and the heat it generates usually damage the surface or composition of the internal products, it is crucial to use items that can handle laser-engraved QR codes and laser-marked barcodes without causing any changes or harmful effects to the products themselves. Therefore, the ideal material is:
Stainless steel, alloy steel
Aluminum, anodized aluminum
Titanium, titanium alloy Brass
Copper, other precious metals
Coated metals and certain types of plastics, such as
PA, PC, PE, PET, PMMA
Silicone or many other plastics
Since the processes of laser marking barcodes and laser engraving QR codes are slightly different, determining which process to use depends on the type of material and materials that can be used on the product for a longer time even after multiple uses.
What makes it a reliable modern innovation?
As mentioned earlier, there are many other options for marking and engraving QR codes and barcodes/serial numbers on different products in today's production. However, when it comes to choosing a more durable, high-quality, and damage-free engraving and marking method for bookends manufacturers, having such codes can help better identify products during product distribution, sales, and subsequent usage. Laser technology is the most reliable. Some of the main features of laser technology and why it is an ideal option for marking barcodes, serial numbers, and QR codes include:
Apply permanent markings to all or any types of products
Can mark flexible and dynamic data; add more creativity and reading convenience for both humans and machines
Economical production - Therefore, you only need a few machines to complete large-scale production of engraving and marking tasks, without the need for manual assistance in each process.
Complete laser marking in just a few seconds, increase production throughput and save time for manufacturing.
Perfect identification result, with quality remaining unchanged
Integrated into the production line, it will not affect or damage the production of the products.
Non-contact and process-safe material processing to ensure the user safety of the products after laser usage
Sturdy and durable, ensuring that it will never be erased from the product.
Conclusion:
Modern laser technology and laser engraving of QR codes, serial numbers and barcodes offer so many benefits on today's manufactured items. Compared to the unrealistic and temporary methods, this is undoubtedly a great upgrade for code marking. What's your opinion on this?