Visi software

Dedicated high speed milling techniques and built in smoothing algorithms create highly efficient NC code. Intelligent toolpaths will reduce cycle times on your machine, improve productivity and continuously produce high quality components. Extensive range of CAD interfaces and powerful modelling.

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The extensive range of translators ensures that users can work with data from almost any supplier. VISI can work directly with wireframe, solid, surface and mesh data or a combination of all four, providing the user with tools to work with any CAD data or to quickly re-model parts ready for machining, fully utilizing the power of true hybrid surface and solid modelling.

Intuitive interface. A simple tree structure makes it easy to navigate around the machining operations. Machining parameters for depth of cut, step over, ramp angle etc.

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Most commonly used values, can be stored as default settings enabling the operator to use a company standard consistent method of machining. On line context sensitive help will guide the programmer through the available machining options. Comprehensive Tool library with holders, cutting parameters and sister tooling.

Catalogues of tools, holders, extensions, adapters, storing speeds, feeds, optimal cutting depth, stepover values and tool offsets along with tool and gauge lengths can be selected from user definable libraries.

VISI Progress Strip layout

For longer machining cycles, VISI will keep track of the amount of machining completed. When the specified tool life has been reached the system will automatically call for a sister tool, minimizing the risk of damage to the part being machined, by worn or broken tooling. Multiple roughing toolpaths. A combination of constant Z roughing, adaptive roughing, core roughing and rest roughing, combined with intelligent ramp, helical and planar entry methods provide the operator with the freedom to produce efficient NC code to suit any component.

Combined with smooth corner radii and smooth transitions between passes, the tool will maintain the maximum feedrate on the machine tool, and prevent the cutter from dwelling in corners. For subsequent roughing operations, VISI will remember where remaining stock is left on the component and only machine in those areas. Wasted air cutting will be minimised and unnecessary rapid movements will be eliminated, while the cutter will avoid digging into areas where there is excess material, which could result in tool breakage.

Where the starting billet is pre-machined, or possibly a casting, VISI will recognize and machine only where material exists, again eliminating wasted movement, and keep cycle times to a minimum. Adaptive clearance. Adaptive clearance toolpaths allow the tool to rough the part in a unique way by roughing out from bottom to top. The principle behind this method is to machine large steps utilizing the full flute length of the tool with a small stepover and then machine the intermediate levels back up the part.

Continually repeating the process until the entire component is fully machined. The tool remains on the part as much as possible and the toolpath automatically switches to a trochoidal type motion when the shape of the part requires. This toolpath ensures that there are never any full width cuts and guarantees a constant tool load. Tool wear is spread evenly across the cutting surfaces and the center of force is half-way up the tool, reducing deflection and the potential for vibration Using adaptive roughing, the cycle automatically adjusts the toolpath for efficient and safe machining, improving cutting conditions and allowing higher machining speeds to be maintained.

ISO-Machining is based on single or multiple surfaces and machines the surface directly instead of creating a triangulated mesh. This strategy is ideal for machining groups of surfaces that make up radii as the contact point of the tool machines to the full edge of the geometry. This flexible strategy is also extremely useful for picking out small areas without having to machine the entire component.

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All toolpaths are fully gouge protected against neighbouring surfaces with multiple collision detection options available.It offers a unique combination of applications, fully integrated wireframe, surface and solid modeling, comprehensive 2D, 3D and 5 axis machining strategies with dedicated high speed routines.

Industry-specific applications for the design of plastic injection molds, including material flow analysis and the development of progressive compounding tools, provide the mold maker and toolmaker with unsurpassed productivity.

Due to the extensive selection of interfaces, the VISI user can work with almost any customer or supplier.

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The ability to skip damaged records during import gives the user a tool that can handle damaged data as well as possible. With very large amounts of data can be easily handled. Functions for the kinematic simulation of tool movements and the creation of assembly sequences are already available in the basic system. Want to learn more about this software? Contact us today to schedule a product demonstration. Finding problems at an early stage within the project lifecycle is hugely beneficial.

VISI Electrode VISI Electrode is an automated module for the creation and management of electrodes and their holders for the manufacture of detailed and hard to machine features on mold and press tools. Comprehensive holder design, simulation and collision checking ensures that the electrode will operate right first time. VISI Progress Industry specific functionality provides a more productive and efficient design experience.

