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In the medical device industry, thorough traceability is required to ensure product quality management and safety. In particular, the traceability of components during the manufacturing process is essential for rapid response in the event of product recalls or quality issues. Printing with a laser marker is effective for ensuring traceability, as it is highly durable and can retain information over a long period. Our hybrid (YVO4・Fiber) laser marker is ideal for printing on metal substrates and strongly supports the traceability of medical devices. 【Usage Scenarios】 - Printing serial numbers on components in the manufacturing process of medical devices - Printing lot numbers and manufacturing dates on metal medical instruments - Printing model numbers on medical devices using aluminum substrates 【Benefits of Implementation】 - High durability of laser printing enables long-term retention of information - Improved visibility through clear printing on metal substrates - Strengthened quality management system due to enhanced traceability
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In the aerospace industry, traceability of parts is extremely important, and accurate information management during manufacturing processes and maintenance is required. Especially for parts used in harsh environments, the durability and visibility of markings are essential. Laser marking is an effective means to meet these demands. 【Usage Scenarios】 * Printing serial numbers on aircraft parts * Printing model numbers on spacecraft components * Parts management in the manufacturing process 【Benefits of Implementation】 * High-precision marking on metal substrates * High durability and visibility * Improved traceability
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In the automotive parts industry, quality control and traceability of components are crucial. In particular, the identification of parts during the manufacturing process is essential to prevent the occurrence of defects and ensure product reliability. Laser marking is widely used for part identification as a marking method that excels in durability and visibility. Our hybrid (YVO4・Fiber) laser marker is ideal for printing on aluminum substrates and metal parts, enhancing traceability. 【Application Scenarios】 - Printing on metal parts - Laser cleaning of substrate surfaces - Color printing on mounted resin connectors 【Benefits of Implementation】 - Enables laser printing on metal materials - Improves traceability - Strengthens quality control of components
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In the IoT device industry, there is a trend towards miniaturization of products, which requires high-density component mounting on circuit boards. Consequently, marking on the circuit boards must also be smaller and more visible. Traditional marking methods have faced challenges such as damage to the circuit board from heat and issues with printing accuracy. Our UV laser marker can print extremely small characters and 2D codes with high precision while minimizing thermal impact. This contributes to improved quality in the manufacturing of small IoT devices and the visualization of product information. 【Application Scenarios】 - Printing model numbers, serial numbers, logos, etc., on the circuit boards of small IoT devices - Printing extremely small characters and 2D codes on high-density mounted circuit boards - Printing on various materials such as gold, copper, resin, and ceramics 【Benefits of Implementation】 - Reducing thermal damage and improving the reliability of circuit boards - Visualizing product information through high-precision printing of extremely small characters and 2D codes - Enhancing design flexibility by accommodating various materials
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In the robotics industry, accurate tracking of components is crucial for streamlining the manufacturing process and quality control. Particularly for high-density printed circuit boards and small parts, highly visible markings are required. Blurry prints or easily fading markings can lead to tracking errors and the occurrence of defective products. Our UV laser marker prints extremely small characters and 2D codes with high precision, providing strong support for component tracking. 【Usage Scenarios】 - Pickup of components by robotic arms - Position management of components on the manufacturing line - Ensuring product traceability 【Benefits of Implementation】 - Increased production efficiency through high-precision component tracking - Reduction of defective products and improvement in quality - Streamlined information management through 2D codes
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In the wearable device industry, miniaturization and high functionality are advancing, and precise printing on substrates is required. In particular, since there is a need to display a lot of information in a limited space, printing of microtext and high-density two-dimensional codes is important. UV laser markers achieve high-precision printing while minimizing damage to the substrate from heat. 【Application Scenarios】 - Printing model numbers and serial numbers on the substrates of small wearable devices - Printing on various materials such as metal, resin, and ceramics - Printing microtext and two-dimensional codes on high-density mounted substrates 【Benefits of Implementation】 - Improved product quality through high-precision printing - Increased design flexibility by accommodating various materials - Increased information capacity through microtext and two-dimensional code printing
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In the tablet industry, accurate printing of the manufacturing date on the circuit board is required to improve product quality control and traceability. If the visibility of the print is low, it may lead to misidentification during the manufacturing process and hinder product tracking. Our UV laser marker achieves high visibility printing with vibrant colors while minimizing damage to the circuit board from heat. 【Usage Scenarios】 - Printing manufacturing dates on tablet circuit boards - Printing product serial numbers and lot numbers - High-precision printing regardless of circuit board material 【Benefits of Implementation】 - Improved quality control through high-precision printing - Enhanced work efficiency due to high visibility printing - Increased flexibility by accommodating various circuit board materials
