gweike c1
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample
Gweike C1 sample

1500W High-Torque ATC Spindle for Heavy-Duty Hard-Metal Cutting

Equipped with an upgraded 1500W high-torque, air-cooled automatic tool-changing spindle, with a maximum speed of 18,000 RPM and a maximum feed rate of 5,000 mm/min. Even under heavy-duty operating conditions, it delivers stable, deep cutting across a wide range of metals, including aluminum, copper, brass, and stainless steel. Compared with conventional desktop machines in the same power class, overall machining efficiency can be increased by up to 2× , effectively shortening the cycle time per part and supporting batch prototyping and continuous production. The spindle offers 0.02 mm positioning accuracy and extremely low radial runout, making it suitable for precision machining.

8-Slot ATC Tool Magazine for Uninterrupted Multi-Operation Jobs

The machine features a built-in 8-slot ATC tool magazine that centrally stores and intelligently manages eight tools, enabling fast transitions between machining operations. The system automatically selects the required tool according to the machining program, eliminating manual tool changes. Compared with manual tool-changing solutions, it can reduce machine downtime by 70%. It supports continuous machining of complex, multi-operation parts and long periods of unattended operation without mid-process shutdowns, significantly improving machining efficiency and batch-production capacity.

Automatic Tool Setting Maintains an Accurate Reference After Every Tool Change

No manual tool measurement or repeated parameter adjustment is required. After each automatic tool change, the built-in high-precision tool setter immediately detects the tool-tip height and updates the Z-axis tool compensation data in real time. Regardless of tool length, the system maintains a consistent and accurate machining reference. From the first tool to the final operation, tool setting and dimensional calibration are completed automatically, avoiding reference errors caused by manual operation, preventing overcutting and undercutting due to tool-height deviations, and substantially reducing material scrap.

210 lbs Industrial-Grade High-Rigidity Bed

The machine uses an approximately 210 lbs thickened, heavy-duty, high-strength aluminum-alloy bed. Its high-mass structure absorbs vibration during heavy cutting, reducing tool chatter, rippling, and chatter marks. The highly rigid body withstands deep-cutting stress, torque impact, and resonance during high-speed machining. Whether performing deep cuts in hard steel, milling stainless steel, or running long continuous production batches, the machine maintains stable cutting conditions, improving surface quality and dimensional consistency. Its stability is significantly superior to that of ordinary lightweight desktop CNC machines.

High-Precision Motion System with ±0.02 mm Long-Term Accuracy

Equipped with high-precision dual linear guide rails and precision ball screws, the motion system delivers fast feed response and accurate, stable positioning while effectively reducing cumulative error. It maintains machining accuracy of ±0.02 mm over long-term operation, making it suitable for precision mechanical parts and complex surface machining.

Air-Cooling System Improves Cutting Efficiency and Extends Tool Life

The built-in directional air-cooling channel uses compressed air to cool the cutting tool precisely, significantly extending tool life. For materials and processes suitable for dry cutting, it reduces reliance on large quantities of conventional cutting fluid, lowers waste-fluid discharge and oil-mist dispersion, and helps keep the working environment clean and safe.

Ultra-High-Speed Brushless Smart Dust Extraction System

An optional external dust extraction unit is available, powered by a 60,000 RPM ultra-high-speed brushless motor. Stepless speed control allows the suction power to be adjusted according to the material, cutting condition, and chip volume, making it suitable for CNC machining of metals, wood, acrylic, composite materials, and more.
The dust hood surrounds the spindle and uses a pneumatic-cylinder-driven lifting mechanism. Its unique magnetic quick-release design allows fast removal when dust extraction is not required, improving machine flexibility.

