softwareの製品一覧
- 分類:software
3196~3240 件を表示 / 全 13875 件
Easily connect pipes with different outer diameters! A fitting suitable for emergency repairs of buried pipes.
- others
We will achieve labor-saving and efficiency improvements in the time-consuming and labor-intensive risk assessment tasks.
- Other Software
With Simcenter 3D, it is possible to optimize the position and number of sensors/measurement points and excitation points during modal testing.
- Other Software
A must-see for Femap users! Introducing our unique customization tool!
- Other Software
A business model specialized in packaging! Leave your business application development to us.
- Other Software
Long-distance communication in mountainous areas is possible without relay devices! The communication speed can also be changed, and the power consumption is low.
- Architectural Design Software
Technology for developing a nonlinear control system for ultrasound using feedback analysis techniques based on multivariate autoregressive models.
- Scientific Calculation and Simulation Software
- Vibration and Sound Level Meter
- others

Dynamic control technology of megahertz ultrasound - Nonlinear control technology of ultrasound using multiple function generators.
The Ultrasonic System Research Institute has developed a completely new dynamic control technology for ultrasound by utilizing multiple function generators. This technology enables the control of nonlinear ultrasonic phenomena through oscillation with several different waveforms (sweeping). Note: Nonlinear (resonance) phenomena By generating harmonics of the 10th order or higher through original oscillation control and resonating with low-frequency vibration phenomena, the generation of high-amplitude harmonics has been achieved, resulting in nonlinear (resonance) phenomena of ultrasonic vibrations. By optimizing the ultrasonic propagation characteristics of various components according to their intended purpose, efficient ultrasonic oscillation control becomes possible. Through the measurement and analysis of sound pressure data from ultrasonic testers, this system technology dynamically controls the changes in surface elastic waves according to the intended application. Ultrasonic Oscillation Control Probe Measurement and analysis range: 1 Hz to 200 MHz Oscillation range: 0.5 kHz to 25 MHz Ultrasonic propagation range: 5 kHz to over 900 MHz (analysis confirmed) Ultrasonic propagation characteristics: 1) Detection of vibration modes 2) Detection of nonlinear phenomena 3) Detection of response characteristics 4) Detection of interactions
Original ultrasonic probe for megahertz ultrasonic sweep oscillation and pulse oscillation system.
- Scientific Calculation and Simulation Software
- Non-destructive testing
- others

Dynamic control technology of megahertz ultrasound - Nonlinear control technology of ultrasound using multiple function generators.
The Ultrasonic System Research Institute has developed a completely new dynamic control technology for ultrasound by utilizing multiple function generators. This technology enables the control of nonlinear ultrasonic phenomena through oscillation with several different waveforms (sweeping). Note: Nonlinear (resonance) phenomena By generating harmonics of the 10th order or higher through original oscillation control and resonating with low-frequency vibration phenomena, the generation of high-amplitude harmonics has been achieved, resulting in nonlinear (resonance) phenomena of ultrasonic vibrations. By optimizing the ultrasonic propagation characteristics of various components according to their intended purpose, efficient ultrasonic oscillation control becomes possible. Through the measurement and analysis of sound pressure data from ultrasonic testers, this system technology dynamically controls the changes in surface elastic waves according to the intended application. Ultrasonic Oscillation Control Probe Measurement and analysis range: 1 Hz to 200 MHz Oscillation range: 0.5 kHz to 25 MHz Ultrasonic propagation range: 5 kHz to over 900 MHz (analysis confirmed) Ultrasonic propagation characteristics: 1) Detection of vibration modes 2) Detection of nonlinear phenomena 3) Detection of response characteristics 4) Detection of interactions
Support for the introduction of a care support system that realizes "scientific nursing care"!
- Other Software
A website that is easy to see and easy to use! Introducing examples of how the update process has also become easier.
- Other Software
To prevent stockouts in case of sudden failures or malfunctions, we have the parts inventory management system "AceHozen" that allows for order point management!
- Other Software
No more time-consuming manual inventory tasks! Reduce the hassle and time of inventory management! Spare parts and maintenance parts management system "AceHozen".
- Other Software
Gift of a case study collection showing the effects after implementation! A management software specialized in inventory management of maintenance parts. Line stoppage! Restore immediately! Solving on...
- Other Software
Examples of solutions to issues faced in maintenance, such as not being able to manage spare parts and maintenance parts, resulting in delays in recovery due to not knowing the storage location when n...
- Other Software
Ultrasonic cleaning system that achieves ultrasonic control tailored to the purpose.
- Other measuring instruments
- others
- Scientific Calculation and Simulation Software