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In the smartphone industry, as products become smaller and more functional, accurate printing of serial numbers on circuit boards is required. Particularly, to ensure traceability in the manufacturing process, it is important to print fine characters and two-dimensional codes with high precision. Blurry printing can make it difficult to track products and may cause quality control issues. Our UV laser marker achieves high-precision printing of extremely small characters and two-dimensional codes, supporting the smartphone manufacturing process. 【Application Scenarios】 - Printing serial numbers on smartphone circuit boards - Printing manufacturing dates and lot numbers on components - Traceability management using two-dimensional codes 【Benefits of Implementation】 - Improved traceability through high-precision printing - High-quality printing with reduced thermal damage - Increased flexibility by accommodating a wide range of materials
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In the jewelry industry, precise engraving on metals and resins is required to enhance design and brand value. It is particularly important to beautifully express intricate designs and characters. Traditional engraving methods can sometimes pose challenges such as damage to the material and rough finishes. Our UV laser marker minimizes the impact of heat on the material, achieving high-precision and beautiful engravings. [Application Scenarios] - Engraving brand logos on precious metals - Engraving serial numbers on accessories - Engraving designs on jewelry [Benefits of Implementation] - Increased product value through high-quality engraving - Compatibility with a variety of materials - Adding information through printing of tiny characters and QR codes
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In the watch decoration industry, there is a demand for diverse designs and high-quality finishes. In particular, precise printing on various materials such as metal and resin is crucial for enhancing the value of products. Traditional printing methods can sometimes pose challenges such as damage to the material and rough finishes. Our UV laser marker minimizes heat damage to the workpiece and achieves precise printing with vibrant colors. 【Application Scenarios】 - Printing logos and designs on watch dials - Printing model numbers and serial numbers on metal cases - Printing decorative patterns on resin parts 【Benefits of Implementation】 - High-quality, highly visible printing - Capability to print extremely small text and tiny 2D codes - Compatibility with a wide range of materials
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In the semiconductor industry, high-precision ID printing is required to ensure the traceability of wafers. Especially as miniaturization advances, it is important to achieve highly visible printing while minimizing damage to the substrate from heat. Conventional laser markers have faced challenges regarding the impact of heat on the substrate and the accuracy of the printing. Our UV laser marker addresses these issues. 【Usage Scenarios】 - Wafer ID printing - Serial number printing on substrates - Traceability management in the manufacturing process 【Benefits of Implementation】 - Minimizes thermal damage and maintains substrate quality - High-precision printing of tiny characters and 2D codes - Compatibility with high-density mounted substrates - Achieves stable printing quality
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In the aerospace industry, durable markings on substrates are required to ensure the long-term reliability of products. High visibility markings that can withstand harsh environments are essential. UV laser markers achieve high-quality, durable printing while minimizing damage to the workpiece from heat. This enhances quality control and traceability of products in the aerospace sector. 【Application Scenarios】 - Printing model numbers and manufacturing lot numbers on aircraft parts - Identification markings on substrates of space equipment - Marking of electronic components used in harsh environments 【Benefits of Implementation】 - Improved quality control through high-precision marking - Enhanced product traceability due to long-term visibility - Reduced damage to substrates from printing with minimized thermal impact
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In the medical device industry, individual management is crucial for ensuring product traceability. Accurate information recording during the manufacturing process is essential for product quality assurance and safety, and it also aids in identifying causes in the event of an accident. UV laser markers achieve high visibility printing with vibrant colors while minimizing damage to the workpiece from heat. This enables the accurate and clear printing of information necessary for the individual management of medical devices. 【Usage Scenarios】 - Printing serial numbers on parts during the manufacturing process of medical devices - Printing lot numbers to ensure traceability of medical devices - Printing manufacturing dates and locations for quality control of medical devices 【Benefits of Implementation】 - Reliable recording of individual identification information through high-precision printing - Reduced impact on products due to printing that minimizes heat damage - Improved visibility of information through vibrant color printing
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In the automotive industry, quality control and traceability of parts are crucial. To ensure traceability, accurate marking on parts is required. UV laser markers achieve high-precision printing while minimizing damage to the workpiece from heat. This allows for accurate tracking of information from the manufacturing to the distribution of parts, thereby enhancing quality control. 【Usage Scenarios】 - Printing serial numbers on automotive parts - Tracking the manufacturing process of parts - Recording information for quality control 【Benefits of Implementation】 - Improved traceability of parts - Rapid identification of causes when quality issues arise - Increased reliability from customers
