Xiamen Alaud Optical Co., Ltd., founded in 2002, specializes in designing, manufacturing, and selling various imaging lenses. We offer global customers innovative, high-quality solutions. Alaud's lenses are used in diverse applications, including smart homes, security, and automotive. Our company provides OEM/ODM services and is committed to building lasting business relationships worldwide.
ANSYS CFD is the simulation solution for all flow tasks.
Applications for numerical flow simulation are versatile and depend on the respective problem. Ansys CFD is therefore available in the form of three different software packages: Ansys CFD Pro, as an inexpensive, slim entry package that enables the use of the most frequent and most important functionalities, Ansys CFD Premium, which leaves nothing to be desired and enables the most sophisticated flow simulation on an industrial scale, and finally Ansys CFD Enterprise, which supplements the simulation possibilities with complex special applications. Hence, depending on the tasks, the appropriate solvers as well as adapted simulation environments with corresponding pre- and post-processing tools are available.
STRUCTURAL MECHANICS
ACOUSTICS, CONCEPT DESIGN PHASE SIMULATIONS, MULTIPHYSICS, SCALABILITY OF SIMULATIONS, HEAT TRANSFER.
FEM from conceptual analysis to non-linear verification of simple and complex assemblies
Ansys Mechanical is the flagship for FEM simulation - not only for structural mechanical tasks. With a variety of analysis systems, you have thermal, acoustic, piezoelectric and many other physical disciplines at your fingertips, either individually or in combination as “multiphysics”. Whether static or dynamic tasks, whether structures with simple linear material behavior or viscous non-linear properties, or even composite materials independent of the contact situation, with Ansys Mechanical you have a universal tool for all tasks of classical finite element analysis. With the possibilities in modelling, analysis and post-processing, Mechanical is a trendsetter in user-friendliness, speed and depth of detail.
Reliable development of electronics through understanding high-frequency electromagnetics with ANSYS HFSS.
With Ansys HFSS you simulate and visualize the high-frequency electromagnetic behavior of electronic components and assemblies. The basis is provided by versatile and powerful solvers, which use the optimal numerical method for the most varied tasks. These are scaled to the proper level and provide correct answers in detail. Coupled with an automatic adaptive mesh refinement, you can focus on the task at hand and obtain the highest accuracy in the result with little user interaction. The combination of high-performance computing, parameterization and modern optimization methods guarantees efficient support for your electronic structure development process.
Rapidly explore multiple development concepts with interactive real-time simulation. Experiment in seconds, reliably validate ideas.
Model - Explore - Analyze: The new standard in simulation. Model your ideas with Ansys Discovery and get direct insight into physics at the same time. Explore ideas, iterate and optimize with unprecedented speed at an early stage of your design process. Validate your designs with high accuracy. Real-time simulation of mechanical, thermal and fluidic properties enables the designer to see the physics directly, evaluate design changes immediately and develop the product geometrically as well as physically from the outset. Even the classic Ansys solvers for flow and mechanics can be used for precise detailed analyses.
More variants, faster analyses, larger models – achieve more in less time with high-performance computing.
With the help of numerical simulation, High Performance Computing (HPC) makes it possible to analyze complex structures in great detail and in the shortest possible time. Through the parallel use of processors, even large models can be calculated with Ansys HPC without sacrificing detail and thus the quality of the results. But even without extreme model sizes, HPC is worthwhile. The massive acceleration of calculation runs means that results are often available “overnight”. A license is thus better utilized and computationally intensive technologies - such as the parametric or simultaneous simulation of design variants - become possible. Virtually every hardware system now has several CPU cores. With HPC you can make optimal use of your existing resources.
Understand heat generation in electrotechnical components and facilitate proper heat transfer.
When it comes to the temperature of your electrotechnical products, Ansys Icepak offers the right answer. Designed as a full-fledged conjugate heat transfer (CHT) solution with a CFD solver based on the Ansys Fluent solver, you simultaneously analyze both the temperature development of the electronic component itself as well as the heat transport of the surrounding fluid. Embedded in the Ansys Electronics Desktop, thermal tasks are seamlessly integrated into the development workflow of electrotechnical products. Questions concerning heat transport and temperature development are answered in great detail. In combination with HPC, parameterization and modern optimization methods, efficient support for the development of electrotechnical products is guaranteed.
Understand electromagnetic products and components with electromagnetic field simulation.
Ansys Maxwell gives you a deep insight into the electrical and electromagnetic field behavior of your electrical drives, actuators, transformers, sensors and many other electrotechnical systems, components and assemblies. Embedded in the Ansys Electronics Desktop, an integrated simulation environment is available to you for all electrostatic and electromagnetic application fields. Whether static, transient or harmonic behavior, with Ansys Maxwell you get a powerful user interface with associated powerful solvers. Ansys Maxwell provides you with many automatisms, such as automatic adaptive mesh refinement.
Professional explicit FEM analysis integrated into the familiar ANSYS Mechanical environment.
