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Acrylic RF Co2 Laser Cnc Machine 100W 200W Co2 Laser Cutter T90-L1390S

Place of Origin china shenzhen
Brand Name Temei
Model Number T90-L1390S
Minimum Order Quantity 1
Price 9200usd~12000usd
Packaging Details wooden box
Delivery Time 3~7day
Payment Terms T/T
Supply Ability 1,000 units per month

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Product Details
Model T90-L1390S Working Size 1250x900mm
Laser Source CO2 Radiofrequency Laser Tube Laser Power 100W/200W
Cooling Method Water Cooling Drive System Mitsubishi Servo Driver & Motor From Japan
Transmission System TBI Ball Screw & PMI Linear Guide From Taiwan Control System Ruida
CCD Edge Patrol Cutting Function Optional Positioning Accuracy 0.02mm
Repet.Positioning Accuracy 0.01mm Max.Speed ≤40m/min
Working Table Blade Platform / Cellular Platorm (optional) Power Supply 220V,50/60Hz
File Format DXF, PLT, AI, DST, DSB Dimensions 1850*1720*1150mm
Application Materials Fabric,Leather,Acrylic,Paper,Wood,Bamboo,Ceramic, Rubber,Sponge,Plastic,etc.
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Co2 Laser Cnc Machine 100W

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Co2 Laser Cnc Machine 200W

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200W Co2 Laser Cutter

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Product Description
RF Laser Cutters: Precision, Versatility, Stability

Radio frequency (RF) laser cutters stand as advanced high-precision processing tools, leveraging radio frequency excitation to produce laser beams. Their primary strengths revolve around four critical areas: precision in processing, versatility across materials, operational stability, and work efficiency. These machines find extensive use in sectors like precision manufacturing, microelectronics, and the medical industry—fields where manufacturing quality must meet stringent standards.

Material Compatibility

In terms of material compatibility, RF lasers cover a broad wavelength spectrum, with common options including 10.6μm far-infrared, 532nm green light, and 1064nm infrared. This wide wavelength range allows them to work with materials of varying physical characteristics, and they excel particularly when processing materials that are heat-sensitive, brittle and rigid, or have high melting points.

When dealing with non-metallic materials, RF laser cutters enable edge-chipping-free cutting for hard, brittle, or high-temperature-resistant substances. Examples include ceramics (such as alumina and zirconia), glass (like quartz glass and sapphire), and polymeric materials (including PI film, PTFE, and Kapton). A typical application is the cutting of sapphire lenses used in mobile phone cameras.

For specialized materials, these cutters can handle semiconductor wafers (such as silicon wafers), third-generation semiconductor materials like silicon carbide (SiC), and medical-grade biomaterials—for instance, creating precise slots in titanium alloy bone screws. In all these cases, the process meets strict demands for high cleanliness and zero impurity residue.

Operational Stability

Operational stability is another key advantage of RF laser cutters. Unlike traditional DC-excited lasers, which require regular electrode replacement (failure to do so degrades beam quality), the excitation system of RF lasers avoids electrode wear entirely. Core components, such as the RF power supply and resonator, boast a service life of 10,000 to 20,000 hours—equivalent to roughly 2 to 5 years of continuous operation—far outlasting the 5,000 to 8,000-hour lifespan of standard lasers.

Additionally, RF lasers maintain exceptional stability in output power, with fluctuations limited to ≤±1%. During long-term processing, this stability prevents cutting quality issues caused by power drifts, such as inconsistent cut widths or rough edges. As a result, the scrap rate linked to equipment instability is reduced, and the frequency and cost of later maintenance and adjustments are lowered.

Competitive Edge

Compared to conventional laser cutters, RF lasers’ core competitive edge lies in their ability to guarantee both precision and stability. While the initial investment for RF laser cutters is higher—typically 1.5 to 3 times that of ordinary lasers—their long-term benefits in boosting efficiency and cutting down on waste make them cost-effective for processing high-value-added products. This positions them as essential core processing equipment in the precision manufacturing sector.

