May 06, 2024
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MEALTAC ( Middle East and Africa for Localize Technology, Arts and Crafts )

MEALTAC Vision

Our vision is to become one of the leading leaders for the development of industry, by contributing to the enhancement of cognitive capabilities and linking industrial satellites towards the design, planning and production of strategic products through close coordination with the products, services and expertise of the global companies in that industry. Through specialized approaches based on modern industry methods. Mealtac is one of the companies contributing to industrial development according to plans to modernize and strengthen industrial systems. MEALTAC strives in a dynamic way to meet the needs of the industry to match the continuing challenges:

  • Local competitiveness.
  • Increasing global competitiveness saady human capital.
  • Confirm presence in global markets and open new markets.
  • Modernizing industrial facilities and developing human resources skills for global competition.
  • Effective contribution to economic and social development by providing technical and vocational training in the quality and efficiency required by the labour market.

Implementation strategy

The company has set a number of goals to be achieved, as follows:
Preparation of the individual required to carry out the activities required in the industrial fields that contribute to the raising of the national economy, whether by working in public institutions or ministries, private companies or in self employment
Providing the individual with the industrial culture which contributes to the formation of a strong generation of trained manpower to have the power and ability to understand and think, and adapt to different industries.
To provide a broad scientific base for technical manpower to make it easy for the individual to react to the rapid development of technology and science of design, manufacturing and modern technical means.
Open the door for every willing to learn a profession or continue to train it to the maximum of its mental and physical potential, this is called the open training ladder.
Develop the skills of technicians and constantly update their professional information through the system of Malwarebytes and redoing.
To help stop internal migration to major cities and migrate abroad by deploying vocational training in all industrial areas..

Objectives to be achieved

Preparing and training engineers and technicians to carry out professional, vocational and technical work in the sectors, both in the self employment of companies and in the work of the Government and the public sector, as well as training in colleges, institutes, research centers, temporary camps and recognized safe areas.
Strive to further develop and upgrade technicians and professionals on the job to impart advanced knowledge in the field of science and technology design and manufacturing.
To seek to prepare students for postgraduate studies who continue their academic education, by directing them and training them in customized programs, according to the capabilities and research disciplines.
Preparing technical staff from teachers and trainers within universities and various training sectors.
Directing investment to develop the skill structure to broaden the base of technical and technical work in the country.
Creating a unified peace education structure to strengthen engineers, graduates and technical workers in coordination with the human rehabilitation agencies and the ministerial Committee of Manpower.
Supporting professional guidance processes by raising the technical and professional awareness of the concerned agencies with a better return of the services of the institution in both technical and training terms to achieve the desired goals.
Attention to research and studies to address the problems of technicians and technical workers untrained in light of the needs of the labour market

MEALTAC message

The company strives to achieve a set of strategic objectives To absorb and qualify as many as possible technical and vocational training to contribute to development and compensate for the acute shortage of skilled workers.
Qualification and development of human cadres in technical and professional fields, according to the demand of the quantitative and qualitative labor market.
Provide quality and sufficient training programs that qualify the trainee to get suitable work in the free labour market.
Ability to adapt and deal successfully with challenges and changes, based on research and applied studies.
Building strategic partnerships with the business sector to implement professional technical programs.
To raise awareness of the importance of working in the technical and professional fields in the community, creating a safe and stimulating environment for action.
Encourage investment in technical and vocational training and community training.
Closer relationship and integration with educational and training entities.
Expansion of advanced training areas in support of national plans and participation in technology transfer and development programmes.

Organizational structure

There are a range of methods to develop the work and mechanisms through a range of actions, including:
Converting trainees ‘ services programs into automated and electronic systems in registration, acceptance, testing, evaluation, and certification.
Creating the appropriate training environment that would motivate trainees to introduce quality methods and ensure that they are provided with the skills required to raise their technical and professional standards.
Provision of training equipment and supplies and related training modules.
Developing the computer system for the training units through activating electronic transactions, and making their services available to the beneficiaries via the company’ s website.
Activating programmes for the development and training of technical and administrative personnel working in support of training operations in training units.:.

Industries

Products Overview

Applications ( SW Related )

Suites ( SW Related )

Solutions ( SW Related )

Data Analytics and Artificial Intelligence (AI)

Data is unlike any other asset your organization owns. It never wears out, it never drains, and it can be used repeatedly. But the value in data is not in having it, it’s in how you use it. Altair enables data-driven enterprises by providing teams the power to use data analytics and AI to gain competitive advantages and drive next-level business results.

Data Analytics and Artificial Intelligence (AI)

Data is unlike any other asset your organization owns. It never wears out, it never drains, and it can be used repeatedly. But the value in data is not in having it, it’s in how you use it. Altair enables data-driven enterprises by providing teams the power to use data analytics and AI to gain competitive advantages and drive next-level business results.

AI-powered Design

Advancements in the fields of AI and machine learning (ML), combined with the increased availability of robust simulation, testing, and field data sets has made engineering data science a critical component of the modern product development lifecycle. Computer-aided engineering (CAE) augmented by AI is offering manufacturers the ability to discover ML-guided insights, explore new solutions to complex design problems through physics and AI-driven workflows, and achieve greater product innovation through collaboration and design convergence.