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In the electronics industry, the miniaturization and high density of products are advancing, making component identification extremely important. In particular, accurate and highly visible marking is required to ensure traceability in the manufacturing process and for quality control of products. Traditional marking methods have faced challenges such as damage to the substrate from heat, ink smudging, and fading. Our UV laser marker addresses these issues and achieves high-quality component identification. 【Application Scenarios】 - Printing part numbers, model numbers, and manufacturing dates on electronic substrates - Marking on metal, plastic, and ceramic components - Printing microtext and 2D codes on high-density mounted substrates 【Benefits of Implementation】 - Reduces thermal damage and improves substrate reliability - Achieves high visibility printing with vibrant colors - Provides high-precision marking with microtext and 2D codes - Enhances traceability and strengthens quality control
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The "LMS-K500ML" is an inline laser marking system dedicated to printing on printed circuit boards, equipped with a CO₂ laser marker. It can be integrated into SMT assembly lines (mounting lines) and allows for board printing without stopping the line. It supports printing various types of 2D codes such as QR codes, DataMatrix codes, and Micro QR codes, and also comes standard with barcode printing functionality. This enables identification management at the board level and enhances traceability. Equipped with an image processing camera as standard, it automates board position correction and confirmation of 2D code reading. It achieves stable printing quality and high reliability. 【Features】 ■ Inline laser marking that does not disrupt line tact ■ Standard equipment for printing various 2D codes and barcodes ■ Position correction, front/back distinction, and reading confirmation using an image processing camera ■ Intuitive operability via a touch panel ■ Customization according to application needs *For more details, please refer to the PDF document or feel free to contact us.
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In addition to laser, screw tightening, substrate splitting robots, and scalar types, we also support inline automation, clean room compatibility, vertical forging applications, and collaborative robot applications. Please feel free to consult with us.
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- Ideal for laser marking on metal materials that cannot be printed with CO2 lasers, such as aluminum substrates (aluminum heat dissipation substrates). - Used not only for printing on metal substrates but also for laser cleaning of substrate surfaces. - Capable of color printing on mounted resin connectors. - Equipped with Keyence hybrid laser marker "MD-X" series. *For more details, please refer to the PDF document or feel free to contact us.
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● UV laser markers absorb on the surface of materials and print through molecular-level decomposition. Compared to other lasers, there is no thermal damage to the workpiece, and it is possible to achieve thin engravings with vibrant colors. ● They have excellent absorption on gold and copper, which easily reflect laser light, allowing for high-quality and highly visible printing. ● In addition to various metal materials, high-color printing without thermal stress is possible on resin materials, ceramics, silicon, and more. ● Among various laser markers, it is the best for printing extremely small characters and tiny 2D codes. It is also optimal for high-density mounted circuit boards. ● With a long-life UV laser oscillator and a laser marker with a built-in power monitor, high-quality and stable UV laser printing is possible. *For more details, please refer to the PDF document or feel free to contact us.*
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■ Equipped with two laser markers on the top and bottom! It can print on both sides of the substrate, A side and B side, in a single pass. ■ In addition to the laser markers, image processing is also installed on the top and bottom, allowing for alignment and verification of two-dimensional code reading on both sides. ■ This laser marking device is ideal for increasing production efficiency for top and bottom, double-sided printing. ■ Installed laser markers: Keyence CO2 laser marker "ML-Z" series. *For more details, please refer to the PDF document or feel free to contact us.*
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● It is ideal for pre-cutting lead wires of radial-type electronic components (loose parts). ● Lead wires of solder dip components can be cut to a specific length before being mounted (inserted) onto printed circuit boards. ● The lead wire cutting, which was previously done manually with nippers, can now be easily and accurately cut to length with the Cutman. ● By changing the thickness of the upper blade (upper blade, flat blade), lead wires can be cut to various lengths from 2 to 10 mm under the component dimensions. (The standard upper blade is 3.1 mm.) ● It can accommodate components with various pin arrangements. ● The power supply is AC100V. It has a compact design that can be placed on a workbench, making it easy to transport. (Suitable for use in available space on-site, on office desks, or for lending to home workers.) ● It can be operated with one hand. The foot switch allows for switching between single action and linked operation. ● Cutting debris is collected in the included dust box. ● Demonstration units are available for loan. (Reservation required, waiting list, loan period of about 3 days, basic cost is free. Available only within Japan.)