Helping the designer with intelligent decisions will reduce the potential for error and greatly improve manufacturing productivity. Dedicated high speed milling techniques and built in smoothing algorithms create highly efficient NC code. VISI 5-Axis Machining 5 Axis Machining has traditionally been regarded as advanced technology best suited to the aerospace and automotive industry.

It is particularly useful in the generation of blank forms for the sheet metal, progressive die, press tooling and crash tooling industries. Photo Gallery. Product PDFs Need more info?

Check out our library of product PDFs. Access PDFs. Gun and Deep Hole Drilling. Compass: Feature Based Machining. Rendering Undercut CAM. Rendering Undercut CAD. Open Edges Glow. Wire Process Improvement. Modeling to Mold Integration. Mold Motion Study. Mold Tool Templates. Visi Surfacing. Visi Compare.

Visi Mold- Split by Color. Visi Mold Tool Design. Contact us to learn more about VISI. Dajaco Industries- Customer Story It offers a unique combination of applications, fully integrated wireframe, surface and solid modeling, comprehensive 2D, 3D through 5 axis machining strategies as well as Wire EDM with dedicated high speed routines. FactoryWiz Monitoring is a powerful, modern data collection system for CNC machine tool activity, offering a complete on-premise intranet solution.

Provides Real-Time reports showing current and historical machine status on large screen dashboards, and any intranet enabled device. This is NOT a cloud-based system. A single platform combines all key aspects of shop management. It offers an intuitive environment for the comprehensive programming of multi-axis laser or water-jet cutting machines.

DYNAFORM is a simulation software solution, which allows organizations to bypass soft tooling, reducing overall tryout time, lowering costs, increasing productivity and providing complete confidence in die system design. It also allows for the evaluation of alternative and unconventional designs and materials. Learn More. Create quotes in minutes, not hours.

Review Previous Quotes at the click of a button. Are you still typing numbers into your EDM? Automatically design your fixture from your part data!Extensive range of CAD interfaces. The extensive range of translators ensures that users can work with data from almost any supplier. The ability to skip corrupt records during the import process provides a platform from where the most inconsistent data can be managed.

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True hybrid modelling. VISI provides a dynamic structure from where it is possible to work with either solid, surface, wireframe or a combination of all three without any restrictions. Solid modelling has become a fundamental cornerstone of design but is often limited to prismatic or basic geometry. Solid modelling commands include boolean technology such as unite, subtract, extrude, revolve, sweep, cavity, intersect and hollow.

Surfacing technology however provides a different set to tools and techniques for more organic, free-form geometry creation. Surface modelling functions include ruled, lofted, drive, sweep, n-sided patch, drape, tangent, draft, revolved and piped surfaces. These modelling commands combined with advanced surface editing make it easy to heal imported geometry or construct the most complex 3D data. Advanced Modelling - Deformation. Advanced Modelling provides technology that will benefit all users in every industry sector.

The Advanced Modelling tools are capable of deforming geometry while maintaining model integrity and holding curvature up to G4 constraints - This is particularly important for parts of high gloss black, white, chrome or that have aerodynamic requirements.

Model editing includes bending, twisting, stretching and deformation, which allows the CAD operator to define the start and end geometrical conditions to drive any model change. Practical applications include springback for sheetmetal, product design changes and geometry healing. Kinematic Simulation. The kinematic options include constraints to simulate the physical movements of gears, gear racks and rails. The physical interaction of model geometry can be detected and the results of complex mechanisms validated - ideal when checking for potential collisions with slides, cams and lifters.

Surface repair and editing. Small gaps between surfaces on imported models can be automatically healed preventing the time consuming process of rebuilding very small surface patches. Where surfaces are corrupt or missing VISI will automatically create the edge curve geometry making it easy to rebuild new faces using the comprehensive surfacing suite.

Closing a surface model to produce a solid body eliminates construction problems later in the design process and immediately brings the benefits of solid modelling to the user. The ability to seamlessly switch between solid and surface technology provides unlimited freedom, ensuring the user can work with difficult CAD data. Powerful blending. Constant radius, variable radius, disc, hyperbolic and elliptical blends can be constructed directly onto a solid model. Blends can be propagated along tangent edges to quickly sweep across a component.