Ansys LS-DYNA is a combination of LS-DYNA (the leading solver for structural mechanical analysis with explicit time integration) and the powerful and user-friendly pre- and post-processing environment of Ansys Mechanical. Seamless integration into the Workbench with associative CAD connectivity, meshing optimized for the explicit solver, and prepared solver best practice settings all greatly simplify the use of LS-DYNA. This facilitates explicit analyses in a parametric work process and accelerates both variant calculation and optimization. Typical applications are non-linear processes both in the field of short-term dynamics (impact and shock) and in the simulation of quasi-static processes such as forming and assembly.
Understand the motion and interaction of rigid and flexible assemblies with ANSYS Motion.
For the analysis of tasks from the field of multi-body dynamics, Ansys Motion is the tool of choice when assemblies with rigid and flexible components interact with each other in any combination. Ansys Motion is the next-generation engineering solution that combines the best of both worlds of classical FEM and classical multibody simulation, guaranteeing efficient use in product development. A range of additional toolkits enables efficient use for specific industries as well with applications such as automotive, drivetrains and transmissions, and chain and belt drive applications.
Unique training materials and programs for materials science in design, development, and science.
Ansys GRANTA EduPack includes a range of teaching resources that support materials and materials science in engineering, design and sustainable development curricula. These are combined to meet your individual needs, covering technical and materials subjects across all levels of teaching from technical school to Masters. Quick access to materials and process data accelerates the solution of study tasks and enables highly realistic and industry-relevant development projects. GRANTA EduPack offers engaging, interactive and visual software. This enables progression from simple navigation and exploration with a small number of data sets to advanced selection with very large databases.
Analyze the visual perception of products early on in the development stage.
Ansys SPEOS is a high-precision simulation tool for optical systems based on the ray tracing method. Whether lighting fixtures, sensor technology or light guides, with Ansys SPEOS, you always simulate your optical systems with physics-based realism. Equipped with a fully-fledged geometry environment as well as interfaces to all common CAD programs, the optical simulation with SPEOS links directly to the design. A variety of material models, different types of sources and application-oriented sensor variants allow the physics of optics to be virtually reproduced in detail. Thus, SPEOS, integrated into virtual product development, can provide an early insight into optical properties in order to optimize the design of the final product even better and more precisely.
Experience, understand and optimize product sound as early as the development stage.
Virtually every product produces a sound. This sound is an integral part of the product and at the same time represents a source of information and emotion. A sensory and emotional reaction is triggered in the consumer by the particular sound of a product, through which an opinion is formed about the functionality and value of this product. With Ansys Sound, you can make the sound of your product audible and analyze it based on CAE simulation results to create the perfect sound signature. Ansys Sound enables creative sound design within the framework of classic product development. In combination with the Ansys simulation world, you represent the simulation of cause and effect in a continuous process chain.
Ensure reliable electronics despite mechanical stress from vibration, shock and temperature
In a world that is becoming increasingly more electrified, and many things can now be controlled from your smartphone, the reliability of electronic components is becoming increasingly important. Ansys Sherlock makes it possible to make a statement about the expected service life under the given loads in an early design phase. This reduces the number of necessary tests, accelerates development and saves costs. The consideration of different error sources such as temperature cycles, vibrations or a static overload during in-circuit testing (ICT) identifies the critical load and thus allows targeted further development. Critical components can thus be identified very quickly, and countermeasures can be tested virtually.
Use system simulation to build the bridge between the virtual representation of complete systems and the real world.
With the Ansys Twin Builder, the focus is on the consideration of entire systems. The interaction of software, electronics and mechanical hardware poses complex tasks for the development of intelligent products. As a multi-domain simulator, the Ansys Twin Builder links 0D networks, software models and 3D field model data from reduced models (ROMs) as the basis for a comprehensive system simulation. With the interfaces to IoT platforms and the possibility of coupling the models of the Ansys Twin Builder directly to the hardware, real products and their virtual simulation models are linked as digital twins in an unprecedented way. This makes it easier to compare different alternatives and identify the optimal solution.
The new generation of development tools for the reliable development of displays.
Ansys SCADE Display is a special product line from the Ansys portfolio of products and solutions for embedded software that provides the user with a flexible environment for the development of embedded human machine interfaces (HMI). Required program logics can optionally be implemented with Ansys SCADE Suite and linked with SCADE Display so that control elements can carry out new functions. With native support for OpenGL® SC (Safety Critical) and ES (Embedded System), SCADE Display represents a new generation of graphical software development tools that encompasses prototyping, graphical design, simulation, verification and validation. The qualifiable and certified code generator supports numerous safety standards.
Ensure the fatigue strength of structures with ANSYS nCode DesignLife.
Ansys nCode DesignLife ensures the survival of your structures. As a leading fatigue solver, all common methods for cyclic evaluation are available. With predefined workflows - from simple verification with constant load amplitudes to large numbers of time series to the evaluation of the fatigue strength with random vibration excitation - efficient evaluations are prepared. At the same time, Ansys nCode DesignLife is easily adaptable to individual requirements and personal workflows can be created and reused quickly and conveniently. Embedded in the Ansys Workbench environment, the extensive possibilities for using parametric simulation for chained analysis workflows provide the user with a comprehensive simulation tool.