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A technology seminar centered on foam mixed lightweight soil (FCB method)! It is also possible to participate via the web.

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  • Employee training

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We offer wireless access control systems and high-end digital keyless solutions!

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  • Safes, Cabinets, Lockers
  • Other security systems
  • Hardware Doors, Handles and Locks

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PROBiZZ effectively guides viewers to forms through YouTube technical explanation videos.

  • Sales promotion and sales support software
  • Sales Agent
  • Ad management and operations

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Verification of effectiveness in the Ministry of the Environment's demonstration research! PFAS purification device for organic fluorine compounds [Exhibiting at Chemical Material Japan 2024]

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  • Water Treatment Plant

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This is a construction method suitable for temporary closures associated with the reinforcement of movable weirs that can adjust water levels and flow rates!

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  • Special Construction Method

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[NETIS Registration] Cost Reduction and Environmental Consideration with "Temporary Closure Waterproof Sheet Method" / Azai Technical Consultant Co., Ltd.

Cost reduction, resource conservation, labor saving, quality improvement, and environmentally friendly construction methods! We offer design cooperation! Our company handles the temporary closure method using "float-type platforms/waterproof sheets with waterproof fasteners." The "float-type platform" is designed with a sliding function to allow the installation of a platform necessary for assembly work around bridge piers in minimal space. Additionally, by adopting waterproof sheets, we have eliminated the need for water stop packing that was previously used during the assembly of temporary closure materials, enabling water stopping with the waterproof sheets. 【Features】 <Float-type Platform> ■ Installed around bridge piers with the minimum space required for assembling temporary closure frames. ■ By incorporating sliding functions at four points on the circular platform, it allows for expansion and contraction without separating the platform. ■ By installing multiple spacers on the sides of existing bridge piers, it suppresses the swaying of the platform. ■ Reduces the time required for the installation and removal of the platform. *For more details, please download the PDF or feel free to contact us.

A method for recycling pond bottom sediment and embankment excavation soil into high-performance ground materials.

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  • Civil Engineering Method

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This is a proposal for the utilization of the disaster prevention system ZEROSAI. Gradual water level alerts and understanding upstream weather information in conjunction with the site.

  • River construction
  • Weather Survey

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Introducing a soil improvement agent that instantly enhances the 'mud' generated from construction sites, enabling immediate removal by dump trucks! *Free samples available.

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  • Renovation and repair methods
  • Ground improvement materials

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【950件超】高含水泥土改良剤『MTシリーズ』の採用実績表を更新しました!

高含水泥土改良剤『MTシリーズ』の採用実績表を更新しました。 河川における河床掘削工事、ため池に堆積した土砂の搬出工事、港湾における浚渫工事、橋梁下部工、杭打ち工事、地盤改良工事等、多くの実績が一覧となっております。 また、このところほ場整備関連工事や太陽光関連工事などの採用も増えてきております。 今回集計分で実績は950件を超えました、詳細は是非pdf資料をご覧ください!

Utilizing technical background and problem identification skills to effectively approach proposals that require expertise.

  • Sales promotion and sales support software
  • Sales Agent
  • Ad management and operations

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A technology that adds "radiative cooling effect (i.e., releasing absorbed heat)" to the conventional "reflection + heat shielding effect"!

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  • Heat-insulating paint for exterior walls (roofs, rooftops, etc.)

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Achieving coolness, energy savings, and CO2 reduction with reflection, heat shielding effects, and radiative cooling technology!

