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Printed Circuit Board Laser Marker Product List

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CO2 Laser Marker for Printed Circuit Board Printing for Medical Devices

Stable operation with airless electric power. Improved traceability of medical devices.

In the medical device industry, quality control and traceability of products are extremely important. Especially for medical devices that relate to patient safety, a traceability system that can track the entire process from manufacturing to use and disposal is required. Accurate marking on printed circuit boards facilitates product identification and contributes to counterfeit prevention. Our CO2 laser marker for printed circuit board printing has been developed to enhance the traceability of medical devices and improve quality control. 【Usage Scenarios】 - Printing on circuit boards in the manufacturing process of medical devices - Product identification management and tracking - Recording and managing manufacturing history 【Benefits of Implementation】 - Strengthened traceability through identification management at the circuit board level - Increased information capacity through 2D code printing - Improved quality through reading confirmation with image processing cameras

  • Laser marker
  • Printed Circuit Board Laser Marker

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CO2 Laser Marker for Printed Circuit Board Printing for Home Appliances

Achieve automation of the substrate marking process and improve traceability without disrupting the line tact.

In the home appliance industry, product quality control and efficient production systems are essential. Particularly in lot management, it is important to assign accurate identification information to each circuit board to ensure traceability throughout the entire manufacturing process. Improper marking or management can lead to product quality issues and delays in the manufacturing process. Our CO2 laser marker for printed circuit board printing can be integrated into the SMT assembly line, achieving board printing without stopping the line. 【Usage Scenarios】 - Printing lot numbers on circuit boards for home appliances - Identification management of circuit boards in the manufacturing process - Strengthening traceability 【Benefits of Implementation】 - Improved production efficiency without disrupting line takt - Enhanced traceability through identification management at the circuit board level - Achieving stable printing quality through position correction and reading confirmation with image processing cameras

  • Laser marker
  • Printed Circuit Board Laser Marker

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CO2 Laser Marker for Printing Circuit Boards for Security Applications

CO2 laser marker that prevents substrate tampering and improves traceability.

In the security industry, the reliability and traceability of products are extremely important. In particular, a high level of security is required to prevent tampering and misuse of circuit boards. If the information printed on a circuit board is tampered with, the authenticity of the product is compromised, increasing the risk of misuse. Our CO2 laser marker for printed circuit board printing makes tampering difficult by directly printing onto the circuit board, thereby enhancing product traceability. 【Usage Scenarios】 * Manufacturing of electronic devices * Manufacturing of security devices * Manufacturing of highly confidential products 【Benefits of Implementation】 * Prevention of circuit board tampering * Improved product traceability * Enhanced security level

  • Laser marker
  • Printed Circuit Board Laser Marker

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CO2 Laser Marker for Double-Sided Printing of Printed Circuit Boards for Communication Authentication

Increase production efficiency with an inline laser marking system that supports double-sided printing!

In the communication authentication industry, the reliability and traceability of products are crucial. Accurate marking on the circuit board during the certification process is essential for product identification and quality control. Incorrect marking can lead to delays in certification and misidentification of products. Our double-sided printing CO2 laser marker for printed circuit boards contributes to increased production efficiency through double-sided printing. 【Usage Scenarios】 - Printing serial numbers on circuit boards for communication devices - Printing authentication codes - Managing the manufacturing history of products 【Benefits of Implementation】 - Improved production efficiency through double-sided printing - Enhanced quality control through accurate marking - High reliability provided by the KEYENCE CO2 laser marker "ML-Z" series

  • Laser marker
  • Printed Circuit Board Laser Marker

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Laser marker for printed circuit boards to create a starting point for DX by assigning a unique ID to the substrate.

The first step in linking the substrate and data, completing printing and reading verification with this one device.