Data Transformation

An industry leader with more than 30 years of experience in data discovery and transformation, Altair offers the fastest and easiest way to extract data from difficult, semi-structured data like PDFs, spreadsheets and text files, as well as from Big Data and other structured sources. Whether data is on premises or in the cloud, Altair can automate preparation tasks and transform your data into accurate and clean datasets in seconds – rather than hours or days – freeing you up to spend time on value-add activities, not on mundane, repetitive and error-prone tasks.

Predictive Analytics and Machine Learning

Altair’s machine learning and AI solutions quickly get to the granular, low-latency data that contain the insights you are trying to uncover. Delivering transparency and automation with features such as AutoML and Explainable AI, we streamline model building so more time can be spent analyzing and results can be trusted. Our flexible no-code approach doesn’t restrict how models are configured and tuned, giving you control over model building. With our support for popular, open-source languages and engines, you can integrate new models built using Altair into your existing analytics infrastructure.

Data Visualization and Stream Processing

Spot anomalies, trends and outliers in seconds with real-time data, and share results across the organization using rich, powerful dashboards. Our stream processing and data visualization solutions are built for people who need to make fast, fully informed decisions based on massive amounts of fast-changing telemetry, sensor and trading data.

Electromagnetics

Altair software is used across industries to solve a broad range of electromagnetic problems from static to low and high frequencies. Whether your application requires multiple frequency and time-domain techniques with true hybridization to enable efficient exploration of a broad spectrum of electromagnetic performance, or the simulation of magneto static, steady-state and transient conditions, we have the tools you need.

Motor Design

Altair® FluxMotor® is dedicated to the simulation-driven design of electric rotating machines. It enables users to build from standard or customized parts, add windings, and change materials to quickly develop a concept design. Then, with the power of the Altair® Flux® solver, users can run a selection of tests, try different configurations, compare results, and optimize performance within an intuitive interface specific to motor development.

Antenna Design and Placement

Altair® Feko® is widely used to design radio and TV, wireless, cellular, communication, remote keyless entry, tire pressure monitoring, satellite positioning, radars, RFID, and other antennas. The Feko® method of moments (MoM) solver is used for antenna design. Model decomposition is possible with accelerated full-wave methods like multi-level fast multipole method (MLFMM), or asymptotic methods like physical optics (PO), ray launching geometrical optics (RL-GO), or uniform theory of diffraction (UTD).

Wave Propagation

Feko is a leading tool for wireless propagation modeling and radio network planning for broadcast, cellular, WiFi, and other applications. It includes highly accurate, fast empirical, semi-empirical, rigorous 3D ray tracing models, plus the unique dominant path model (DPM). It simulates a wide range of scenarios, including rural, urban, indoor, and vehicular. This enables simulated radiation patterns of new antenna designs to be evaluated in a network context.

Electromechanical Machines

Flux models even the most complex electromechanical systems with proven accuracy. It provides multiphysics capabilities – magneto static, steady-state, and transient conditions, along with electrical and thermal properties – to optimize machine performance, efficiency, dimensions, cost, and weight. Flux can model rotating machines with 2D, skew, or 3D representations. It is used to develop sensors and actuators, in addition to high-power electrical equipment including transformers, insulator, power bars, and circuit breakers.

EMC and EMI

Electromagnetic compatibility (EMC) and electromagnetic interference (EMI) have become key topics with the proliferation of connected devices, both for component integration and satisfying EMC regulatory requirements. Flux can evaluate the magnetic field radiated by power cables and busbars, and the effect of external fields on the operation of sensors or actuators. Feko can simulate the radiation and irradiation of cables, antennas, and devices to inform the design of effective shielding.

Bio-electromagnetics

Feko provides insight into the interactions of electromagnetic fields inside or close to the body. It offers a database of human body models to simulate applications including mobile and wireless devices, hearing aids, magnetic resonance imaging (MRI), and medical implants. Analysis of biological tissue ensures that enough signal is radiated while complying with regulations that limit the specific absorption rate (SAR) and the temperature increase in the body.

Altair Partner Alliance (APA) Solutions for Structures

For more electromagnetics software to complement your existing Altair electromagnetics toolbox, the APA has solutions to fuel your innovation. Simulate electromagnetic performance across circuit, component, and system design. Our partner products feature an integrated workflow to help you achieve design success high-speed electronics, electromechanical component, communications systems, and more. VSim by Tech-X features a high-performance computational application for simulating electromagnetics and plasmas. For a highly performant electromagnetic design automation suite, Mician offers µWave Wizard™ for full wave 3D design and simulation. TracePro by Lambda offers ray tracing, analysis, CAD import/export, and optimization to solve a wide variety of problems in illumination design and optical analysis. Fieldscale's Charge is a simulation software that enables the electrostatic simulation of today’s complex products in minutes. These tools and more available are available through your Altair Units license.

Electronic System Design (ESD)

Smart connected devices are everywhere, in homes, in transportation, and at work. This means electronic system design (ESD) is having a greater influence on almost every type of product requiring new simulation tools to help achieve electronic, electrical, mechanical, thermal, and connectivity goals. Altair’s simulation-driven design tools enable your team of specialized engineers to collaborate across all aspects of printed circuit board development from concept to manufacturing. Our products streamline your process, eliminate design iterations, and reduce time-to-market.

