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Finite Element
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Finite Element Analysis
Response Dynamics Vibration Engineering, Inc.
An understanding of structural dynamics is very important to sound Finite Element Analysis (FEA). We have been performing FEA analysis for over 30 years and in most cases we have used experimental data to guide our modeling. While our engineers have had undergraduate and graduate courses in FEA, it is the years of modeling and analysis of existing structures that has taught us the most by forcing a thoughtful analysis of the key structural dynamics and then going though the process of making adjustments to boundary conditions, expanding the dynamics of the model in places, and making simplifications and approximations where possible.
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Structural Testing
Structural testing is used to verify the static strength, or fatigue strength, of a component by applying measured loads. Testing can be done to failure, to contractual requirements, or to validate finite element model predictions.
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FEA and Strain Gauge Testing
Circuit Check began Strain Gauge Testing in 1999 when BGA/SMT technology started replacing PTH components, reducing strain levels was a reactive post fixture fabrication process. We quickly recognized that the “reactionary” process was neither efficient nor were we capable on knowing the lowest achievable strain levels. Our engineering team came up with visual tools utilized during design to easily identify areas of excessive probe force, though still not enough data was generated to identify the lowest possible strain. Finite Element Analysis software models the PCBA and test fixture and applies the pressures from test probes and board supports and indicates the micro strain level applied to the PCBA. Using the FEA software during our design process allows our engineers to modify fixture designs to attain the lowest possible micro strain before fabrication begins.
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TRA-300 LED Thermal Resistance Structure Analyzer
Hangzhou Everfine Photo-E-Info Co., LTD
The TRA-300 accurately measures the thermal resistance, junction temperature, optical power, voltage, current and other parameters of LED packaging products.The heating and cooling curves of LED can also be obtained, and the integral and differential thermal structure functions can be obtained by establishing the finite element model.Through the structural function analysis of the TRA-300 special software, the fine thermal resistance structure of the LED (from the chip to the thermal resistance value of each package structure) can be obtained, so as to objectively evaluate the heat dissipation quality and thermal management level of the LED package products, and provide the best verification for the heat dissipation design of the LED.
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Field Simulation Software
QuickField™
QuickField™ is a very efficient Finite Element Analysis package for electromagnetic, thermal, and stress design simulation with coupled multi-field analysis.
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Engineering Services
In addition to the highest quality test programming, maximizing board coverage, and efficient board testing, TTCI offers a full array of other engineering services, including CCA (Circuit Card Assembly) Testing, Design for Test, ASTER TestWay electrical design for test analyzer, Feasa LED analyzer, SMH Technologies FlashRunner in-system programmer, finite element analysus, installation, reverse engineering of Gerber to CAD, Training, Test System PC, Hardware, and Software Upgrades, and more.
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Thermal Testing And Analysis
Response Dynamics Vibration Engineering, Inc.
We have consulted on thermal issues ranging from conduction issues in TECs, thermal radiation modeling, and countless air cooled system issues relating to system performance, vibration, and acoustics noise. We use a wide array of thermocouple instrumentation, thermal imaging, flow measurements, as well as finite element analysis and analytic modeling to measure, design, and debug thermal and related issues. We often work on customer products in our Response Dynamics lab where we characterize the system, engineer solution options, and prototype solutions. We then work with the customer to work the winning solution into their quality control and manufacturing process.
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Detrenching Grapnel
The Detrenching Grapnel is manufactured from high tensile steel, suitable for withstanding the harsh offshore environments. The structure and material of the grapnel is tested using finite element analysis which is performed during the design phase. This simulates the various stresses and strains acting on the grapnel in a variety of differentseabed conditions and allowed for optimisation of the design.
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Finite Element Method Magnetics Simulation Software
FEMM
Finite Element Method Magnetics
FEMM is a suite of programs for solving low frequency electro magnetic problems on two-dimensional planar and axisymmetric domains. The program currently addresses linear/nonlinear magneto-static problems, linear/nonlinear time harmonic magnetic problems, linear electrostatic problems, and steady-state heat flow problems.
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Finite Element Analysis (FEA) Solution
Femap
Siemens Digital Industries Software
Femap is an advanced engineering simulation software program that creates finite element analysis models of complex engineering products and systems, and displays solution results. Femap can virtually model components, assemblies or systems and determine the behavioral response for a given operating environment.
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Composite Material Behavior Software
Helius Composite
Helius Composite software offers detailed information on composite material behavior without finite element analysis (FEA). Use Helius Composite to integrate materials into your designs.
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Correlation Analysis
EDM Modal Correlation Analysis allows the user to correlate two modal models; EMA and/or FEA models. Comparing the experimental data with that acquired through finite element analysis helps in validating the test results. Users can import the geometry model and mode shape data from FEA or EMA software.
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FEA Software
Helius PFA
Helius PFA software provides powerful tools for enhanced FEA (finite element analysis) of composite structures, including progressive failure analysis.
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Modal Exciters & Amplifiers
Experimental modal analysis, or modal testing, is a process for physically obtaining a math model of a structure’s dynamic properties. Modal tests identify a structure’s modal properties: natural frequencies, mode shapes, mass, stiffness and damping. Modal test results help troubleshoot resonant excitation from operating forces, validate and verify finite element models, predict the benefits of structural modifications, support design verification, and understand structural responses due to complex loading conditions.