A technology that adds "radiative cooling effect (i.e., releasing absorbed heat)" to the conventional "reflection + heat shielding effect"! 'Radi-Cool' is a technology that cools more than the outside air by efficiently radiating absorbed heat without using energy. By applying it to roofs and windows, it lowers indoor temperatures and reduces air conditioning energy consumption, achieving energy savings and CO2 reduction. By combining existing technologies that reflect sunlight at a high rate with advanced heat radiation technology, it prevents heat accumulation on the product surface while also being able to absorb and radiate heat from the backside. Additionally, by concentrating the radiated heat in the wavelength range known as the "atmospheric window," it achieves heat radiation that is not hindered by the atmosphere, which is a cause of global warming, enabling thermal exchange with space even during the day. 【Examples】 ■ Cubicle: Temperature difference -31.6℃ ■ Hat: Temperature difference -6.9℃ ■ Car side tarp: Temperature difference -24.3℃ ■ Parasol: Temperature difference -6.3℃ ■ Windshield cover: Temperature difference -17.5℃ ■ Container house: Average energy saving rate of about 57% ■ Fuel storage tank: Average energy saving rate of about 57%, etc. *For more details, please feel free to contact us.

Total management for suitable repairs! Proposing the longevity of concrete structures with unique technology.

  • Structural Survey

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- Technology combining sweep oscillation with ultrasonic probes and ultrasonic cleaners -

  • Scientific Calculation and Simulation Software
  • Other measuring instruments
  • others

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Ultrasonic Nonlinear Oscillation Control Technology Using a Portable Ultrasonic Cleaner (50kHz 50W)

The Ultrasonic System Research Institute has developed a new acoustic flow control technology utilizing the nonlinear vibration phenomena of surface elastic waves. Regarding complex vibration states: 1) Linear phenomena and nonlinear phenomena 2) Interactions and the acoustic characteristics of various components 3) Sound, ultrasound, and surface elastic waves 4) Low frequency and high frequency (harmonics and subharmonics) 5) Oscillation waveforms and output balance 6) Oscillation control and resonance phenomena ... Based on the above, we optimize a new evaluation method for surface elastic waves using a statistical mathematical model based on sound pressure measurement data. Ultrasonic cleaning, processing, stirring, ... surface inspection, ... nanotechnology, ... applied research ... various responses are possible. Propagation characteristics of ultrasound: 1) Detection of vibration modes (changes in autocorrelation) 2) Detection of nonlinear phenomena (changes in bispectrum) 3) Detection of response characteristics (analysis of impulse response) 4) Detection of interactions (analysis of power contribution rates)

Technology for controlling megahertz sweep oscillation using a technique for adjusting the piezoelectric elements of original ultrasonic probes.

  • Vibration and Sound Level Meter
  • Non-destructive testing
  • Other measuring instruments

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Ultrasonic Nonlinear Oscillation Control Technology Using a Portable Ultrasonic Cleaner (50kHz 50W)

The Ultrasonic System Research Institute has developed a new acoustic flow control technology utilizing the nonlinear vibration phenomena of surface elastic waves. Regarding complex vibration states: 1) Linear phenomena and nonlinear phenomena 2) Interactions and the acoustic characteristics of various components 3) Sound, ultrasound, and surface elastic waves 4) Low frequency and high frequency (harmonics and subharmonics) 5) Oscillation waveforms and output balance 6) Oscillation control and resonance phenomena ... Based on the above, we optimize a new evaluation method for surface elastic waves using a statistical mathematical model based on sound pressure measurement data. Ultrasonic cleaning, processing, stirring, ... surface inspection, ... nanotechnology, ... applied research ... various responses are possible. Propagation characteristics of ultrasound: 1) Detection of vibration modes (changes in autocorrelation) 2) Detection of nonlinear phenomena (changes in bispectrum) 3) Detection of response characteristics (analysis of impulse response) 4) Detection of interactions (analysis of power contribution rates)

Analysis of sound pressure measurement data (autocorrelation, power spectrum, bispectrum, power contribution rate, impulse response, etc.) evaluation and technology.