PCB Development

Altair® PollEx™ accelerates the development of today’s smart, connected, and tightly packaged electronic products. PollEx enables teams to review and improve board layouts, and drive designs with simulation tools for signal integrity, power integrity, EMI vulnerability, and ESD protection, without relying on "rules of thumb." Used by global industry leaders to increases the efficiency of PCB fabrication, assembly, and end-of-line testing, PollEx improves performance, enables teamwork, and enhances collaboration to ensure timing, performance, reliability, and compliance targets are met.

Wireless Connectivity

Altair® Feko® enables teams to optimize wireless connectivity, including 5G, ensure electromagnetic compatibility (EMC), and perform radar cross section (RCS) and scattering analysis. It is the leading tool for understanding and optimizing antenna placement and coupling. Installed antenna performance is heavily dependent on how and where antennas are integrated. Feko is extensively used for immunity and emissions analysis of cables, antennas, and other devices. It simulates wireless coverage and enables radio network planning for a building, campus, city, or region.

Product Performance

Altair® SimLab® accurately analyzes the performance of complex assemblies under real world conditions before physical prototyping. Highly automated workflows drastically reduce the time spent creating models and interpreting results. Confidently identify and correct potential design issues earlier in development with thermal analysis that doesn’t require advanced CFD knowledge. Automate structural stress, vibration, and drop test performance assessments. SimLab even models fiber orientation during the injection molding process of plastic enclosures and manages structural solver coupling.

Sensors and Actuators

Accelerate the design of motors, sensors, actuators, and wireless charging with Altair® Flux® simulation to elevate performance and reduce power consumption. Altair® FluxMotor® is dedicated to the fast exploration of new motor concept designs. Integrate models for mechanical, electrical, and controller subsystems to simulate a full system with Altair® Activate® and exchange models to co-simulate with other CAE tools using functional mockup interface (FMI).

Circuit Simulation

Circuit simulation plays a strategic role in the schematic capture phase of EDA workflows. The enhanced proprietary version of SPICE, based on the open-source industry standard, with access to the library of digital component suppliers, delivers a more interactive schematic in which easy changes of component values, tolerances, frequency response, or time periods enable an accurate verification of the electronic circuit performance.

Embedded Code

Altair® Embed® is a proven tool for model-based firmware development of embedded systems including analog and digital communication systems at the physical layer motor control, IoT devices, and vision systems. With Embed, you can design, analyze, and simulate your embedded system using block diagrams and state charts, then automatically generate compact and optimized code to run on an extensive selection of microcontrollers.

Optimize EDA Job Scheduling

Trusted for semiconductor design and EDA, Altair® Accelerator™ is the industry’s fastest enterprise job scheduler — with scalable, event-driven architecture for highest throughput.

Dependency Analysis and I/O Profiling

With Altair Breeze™, you can quickly solve software deployment problems and resolve file and network dependencies. With detailed data for storage exports and summary reports for sharing, Altair Breeze identifies good and bad I/O for easy wins.

Live System Telemetry and I/O Monitoring

As distributed systems and compute clusters become more complex, the need for monitoring is increasingly important. Altair Mistral™ is the leading application monitoring tool for HPC and scientific computing.

Altair Partner Alliance (APA) Solutions for Structures

For more electromagnetics software to complement your existing Altair electromagnetics toolbox, the APA has solutions to fuel your innovation. Simulate electromagnetic performance across circuit, component, and system design. Our partner products feature an integrated workflow to help you achieve design success high-speed electronics, electromechanical component, communications systems, and more. VSim by Tech-X features a high-performance computational application for simulating electromagnetics and plasmas. For a highly performant electromagnetic design automation suite, Mician offers µWave Wizard™ for full wave 3D design and simulation. TracePro by Lambda offers ray tracing, analysis, CAD import/export, and optimization to solve a wide variety of problems in illumination design and optical analysis. Fieldscale's Charge is a simulation software that enables the electrostatic simulation of today’s complex products in minutes. These tools and more available are available through your Altair Units license.

Fluids and Thermal

Whether you’re an analyst performing advanced computational fluid dynamics (CFD) modeling or a design engineer who quickly needs to understand fluid or thermal effects on a design proposal, Altair offers a complete line of tools to support your project. From detailed component analysis to full systems performance, Altair provides a range of scalable solvers under Altair CFD™, as well as robust pre- and post-processing software for CFD.

General-purpose CFD

Altair CFD’s Navier-Stokes solver includes a full range of flow, heat transfer, turbulence, and non-Newtonian material analysis capabilities. It provides companies with a solution that is robust, scalable, and accurate regardless of the quality and topology of the mesh elements. A dedicated and streamlined workflow is available in Atair ® HyperWorks® – including pre-processing, solver execution, and post-processing all under the same interface. No CFD software gets you to your end goal sooner – analyzing results and exploring the physics of your product

Aerodynamics and Aeroacoustics

Altair CFD’s Lattice Boltzmann method (LBM) solver enables ultra-fast prediction of the aerodynamic properties of passenger cars, light trucks, race cars, and heavy-duty vehicles. Its cutting-edge technology is optimized for energy and cost-efficient GPU-based computing to deliver unbeatable performance and to allow for overnight simulations of even the most complex models on a single server. This revolutionary technology also allows for direct calculation of aeroacoustics from rotating machinery such as cooling fans, e-motors and renewables.