For very complex blending conditions or when working with inconsistent data, blend faces can be constructed as surfaces in an untrimmed state providing greater flexibility. Trimming is easy using either wireframe curves, edge geometry or existing faces. Full range of 3D curves and split line curves. Create a theoretical split line curve or construct 3D curves including iso-parametric, cross section, helix, ellipse, spiral, hyperbolic and other mechanical curves.

Combined curve reprocessing allows multiple command combinations to greatly simplify the process of creating high quality curve geometry for surface construction, trimming or machining. Ease of use.Full six language implementation, installation, programme, manual, help file and reports in English, French, German, Spanish, Italian, and Dutch. Device events are marked on traces e. Desaturations dippulse rate rise and CO2 analyses are configurable, with graphics and data tables — including Delta Index and Rapid Resaturation analyses.

BMJ Events e.

visi software

Visi-Download uses an electronic software licence key as an alternative to a hardware licence key. Import data from other recordings, including Actiwatch and EDF files. Artefact and cut-off rejectioneasily adjustable axes, user set montages, editable detected events. A4 or US letter page sizes, and as Adobe. Uses metric or US measurements and dates in any Windows format.

The chart screen for viewing simple oximetry and pulse rate data is shown in the picture below SpO2 in red and and Pulse Rate in blue. The bars below the axes show the detected desaturation and pulse rises. Analysis Reports. Reports can be selected from default analyses, with fully customisable plots, tables and graphs in a number of styles.

The current build is Multi-lingual: Full six language implementation, installation, programme, manual, help file and reports in English, French, German, Spanish, Italian, and Dutch. Presentation with high quality graphics: View the signals any way you like full control over scales, time axes, compression.

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Create, save and apply your preferred methods of viewing. Full statistical analysis: Desaturations dippulse rate rise and CO2 analyses are configurable, with graphics and data tables — including Delta Index and Rapid Resaturation analyses.

visi software

Supplied via the internet or on CD. Analysis Reports Reports can be selected from default analyses, with fully customisable plots, tables and graphs in a number of styles.

During installation administrator rights are required. Facebook Linkedin Twitter. We use cookies to ensure that we give you the best experience on our website. If you continue to use this site we will assume that you are happy with it. OK Privacy.ViSi Remote allows you to mix and contour your sound from anywhere in a venue without being constrained by cables. Systems can be configured to run in several ways. Older software versions would result in no added control benefit from ViSi Remote V1.

Connection reliability has improved in ViSi 2. Start the ViSi Remote app. Press the 'Devices' button in top left corner of screen to open the Devices list, if it is not already open. Press the 'info' button in the bottom right of the Devices list to see the version number. ViSi Remote V1.

Click here to watch the V2. ViSi Remote Remote control your mixing console. This means that artists can each control their own monitor mix directly from their performance position on stage. A single iPad could control a number of consoles in a network, which may include any of the consoles noted in the above range, so Si and Vi consoles may be mixed on a network. The ViSi app may be used as an offline familiarisation tool. ViSi Remote V2.

Optimise the front of house mix from anywhere in the room. Adjust monitor levels while standing next to the artist. Control input, aux and output levels and graphic EQ settings. Use in standalone mode for familiarisation with console functions includes Vi Series. Control a network of consoles from one iPad app e. Use multiple iPads on the same console, so several artists can control theirown monitor mixes.

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Console and audio unaffected by wireless dropouts or interference. Auto discovery of consoles on network — no manual address entry needed.

visi software

Buy It Now. Have a Question? Support for Consultants.Vero Software develops and distributes software for aiding the design and manufacturing processes, providing solutions [ buzzword ] for the tooling, production engineering, sheet metal, metal fabrication, stone and woodworking industries. From Wikipedia, the free encyclopedia. Securities and Excise Commission. Retrieved 22 December Retrieved 28 February Vero Software Plc.

Archived from the original on 9 October Retrieved 13 August July Retrieved 21 June Vero International Software. Archived from the original on 17 October Retrieved 16 May October January February Retrieved 21 July Categories : Engineering companies of the United Kingdom Computer-aided manufacturing software Companies based in Cheltenham establishments in England British companies established in Software companies established in Hidden categories: Webarchive template wayback links EngvarB from June Use dmy dates from June Wikipedia articles containing buzzwords from August All articles with unsourced statements Articles with unsourced statements from February Namespaces Article Talk.

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