Any vector graphic software, for example Autocad, Corel Draw Galaad, etc.. will be sufficient to realize di cutting profiles.
Once you draw the profile, you can export it in DXF format and import it in our machinery RM-PlasmaCut3D. The PlasmaCut software is totally developed thinking the concept of easy and praticity use .  
In few second, and absolutely in automatic mode, it will change to the drawing (DXFHPGL) directly to the machine production. 
Main features of the Hypertherm sources:  

Tecnologia Smart Sense™, that regulates the gas pressure considering the cutting mode and the length of the torch cable to ensure the best performance. Circuito Boost Conditioner™ (CSA models), designed to improve the performance if the tension isn't sufficient, motor generator or tension input fluctuations.  Torce FastConnect™, NC interface and 4 cable type to improve the visibility in manual and mechanized mode. Intuitive Panel control with a LCD display for the best easily use. 

Main Advantage about the Hypertherm torch
Torch for the manual cutting at 15° e 75° serie Duramax™, that allow the operator the possibility to choose the right instrument considering the type of job to do. The maximum resistance to heat and durability of the handle five times measured in endurance tests than previous torches. Duramax machine torches series of standard and compact dimensions, which allow a wide range of mechanized applications with X-Y banks, trunking systems and cutting systems for pipes and robotic Conical Flow ™ nozzle technology, able to increase the arc density to improve the cut quality with little dross. New screen , patent pending, can reduce the dross and allow a smoother drag cutting.
Torcher height Control for plasma cutting:
The automatic control of the height torch (THC) is one of the instrument more important for the mechanized plasma cutting.

THC elements : torch positioning command control. This dispositive move the torch, up and down, to response at the signal that the control consolle do. Motore posizionatore di torcia a comando.This device moves the torch up and down in response to the control console signals. Drives screw, rack and belt drive mechanisms are used to perform the movement.

Control console: this is the brain of the system. Receives input commands from the remote control sends commands to the positioner output of flashlight and monitors the position feedback and the voltage signals.

Plasma system interface: this device consists of a voltage divider board which is assembled on the plasma supply. The voltage divider card monitors the power supply voltage during cutting. "Divide" the voltage signal and sends a smaller to the control console voltage signal.

Remote control: The remote control is the man-machine interface (HMI). The operator sets two critical cutting parameters: the initial height and the voltage arc. It can be located in the CNC control or in a separate box.

The difference between the IHS (take over start height) and the tension setting is very important. The IHS is a regulated parameter that set the height where the torch will power on and start to pierce the plate.
To set the first height, the THC should, in first time, find the position about the plate. It is used a big variety of screen to detect the plate by a simple mechanical device. 
Regarding the mode used, the most important is that the torch find the plate and to index carefully the right height considering the thickness plate and if it is clean or rusted, etc... 

The correct height pierce is essential: if the torch drill too down, the consumable part will damaged. The distance beetween the torch and the material or the situations where the machine stop during the standing-off, are regolate by a monitoring and the arc tension control. 

(Please note: the voltage arc is the same thing that the power supply output voltage). The plasma power supplies have a power source that generates a very stable system when the torch is cutting. The torch varies depending on the distance between the cathode (the electrode in the torch) and the anode (the material to be cut). The voltage is directly proportional to the resistance. When the distance between the torch and the material increases, the voltage go up; when the distance between the torch and the material decreases, the voltage drops.

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