Particle-based Fluid Dynamics

Altair CFD’s smooth particle hydrodynamics (SPH) solver is used to predict fluid flow around complex geometries under complicated motion. This method has significant benefits when looking at any free surface (liquid/air) flows in terms of both time and accuracy.

Discrete Element Modeling

Altair® EDEM™ is a discrete element method (DEM) software that accurately simulates and analyzes the behavior of granular materials such as coal, mined ores, fibers, grains, tablets, and powders. Using CFD coupled with EDEM enable engineers to realistically simulate the interaction between fluid and particles and to investigate a range of complex systems such as fluidized beds, solid-liquid mixing, spray coating, filtration, and drying.

Thermo-fluid Systems

Altair® FlowSimulator™ is an integrated flow, heat transfer, and combustion design software that enables mixed fidelity simulations to optimize machine and systems design. Applicable to turbomachinery, automotive, and energy industries, FlowSimulator was originally developed as the unified fluid system design tool for engine thermal, combustion, lubrication, and fuel system design. It is rooted in decades of practical usage and experience, with aerospace-quality level validation and verification.

Electronics Cooling

Altair® SimLab® is a process-oriented multidisciplinary simulation environment to accurately analyze the performance of complex assemblies. SimLab includes a range of highly automated workflows enabling the electronics industry to confidently identify and correct potential design issues earlier in development with thermal analysis that does not require advanced CFD knowledge. This includes the capability to simulate challenging electronics cooling and other electronic design automation (EDA) thermal management applications

Altair Partner Alliance (APA) Solutions for Fluids and Thermal

Further augment Altair’s complete line of tools with fluids and thermal solutions available through the APA. The APA's fluid and thermal solutions help you better understand thermal fluid structure interaction. TAITherm by ThermoAnalytics creates transient thermal predictions for your design. AVL FIRE™ M, supports the development of both conventional and electrified powertrains enabling you to efficiently solve complex flow problems in a variety of applications and industries. alsim Paint Shop gives you control over the paint simulation process. DSHplus by Fluidon empowers you to conduct dynamic non-linear calculations of complex hydraulic and pneumatic systems and components. These tools and more available are available through your Altair Units license.

Fluids and Thermal

Whether you’re an analyst performing advanced computational fluid dynamics (CFD) modeling or a design engineer who quickly needs to understand fluid or thermal effects on a design proposal, Altair offers a complete line of tools to support your project. From detailed component analysis to full systems performance, Altair provides a range of scalable solvers under Altair CFD™, as well as robust pre- and post-processing software for CFD.

General-purpose CFD

Altair CFD’s Navier-Stokes solver includes a full range of flow, heat transfer, turbulence, and non-Newtonian material analysis capabilities. It provides companies with a solution that is robust, scalable, and accurate regardless of the quality and topology of the mesh elements. A dedicated and streamlined workflow is available in Atair ® HyperWorks® – including pre-processing, solver execution, and post-processing all under the same interface. No CFD software gets you to your end goal sooner – analyzing results and exploring the physics of your product

Aerodynamics and Aeroacoustics

Altair CFD’s Lattice Boltzmann method (LBM) solver enables ultra-fast prediction of the aerodynamic properties of passenger cars, light trucks, race cars, and heavy-duty vehicles. Its cutting-edge technology is optimized for energy and cost-efficient GPU-based computing to deliver unbeatable performance and to allow for overnight simulations of even the most complex models on a single server. This revolutionary technology also allows for direct calculation of aeroacoustics from rotating machinery such as cooling fans, e-motors and renewables.

Particle-based Fluid Dynamics

Altair CFD’s smooth particle hydrodynamics (SPH) solver is used to predict fluid flow around complex geometries under complicated motion. This method has significant benefits when looking at any free surface (liquid/air) flows in terms of both time and accuracy.

Discrete Element Modeling

Altair® EDEM™ is a discrete element method (DEM) software that accurately simulates and analyzes the behavior of granular materials such as coal, mined ores, fibers, grains, tablets, and powders. Using CFD coupled with EDEM enable engineers to realistically simulate the interaction between fluid and particles and to investigate a range of complex systems such as fluidized beds, solid-liquid mixing, spray coating, filtration, and drying.

Thermo-fluid Systems

Altair® FlowSimulator™ is an integrated flow, heat transfer, and combustion design software that enables mixed fidelity simulations to optimize machine and systems design. Applicable to turbomachinery, automotive, and energy industries, FlowSimulator was originally developed as the unified fluid system design tool for engine thermal, combustion, lubrication, and fuel system design. It is rooted in decades of practical usage and experience, with aerospace-quality level validation and verification.

