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Fiber Laser Metal Marking Machine

Introduction to Numac Hitech Metal Fiber Marking Machine Numac Hitech presents its advanced Metal Fiber Marking Machine, a high-speed, high-precision solution for permanent laser marking on metals and industrial components. Built with cutting-edge fiber laser technology, this machine is engineered to deliver sharp, durable, and clear markings across a variety of metallic and non-metallic surfaces. Our fiber laser marking systems are known for their low maintenance, fast operation, and long service life—making them ideal for industries like automotive, electronics, aerospace, medical devices, tool manufacturing, and more. Whether you require serial numbers, barcodes, logos, QR codes, or design etching, Numac Hitech’s solution ensures unmatched quality and reliability. Key Features: High-Speed Laser Marking Fast scanning system delivers efficient and accurate marking on production lines. Permanent & High-Contrast Markings Ideal for engraving on stainless steel, mild steel, aluminum, copper, brass, titanium, and more. Air-Cooled Fiber Laser Source No water chiller needed—compact and efficient design for industrial use. Maintenance-Free Operation Long-lasting fiber source (up to 100,000 hours of life), with minimal operational cost. Compact & User-Friendly Design Space-saving machine with easy software interface (EzCad or equivalent). Low Power Consumption Energy-efficient solution for 24x7 industrial marking needs. Applications: Serial Numbers & Barcodes Batch Codes & Date Marking Company Logos & Branding QR Codes & UID Marking Deep Engraving on Tools & Dies Decorative Metal Patterns

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Co2 Laser Machine

The 1390 CO2 Laser Cutting Machine from Numac Hitech is an advanced and versatile laser cutting solution designed for high-precision cutting, engraving, and marking on a variety of materials. With a cutting area of 1300mm x 900mm, this machine offers a robust and efficient tool for industries such as manufacturing, signage, textiles, and more. Key Features of the 1390 CO2 Laser Cutting Machine by Numac Hitech: CO2 Laser Technology: The 1390 model utilizes CO2 laser technology, which is highly effective for cutting and engraving non-metal materials such as acrylic, wood, leather, rubber, fabric, and some plastics. CO2 lasers generate a focused beam that can precisely cut, engrave, or mark materials with high accuracy. This type of laser is especially popular due to its ability to create clean, smooth edges without the need for post-processing. Large Cutting Area: The machine features a cutting area of 1300mm x 900mm, which allows for larger workpieces or the simultaneous cutting of multiple smaller pieces. This expansive work area makes the machine ideal for both small-scale and larger production runs. It provides flexibility for a range of applications, from detailed, intricate designs to larger, more industrial cutting tasks. High Precision and Accuracy: The 1390 CO2 laser cutting machine is designed to deliver exceptional cutting precision. It can handle complex patterns and intricate designs, ensuring that even the finest details are accurately reproduced on the material surface. The high-precision cutting capabilities make it perfect for industries where intricate designs and tight tolerances are crucial. Powerful Cutting Performance: This machine is equipped with a powerful CO2 laser tube, typically ranging from 80W to 150W, depending on the specific model. The power level allows for clean and effective cutting of a wide range of materials, from thin sheets to thicker pieces, ensuring high-quality results. The higher the wattage, the faster the cutting speed and the ability to cut thicker materials. User-Friendly Interface and Control System: Numac Hitech’s 1390 CO2 laser cutting machine comes with an easy-to-use interface and advanced control system, often equipped with a touch screen and intuitive software. This makes the machine accessible to both experienced and novice users. The software is typically compatible with common design formats such as DXF, BMP, JPG, PLT, and others, simplifying the design and cutting process. Versatility in Material Processing: The 1390 CO2 laser cutting machine can cut a wide range of materials, including: Non-metals: Wood, acrylic, MDF, plastic, leather, rubber, fabric, paper, and more. Some Thin Metals: While primarily used for non-metals, some models can also cut thin metals, such as stainless steel or aluminum, depending on the laser tube power. This makes it highly versatile for applications across multiple industries, including signage, interior design, packaging, and fashion. Efficient Cooling System: To maintain stable and high-performance operations, the 1390 CO2 laser cutting machine is equipped with an efficient water cooling system. This helps prevent overheating of the laser tube, extending its lifespan and ensuring consistent cutting quality over long periods of use. Durability and Low Maintenance: The machine is built with durable, high-quality components that ensure long-term reliability and minimal maintenance. The design minimizes wear and tear, reducing downtime and increasing productivity. Safety Features: Safety is a top priority with the 1390 CO2 laser cutting machine. It typically includes features such as a protective enclosure, emergency stop buttons, and air exhaust systems to ensure safe and clean operation. Operators are protected from exposure to the laser beam and fumes during operation. Applications: Signage Production: Cutting and engraving of acrylic and other materials for signs, logos, and banners. Woodworking: Precision cutting of wood and MDF for furniture, cabinetry, and décor items. Textile and Fashion: Cutting fabric, leather, and other textiles for apparel, accessories, and custom designs. Packaging: Production of custom packaging materials, including cardboard and plastics. Prototype Development: Quick prototyping of parts, models, and product components for various industries. Advertising: Engraving and cutting of materials for promotional items, gifts, and awards. Conclusion: The 1390 CO2 Laser Cutting Machine by Numac Hitech is a powerful and versatile tool that offers precision, speed, and flexibility for various cutting and engraving tasks. Its ability to work with a wide range of materials and large cutting area makes it ideal for both small-scale and industrial production environments. Whether for manufacturing, design, or prototyping, this machine is a valuable addition to any workshop seeking to enhance its cutting capabilities.