Proprietary Free Smart CAM Generates Optimized Toolpaths in One Click

The machine comes standard with GWEIKE's proprietary free smart CAM software, addressing the complexity of conventional manual CNC programming and the steep learning curve for beginners, while also eliminating the costly annual subscriptions associated with commercial CAM software. Mainstream 2D and 3D files—including DXF, SVG, STL, STEP, and IGES—can be imported by drag and drop. The system automatically analyzes the workpiece geometry and generates optimized toolpaths based on the selected material and tool. No manual layer setup or repeated parameter adjustment is required, allowing beginners to complete programming and begin machining more quickly.
  • DXF

  • SVG

  • STL

  • STEP

  • IGES

CAD/CAM Compatibility

It is compatible with machining files generated by mainstream design and programming software, including Fusion 360, LightBurn, SolidWorks, AutoCAD, VCarve Pro, Aspire, and Illustrator.
  • Fusion 360

  • LightBurn

  • Solidworks

  • AutoCAD

  • VCarve Pro

  • Aspire

  • Illustrator

Import Images and Automatically Convert Them into 3D Relief Machining Model

Images can be imported directly into the proprietary free CAM software, with one-click upload support forJPG, PNG, and other common image formats . The software automatically generates a standard relief machining model with three-dimensional depth, eliminating the need for manual tracing or 3D modeling. No professional drawing or modeling skills are required. Even complete beginners can quickly convert images into machinable designs and avoid complicated 3D modeling workflows.
Import Images and Automatically Convert Them into 3D Relief Machining Model

Make 3D Surface Machining Easier

The C1 handles more than flat surfaces—it can also machine curved, inclined, and irregular surfaces with precision. A high-precision laser sensor automatically scans the object surface, detects height and contour variations at each position, and quickly creates an accurate surface model. After scanning, the system automatically generates toolpaths that conform to the object surface, allowing the tool to follow the contour precisely. Curved-surface engraving, reliefs, textures, and shaped features can be machined without point-by-point manual measurement or complex height settings, while maintaining a relatively consistent machining depth.

Smart Material Library Automatically Matches Machining Parameters

  • Quick Setup for Beginners

    The built-in library includes proven cutting processes for common materials such as metals, PCBs, wood, and plastics. Users do not need to memorize complex parameters or repeatedly perform trial cuts and adjustments. After a material is selected, the system matches the corresponding machining parameters and cutting strategy, helping beginners get started quickly and complete the process from programming to machining in as little as 15 minutes.

  • Advanced Fine-Tuning for Experts

    Full parameter customization is also available, allowing professional users to fine-tune settings according to the tool, material, and desired machining result for precision work and customized production.

Smart Machining with a Fast, Beginner-Friendly Workflow

16MP Industrial Vision Camera with Automatic Positioning

16MP Industrial Vision Camera

The built-in 16-megapixel high-definition industrial vision camera automatically scans and locates the workpiece. A single image from the high-resolution lens captures the workpiece outline and locks the machining coordinates without manual alignment. Positioning accuracy can be maintained at 0.5 mm, reducing setup time and material waste.The machining process is fully visible, allowing users to view the operation in real time and monitor progress throughout the job. Faults can be detected promptly and problems diagnosed quickly, helping ensure safe machine operation.

Laser Sensor Automatic Distance Measurement and Surface Leveling

A laser automatic distance-measurement sensor is included as standard. With one scan, the laser detects surface tilt, bending, and height variations and generates height-compensation data. No point-by-point manual measurement or repeated adjustment of the machining reference is required. Even when the material surface is uneven, the system maintains a relatively consistent machining depth and reduces overcutting, undercutting, and localized depth variation. It captures the height distribution of the entire workpiece in one pass and rapidly calculates a compensation solution. 

Push Beyond CNC Limits
with a Modular Turning Tool

The machine can be equipped with a modular metal turning unit that combines high-speed servo rotation with precise spindle feed to deliver high-precision turning. It supports the formation of external diameters, shoulders, arcs, and other profiles, and allows rapid switching between milling and turning on the same platform. This reduces secondary clamping and repeated positioning and eliminates the need to purchase a separate lathe. A thickened base and four-jaw chuck design provide greater rigidity and excellent vibration resistance, improving machining accuracy and stability when working with aluminum, brass, stainless steel, and other metals. flexibility.