Electronics Cooling

Altair® SimLab® is a process-oriented multidisciplinary simulation environment to accurately analyze the performance of complex assemblies. SimLab includes a range of highly automated workflows enabling the electronics industry to confidently identify and correct potential design issues earlier in development with thermal analysis that does not require advanced CFD knowledge. This includes the capability to simulate challenging electronics cooling and other electronic design automation (EDA) thermal management applications

Altair Partner Alliance (APA) Solutions for Fluids and Thermal

Further augment Altair’s complete line of tools with fluids and thermal solutions available through the APA. The APA's fluid and thermal solutions help you better understand thermal fluid structure interaction. TAITherm by ThermoAnalytics creates transient thermal predictions for your design. AVL FIRE™ M, supports the development of both conventional and electrified powertrains enabling you to efficiently solve complex flow problems in a variety of applications and industries. alsim Paint Shop gives you control over the paint simulation process. DSHplus by Fluidon empowers you to conduct dynamic non-linear calculations of complex hydraulic and pneumatic systems and components. These tools and more available are available through your Altair Units license.

High-performance Computing (HPC) and Cloud

In the data center and in the cloud, Altair’s industry-leading HPC tools let you orchestrate, visualize, optimize, and analyze your most demanding workloads, easily migrating to the cloud and eliminating I/O bottlenecks. Top500 systems and small to mid-sized computing environments alike rely on Altair to keep infrastructure running smoothly. With longstanding hardware and cloud provider partnerships, we handle the integrations for you so your team can focus on moving business forward.

Workload Management

The Altair® PBS Works™ suite includes industry-leading workload manager Altair® PBS Professional®, designed to improve productivity, optimize utilization and efficiency, and simplify administration for clusters, clouds, and supercomputers — from the biggest HPC workloads to millions of small, high-throughput jobs. Get maximum throughput for EDA jobs with Altair® Accelerator™, an enterprise-grade scheduler capable of running millions of jobs per day, or optimize workloads and resources in thousands of distributed data centers with Altair® Grid Engine™. For advanced design flow development and execution, Altair® FlowTracer™ optimizes compute resources.

HPC Usability and Remote Visualization

Altair® Access™ frees scientists, researchers, and engineers from technology headaches so they can focus on their core work and spend less time learning how to run applications and moving data around. Access provides a simple, powerful, and consistent interface for submitting and monitoring jobs on remote clusters, clouds, and other resources. Remote visualization and collaboration capabilities bring access to expensive, high-end 3D visualization datacenter hardware right to the user.

License Management

Visualize, analyze, and optimize utilization of enterprise-wide software from anywhere with Altair® Software Asset Optimization. Right-size your organization’s software portfolio using real data and 70+ reports to make informed business decisions. Or choose Altair® Monitor™, a license tracking tool that gives users and administrators real-time insight into software license availability, usage, job status, and more. The Altair® Allocator™ multi-site license allocation and management tool maximizes license usage through sharing.

Cloud Bursting and Migration

Say goodbye to peak-time workload conflicts with PBS Professional’s intuitive cloud bursting GUI or burst with Altair® Control™, the HPC administrator’s control center for managing, optimizing, and forecasting HPC resources on-premises and in the cloud. Seamless cloud bursting capabilities and advanced analytics support data-driven planning and decision-making. Quickly, easily, and securely burst to different cloud platforms including Oracle Cloud Infrastructure, Google Cloud Platform, Microsoft Azure, and Amazon Web Services (AWS). Migrate compute-intensive HPC workloads to the cloud with Altair® NavOps®, featuring real-time insights and complete visibility into cloud resources.

I/O Profiling and Monitoring

Find rogue applications and eliminate bottlenecks, take control of file system dependencies, and get live per-job application telemetry for HPC and hybrid cloud. With Altair Breeze™, every engineer is an I/O expert, quickly solving software deployment problems and resolving file and network dependencies. With detailed data for storage exports and summary reports for sharing, Altair Breeze identifies good and bad I/O for easy wins. Because monitoring is increasingly important as distributed systems and compute clusters become more complex, Altair Mistral™ monitors I/O, CPU, and memory, quickly locating rogue jobs and storage bottlenecks and keeping track of what’s running on clusters day-to-day.

Turnkey HPC

Altair Unlimited™ boxes up software, system administration, and infrastructure as a service (IaaS) into a single, intuitive platform. This state-of-the-art private appliance is available in both on-premises and cloud-based formats. It delivers unlimited use of a wide range of Altair® HyperWorks® solver software for simulating mechanics, fluids, electromagnetics, and more, plus PBS Works to keep it all running with maximum efficiency.

Altair One™

Explore further with Altair One, a turnkey platform that brings together powerful engineering and analytics tools and scalable computing resources, all in one place. With Altair One you get dynamic, collaborative access with a central data repository. Provision scalable resources in the cloud or on-premises through a single pane of glass, run cloud versions of your favorite software, and run simulation jobs in the cloud. Accelerate discovery with unlimited access to all the software and HPC resources you need.

Industrial Design

Industrial Design

3D Rendering and Animation

Thea Render, Altair’s physically-based global illumination rendering tool, is the most versatile renderer featuring state-of-the-art unbiased, biased, and GPU engines. Altair® Inspire™ Studio and Render wrap it into a slick and efficient user experience that fulfills the needs of novice and expert users alike. To maximize productivity, it’s also available as a plug-in for some of the most popular design tools in architecture and industrial design.

3D Product Design

Inspire Studio enhances creativity by letting designers drive their design. Its intuitive user interface, with its powerful construction history tool, quickly creates, explores multiple iterations, and makes changes without any rework. Users can combine different modeling techniques to effortlessly create and explore even the most challenging designs. Stunning images and complex animations can then be generated in real time, with physically accurate lighting.

