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Last Updated: Aggregation Period:Jan 21, 2026~Feb 17, 2026
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soft Product List

181~210 item / All 219 items

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Vericut 9.6 for Medical Devices

Improving the safety of medical device manufacturing with AI and precision machining.

In the medical device industry, the safety and reliability of products are the top priorities. CNC-machined medical device parts require high precision and quality, as they directly impact patient safety. Even a slight mistake in machining can lead to product malfunction or risks to patients. Vericut 9.6 reduces these risks by simulating G-code NC programs at the stage of machining to verify accuracy. 【Usage Scenarios】 - Safety verification in CNC machining of medical device parts - Interference checks in machining complex-shaped parts - Cost reduction through optimization of machining time 【Benefits of Implementation】 - Improved product reliability by reducing machining errors - Shortened development time by reducing the number of prototypes - Mitigation of cost increases due to machining defects

  • Milling machine
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Speeding up with Vericut Optimizer for the automotive industry

We will optimize the NC program to improve the processing efficiency of automotive parts.

In the automotive industry, there is a constant demand for shortening product development cycles and reducing costs. In particular, optimizing NC programs during the prototyping and mass production stages is essential for reducing machining time, minimizing material waste, and enabling early market entry of parts. The Vericut Optimizer is an NC program optimization solution that can operate independently without using Vericut. This allows for the streamlining of NC programs without changing the existing CAM environment, contributing to enhanced competitiveness in automotive parts manufacturing. 【Usage Scenarios】 - Optimization of NC programs in the prototyping and mass production of automotive parts - Cost reduction through shortened machining time - Minimization of material waste 【Effects of Implementation】 - Reduction in machining time - Decrease in material costs - Shortened time to market for parts

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Vericut Optimizer for Machine Tools

We will optimize the NC program and improve processing efficiency.

In the machine tool industry, there is always a demand for reducing machining time and extending tool life. Particularly in the machining of complex-shaped parts, optimizing NC programs is essential for improving productivity. Inappropriate NC programs can lead to increased machining time and premature tool wear. The Vericut Optimizer is an NC program optimization solution that can operate independently without using Vericut. This significantly improves machining efficiency, reduces material waste, and accelerates the time to market for parts. 【Usage Scenarios】 * Multi-axis machining (3-axis, 4-axis, 5-axis) 【Benefits of Implementation】 * Reduction in machining time * Extension of tool life * Reduction of material waste

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Vericut Optimizer for Precision Machinery

Optimization of NC programs to achieve efficiency and quality improvement in microfabrication.

In the precision machinery industry, the miniaturization and high precision of products are advancing, making the optimization of NC programs crucial. Particularly in micro-machining, there is a demand for reduced processing time, extended tool life, and high machining accuracy. Inappropriate NC programs can lead to machining defects and premature tool wear, potentially resulting in decreased productivity. The Vericut Optimizer is an NC program optimization solution that can operate independently without using Vericut. It optimizes NC programs output from CAM systems, improves machining efficiency, reduces material waste, and accelerates the time to market for parts. 【Usage Scenarios】 - Manufacturing of micro-machined parts - Manufacturing of parts requiring high precision machining - Manufacturing of complex-shaped parts through multi-axis machining 【Benefits of Implementation】 - Reduction of processing time - Extension of tool life - Improvement of machining accuracy - Reduction of material waste

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Improving Machining Accuracy with Vericut for the Automotive Industry

Improving the quality and efficiency of automotive parts processing with CNC simulation.

In the automotive industry, there is a demand for high-quality parts and efficient manufacturing processes. Particularly for parts related to safety, high machining precision is essential. However, machining defects and tool breakage can lead to losses in time and costs. Vericut ensures machining accuracy by simulating the entire CNC machining process, deriving the "correct" result in a single operation. 【Usage Scenarios】 * Prototyping and mass production of automotive parts * 5-axis machining, complex machining, multi-surface machining * Quality control, process improvement 【Benefits of Implementation】 * Improved machining precision * Reduction of defective products * Cost reduction

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Maximizing Mold Life with Vericut for Molds

Vericut achieves efficiency and quality improvement in mold processing.

