EUREKA

Eureka performs a complete 3D-simulation of machine tools through a simple and intuitive graphical interface, starting from the G-code. Eureka avoids wasting production time by eliminating program testing on the CNC machine.

 

CUTTING CONDITIONS CONTROL AND TOOL OPTIMIZATION

Eureka helps to avoid risks of damaging expensive workpieces, breaking tools and fixtures or even crashing a CNC machine because of programming errors. Eureka supports any kind of machine and any controller on the market like Heidenhain, Fanuc, Siemens, Num, OSAI, Z32, Fidia, Selca. Other controllers can be easily integrated on demand.

EUREKA G-CODE

INCREASES PRODUCTIVITY, AVOIDS COLLISION ISSUES
Eureka performs a complete 3D-simulation of machine tools through a simple and intuitive graphical interface, starting from the G-code.

Eureka helps to avoid risks of damaging expensive workpieces, breaking tools and fixtures or even crashing a CNC machine because of programming errors.

Thanks to the possibility of customizations at any level many important manufacturers have chosen Eureka as their own verification software and as a solution for their customers.

Eureka supports any kind of machine and any controller on the market like Heidenhain, Fanuc, Siemens, Num, OSAI, Z32, Fidia, Selca. Other controllers can be easily integrated on demand.

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EUREKA ROBOT

REAL-TIME SIMULATION WITH MILLIONS OF MOVEMENTS
Eureka has been leading the robot milling applications arena for many years.
Eureka makes it possible to create models and artistic objects combining the flexibility of a 6 axes industrial robot with the reliable technology of a CNC machining center .

Eureka converts APT code generated by a CAM system into a program for a 6 or more axes robot cell using a dedicated postprocessing module. During the conversion process Eureka calculates the optimal movements of the robots and of the external axes simulating all aspects of the machining.

The software detects problems like singularities, collisions, out of limits and it offers powerful, easy to use tools to overcome them. Collisions are computed taking into account all the parts including the machined stock. The 64 bit version allows very fast processing of files of unlimited size.

EUREKA INCLUDES:

Simulate control functions virtually without tying up the machine, including:

  • G codes and M functions
  • Coordinate systems
  • Tool radius and length compensation
  • Drilling cycles, multiple cycles
  • Logical instructions

Real-time collision detection:
Detect program crashes virtually whether it be a collision between machine parts, stock and fixtures.

Verification of out of limits:
Prevent overtravel and out of limit errors before you get to the control.

Real-Time visualization of coordinate systems and tool reference points:
Verify your programs are using the correct tool and workpiece offsets.

Jog and MDI functionality:
Use familiar controls from your CNC control in a virtual environment to jog axes around and manually input data to adjust your program, just like your actual control panel.

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HAWK RIDGE SYSTEMS SERVICES PROVIDED

We support all types of design, engineering and manufacturing teams throughout the US and Canada and we are committed to helping you get the most out of your 3D design software products.

TECHNICAL SUPPORT

Industry-leading support services, offering exceptional live chat and phone support, comprehensive web-based resources, live remote-access functionality, and advanced file-sharing.

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TRAINING CLASSES

Our courses are available in our state of the art training labs, online or onsite at your facility. We offer a comprehensive range of beginning, advanced and design specialty courses.

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SUBSCRIPTION SERVICES

Receive free upgrades, technical support from Hawk Ridge Systems, and access to a wide variety of resources: Knowledge Base, MySolidWorks, free certifications and tons more!

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POST PROCESSORS

Hawk Ridge Systems writes and supports SOLIDWORKS CAM and CAMWorks post processors which enable the programmer to postcode from the CAM software to their CNC machine.

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