  • Scientific Calculation and Simulation Software
  • Non-destructive testing
  • others

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Nonlinear Oscillation Control Technology for Ultrasonic Probes Based on Sound Pressure Measurement Analysis - Optimization Techniques for Resonance Phenomena and Nonlinear Phenomena -

The Ultrasonic System Research Institute has developed a technology to control nonlinear ultrasonic phenomena by optimizing various interactions through the oscillation control of two types of ultrasonic probes from two oscillation channels of a function generator. Note: Nonlinear (resonance) phenomenon The resonance phenomenon that occurs due to the generation of harmonics resulting from original oscillation control, leading to high amplitude ultrasonic vibrations. By optimizing the ultrasonic propagation characteristics of various materials 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 allows for the control of dynamic changes in surface elastic waves according to their intended use. Ultrasonic Probe: Outline Specifications Measurement Range: 0.01 Hz to 200 MHz Oscillation Range: 0.5 kHz to 25 MHz Propagation Range: 1 kHz to over 900 MHz (confirmed by sound pressure data analysis) Materials: Stainless steel, LCP resin, silicon, Teflon, glass, etc. Oscillation Equipment: Example - Function generator

We are dispatching instructors to the CPDS seminars organized by everyone! Do you have any concerns, such as "the topics are always similar"?

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  • Ground improvement materials

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We are accepting requests for CPDS instructor dispatch.

Our company provides instructor dispatch for CPDS seminars organized by everyone. Do you have any concerns, such as "the topics are always similar"? Please feel free to inquire first. <Instructor Dispatch Overview> 1. Areas of Service We serve customers at designated venues throughout Japan. Online lectures are also available. 2. Seminar Content We will give a presentation on the MT series of high-water-content soil improvement agents. We will clearly explain the treatment of high-water-content soil generated at construction sites. In the past, we have given lectures on topics such as "Improvement Techniques for High-Water-Content Soft Ground Deposits," discussing the transportation of mud using improvement agents. 3. Fees This service is provided free of charge. 4. How to Request or Consult About Instructor Dispatch Please contact us through the inquiry form on our company website or our Ipros page. A representative will get back to you later.

A mathematical optimization solver utilizing quantum annealing is a tool that efficiently solves complex optimization problems using quantum technology.

  • Scientific Calculation and Simulation Software

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Development of ultrasonic control technology utilizing a combination of sound and ultrasound — oscillation control technology based on sound pressure measurement and analysis evaluation.

  • Vibration and Sound Level Meter
  • Non-destructive testing
  • Scientific Calculation and Simulation Software

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Ultrasonic Oscillation Control System (Catalog)

--- Nonlinear Oscillation Control Device Using Megahertz Ultrasonic Waves --- The Ultrasonic System Research Institute manufactures and sells an "Ultrasonic Oscillation System" that allows for easy control of megahertz ultrasonic oscillation. Ultrasonic Probe: Outline Specifications Measurement Range: 0.01 Hz to 200 MHz Oscillation Range: 0.5 kHz to 25 MHz Propagation Range: 0.5 kHz to over 900 MHz (confirmed and evaluated through analysis) Materials: Stainless steel, LCP resin, silicone, Teflon, glass... Oscillation Equipment Examples: Function Generators 1) JDS6600-60M (60 MHz 2ch 266 MSa/s) 2) DG1022Z (25 MHz 2ch 200 MSa/s) 3) FY3224S (24 MHz 2ch 250 MSa/s) 4) MHS-5200A (25 MHz 2ch 200 MSa/s) Recommended Settings ch1 Square Wave 47.1% (duty) 8.0 MHz Output 13.4 V ch2 Square Wave 43.7% (duty) 11.0 MHz Output 13.7 V Sweep Oscillation Conditions Square Wave 3.5 MHz to 15 MHz, 2 seconds

- Combination technology of pulse oscillation and sweep oscillation -

  • Scientific Calculation and Simulation Software
  • Vibration and Sound Level Meter
  • others

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Ultrasonic Control Technology Using Glass Containers - Application Technology of the Ultrasonic System Research Institute Based on Ultrasonic Measurement and Analysis Techniques -

