CNC lathe Controller:
 1)ATC function: Electric Turret/Binary Turret/Servo Turret/Special Turret
 2)Threading Cycle: Following Mode/Interpolate Mode 
 3) Support Dual analog voltage(0~10V) & C-axis for Spindle servo(M800)

Cnc Lathe Controller For Numerical Control Drillin


CNC lathe Controller: 1)ATC function: Electric Turret/Binary Turret/Servo Turret/Special Turret 2)Threading Cycle: Following Mode/Interpolate Mode 3) Support Dual analog voltage(0~10V) & C-axis for Spindle servo(M800)
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1000MC-3

Number of control axes

2~5 Axis 

Minimum programming

0.001mm

Display8.4 inch color screen
interfaceUSB+RS232 Communction Port

Maximum programming

± 99999.999mm

Top speed

30m / min

Feed speed

0.001-15m / min

Spindle functions

Gear, dual analog control, rigid tapping

Pre-reading function

Short line preprocessing 10,000 lines

FunctionATC+PLC and macro function
Encoder linesAny setting
User macro programYes
Our Services12 Months warranty;Provide professional CNC solutions;
Compensation functionKnife compensation, between compensation, screw compensation, radius compensation
Communication function

1) USB: U disk file operation, U disk file direct processing, support PLC program, system software U disk upgrade;

2) LAN: remote monitoring, network DNC processing, support for file transmission such as part programs, PLC programs, system parameters, servo configuration parameters, etc.


1.-&(1000TC)

3.-(1000TC)

4.-&(1000TC)

We can provide you with a complete set of customized CNC kits,
which is very convenient and efficient for you.


GH-1000TC

Specific case--Technical features (supporting woodworking cutting machine):

1. Special interface for automatic tool setting;

2. Brick row cutter function;

3. Start and stop smooth, high-speed machining. 



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FAQ

1. How Can We Guarantee Quality?

Always a Pre-Production Sample Before Mass Production;Always Final Inspection Before Shipment.


2. Why Should You Buy From Us Not From Other Suppliers?

Competitive Prices
Fast And Excellent Customer Service


3. What Services Can We Provide?

Language Spoken:English
Accepted Payment Type: T/T,L/C.

 

If you have any other question about our cnc lathe controller kit, pls feel free to contact us as below.Any order requirement,  pls do not hesitate, we must do good support to you! come on! 

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FAQ

The following are the common questions we have collected about Robot Arm.
Q1. What materials can robotic laser welding handle?
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A1:Robotic laser welding works excellently on carbon steel, stainless steel, and titanium. It can also weld aluminum and copper, but these highly reflective materials require more powerful lasers and precise parameter control to overcome their reflective nature.
Q2. How precise do the parts need to be?
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A2:Extremely precise. Laser welding focuses energy on a tiny spot, so gaps between parts must be minimal. High-precision fixtures are mandatory to hold parts perfectly, as even a small gap can lead to burn-through or a weak weld.
Q3. Why choose robotic laser welding over MIG or TIG?
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A3:Choose it for speed, precision, and minimal heat. It's significantly faster than TIG and MIG, creates very narrow welds, and puts so little heat into the part that there is almost no distortion. It is ideal for high-volume, high-quality applications where aesthetics and part integrity are critical.
Q4. What materials can robotic laser welding handle?
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A4:Robotic laser welding works excellently on carbon steel, stainless steel, and titanium. It can also weld aluminum and copper, but these highly reflective materials require more powerful lasers and precise parameter control to overcome their reflective nature.
Q5. How precise do the parts need to be?
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A5:Extremely precise. Laser welding focuses energy on a tiny spot, so gaps between parts must be minimal. High-precision fixtures are mandatory to hold parts perfectly, as even a small gap can lead to burn-through or a weak weld.
Q6. Why choose robotic laser welding over MIG or TIG?
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A6:Choose it for speed, precision, and minimal heat. It's significantly faster than TIG and MIG, creates very narrow welds, and puts so little heat into the part that there is almost no distortion. It is ideal for high-volume, high-quality applications where aesthetics and part integrity are critical.
Q7: How can robotic TIG welding solve my challenges with consistent, high-integrity welds on critical components?
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A7: Human fatigue and subtle variations are the biggest enemies of perfect welds. Our robotic Tig welding systems eliminate this. The robot precisely repeats the exact same arc length, travel speed, and filler metal placement every single time. This means: Zero Defects: Drastically reduces porosity, undercut, and inconsistencies. Perfect Penetration: Ensures optimal weld penetration for maximum strength, which is crucial for aerospace, medical, or automotive applications. Flawless Aesthetics: Delivers a clean, shiny, and uniform bead that requires little to no post-weld finishing, enhancing the value of your product.
Q8: My current welding process is too slow and expensive. How does robotic TIG welding provide a fast Return on Investment (ROI)?
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A8: While manual TIG is slow and skill-dependent, automation transforms your cost structure. The ROI comes from multiple streams: Dramatically Higher Throughput: The robot works 24/7 without breaks, welding significantly faster than even the most skilled human. Massive Material Savings: Precise control means you use exactly the right amount of expensive filler metal and shielding gas, eliminating waste. Reduced Rework & Scrap: Superior consistency means you spend less time and money fixing bad welds or scrapping expensive parts. Most of our clients see a full ROI in under 12 months.
Q9: My production involves complex parts and short runs. Isn't robotic welding only for high-volume, simple tasks?
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A9: That's a common myth! Modern robotic TIG cells are built for flexibility. With features like: Easy Programming: User-friendly touchscreen interfaces and lead-through teaching allow you to program complex paths in minutes, not hours. Advanced Seam Tracking: The system can automatically find and follow the weld joint, compensating for part misalignment or thermal distortion. Quick-Change Tooling: Switch fixtures rapidly to weld different components in the same cell.