In advancing the digital transformation (DX) of the electronic equipment and control board manufacturing industry, linking circuit boards with data serves as the foundation for traceability. The LMS-K500ML is an inline CO2 laser marker that directly marks a unique ID (2D code or text) on the circuit board itself at the very beginning of the SMT assembly line, ensuring the prerequisite of "identification for each individual circuit board" for promoting DX. 【Usage Scenarios】 - Assigning a unique ID to each circuit board and linking all subsequent process data based on the circuit board. - Completing printing and verification simultaneously through reading judgment using the built-in image processing system. - Digitizing on-site data by collaborating with higher-level systems such as MES and traceability databases. 【Benefits of Implementation】 - Automation of linking circuit boards with data enables the establishment of a foundation for DX promotion in a short period. - Preventing omissions and errors in data entry through reading verification that does not rely on visual checks or manual input. - Facilitating the expansion of DX initiatives in subsequent processes, such as visualizing process progress and quality analysis, based on the unique ID of the circuit board.

  • Laser marker
  • Printed Circuit Board Laser Marker

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Laser marker for printed circuit boards that supports multi-variety small quantity EMS variety switching.

Minimize setup changes and ensure reliable history management for each customer. One unit to be integrated into the contract manufacturing line.

In contract manufacturing (EMS/ODM), the need for quick changeovers between different product types and the ability to meet varying traceability requirements from customers are both required simultaneously for low-volume, high-variety production. The LMS-K500ML is a CO2 laser marker that is integrated inline into the assembly line, marking a unique ID non-contact for each circuit board, supporting history management across different product types and customers. 【Usage Scenarios】 - Quickly implement product changeovers in low-volume, high-variety production through program calls. - Assign unique IDs to circuit boards in customer-specific and product-specific formats for separate history management. - Comply with SMEMA for inline integration, executing printing and reading verification without manual intervention. 【Benefits of Implementation】 - Reduce the effort and errors associated with setup changes, maintaining operational efficiency even with small lots and diverse products. - Flexibly respond to traceability requirements from each customer with a single device. - Achieve labor savings through inline integration while ensuring quality in contract manufacturing.

  • Laser marker
  • Printed Circuit Board Laser Marker

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CO2 Laser Marker for Printed Circuit Board Printing for Aerospace Applications

Automating the substrate marking process to improve traceability in the aerospace field.

In the aerospace industry, accurate tracking of components is essential to ensure product quality and safety. Particularly for electronic circuit boards used in harsh environments, high durability and identifiability are required. Inadequate marking can lead to misidentification or inability to track components, potentially causing serious accidents. Our CO2 laser marker for printed circuit board printing can be integrated into SMT assembly lines, enabling board marking without stopping the line. 【Application Scenarios】 - Marking of electronic circuit boards for aircraft, spacecraft, satellites, etc. - Ensuring traceability in the component manufacturing process - Recording tracking information in quality control 【Benefits of Implementation】 - Strengthened traceability through identification management at the board level - Improved printing quality through position correction and reading confirmation with image processing cameras - Increased productivity through inline marking that does not disrupt line takt time

  • Laser marker
  • Printed Circuit Board Laser Marker

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CO2 Laser Marker for Printed Circuit Board Printing for Communication Applications

Stable operation with airless electric power. Achieving automation of the circuit board marking process and improving traceability.

In the telecommunications industry, product quality control and traceability are crucial. In particular, the accurate printing of serial numbers and manufacturing information is essential to ensure product reliability and enhance competitiveness in the market. Errors or erasures in printing can make it difficult to trace products and may undermine customer trust. Our CO2 laser marker for printed circuit board printing can be integrated into the SMT assembly line, allowing for board printing without stopping the line. 【Usage Scenarios】 * Printing of serial numbers, manufacturing dates, lot numbers, etc. * Strengthening traceability through identification management of circuit boards * Printing of two-dimensional codes (QR codes, DataMatrix codes, etc.) 【Benefits of Implementation】 * Improved production efficiency without disrupting line tact * Enhanced traceability through identification management at the board level * Stabilization of printing quality through image processing cameras

  • Laser marker
  • Printed Circuit Board Laser Marker

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