The Ultrasonic System Research Institute has developed an ultrasonic oscillation control probe based on the acoustic properties of glass containers. By confirming the basic acoustic characteristics (response characteristics, propagation characteristics) depending on the shape and material of each container, it enables the desired ultrasonic propagation state through oscillation control (output, waveform, oscillation frequency, variations, etc.). The key point is to evaluate the dynamic vibration characteristics of the system based on the measurement and analysis of sound pressure data. We are establishing and confirming new evaluation criteria (parameters) that indicate the suitable state of ultrasound for the purpose. Note: - Nonlinear characteristics (dynamic characteristics of harmonics) - Response characteristics - Characteristics of fluctuations - Effects due to interactions By developing original measurement and analysis methods that consider the acoustic properties and surface elastic waves of the target object, referencing the ideas of statistical mathematics, we have developed a new technology regarding the relationships of various detailed effects related to vibration phenomena. The specific conditions for oscillation control are determined based on experimental confirmation, as they are also influenced by the characteristics of ultrasonic probes and oscillation equipment. As a result, there are increasing examples and achievements demonstrating that the new nonlinear parameters are very effective.

- Technology for controlling oscillations of low-frequency resonance phenomena and high-frequency nonlinear phenomena -

  • Scientific Calculation and Simulation Software
  • Vibration and Sound Level Meter
  • Non-destructive testing

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Ultrasonic sound pressure data analysis and evaluation technology (Leading to new ultrasonic applications from ultrasonic sound pressure and vibration data)

The Ultrasonic System Research Institute conducts consulting related to ultrasonic applications using a technology that measures, analyzes, and evaluates the propagation state of ultrasound, applying feedback analysis techniques based on multivariate autoregressive models. By organizing the measurements, analyses, and results obtained from ultrasonic testers chronologically, we establish and verify new evaluation criteria (parameters) that indicate the appropriate ultrasonic state for the intended purpose. Note: - Nonlinear characteristics (dynamic characteristics of acoustic flow) - Response characteristics - Fluctuation characteristics - Effects due to interactions By developing original measurement and analysis methods that consider the acoustic properties of the target object and surface elastic waves, we deepen our understanding of the relationships between various effects related to vibration phenomena, referencing statistical mathematical concepts. As a result, there is an increasing number of cases demonstrating that new nonlinear parameters are very effective regarding the propagation state of ultrasound and the surface of the target object. In particular, evaluation cases related to cleaning, processing, and surface treatment effects lead to successful control and improvement based on favorable confirmations.

Unique spinning technology! Introducing technologies such as the molding of lighting fixture adapters integrated with poles.

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  • Processing Technology

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The teaching assistant software "Swanist" for "Swampro" has been further upgraded. It can now be recreated in a virtual space.

  • Transport machinery
  • others

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[Inspection Support Technology Performance Catalog] Introducing structural inspection technologies utilizing drones, pole cameras, and AI image analysis technology.

  • Non-destructive testing

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We will exhibit at the 10th International Drone Exhibition! (Tokyo Big Sight)

This time, we will be exhibiting at the "10th International Drone Exhibition," which is part of "Maintenance Resilience TOKYO 2024," a series of specialized exhibitions being held simultaneously aimed at improving productivity in the manufacturing and construction industries, developing sustainable social infrastructure, and enhancing resilience. At this exhibition, we will showcase actual drones that are compatible with non-GNSS environments, inspection equipment such as pole cameras, and various systems that can be utilized for inspections and surveys, including the exterior wall inspection climbing robot (NOBORIN). Additionally, during the exhibitor seminar, we will present on "Enhancing Management Operations for Bridges and Water Pipe Bridges Using 3D Point Cloud Registers," and at the JDC Forum, we will discuss "Improving Infrastructure Maintenance Management Efficiency Using Drones and 3D Registers." The event details are as follows: 【Maintenance Resilience TOKYO 2024】 ■ Exhibition Name: 10th International Drone Exhibition ■ Dates (In-person): July 24 (Wednesday) to July 26 (Friday), 2024, 10:00 AM to 5:00 PM ■ Dates (Online): July 1 (Monday) 10:00 AM to August 30 (Friday) 5:00 PM ■ Venue: Tokyo Big Sight, East Exhibition Hall ■ Booth Number: M5-103

For disaster recovery purposes, it is possible to instantly improve and transport the sediment that flows in during landslides caused by heavy rain and other events. [Free samples available]

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  • Ground improvement materials

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Combination technology of function generator and ultrasonic probe

  • Other measuring instruments
  • Analysis and prediction system
  • others

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A new surface inspection technology using megahertz ultrasonic oscillation—ultrasonic probes utilizing components with iron plating on polyimide film.