In the mold industry, the lifespan of molds is a crucial factor directly linked to productivity and cost. Early wear or damage to molds can lead to production interruptions, increased repair costs, and a decline in the quality of the final product. Vericut aims to prevent these issues through CNC machining simulation and extend the lifespan of molds. 【Usage Scenarios】 * Verification of machinability during the mold design phase * Extension of tool life through optimization of NC programs * Prevention of mold damage through anomaly detection during machining 【Benefits of Implementation】 * Reduction of mold manufacturing costs * Improvement of production efficiency * Achievement of high-quality molds

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  • soft

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Yield Improvement with Vericut for Semiconductors

Improving semiconductor manufacturing yield with CNC simulation.

In the semiconductor manufacturing industry, there is a demand for the efficient production of high-quality products. In particular, high-precision processing is essential, as even slight errors can significantly affect yield. Issues in CNC machining, such as tool breakage, processing defects, and material waste, are major factors contributing to yield reduction. Vericut ensures processing accuracy by simulating the entire CNC machining process, preventing these problems before they occur. 【Usage Scenarios】 * CNC machining processes in semiconductor manufacturing * Processing verification during the prototyping stage * Optimization of NC programs before mass production 【Benefits of Implementation】 * Improved yield through reduced processing defects * Extended tool life * Reduced material waste * Shortened test run times

  • simulator
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Optimization of Micromachining by Force for Medical Devices

Optimizing NC programs for precision machining of medical devices with Vericut Force.

In the medical device industry, the precision of micro-machining is crucial for ensuring product quality and safety. Particularly for precision components such as implants and surgical instruments, there is a demand for reduced machining time and improved tool life. Inadequate NC programming can lead to machining defects and premature tool wear, potentially resulting in increased costs. Vericut Force addresses these challenges by optimizing NC programs and improving machining time and tool life. 【Application Scenarios】 - Micro-machining of medical device components - Implant manufacturing - Surgical instrument manufacturing 【Benefits of Implementation】 - Reduced machining time - Extended tool life - Improved machining accuracy

  • v90-image-17.jpg
  • Milling machine
  • soft

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Vericut 9.6 for Heavy Industry

Improving the durability of heavy industry through the fusion of AI and precision machining.

In the heavy industry sector, the durability and reliability of products are the most important issues. To manufacture products that can withstand use in harsh environments, improving machining accuracy is essential. Vericut 9.6 supports the optimization of machining and quality improvement by simulating machine tools using G-code NC programs. This contributes to enhancing product durability. 【Application Scenarios】 * Machining of large machine parts * Manufacturing of parts requiring high precision * Multi-axis machining and complex processing 【Effects of Implementation】 * Reduction in machining time * Extension of tool life * Improvement in product quality

  • Milling machine
  • lathe
  • Other machine tools
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Improving Processing Safety with Vericut for Medical Devices

We will enhance the safety of CNC machining in medical device manufacturing with Vericut.

In the medical device industry, the safety and reliability of products are the top priorities. The precision of CNC machining directly affects the performance of medical devices and patient safety. Machining defects and tool breakage can lead to product defects and unexpected accidents. Vericut reduces these risks through CNC machining simulation. 【Usage Scenarios】 * CNC machining of medical device parts * Manufacturing of complex-shaped parts * Production of parts requiring high precision 【Benefits of Implementation】 * Improvement in machining accuracy * Reduction of tool breakage and collision risks * Enhanced product reliability

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Aerospace-oriented NC program optimization by Force

Vericut Force optimizes NC programs in the aerospace field.