Generative Design

While the rest of the industry is still discovering how topology optimization delivers research projects, for the past two decades Altair® OptiStruct® has driven the innovative, lightweight, and structurally efficient designs of products you see and use every day. Altair® Inspire™ has now democratized topology optimization, making every designer and architect able to generate original, innovative, manufacturable, and structurally efficient shapes quickly and easily.

Internet of Things (IoT)

Altair’s industrial design tools allow designers, architects, and digital artists to create, evaluate, and visualize their vision faster than ever before. Focus on ideas instead of being hindered by shortcomings of the software tools and liberate creativity with design software that lets the user model freely, make changes effortlessly, and render beautifully.

Device Management

Out of the box, Altair's device management helps you overcome fundamental hurdles in IoT development, from reliable, secure, two-way device communication to easy, efficient device organization and modeling. Altair's device management provides optimized workflows for connecting to thousands of devices, creating a virtual representations of those devices, and then organizing them into logical groups. Spend less time on busy work – instead, accelerate your provisioning process so you can focus on providing the best possible experience to your customers.

Edge Orchestration

Edge application orchestration can be a complex, nuanced problem – edge compute loads encounter complications ranging from uncommunicative devices, to specialized target hardware requiring specific builds, to mission critical applications running out of hardware resources. Edge orchestration provides a powerful platform for managing these nuances so that you can build automation and execute logic close to devices, without making the round trip to the cloud. For you, that means reduced latency, saving on data transfer costs, and new, powerful intelligence where you need it most.

Data Storage

Devices create a lot of data – ten thousand devices reporting just a few times a minute can create terabytes of data every month. Altair’s data storage solutions gives you a set of tools for efficiently, appropriately, and securely managing data from your devices so that you can extract the right insights and action from them. Store transformed data to be accessed in real-time, store raw data for long-term reference, and use our analytics service to query them intuitively so you can unearth trends or train machine learning models. Altair’s data storage solutions make sure you can get the right amount of information at the right time.

Stream Processing

Raw data from machines can be surprisingly unhelpful. Sometimes inscrutable, rarely where they need to be, and data from one network are almost never formatted the same as another. Additionally, and maybe worst of all, data doesn’t offer any conclusions about their own meaning. Altair’s stream processing solutions help you solve these problems using a drag-and-drop interface and as little code as you want. With stream processing, you can transform and join data streams, add calculated columns, execute machine learning models, send alerts, convert values, and connect to dozens of different sources or destinations all on live, streaming data. In order to derive value from your asset data, you will almost certainly need to do some data massaging – Altair’s stream processing solutions can help you do it easily and scalably.

Data Prep and Machine Learning

Altair's data prep and machine learning tools enable you to extract actionable information from your real-time and historical data sources in a code-free, secure environment. Our extensible platform supports automated data discovery, data transformation, machine learning, and visualization. Use these tools to optimize operations and develop accurate prescriptive responses to all the contingencies that can arise in your business. Make accurate predictions about component life, replacement requirements, energy use, maintenance, utilization, and other factors that directly impact quality, sales, customer acceptance, and efficiency. Never has it been easier to streamline operations or improve product performance.

Real-time Dashboards

Truly real-time visualization is hard to come by. Many dashboard tools claim real-time capabilities, but they fail when put to the test: only one component will be real-time, or updates every minute, or the queries can be run on-demand but not automatically updated. Altair’s real-time dashboards are different. We offer down-to-the-second, automatically updating charts complete with with anomaly detection and user feedback functions. We built this offering to be truly real-time and embeddable from the ground up, which means you can see the data how you want, where you want, and fast enough to act quickly. Altair’s real-time dashboards are the most powerful, easiest way to put IoT data exactly where it's needed.

Embedded Development Environment

Embedded development for IoT has many unique considerations. Peripheral programming, distinctive communication protocols, battery life awareness, over-the-air (OTA) updates, and tough security are all frequent requirements in IoT embedded development. Altair® Embed® addresses each of these concerns – it enables you to build and validate reliable embedded systems via simulation or hardware-in-the-loop (HIL). Embed has built-in support for easy cloud or device communication, battery state-of-charge (SOC) and state-of-health (SOH) tracking, battery charge optimization, secure OTA firmware updates, and encrypted data transmission. It helps you iterate your code fast, improve system efficiency, and reduce the embedded system attack surface. With Embed, you can be confident your embedded system is production-ready.

Manufacturability

Altair offers a unique set of simulation tools to evaluate product feasibility, optimize the manufacturing process, and run virtual try-outs for many traditional, subtractive, and additive manufacturing processes. Users can validate designs early in the manufacturing process with the simplicity and affordability of the simulation software, as well as use optimization technology with specific manufacturing constraints to design better, more efficient products. Altair’s applications for product manufacturability covers applications in several industries, including automotive, aerospace, electronics, pharmaceutical, and heavy industry.

3D Printing

Altair® Inspire™ Print3D enables teams to cut product development and additive manufacturing costs by reducing material usage, print times, and post-processing. It provides a fast and accurate toolset for the design and process simulation of selective laser melting (SLM) parts. By capturing behavior independent of the printer type, designers can evaluate and easily modify critical process variables. Further manufacturing process analyses can be performed leveraging third-party tools available through the Altair Partner Alliance (APA).

