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Select "Barcode Printing" in the extended function module of the laser marking software (provided that the laser software you use has this module), configure the serial port parameters, and print the script. Generally, there will be a default print script template for you to choose from, but you have to determine which brand your barcode printer is and which script it supports (such as ZPL script for "Zebra", TSPL script for "Taiban", PPLA and PPLB script for "Lixiang"). You can set whether to print the barcode before marking or after the marking is complete.
If your laser software does not have the extended function of "barcode printing", you can only use a barcode scanner to achieve the consistency of barcode labeling and laser marking (the purpose of the synchronization between the laser marking machine and the barcode printer is generally to ensure the consistency of the laser marking and the barcode, and this purpose can also be achieved with the barcode gun). Connect the laser marker to the computer with the barcode gun, and set the mark to "keyboard" on the laser software, so that the text content scanned by the barcode gun will automatically replace the content of the original mark for marking. The specific steps are:
The barcode printer prints the barcode.
Start the marking (at this time, the software will not start the marking directly, but wait for the input of the barcode gun) to scan the barcode gun, and the laser marker will automatically mark after the code is scanned.
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Such a demand, you should need to find a software company to do barcode software customization, otherwise the general software may be difficult to meet the requirements.
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I guess you'll have to find the developer of the control software.
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The marking machine can also be used directly.
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Wouldn't it be nice to directly design the renderings of the barcode and marking together for marking?
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Laser marking machines can also print barcodes.
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The start-up sequence of DH50 diode laser marking machine mainly includes the following steps:
1. First of all, we turn on and close all the power supplies; 2. Turn on the chiller; 3. After turning on the chiller, when there is a bang from the cabinet (before the next step can be operated), turn on the laser power supply; 4. Adjust the current on the laser power supply to about 5A, and then press the turn button on the laser; 5. Then the Q switching power supply is started; 6. Turn on the power supply of the galvanometer (uncover the plastic cover on the field mirror) 7. Turn on the industrial control computer 8. Open the marking software on the computer and operate. The correct and standardized method uses the HLD50 diode laser marker, which can make the HLD50 diode laser marker last longer.
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HLD50 Diode Laser Marking Machine Instruction Manual, you go to find it, there are detailed instructions.
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Hehe, it's a senior girl, look at the reference materials I gave you. There will be inside
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Go to the bookstore and look at the laser bookhandles, there is no specific.
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Circuit diagram of semiconductor laser marking machine Principle Description??? It's hard to find, and other companies may not have it.
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Circuit diagrams are trade secrets. It's hard.
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For details, please consult Lixing Laser Technology****.
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The diode laser marking machine is mainly used for marking, and almost all metals and most of the non-metals can be marked. The semiconductor laser marking machine is currently the most mature and affordable laser marking machine, such as the 50w laser marking machine in Shengming, Shenzhen, which only costs 40,000 yuan. In addition, the high-power diode laser marking machine can cut some thin metal plates or non-metal plates.
For example, when the 100w semiconductor laser marking machine of 60,000 yuan is used with a 50*50mm field mirror, the metal business card (aluminum) can be cut through at one time, and the 1mm can be divided into three times, and the 2mm colored rubber plate can also be cut through at one time. If you don't want to invest in a professional cutting machine, you can do some simple cutting work.
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It is mainly marked on metal materials, or some slots. It can also play part of the non-metal (production of laser marking machine, pneumatic marking machine, laser engraving machine, burnt machine)***, good service, ** is reasonable.
Click on the information to contact me Mr. Wang).
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The diode laser marking machine can do a lot of things, and can mark metals and a variety of non-metals. It is suitable for some processing occasions that require finer precision, higher precision and depth. You can go to Shenzhen Chaoyu Laser for more consultation.
It is widely used in electronic components, integrated circuits (IC), electrical appliances, mobile communications, hardware products, tool accessories, precision instruments, glasses and watches, jewelry, auto parts, glue buttons, building materials, food and drug packaging, PVC pipes, medical equipment and other industries.
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Hit the patterns and images of metal surfaces, logos and much more!
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It is mainly marked on metal materials and some PC materials for marking.
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The working principle of laser marking with diode laser-pumped all-solid-state laser (DPSSL) is to use a high-power semiconductor quantum well laser instead of a gas lamp to pump a solid-state crystal as a gain medium laser resonator, so that it can generate a new wavelength of laser, and use the crystal standby frequency mixing to generate SHG, THG and other wavelengths of laser. Through the design and establishment of the entire laser marking process, operating procedures and quality standards from incoming material re-inspection, part production, process inspection, first-class debugging to finished product general inspection.
Is that the case? Seventy percent of the cost of fiber lasers comes from semiconductor lasers.
The employment prospects of semiconductor materials are quite good, mainly in materials research. You can be employed in polysilicon semiconductors, physical materials and other industries, and graduate students can be employed in materials research institutes or universities.
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