In the aerospace industry, there is a demand for high-quality parts and a reduction in manufacturing costs. Particularly in the machining of parts with complex shapes, the optimization of NC programs is crucial. Inadequate NC programs can lead to increased machining time, reduced tool life, and a decline in part quality. Vericut Force optimizes NC programs, supporting reduced machining time, improved tool life, and the production of high-quality parts. 【Usage Scenarios】 * High-precision machining of aerospace parts * Machining of complex-shaped parts * Multi-axis machining 【Benefits of Implementation】 * Reduction in machining time * Extension of tool life * Achievement of high-quality part manufacturing

  • v90-image-17.jpg
  • Milling machine
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Aerospace Version Vericut 9.6

Improving aircraft safety with AI and precision machining.

In the aerospace industry, the precision of part machining is extremely important to ensure the safety and reliability of aircraft. In particular, accurate manufacturing without machining errors is required for structural and engine components of aircraft. Vericut 9.6 addresses these challenges by simulating machine tools using G-code NC programs and detecting collisions and machining defects in advance. Vericut supports a wide variety of machine tools, including multi-axis machining such as high-efficiency, high-precision 5-axis machining, as well as lathes, composite machines, and multi-surface machining machines. 【Use Cases】 * Manufacturing of aircraft parts * Machining of complex shapes with high collision risk * Machining of parts requiring high precision 【Benefits of Implementation】 * Reduction of machining errors * Improvement of aircraft safety * Reduction of manufacturing costs

  • Milling machine
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  • Other machine tools
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Improved Durability with Vericut Optimizer for Heavy Industry

Improving processing efficiency and durability of heavy industrial products through NC program optimization.

In the heavy industry sector, the long-term reliability and safety of products are the top priorities. To manufacture products that can withstand harsh environments, it is necessary to balance processing accuracy and durability. Optimizing NC programs contributes to reducing processing time, extending tool life, and improving product quality, ultimately leading to enhanced product durability. The Vericut Optimizer addresses these challenges without changing the existing CAM environment. 【Use Cases】 - Machining of parts subjected to high loads - Manufacturing of products that can withstand long-term use - Machining of parts that require strict quality standards 【Benefits of Implementation】 - Cost reduction through shorter processing times - Cost reduction through extended tool life - Improvement in product quality - Reduction in defective products

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Machining Optimization with Vericut 9.6 for the Automotive Industry

Innovating the manufacturing of automotive parts through the fusion of AI and precision machining.

In the automotive industry, there is a demand for the efficient manufacturing of high-quality parts. Particularly for parts with complex shapes or those requiring high precision, reducing machining time and improving quality are important challenges. Vericut 9.6 addresses these challenges by performing machining simulations using G-code NC programs. Its AI integration feature optimizes the machining process and contributes to increased productivity. 【Use Cases】 - Reducing machining time in the prototyping and mass production of automotive parts - Efficient manufacturing of complex-shaped parts through multi-axis machining - Reducing machining defects and improving quality 【Benefits of Implementation】 - Maximizing machining time - Extending tool life - Improving machining precision

  • Milling machine
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  • Other machine tools
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Vericut 9.6 for Watch Manufacturing

Improving the quality and efficiency of watch parts through the fusion of AI and precision machining.

In the watch manufacturing industry, there is a demand for the efficient production of high-quality watch components. Particularly for parts that require complex shapes and fine processing, balancing machining accuracy and productivity is crucial. Machining defects and process delays can lead to a decline in product quality and increased costs. Vericut 9.6 addresses these challenges through AI-powered simulation and optimization features. 【Usage Scenarios】 - Machining of complex-shaped watch components - Optimization of tool paths in fine processing - Simulation of multi-axis machining 【Benefits of Implementation】 - Reduction in machining time - Improvement in machining accuracy - Extension of tool life - Reduction of defective products

  • Milling machine
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  • Other machine tools
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Vericut Optimizer for the Aerospace Industry

Optimize the NC program to improve processing efficiency and reduce material waste.