Acrylic RF Co2 Laser Cnc Machine 100W 200W Co2 Laser Cutter  T90-L1390S 0
Acrylic RF Co2 Laser Cnc Machine 100W 200W Co2 Laser Cutter  T90-L1390S 1
Acrylic RF Co2 Laser Cnc Machine 100W 200W Co2 Laser Cutter  T90-L1390S 2
Acrylic RF Co2 Laser Cnc Machine 100W 200W Co2 Laser Cutter  T90-L1390S 3
Configuration and Parameters
Name CO2 radiofrequency laser cutting machine
Model T90-L1390S
Working Size 1250x900mm
Laser Source CO2 radiofrequency laser tube
Laser Power 100W/200W
Cooling Method S&A CW-6000/6200 Chiller
Drive System Mitsubishi Servo Driver & Motor from Japan
Transmission System TBI Ball Screw & PMI Linear Guide from Taiwan
Control System Ruida RDC6442/RDV6445
CCD edge patrol cutting function: Optional
Double cutting head Optional
Positioning Accuracy 0.02mm
Repet.Positioning Accuracy 0.01mm
Max.Speed ≤40m/min
Max.Cutting Thickness 40mm (acrylic,plywood,rubber,MDF)
Working table Blade platform / Cellular platorm (optional)
Red-dot Positioning Yes
Auxiliary Equipment Air pump,Centrifugal fans(1.1kw)
Power supply 220V,50/60Hz
File format DXF, PLT, AI, DST, DSB
Dimensions 1850*1720*1150mm
Net Weight 500kgs
Application Materials Fabric,Leather,Acrylic,Paper,Wood,Bamboo,Ceramic,Rubber,Sponge,Plastic,etc.
I. Technical Support and Services

For the 1390 carbon dioxide laser cutting machine, we offer comprehensive product technical support and related services, which specifically include the following aspects:

  • Provide professional guidance for the installation and commissioning of the equipment
  • Assist users in troubleshooting and resolving faults that occur during the operation of the equipment
  • Offer professional suggestions and solutions for the daily maintenance of the equipment
  • Provide timely software update and upgrade services for the equipment
  • Conduct specialized training courses for equipment operators
  • Provide product warranty services and undertake equipment repair business
II. Packaging and Transportation Arrangements
(1) Product Packaging Method

To ensure the safety of the 1390 carbon dioxide laser cutting machine during transportation, we adopt a refined packaging scheme. The equipment will be securely placed in wooden packaging boxes, and foam cushioning layers are provided inside the boxes to effectively prevent damage from collisions during transportation.

(2) Logistics Distribution Service

The 1390 carbon dioxide laser cutting machine supports global distribution services. After your order is processed, the equipment will be dispatched within 3 to 5 working days. After dispatch, we will provide you with a logistics tracking number to facilitate real-time query of the package's transportation progress.

III. Frequently Asked Questions
Q: What materials can the 1390 carbon dioxide laser cutting machine cut?
A: This equipment is suitable for cutting a variety of materials, such as acrylic, wood, leather, fabric, paper, etc.
Question: What is the maximum cutting thickness of the 1390 carbon dioxide laser cutting machine?
Answer: The maximum cutting thickness of this equipment is not a fixed value. It varies depending on the material being cut. However, typically, it can cut materials with a maximum thickness of up to X millimeters.
Question: Which software can be used in conjunction with the 1390 carbon dioxide laser cutting machine?
Answer: This equipment has strong compatibility and can be used in conjunction with many mainstream design software, such as CorelDRAW, AutoCAD, and Adobe Illustrator, etc.
Question: Does the 1390 carbon dioxide laser cutting machine come with a cooling system?
Answer: Yes, to ensure the equipment always operates in good condition and to extend its service life, this device is equipped with a cooling system.
Question: Can the 1390 carbon dioxide laser cutting machine be used for both cutting and engraving operations simultaneously?
Answer: Yes, this device is versatile. It not only can perform cutting operations but also can carry out engraving work on various materials.