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The "LMS-K500ML" is an inline laser marking system dedicated to printing on printed circuit boards, equipped with a CO2 laser marker. It comes standard with the ability to print 2D codes (QR codes, DataMatrix codes, micro QR codes) as well as various barcode printing functions. It is an ideal device for traceability management. It can be integrated into SMT assembly lines (mounting lines) for use. In addition to data created with the dedicated accompanying software, it is also capable of printing image data and drawing data. Moreover, it comes standard with a variety of functions, including board position correction, front and back identification, and 2D code reading confirmation using an image processing camera. 【Features】 - Adoption of a user-friendly touch panel - Allows operators to perform tasks accurately and intuitively - All operations, including creating print data, registering and editing product types, and confirming 2D code readings, can be performed with a single touch panel - Customization is possible to accommodate large boards and printing on items other than printed circuit boards *For more details, please refer to the PDF materials or feel free to contact us.
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● You no longer have to worry about static electricity problems that can build up on the human body. ● It features a refreshing green color tone. ● It is made of rubber-based material that is excellent in oil resistance and chemical resistance. ● It is a long rubber sheet, so it can be processed into any desired shape.
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Lead wire cutting machine.
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Supports all screw tightening applications that require high reliability. ■ Easy - All settings, including the driver, can be configured using the robot's teaching pendant. ■ Low cost - Balances performance and cost. ■ Short delivery time - Achieves short delivery times through standardization of parts. ■ High precision - Enables high-speed and high-precision screw tightening with newly developed HPS technology. ■ High functionality - Allows optimal fastening for each point with 16 types of setting conditions. ■ Torque confirmation - Displays the completed torque on the teaching pendant.
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Minimizing stress on the substrate to achieve a clean cut ■ Low Stress Reduces stress on the substrate with a router cutting method ■ Low Cost Reduces costs without using large dust collectors ■ Space-Saving Compact design for the workbench ■ High Speed Fast machine tact with high-precision robot specifications ■ Easy * Easy program and tool changes (* Supports 8 languages for easy switching)
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Equipped with newly developed HPS technology, high-speed and high-precision screw tightening is possible. Torque settings can be configured based on actual torque values rather than current values. With the optional touch panel controller, it is possible to display the set torque and the completed torque. Easy integration with desktop robots and scara robots. Custom solutions tailored to the workpiece and screws are also available. Up to 16 types of programs can be set, allowing torque settings to be configured for each point in combination with the robot. *For more details, please refer to the PDF document or feel free to contact us.
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Ideal for non-contact soldering and resin bonding!
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● It is ideal for pre-cutting lead wires of radial-type electronic components (loose parts). ● Lead wires of solder dip components can be cut to a specified length before being mounted (inserted) onto the printed circuit board. ● The lead wire cutting, which was previously done manually with nippers, can now be easily and accurately cut to length with the Cutman. ● By changing the thickness of the upper blade (upper blade, flat blade), lead wires can be cut to various lengths from 2 to 10 mm under the component dimensions. (The standard upper blade is 3.1 mm.) ● It can accommodate components with various pin arrangements. ● The power supply is AC100V. Its compact design allows it to be placed on a workbench, making it easy to transport. (For use in available space on-site, on office desks, or for lending to home workers, etc.) ● It can be operated with one hand. Switching between single action and linked action can be done with a footswitch. ● Cutting debris is collected in the included dust box. ● Demonstration units are available for loan. (Reservation required, waiting list, loan period of about 3 days, and the cost is basically free. Only within Japan.)
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