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Electrical Grounding Analysis
GroundMat
SKM GroundMat is a program for substation ground grid design and analysis. It is designed to help optimize grid design or reinforce existing grids of any shape. It uses a general-purpose finite element algorithm for potential analysis and graphical facilities to validate ground system efficiency
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Structures
Ansys offers structural analysis software solutions that enable engineers of all levels and backgrounds to solve complex structural engineering problems faster and more efficiently. With our suite of tools, engineers can perform finite element analyses (FEA), customize and automate solutions for structural mechanics challenges and analyze multiple design scenarios. By using our software early in the design cycle, businesses can save costs, reduce the number of design cycles and bring products to market faster.
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Elemental Analyzer
CHANGSHA KAIYUAN INSTRUMENTS CO., LTD.
Elemental Analyzer is used to determine carbon, hydrogen, nitrogen content in solid and liquid material, such as coal, coke, oil, petroleum, biomass, fertilizer, plastic, food, hydrocarbons and plant tissue, leaves and tobacco, which is widely applied in power plants, coal mines, metallurgy, chemical industry, commercial inspection, scientific research, food industry, education etc.
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Clamping Elements
Clamping elements from the LOCKED series provide a high level of safety. These ACE products clamp and decelerate loads and are suitable for perfectly controlled holding, both linear and rotary, in all processes.
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RF Wattmeters and Elements
Bird has a long history of providing highly accurate RF power measurement. We created the market more than 60 years ago with the Model 43 wattmeter and now offer dozens of models.
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Process Elemental Analyzer
NEX OL
Applied Rigaku Technologies, Inc
Featuring advanced third generation EDXRF technology, the Rigaku NEX OL represents the next evolution of process elemental analysis for liquid stream and fixed position web or coil applications. Designed to span from heavy industrial through to food grade process gauging solutions, the NEX OL is configurable for use in both classified and non-classified areas.
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Thick Film Passive Element
GBR-395
GBR-395 series high voltage resistors are made in a thick film technology on ceramic substrates(Al2O3 96%). These elements are used in high voltage applications requiring high stability and resistance.
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(RDE-OES) Elemental Analyzer
SpectrOil 100 Series
The SpectrOil 100 Rotating Disc Electrode Optical Emission Spectrometer (RDE-OES) is the eighth generation of the market leading RDE elemental spectrometer. It is widely used in commercial oil laboratories, on-site or trailer labs, as a proven means of precisely determining elemental composition in lubricating oil, coolant, light or heavy fuels, grease, and process water. It is also a key component of Spectro’s MiniLab Series of on-site oil analysis solutions, including the best selling MiniLab 153.
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Thick Film Passive Element
GBR-403
GBR-403 series high voltage resistors are made in a thick film technology on ceramic substrates (Al2O3 96%). These elements are used in high voltage applications requiring high stability and resistance.
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Inorganic Elemental Analysis
Elementar Analysensysteme GmbH
The elemental composition of a material determines its properties. Elemental analysis is therefore essential for the characterization and quality control of materials that need to meet certain requirements.Elementar's user-friendly inductar® series for inorganic elmental analysis uses the high-temperature combustion method to determine elemental concentrations of carbon, sulfur, oxygen, nitrogen, and hydrogen and is the ideal solution for R&D, routine, and high-throughput laboratories.
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Force Sensor Elements
TE Connectivity (TE) enables OEMs to measure force using MEMS-based technology load cells. The same proprietary piezoresistive silicon strain gage technology used to measure pressure can also be configured into a reliable, low-cost package to measure force.
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Elemental Analyzers
Bruker manufactures instruments for elemental analysis from 100% down to the sub-ppb trace level. Easy-to-use solution packages help customers in process and quality control to meet industry norms and standards including ASTM, DIN, ISO and FDA. Highest analytical accuracy and precision enable academic research from lab to field.
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Multi Element Benchtops
XOS offers multi-element XRF benchtop analyzers for industries like petroleum and consumer products safety. Imagine a smarter analysis solution free of compromise: easy sample prep and operation, rapid testing, compliance flexibility, and industry-leading precision. Powered by HDXRF, these analyzers deliver direct measurement without the need for consumable gasses or sample conversion.
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elemental analyzer
SPECTRO XEPOS
SPECTRO Analytical Instruments GmbH
An elemental analyzer designed for demanding applications – the SPECTRO XEPOS energy dispersive X-ray fluorescence (ED-XRF) spectrometer redefines XRF analysis with exceptional new levels of performance
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Low cost EDXRF Elemental Analyzer
NEX QC+ QuantEZ
Applied Rigaku Technologies, Inc
As a premium low-cost benchtop EDXRF elemental analyzer, the Rigaku NEX QC+ QuantEZ delivers wide elemental coverage with easy-to-learn Windows®-based QuantEZ software. Non-destructively analyze from sodium (Na) through uranium (U) in almost any matrix, from solids and alloys to powders, liquids, and slurries. The 50 kV X-ray tube and Peltier cooled silicon drift detector (SDD) deliver exceptional short-term repeatability and long-term reproducibility with excellent element peak resolution. This high voltage capability, along with multiple automated X-ray tube filters, provides a wide range of XRF applications’ versatility and low limits-of-detection (LOD).