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CO2 150W Integrated Scanning, Marking and Cutting Machine

CO2 150W Integrated Scanning, Marking and Cutting Machine

150W CO2 laser cutting machine

integrated laser marking machine

CO2 laser scanner cutter

Nombre de la marca:

Temei

Número de modelo:

T90D-RFL1390S

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Detalles del producto
Nombre:
Máquina integrada de corte por escaneo de doble tornillo
MODO:
T90D-RFL1390S
Tamaño de trabajo:
1300mm*900mm*80mm
Fuente láser:
Tubo láser de CO2 (radiofrecuencia)
Potencia del láser:
100W
camino de luz:
Adoptar un diseño de trayectoria óptica constante
Método de enfriamiento:
Enfriamiento de agua
Sistema de transmisión:
Mitsubishi Servo Driver & Motor de Japón
Sistema de transmisión:
Tbi Ball Torny y PMI Guía lineal de Taiwán
Sistema de control:
ZLGI
Precisión del posicionamiento:
0.02 mm
Repetición de precisión:
0.01 mm
Velocidad máx.:
20m/min
Mesa de trabajo:
Plataforma de cuchillas
Posicionamiento de luz roja:
Fuente de alimentación:
220V, 50/60Hz
Formato de archivo:
DXF, PLT, AI, DST, DSB
Dimensiones:
2000x3600x22000mm
Peso neto:
1200 kgs
Materiales de aplicación:
Tela, Cuero, Acrílico, Papel, Madera, Bambú, Cerámica,
Resaltar:

150W CO2 laser cutting machine

,

integrated laser marking machine

,

CO2 laser scanner cutter

Pago y términos de envío
Cantidad de orden mínima
1
Precio
11840
Detalles de empaquetado
Caja de madera
Tiempo de entrega
3 ~ de siete días
Condiciones de pago
T/T
Capacidad de la fuente
1.000 unidades por mes
Descripción de producto

Introduction to Laser Marking, Scanning and Cutting All-in-One Machine (Temei Laser Cutting Machine, Model: T90D-RFL1390S)

The Temei T90D-RFL1390S is a high-efficiency laser processing equipment integrating laser marking, scanning and cutting functions. The detailed information is as follows:

Functional Features

  • Integrated Multiple Functions: It can fully realize two core processes—laser marking and laser cutting—on one device. There is no need to frequently replace equipment or adjust workstations, allowing the marking and cutting processes to be completed in one go and greatly improving processing continuity.
  • High Precision and Speed: Equipped with high-precision transmission and control systems such as a gantry-type mechanical structure and precision ball screw drive, ensuring stable and reliable processing accuracy. It also has efficient processing capabilities to meet the speed requirements in mass production.
  • Multi-Axis Linkage Control: Adopts a multi-axis linkage full-digital control motion system, consisting of a 4-axis linkage structure (Galvo X-axis, Galvo Y-axis, Platform X-axis, Platform Y-axis). It can realize the functions of marking while moving and cutting while moving, especially suitable for high-speed marking and cutting of large-format and complex graphics.
  • Strong Compatibility: Supports various mainstream graphic formats including BMP, PLT, DXF and JPEG, which can flexibly meet the design file needs of different users. According to processing materials (metal, non-metal, etc.) and process requirements, different types of lasers such as CO2 laser, fiber laser and ultraviolet laser can be selected.
  • High Degree of Automation: Equipped with a CCD vision positioning system, it can automatically identify and accurately position workpieces, effectively improving processing accuracy and qualification rate. It can be expanded with systems such as automatic roll feeding and unloading to further reduce manual intervention and improve overall production efficiency.

Application Fields

  • Textile and Garment Industry: Suitable for cutting, punching and lace making of clothing fabrics, as well as punching and printing of leather.
  • Furniture and Home Furnishing Industry: Can process materials such as wood, plastic and acrylic, meeting the needs of decorative marking of furniture, carving of wooden crafts, cutting of furniture panels, etc.
  • Automotive Manufacturing Industry: Used for marking of automotive parts such as bearings and piston rings, as well as cutting of vehicle nameplates.
  • Electronic Communication Industry: Adaptable to marking of electronic components and home appliance panels, marking of keyboards and optical cables, as well as cutting of thin metal parts.
  • Medical Device Industry: Can use laser cutting to manufacture minimally invasive surgical instruments and implantable devices, meeting the strict requirements of products for biocompatibility and processing accuracy.
  • Craft and Gift Industry: Can perform marking, cutting and carving on various materials such as gold and silver jewelry, wooden crafts and plastic gifts.

    Comparison Table of Core Parameters and Application Scenarios for Temei T90D-RFL1390S Laser All-in-One Machine

  • Core Category Specific Content Adapted Application Scenarios
    Core Functions Integration of laser marking, laser cutting, and scanning positioning Batch processing across industries, multi-process continuous operation scenarios
    Transmission & Control Gantry-type mechanical structure, precision ball screw drive, 4-axis linkage (Galvo X/Y axes + Platform X/Y axes) Large-format processing, marking/cutting of complex graphics (e.g., furniture panels, automotive nameplates)
    Positioning System CCD vision positioning system High-precision requirement scenarios (e.g., electronic components, medical devices)
    Supported Graphic Formats BMP, PLT, DXF, JPEG and other mainstream formats Adaptation of design files across industries (e.g., craft patterns, clothing cutting diagrams)
    Laser Adaptability CO2 laser, fiber laser, ultraviolet laser Metal materials (fiber laser), non-metal materials (CO2 laser), high-precision microprocessing (ultraviolet laser)
    Automation Expansion Optional automatic roll feeding and unloading system Continuous batch production (e.g., textile fabric cutting, coil part processing)

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