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Co2 Laser Machine

The 1390 CO2 Laser Cutting Machine from Numac Hitech is an advanced and versatile laser cutting solution designed for high-precision cutting, engraving, and marking on a variety of materials. With a cutting area of 1300mm x 900mm, this machine offers a robust and efficient tool for industries such as manufacturing, signage, textiles, and more. Key Features of the 1390 CO2 Laser Cutting Machine by Numac Hitech: CO2 Laser Technology: The 1390 model utilizes CO2 laser technology, which is highly effective for cutting and engraving non-metal materials such as acrylic, wood, leather, rubber, fabric, and some plastics. CO2 lasers generate a focused beam that can precisely cut, engrave, or mark materials with high accuracy. This type of laser is especially popular due to its ability to create clean, smooth edges without the need for post-processing. Large Cutting Area: The machine features a cutting area of 1300mm x 900mm, which allows for larger workpieces or the simultaneous cutting of multiple smaller pieces. This expansive work area makes the machine ideal for both small-scale and larger production runs. It provides flexibility for a range of applications, from detailed, intricate designs to larger, more industrial cutting tasks. High Precision and Accuracy: The 1390 CO2 laser cutting machine is designed to deliver exceptional cutting precision. It can handle complex patterns and intricate designs, ensuring that even the finest details are accurately reproduced on the material surface. The high-precision cutting capabilities make it perfect for industries where intricate designs and tight tolerances are crucial. Powerful Cutting Performance: This machine is equipped with a powerful CO2 laser tube, typically ranging from 80W to 150W, depending on the specific model. The power level allows for clean and effective cutting of a wide range of materials, from thin sheets to thicker pieces, ensuring high-quality results. The higher the wattage, the faster the cutting speed and the ability to cut thicker materials. User-Friendly Interface and Control System: Numac Hitech’s 1390 CO2 laser cutting machine comes with an easy-to-use interface and advanced control system, often equipped with a touch screen and intuitive software. This makes the machine accessible to both experienced and novice users. The software is typically compatible with common design formats such as DXF, BMP, JPG, PLT, and others, simplifying the design and cutting process. Versatility in Material Processing: The 1390 CO2 laser cutting machine can cut a wide range of materials, including: Non-metals: Wood, acrylic, MDF, plastic, leather, rubber, fabric, paper, and more. Some Thin Metals: While primarily used for non-metals, some models can also cut thin metals, such as stainless steel or aluminum, depending on the laser tube power. This makes it highly versatile for applications across multiple industries, including signage, interior design, packaging, and fashion. Efficient Cooling System: To maintain stable and high-performance operations, the 1390 CO2 laser cutting machine is equipped with an efficient water cooling system. This helps prevent overheating of the laser tube, extending its lifespan and ensuring consistent cutting quality over long periods of use. Durability and Low Maintenance: The machine is built with durable, high-quality components that ensure long-term reliability and minimal maintenance. The design minimizes wear and tear, reducing downtime and increasing productivity. Safety Features: Safety is a top priority with the 1390 CO2 laser cutting machine. It typically includes features such as a protective enclosure, emergency stop buttons, and air exhaust systems to ensure safe and clean operation. Operators are protected from exposure to the laser beam and fumes during operation. Applications: Signage Production: Cutting and engraving of acrylic and other materials for signs, logos, and banners. Woodworking: Precision cutting of wood and MDF for furniture, cabinetry, and décor items. Textile and Fashion: Cutting fabric, leather, and other textiles for apparel, accessories, and custom designs. Packaging: Production of custom packaging materials, including cardboard and plastics. Prototype Development: Quick prototyping of parts, models, and product components for various industries. Advertising: Engraving and cutting of materials for promotional items, gifts, and awards. Conclusion: The 1390 CO2 Laser Cutting Machine by Numac Hitech is a powerful and versatile tool that offers precision, speed, and flexibility for various cutting and engraving tasks. Its ability to work with a wide range of materials and large cutting area makes it ideal for both small-scale and industrial production environments. Whether for manufacturing, design, or prototyping, this machine is a valuable addition to any workshop seeking to enhance its cutting capabilities.