Delivering Higher Speed

Compared with conventional rotary-axis machining, the turning module integrates roughing and finishing and can rapidly remove large amounts of metal stock. Overall machining efficiency for shaft-type parts can be increased by more than 10×, delivering higher speed for batch-production requirements.

4-Axis Rotary Module Expands Continuous 3D Machining Capability

The GWEIKE C1 4-axis rotary module goes beyond the limitations of conventional three-axis machining. It supports synchronized multi-axis motion for continuous rotary engraving of cylindrical workpieces, four-sided panels, and complex curved components. From precision hardware components to customized artistic prototypes, the rotary axis provides high repeat-positioning accuracy and refined surface finishes. It is compatible with metals, non-metals, and a wide range of composite materials, further expanding machining applications and creative possibilities.

CNC Electric Vise with Quick Positioning and Adjustable Clamping Force

A dedicated CNC electric vise enables quick installation, removal, and positioning, reducing manual alignment and calibration work. It is designed for safe and reliable operation throughout the machining process.

Extra-Long Feeding for Continuous Machining

An optional extended fully automatic feeding module enables uninterrupted continuous engraving of extra-long boards without splicing or alignment deviation. It is compatible with solid wood, acrylic, and other long non-metal profiles, saving time and labor when engraving elongated workpieces and significantly improving machining efficiency. Note: This module supports non-cut-through machining only.

Built for Ideas
That Go Further

Professional capability in a compact footprint. C1 brings precision metalworking to your workspace—helping creators and engineers turn prototypes, custom parts, and complex ideas into reality faster.
Built for Ideas That Go Further
Built for Ideas That Go Further
Built for Ideas That Go Further
Built for Ideas That Go Further

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Specifications

Basic info
  • Overall Dimensions
  • 768mm*520mm*664mm (30.2" x 20.1" x 26.1")

  • Working Area - Milling (with ATC)
  • 318 mm× 212mm (12.5" × 8.3")

  • Working Area - Milling (without ATC)
  • 318mm× 254 mm (12.5" × 10")

  • Working Area - Spindle Z Height Range
  • 0–150mm (1.06" – 6.02")

Power Supply
  • Power Supply
  • 220-240V AC@50/60Hz, Output power 2150W

Weight
  • Net Weight
  • 95kg/210lbs(approx)

Spindle Module
  • Spindle
  • 1500W wide voltage spindle (110-220V), Speed 1-24000rpm, radial runout ≤0.01mm

  • Spindle cooling
  • Air cooling

  • Probing Camera
  • 16MP, 120° Field of View, Fixed Focus

  • Laser Sensor
  • Resolution 0.01mm, linearity ±0.1% F.S, response time 1.5ms

  • Machining Dust Extraction
  • Spindle-Enclosed Dust Hood (with External Dust Collection Bucket)

Tool Box
  • *Tool Library
  • Max 8 Tools; Supports Tool Diameter 1-7mm (Including 6mm)

  • Tool managment system
  • Built in Tool Management System

  • Tool Cooling
  • Air Cooling

Motion
  • Drive system
  • Ball screws with a lead of 5mm, repeatability of ±0.02mm, and a preload of 50N Dual Linear Rails, zero clearance, dynamic load ≥ 5KN

  • Motors
  • 57 Open-Loop Stepper Motor (2.3Nm Torque), 1.8° Step Angle, 32 Microstep

  • Max Travel Speed
  • 5,500 mm/min

*Supported Materials
  • Wood
  • Hardwood, softwood, MDF, plywood, etc.

  • Plastics
  • Foam, PVC, ABS, acrylic, PC, HDPE, etc.

  • Composite Materials
  • Carbon fiber, FR4, etc.

  • Metals
  • Steel, Aluminum, Brass, Copper, Bronze, etc.

*Tool Library
  • Supported tool length range
  • 30-60 mm