Dynamic control technology of megahertz ultrasound - Nonlinear control technology of ultrasound using multiple function generators.
The Ultrasonic System Research Institute has developed a completely new dynamic control technology for ultrasound by utilizing multiple function generators. This technology enables the control of nonlinear ultrasonic phenomena through oscillation with several different waveforms (sweeping). Note: Nonlinear (resonance) phenomena By generating harmonics of the 10th order or higher through original oscillation control and resonating with low-frequency vibration phenomena, the generation of high-amplitude harmonics has been achieved, resulting in nonlinear (resonance) phenomena of ultrasonic vibrations. By optimizing the ultrasonic propagation characteristics of various components according to their intended purpose, efficient ultrasonic oscillation control becomes possible. Through the measurement and analysis of sound pressure data from ultrasonic testers, this system technology dynamically controls the changes in surface elastic waves according to the intended application. Ultrasonic Oscillation Control Probe Measurement and analysis range: 1 Hz to 200 MHz Oscillation range: 0.5 kHz to 25 MHz Ultrasonic propagation range: 5 kHz to over 900 MHz (analysis confirmed) Ultrasonic propagation characteristics: 1) Detection of vibration modes 2) Detection of nonlinear phenomena 3) Detection of response characteristics 4) Detection of interactions
- Technology for controlling nonlinear vibration phenomena through oscillation control of original ultrasonic probes -
- Scientific Calculation and Simulation Software
- Vibration and Sound Level Meter
- others

Dynamic control technology of megahertz ultrasound - Nonlinear control technology of ultrasound using multiple function generators.
The Ultrasonic System Research Institute has developed a completely new dynamic control technology for ultrasound by utilizing multiple function generators. This technology enables the control of nonlinear ultrasonic phenomena through oscillation with several different waveforms (sweeping). Note: Nonlinear (resonance) phenomena By generating harmonics of the 10th order or higher through original oscillation control and resonating with low-frequency vibration phenomena, the generation of high-amplitude harmonics has been achieved, resulting in nonlinear (resonance) phenomena of ultrasonic vibrations. By optimizing the ultrasonic propagation characteristics of various components according to their intended purpose, efficient ultrasonic oscillation control becomes possible. Through the measurement and analysis of sound pressure data from ultrasonic testers, this system technology dynamically controls the changes in surface elastic waves according to the intended application. Ultrasonic Oscillation Control Probe Measurement and analysis range: 1 Hz to 200 MHz Oscillation range: 0.5 kHz to 25 MHz Ultrasonic propagation range: 5 kHz to over 900 MHz (analysis confirmed) Ultrasonic propagation characteristics: 1) Detection of vibration modes 2) Detection of nonlinear phenomena 3) Detection of response characteristics 4) Detection of interactions
Dynamic Control Method for Megahertz Ultrasound Based on Classification Techniques Related to Ultrasonic Propagation Phenomena
- IoT
- Non-destructive testing
- Scientific Calculation and Simulation Software