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CNC Engraving Machine

Model Name/Number AR6090BASIC Laser Type CO2 Compatible Software Coreldraw, Auto CAD, Photoshop A 2D laser engraving machine is designed for precise engraving of two-dimensional designs and patterns on various materials. This type of machine uses a laser to etch or cut designs into surfaces, making it suitable for applications ranging from signage and promotional items to intricate artwork. Here’s an overview of key features, benefits, and considerations for 2D laser engraving machines: Key Features: Laser Type: CO2 Laser: Commonly used for non-metal materials such as wood, acrylic, glass, and some plastics. CO2 lasers are well-suited for engraving and cutting tasks. Fiber Laser: Used for metals and certain types of plastics. Fiber lasers are known for their durability and precision, but they are generally more expensive. Power and Speed: Laser Power: Typically ranges from 30W to 150W, depending on the material and the depth of engraving required. Higher power allows for faster processing and deeper engraving. Speed Control: Adjustable speed settings for different materials and design complexities. Work Area: Size: The work area size varies, with common sizes being around 600mm x 400mm (24" x 16") to larger areas like 1300mm x 900mm (51" x 35"). Larger work areas allow for bigger projects. Precision and Resolution: High Precision: Capable of achieving high resolution and detailed designs, with accuracy down to 0.01mm or better. Adjustable Resolution: Settings can be adjusted to match the required detail level. Control System: User Interface: Includes a touchscreen or computer interface for ease of design setup and machine control. Software Compatibility: Works with various design software, typically supporting file formats like DXF, AI, and BMP. Cooling and Ventilation: Cooling System: Usually includes a water or air cooling system to manage the laser’s temperature and ensure consistent performance. Ventilation: An exhaust system is essential for removing smoke, fumes, and debris generated during engraving. Benefits: Versatility: Material Compatibility: Can work with a wide range of materials, including wood, acrylic, glass, leather, and some plastics. Application Range: Suitable for creating signage, personalized gifts, awards, and detailed artwork. High Quality and Detail: Precise Engraving: Achieves high levels of detail and accuracy, making it ideal for intricate designs and text. Efficiency: Fast Processing: Engraves designs quickly compared to traditional methods, increasing productivity. Minimal Waste: Laser engraving is a subtractive process that generates minimal material waste. Consistency: Uniform Results: Provides consistent results across multiple pieces, which is important for production and commercial applications. Considerations: Cost: Investment: The cost of a 2D laser engraving machine can vary widely depending on size, power, and features. Evaluate the cost relative to your needs and budget. Maintenance: Regular Upkeep: Requires routine maintenance, such as cleaning the lens, checking the cooling system, and ensuring proper calibration. Material Limitations: Material Restrictions: Some materials may require special handling or are not suitable for laser engraving. Always check compatibility with the materials you plan to use. Workspace Requirements: Size and Setup: Ensure you have sufficient space for the machine and any associated equipment, like ventilation systems. Safety: Protective Measures: Follow safety guidelines, including using protective eyewear and ensuring adequate ventilation to handle fumes and dust.

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CNC Router Machine

A CNC router with a vacuum table is designed to hold materials securely in place using suction, which is particularly useful for cutting, milling, or routing sheet materials. Here’s a rundown of the key features, benefits, and considerations for such a machine: Key Features: Vacuum Table: Suction Power: The vacuum table uses a high-power vacuum pump to create suction that holds the material firmly in place. This is especially useful for thin or large sheets that might otherwise be difficult to clamp. Grid Pattern: The table often features a grid of holes or channels to distribute the suction evenly across the surface. This helps in securing materials of varying sizes and shapes. Material Handling: Quick Setup: Vacuum tables allow for quick and easy material changes, which improves efficiency in production. Versatility: Suitable for various materials including wood, acrylic, MDF, and some composites. Precision and Stability: Even Pressure: The vacuum table provides consistent pressure across the material, which helps in achieving precise cuts and reducing material movement. Reduced Vibration: The secure holding reduces vibrations, leading to higher accuracy and better surface finishes. Software and Control: Integration: Often integrated with the CNC router’s control system to automatically manage the vacuum pump during operations. User Interface: Typically comes with an intuitive interface for ease of operation and setup. Benefits: Improved Accuracy: Stable Material: The secure hold of the vacuum table minimizes material movement, which helps in achieving high precision in cutting and milling. Efficient Workflow: Faster Setup: Easier and faster material loading and unloading compared to traditional clamping methods. Flexibility: Suitable for both small and large sheets, as well as irregularly shaped materials. Reduced Waste: Minimized Defects: Fewer issues with material shifting or warping, leading to less material waste and fewer defective parts. Considerations: Vacuum System Maintenance: Pump Care: Regular maintenance of the vacuum pump is required to ensure consistent suction power and performance. Table Surface: The vacuum table surface needs to be kept clean and in good condition to maintain optimal suction. Power Requirements: Electrical Needs: The vacuum pump requires a significant amount of power, so ensure your workshop can accommodate this. Size and Layout: Table Size: Choose a vacuum table size that matches your typical material dimensions and project needs. Table Configuration: Some tables have customizable or modular grid patterns, which can be adjusted based on your specific requirements. Cost: Investment: Machines with vacuum tables can be more expensive than those without, but they offer significant advantages in terms of efficiency and precision.

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