In the aerospace industry, there is a trend towards increasing complexity and high quality of parts, which demands a reduction in processing time and effective use of materials. Particularly for parts that use expensive materials and require high precision, optimizing NC programs is crucial. Inappropriate NC programs can lead to increased processing time, premature tool wear, and material waste. The Vericut Optimizer is an NC program optimization solution that can operate independently without using Vericut. It optimizes NC programs output from CAM systems, enhancing processing efficiency. 【Usage Scenarios】 - Manufacturing aerospace components - Manufacturing parts that require high-precision machining - Multi-axis machining (3-axis, 4-axis, 5-axis) 【Benefits of Implementation】 - Reduction in processing time - Decrease in material waste - Extension of tool life - Acceleration of time-to-market for parts

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Vericut Optimizer for the Aerospace Industry

Optimize the NC program to improve processing efficiency and reduce material waste.

In the aerospace industry, there is a trend towards increasing complexity and high quality of parts, which demands a reduction in processing time and effective use of materials. Particularly for parts that use expensive materials and require high precision, optimizing NC programs is crucial. Inappropriate NC programs can lead to increased processing time, premature tool wear, and material waste. The Vericut Optimizer is an NC program optimization solution that can operate independently without using Vericut. It optimizes NC programs output from CAM systems, improving processing efficiency. 【Usage Scenarios】 - Manufacturing aerospace components - Manufacturing parts that require high-precision processing - Multi-axis machining (3-axis, 4-axis, 5-axis) 【Benefits of Implementation】 - Reduction in processing time - Decrease in material waste - Extension of tool life - Acceleration of time-to-market for parts

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Lightweighting and Reliability Improvement with Vericut for Aerospace Applications

Vericut streamlines CNC machining in the aerospace industry and supports lightweight design.

In the aerospace industry, lightweight components and high reliability are required. In particular, improving machining accuracy is essential for enhancing aircraft fuel efficiency and ensuring safety. Even slight errors in CNC machining or tool damage can lead to a decline in component quality and increased costs. Vericut supports machining accuracy and lightweight design by simulating the entire CNC machining process. It derives the "correct" result in a single machining operation, reducing unnecessary material and rework. 【Use Cases】 - Manufacturing of aircraft components - Manufacturing of rocket components - Manufacturing of drone components 【Benefits of Implementation】 - Reduced machining time - Minimized material waste - Extended tool life - Stable supply of high-quality components

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Improving Reliability with Vericut for the Energy Industry

Over 35 years of experience. Vericut streamlines CNC machining for energy-related companies.

In the energy industry, the durability of components used in harsh environments, such as plants and power generation equipment, is crucial. To withstand high loads and maintain stable performance over long periods, high precision in CNC machining is essential. Issues such as non-operational machines, damaged tools, costly collision troubles, discarded parts, prolonged test runs, and wasted materials can drain valuable time and costs. Vericut ensures machining accuracy by simulating the entire CNC machining process, leading to the "correct" result in a single operation. 【Application Scenarios】 * Machining of turbine blades * Machining of generator components * Machining of plant equipment parts 【Benefits of Implementation】 * Improved component durability through enhanced machining accuracy * Cost reduction by minimizing defective products * Shortened test run times

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[Case Study] Mold: Takeda Santec Co., Ltd.

A tool to ensure that processing quality can be accurately grasped! To prevent "zero" from becoming "minus."

Takeda Santec Co., Ltd.'s Technical Department manufactures molds for car headlamps. With the streamlined shape of cars, the lamps have become more three-dimensional and require more precise processing, leading to the purchase of a 5-axis machining center for manufacturing efficiency. At that time, we decided to implement the simulation software "Vericut" based on the judgment that "simulation software is essential for collision prevention, and Vericut is reliable." So far, it has maximized its effectiveness in "eliminating careless mistakes." In fact, it took only one week from the introduction of the 5-axis machine to its startup, and through this product, we repeatedly discovered and solved various issues related to simultaneous 5-axis processing, which has certainly contributed to an early startup. [Overview] ■ Maximized effectiveness in "eliminating careless mistakes" ■ Discovery and resolution of various issues related to simultaneous 5-axis processing ■ Certain contribution to early startup *For more details, please refer to the PDF document or feel free to contact us.