Injection Molding

Altair® Inspire™ Mold is a modern, integrated software to streamline design for manufacturing (DfM) of injection molded components. Fast, accurate simulations answer the question "will it fill?" for even large, complex parts in under an hour. Identify potential manufacturing defects early in the development process and make better, more informed design decisions. Leap from manufacturing "know how" to "know why," deliver superior products, reduce scrap, and slash tooling rework costs. For more advanced analyses Altair® SimLab™ offers a seamless, end-to-end simulation workflow from feasibility to performance validation.

Casting

Altair’s offering includes a fast casting process simulation software that allows the user to enhance and optimize their manufactured components in order to avoid typical casting defects. Altair® Inspire™ Cast is a simulation environment focused on creating high-quality components with increased profitability through a highly intuitive user experience catering to beginners and experts alike. Additional casting simulations products are accessible through the APA.

Metal Forming

Altair® Inspire™ Form is a sheet metal forming simulation software that enables users to optimize their products for manufacturing, with the consideration of early formability, material utilization, and cost. Cold and hot sheet metal forming, tube bending, hydroforming, and composite forming are supported. Run early manufacturing feasibility analysis within seconds or perform advanced process validation, optimization, and virtual try-outs leveraging an accurate, highly-scalable solution.

Extrusion

Every extrusion company is looking to eliminate costly prototypes and reduce redesign cycles. With Altair, advanced physics simulations are now accessible to organizations of all sizes. Altair® Inspire™ Extrude is a simulation solution for both metal and polymer extrusion. It helps achieve productivity gains by reducing product development costs and improving extrusion quality, increasing production yield. Lower scrap rates can be achieved by exploring process improvements on a virtual press.

Process Manufacturing

Altair® EDEM™ software is used by top-tier process manufacturing companies worldwide in the pharmaceutical, chemical, consumer packaged goods, and asphalt industries to optimize the performance of equipment handling and processing bulk solids. EDEM enables companies to accurately simulate and analyze the behavior of particles, from powders to tablets, providing key information on processes otherwise difficult or sometimes impossible to measure.

Polyurethane Foaming

Rigid and flexible polyurethane foams, also known as cellular or expanded polymers, surround us. Their important attributes like lightweight, adaptable strength per unit weight, and insulation characteristics, as well as their inherently high sustainability make them attractive for an increasingly wide range of industrial and household applications. Altair® Inspire™ PolyFoam provides a modern integrated approach to streamline DfM of flexible molded foam components and rigid foam panels.

Circuit Boards and Electronics

Run DfM checks early in the development cycle with Altair® Pollex™. Increase efficiency of printed circuit board (PCB) fabrication, assembly, and end-of-line testing, with the export of fabricating, mounting, paneling, and testing data to production line machinery. PollEx is not just a PCB verification tool, it is solution that accelerates the development of today’s smart, connected, and tightly packaged electronic products.

Composites

Composite material behavior is defined as components are manufactured. Develop and simulate multiscale heterogeneous material models with Altair® Multiscale Designer™, while assuring manufacturability with draping and forming simulation for sandwich and multilayered laminates combining Altair and APA third-party products. For engineered plastics, SimLab includes a very accurate simulation of fiber orientation during filling and analysis of the structural performance of the complete assembly.

Altair Partner Alliance (APA) Solutions for Manufacturing

Further enhance your manufacturing with partner products from the APA. APA manufacturing solutions feature integration with Altair workflows to help improve the product development lifecycle. For metal additive manufacturing, Amphyon by Additive Works is a powerful tool for simulation-based job preparation that enhances part accuracy and minimizes failure rates. Complement Altair’s topology optimization with Materialise’s 3-matic software that works on an STL level to allow users to modify designs, remesh, create 3D textures, and more. AFDEX by MFRC is the ideal tool to meet your metal casting simulation needs and better predict metal forming loads. These tools and more available are available through your Altair Units license.

Multiphysics

Altair provides an industry-leading portfolio of multiphysics-enabled software to simulate a wide range of interacting physical models including fluid-structure interaction (FSI), flexible bodies, aeroacoustics, and thermomechanical simulation. Together with Altair’s multidisciplinary optimization and scalable high-performance computing (HPC) you can solve real world engineering problems quickly and effectively.

Mechanical Systems and Controls

Altair® MotionSolve® performs 3D multi-body system simulations to predict the dynamic response and optimize the performance of products that move. By considering realistic motion-induced loads, environmental effects, and flexible bodies engineers and designers can be confident that their products, when made and operated, will perform reliably, meet durability requirements, and not fail from fatigue. MotionSolve drives multi-disciplinary product development teams by enabling the combined simulation of motion and control.

Advanced Electromagnetic Systems

Electric motors generate high frequency noise and vibrations. Altair® Flux® computes magnetic forces to be applied as loading conditions for noise, vibration and harshness (NVH) calculations using Altair® OptiStruct®. Design exploration with Altair® HyperStudy® can maintain motor performance while reducing the noise. Heat losses can also be calculated using Flux and used as initial conditions for Altair CFD™ to calculate temperature distribution. Multi-disciplinary simulations of antennas are also possible with Altair® Feko®.