Ultrasonic probe sweep oscillation technology - Oscillation control of low-frequency resonance phenomena and high-frequency nonlinear phenomena.
The Ultrasonic System Research Institute is applying and developing manufacturing technology for original ultrasonic probes. We have developed technology to optimize the nonlinear vibration phenomenon of surface acoustic waves through oscillation control technology based on the acoustic characteristics of the probes, and we provide consulting services for various ultrasonic utilization technologies. Note 1: Original nonlinear resonance phenomenon The resonance phenomenon of ultrasonic vibrations occurs due to the generation of harmonics resulting from original oscillation control of ultrasonic waves, which achieves high amplitude through resonance. The key point is the optimization of the ultrasonic propagation section. Note 2: By relaxing and homogenizing surface residual stress, stable ultrasonic oscillation control becomes possible. Technology for setting oscillation control conditions: 1) Setting of oscillation waveforms corresponding to the ultrasonic propagation characteristics of the device/equipment. 2) Setting of sweep conditions corresponding to the ultrasonic propagation characteristics of the device/equipment. 3) Setting of output levels corresponding to the ultrasonic propagation characteristics of the device/equipment. 4) Adjustment of various interactions corresponding to the ultrasonic propagation characteristics of the device/equipment.
A solution that incorporates high reliability, proven results, and the latest analytical technologies abundantly.
- Scientific Calculation and Simulation Software
GLview Inova enables 3D visualization of large-scale models and complex analysis results at an astonishing speed!
- Scientific Calculation and Simulation Software
Fluid analysis plus in the Femap environment!
- Scientific Calculation and Simulation Software
A simple, intuitive structural analysis program exclusively for piping!!
- Scientific Calculation and Simulation Software
An effective analysis program for detecting issues in piping networks and evaluating pressure loss!
- Scientific Calculation and Simulation Software
Simulation of collisions between space debris and satellites!!!
- Scientific Calculation and Simulation Software
Efficiently perform analysis by conducting thermal stress analysis with Nastran!!!
- Scientific Calculation and Simulation Software
You can analyze large-scale models quickly and at low cost!!!
- Scientific Calculation and Simulation Software
I calculated the standing waves in a rectangular room and determined the frequency characteristics of the sound driven by a point source.
- Scientific Calculation and Simulation Software
We performed advanced nonlinear analysis using NX Nastran for the elastic-plastic buckling problem of frame structures.
- Scientific Calculation and Simulation Software
We performed advanced nonlinear analysis using NX Nastran for the nonlinear buckling problem of shell structures.
- Scientific Calculation and Simulation Software
This analysis example introduces a drawing process for a corner box-shaped container.
- Scientific Calculation and Simulation Software
We conducted a heat transfer analysis of an internal radiation container composed of multiple radiation zones.
- Scientific Calculation and Simulation Software
We lead in the analysis of rotating bodies using specialized software for fluid film bearings, magnetic bearings, and coupled analysis with bearings, as well as optimization CAE analysis techniques.
- Scientific Calculation and Simulation Software
Analysis of golf club heads using optimization!!!
- Scientific Calculation and Simulation Software
Collection of automotive-related analysis cases!! There are various examples, so please take a look.
- Scientific Calculation and Simulation Software
Linear static analysis using beam elements and bar elements for bolt connection parts!!!
- Scientific Calculation and Simulation Software
Better design, simpler, faster! Automate your analysis workflow.
- Other Software
I am good at radiation calculations.
- Scientific Calculation and Simulation Software
Creating geometry and analysis models, executing analysis, and post-processing, all realized in one software on one PC!!
- Scientific Calculation and Simulation Software
Supports piping codes for nuclear, thermal power plants, and chemical plants!!!
- Scientific Calculation and Simulation Software
Modules prepared according to the analysis functions.
- Scientific Calculation and Simulation Software
Eigen vibration analysis and frequency response analysis of reinforced concrete structures!!!
- Scientific Calculation and Simulation Software
Propose a structure that meets various requirements, has a lightweight design, a strong structure, and excellent vibration characteristics!!!
- Scientific Calculation and Simulation Software
Rotor dynamics using NX Nastran!!!
- Scientific Calculation and Simulation Software