  • simulator
  • Other CAD related software
  • Other CAM related software
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Optimization using Vericut Optimizer for medical devices

Optimize NC programs in medical device manufacturing to enhance safety.

In the medical device industry, the safety and reliability of products are the top priorities. Deficiencies in NC programs can lead to processing defects and equipment malfunctions, potentially jeopardizing patient safety. The Vericut Optimizer enhances processing accuracy and reduces potential risks by optimizing NC programs. The Vericut Optimizer is an NC program optimization solution that can operate independently without using Vericut. Even if you are satisfied with your current CAM verification software and have no intention of purchasing Vericut, the Vericut Optimizer is the optimal choice. 【Usage Scenarios】 - Manufacturing of medical device parts - Processing of implants and surgical instruments - Improvement of quality control and safety 【Benefits of Implementation】 - Improved processing accuracy - Reduction of defective products - Assurance of patient safety

  • simulator
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ECG/Blood Pressure Waveform

Heart rate variability analysis from a wearable electrocardiogram.

■ Easy measurement of ECG and blood pressure waveforms You can record ECG and blood pressure waveforms. Additionally, it is possible to check and record real-time ECG from a wearable ECG monitor, as well as import recorded ECG data offline. ■ Measurement while checking frequency analysis results By performing frequency analysis on the R-R intervals (RRI) calculated from the obtained ECG, you can derive the LF and HF, which are indicators of the autonomic nervous system, and display their trends in real-time. ■ Data utilization through text saving Measurement data of ECG and blood pressure, as well as trend data and analysis results, can be output as text data (CSV format) in chronological order, allowing you to read and utilize it in other spreadsheet software. ■ Multiple analyses possible It is possible to conduct multiple analyses from the obtained ECG and blood pressure waveforms. * Time domain analysis, BRS analysis (sequence method), DFA analysis, HRT analysis

  • Other analysis software
  • Other measurement and measuring equipment
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[Delivery Confirmation] Instantly know with the tracking number. Streamline inquiry operations!

Gifts, year-end and New Year, year-end gifts, mid-year gifts, direct mail, etc. Avoid troubles during the time when the volume of goods increases!

Date and time specified delivery products and the increased volume during the gift season ■■■■ Bulk cargo tracking tool "Itsukuru" ■■■■ Trackable with just the tracking number and shipping company! Easily track over 1,000 items! Get delivery status in no time! ■ 3-month free trial ■ 1. First, apply through the inquiry 2. Start the trial with a trial license 3. Operation is simple! Just enter the tracking number and shipping company information Feel free to contact us anytime if you have any questions ■ One-time use is also possible! ■ Want to use it only during peak times! You can also use it on a monthly basis.

  • Other operation management software
  • Other services
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Contracted analysis ★ Lightweight design, increased rigidity/strength, resonance and other vibration issues, various automation, etc.

Leveraging years of experience in the manufacturing industry, we propose methods tailored to your challenges and requests, handling everything from data creation to analysis, evaluation, and reporting. ★ Case studies available ★

If you are working on structural optimization related to lightweight design, strength improvement, vibration issues, or if you are struggling with that approach, or if you are exploring 3D printing, scanning image processing, modeling, and analysis, our experienced technical staff will work with you to solve your problems. We can take on everything from data creation to analysis, evaluation, and report preparation (even just part of it). Even if your issues are vague and specific details have not been decided, we will engage in detailed discussions and propose methods that align with your requests. Please feel free to contact us. ◎ Main Achievements Various lightweight designs, strength improvements, reverse engineering, resonance avoidance, numerical fitting, noise and vibration reduction, trade-off analysis in structural optimization, CAD model generation for optimized shapes, reinforcement design, reduction of mesh creation man-hours, simulation model creation, editing STL data for 3D printing... and many more. ★ We are currently offering a collection of various problem-solving case studies: Download from [PDF Download] ↓ Download from our website here ↓ https://www.quint.co.jp/cgi-bin/solution-CS.cgi