Fluid-Structure Interaction (FSI)

FSI simulates the behavior of fluids and structures simultaneously. FSI methods in Altair® Radioss® are employed in airbag inflation, airplane ditching, and bird strike simulations. Through code coupling Altair CFD supports the FSI simulation of wind turbines, shock absorbers, offshore oil pipelines, blood vessels, racecar wings, and other complex systems, in addition to aeroacoustics problems. Altair CFD coupled with MotionSolve can also solve fluid-motion problems such as tank sloshing.

Thermomechanical Simulation

Thermomechanical simulation captures deformation and stresses in solids based on the combined effect of mechanical loading and thermal loading, including thermal expansion. OptiStruct has the capability to solve both the thermal and mechanical physics in a single simulation. This enables engineers to understand how automotive and aircraft engine parts behave under real world conditions. Other applications include printed circuit boards and heavy off-highway machinery.

Multi-disciplinary System Simulation

Altair® Activate® rapidly models multi-disciplinary systems as 1D models. By simulating the performance of an entire product engineers can understand overall behavior earlier and recognize key interactions between components and subsystems. Activate allows mixed signal-based and physical modeling including pre-defined libraries for mechanical, electrical, and thermal components. The powerful built-in functionality is extended by open standards such as Modelica and FMU to couple 1D and 3D models. The dynamic response of complex mechatronic systems can be quickly simulated, combining multi-body analysis mechanism with electrical and electronic subsystems.

Discrete Element Modeling

Altair® EDEM™ is the market-leading software for bulk and granular material simulation. Powered by industry-proven discrete element modeling (DEM) technology, EDEM quickly and accurately simulates and analyzes the behavior of coal, mined ores, soils, fibers, grains, tablets, and powders. EDEM couples with all of the major computer aided engineering (CAE) technologies such as finite element analysis (FEA), multi-body systems (MBS), and computational fluid dynamics (CFD).

Multi-disciplinary Design Exploration

HyperStudy is a multi-disciplinary design exploration, study, and optimization software for engineers and designers. Using design-of-experiments, metamodeling, and optimization methods, HyperStudy creates intelligent design variants, manages analysis runs, and collects data. Users are guided through the process to conclude data trends, perform trade-off studies, and optimize design performance and reliability. A direct interface to the most popular CAE solvers enables the incorporation of multiphysics evaluations.

Multiphysics Workflows with CAD Associativity

Altair® SimLab® is a process-oriented multidisciplinary simulation environment to accurately analyse the performance of complex assemblies. Multiple physics including structural, thermal, electromagnetics, and fluid dynamics can be easily applied using highly automated modeling tasks, helping to drastically reduce the time spent creating FEA models and interpreting results. The highly efficient, feature-based modeling approach allows the creation of templates to enable CAE automation of multiphysics analyses locally or in the cloud.

Massive Virtual Exploration

Altair® Unlimited™ boxes up software, system administration, and infrastructure-as-a-service into a single, intuitive platform. It is a turnkey, state-of-the-art private appliance, available both on-premises and in the cloud. Altair Unlimited delivers unlimited use of Altair solver software. To keep it working at maximum efficiency, HPC resource management and user-friendly web portal software is included with every system in the industry-leading Altair PBS Works™ package.

Altair Partner Alliance (APA) Solutions for Multiphysics

As you continue to explore real-world physical interactions with Altair multiphysics solutions, the APA offers additional multiphysics technologies to enhance product development activities. RAMDO is a powerful tool for Altair simulation solution users to explore design reliability improvements by the formal inclusion of variability (materials, loads, manufacturing, operational conditions, and more) into simulations. Simplify complex multiphysics workflows with ModelCenter Integrate through a framework which automates and integrates internal or commercial modeling and simulation tools. The APA also features a portfolio of multiphysics-enabled software to help improve how to predict and optimize physics-based designs and processes, all of which are available through your Altair Units license.

Structural Analysis and Optimization

Altair simulation-driven design changed product development forever, enabling engineers to reduce design iterations and prototype testing. Increasing scientific computing power expanded the opportunity to apply analysis, making large design studies possible within the timing constraints of a program. Now engineering adoption of AI is transforming product development again. The combination of physics-based simulation-driven design with machine learning, leveraging the latest in high-performance computing, enables teams to explore more and identify high-potential designs – while rejecting low-potential concepts – even earlier in development cycles.

Structural Analysis and Optimization

Altair offers industry-leading structural engineering analysis and optimization tools from simulation-driven design concepts to detailed virtual product validation, and simplified modeling workflows to advanced high-fidelity model building. Whether big or small, our customers trust their decision making to Altair, the pioneer of simulation-driven design and structural optimization technologies.

Electronic System Design

Electronic system design has an increasingly greater influence on almost every type of product requiring new simulation tools to help achieve electronic, electrical, mechanical, thermal, and connectivity goals. Altair enables your team to collaborate across all aspects of device development from concept to manufacturing. Altair products streamline processes, eliminate design iterations, and reduce time-to-market.

Fluid Dynamics and Thermal Management

Whether you’re an analyst performing advanced computational fluid dynamics (CFD) modeling or a design engineer who quickly needs to understand the thermal effects of a design proposal, Altair offers a complete line of tools to support your project. From detailed component analysis to full systems performance, Altair provides a range of scalable solvers and robust pre- and post-processing.