  • Analysis Services
  • Structural Analysis
  • Contract Analysis
  • soft

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Solar Cell I-V Measurement Software Complete Set of Materials

Easy operation for high-precision measurement! A variety of measurement software, including solar cell measurement solutions, is available!

This is a complete set of materials that includes solar cell I-V measurement software, voltage withstand and leakage current measurement, semiconductor parameter measurement, and illuminance and color measurement for lighting LEDs. We have added new products to enhance the content. With the solar cell I-V measurement software, we have the highest sales record in the country! We are introducing the industry's first fully automatic and multifunctional solar cell I-V measurement software, so please take this opportunity to check it out. ● For more details, please refer to the catalog.

  • Other measurement, recording and measuring instruments
  • soft

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Web-based Geographic Information System Design and Development Integrated GIS

From South Shinshu to the world. GIS technology that supports our important lives.

We at SOLA are developing systems for municipalities and the private sector centered around Geographic Information Systems (GIS). By utilizing map information that can be used for various purposes, we aim to develop systems that improve our customers' business operations and enhance efficiency. The expansion of the internet world due to the development of high-speed communication networks is constantly evolving, requiring the acquisition of new technologies on a daily basis. We have a proven track record in system development using diverse GIS engines in a world of increasingly diversified system development, and we will build systems tailored to our customers' needs. Additionally, we possess accumulated business knowledge and technical expertise in GIS from our experience in various jobs. We aim to combine this knowledge with new technologies that are continuously evolving to create a new world of GIS.

  • Other information systems
  • soft

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Web-based Geographic Information System Design and Development - Tourism Information GIS

From South Shinshu to the world. GIS technology that supports our important lives.

We at SOLA are developing systems for municipalities and the private sector centered around Geographic Information Systems (GIS). By utilizing map information that can be used for various purposes, we aim to develop systems that improve our clients' business operations and efficiency. The expansion of the internet world due to the development of high-speed communication networks is constantly evolving, requiring the continuous acquisition of new technologies. We have a proven track record in system development using diverse GIS engines in the increasingly diversified world of system development, and we will build systems tailored to our clients' needs. Additionally, we possess accumulated business knowledge and technical expertise in GIS gained from various work experiences. We aim to merge this knowledge with new technologies that are evolving daily to create a new world of GIS.

  • Other information systems
  • soft

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[Video] 3D Device Simulator for Semiconductor Lasers PICS3D

Various analyses such as mode, optical gain, light intensity, spectrum, carrier distribution, band, and wave function are possible. A free trial version is available!

■A demo video of the "Trial Guide" is currently available on the YouTube link below! ■To request a trial version, please use the "Trial Version Application Form." (For product details, please refer to the catalog or contact us.)

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[Video] PICS3D (Fabry-Perot Edition)

Free trial version available for a device simulation program specialized for two-dimensional semiconductor lasers (formerly LASTIP)!

■A demo video of the trial version "Trial Guide" is currently available on the YouTube link below! ■To request the trial version, please use the "Trial Version Application Form." (For details about the product, please refer to the catalog or contact us.)

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[Video] 2D/3D Analysis and Design Software APSYS for Semiconductor Devices

A semiconductor device simulator equipped with a variety of materials and physical models, capable of various analyses. Free trial version available!

■A demo video of the "Trial Guide" is currently available on the YouTube link below! ■To request a trial version, please use the "Trial Version Application Form." (For product details, please refer to the catalog or contact us.)

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