The Ultrasonic System Research Institute has developed a new component inspection technology using megahertz ultrasonic oscillation based on its track record of analyzing ultrasonic data propagating on the surface of objects. This method applies the measurement and analysis technology of "sound pressure and vibration" through the control of original ultrasonic probe oscillation. We provide consulting and explanations of ultrasonic evaluation technology through the development of ultrasonic probes tailored to the purpose (vibration modes propagating on the surface of objects). This is an application of new ultrasonic oscillation control technology. By utilizing nonlinear phenomena related to megahertz ultrasonic propagation states that match the acoustic characteristics of the target object, it is possible to detect new features regarding the surface condition of the object. In particular, this fundamental technology serves as a new evaluation parameter for ultrasonic vibrations, utilized in surface inspection of substrate components and pre-evaluation of precision cleaning parts, leveraging the response characteristics derived from combinations of oscillation and reception. By measuring, analyzing, and evaluating the dynamic characteristics of ultrasonic waves related to the propagation phenomena of surface elastic waves, we have enabled effective use tailored to the purpose (evaluation) through the construction and modification of logical models.

A completely new vibration measurement technology using original products (ultrasonic testers).

  • Non-destructive testing
  • Other measuring instruments
  • others

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Ultrasound "Sound Pressure Measurement Analysis Device (Ultrasound Tester NA)"

The Ultrasonic System Research Institute manufactures and sells the "Ultrasonic Tester NA (Standard Type)," which allows for easy measurement and analysis of ultrasonic waves. System Overview (Recommended System: Ultrasonic Tester NA) 1. Price 10 MHz type: 198,000 yen (including tax: 10% consumption tax) (100 MHz type and 200 MHz type have been discontinued as of June 10, 2024) 2. Contents One dedicated probe for measuring sound pressure of ultrasonic cleaners One general-purpose ultrasonic measurement probe One oscilloscope set One set of analysis software, instruction manual, and various installation sets (USB memory) 3. Features (Standard Specifications) * Measurement (analysis) frequency range 10 MHz type: 0.1 Hz to 10 MHz 100 MHz type: 0.1 Hz to 100 MHz 200 MHz type: 0.1 Hz to 200 MHz * Capable of measuring surface vibrations * Continuous measurement for 24 hours is possible * Simultaneous measurement of any two points * Measurement results displayed in graph form * Analysis software for time-series data included Regarding the 100 MHz type and 200 MHz type Alternatives are currently under consideration.

Low cost, simple maintenance, high design quality, custom-designed Magic Line Pool Company - a specialist company for pool design and construction in Japan.

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  • Pool equipment related

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For those who want to send video and audio via radio waves for the first time: Radio waves are invisible and come with challenges such as latency, anxiety, troubles, and difficulty... We will solve th...

  • Video Monitoring System

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We will showcase a wide variety of products that can be used extensively beyond highways.

  • Tunnel Materials

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For companies that want to solve specific technical challenges! We can support technology exploration, acquisition, and implementation in various fields (yet2 technology scouting services).

  • Other services and technologies

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【Technical Data Giveaway】Easy application without the need for pre-treatment! A reflective paint for concrete that enhances the driving safety of drivers just by applying it.

  • Luminous paint

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Achieving high-quality lead generation through collaboration between form sales specialized in technical requirement hearings and PROBiZZ.

  • Sales promotion and sales support software
  • Sales Agent
  • Ad management and operations

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A service that significantly improves the contract rate through AI-driven inside sales that realizes sales efficiency for IT system companies.

  • Sales promotion and sales support software
  • Sales Agent
  • Ad management and operations

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It is a technology that enables ultrasonic control tailored to specific purposes.

  • others
  • Non-destructive testing

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Technology for Adding Megahertz Ultrasound to Ultrasonic Cleaners — Nonlinear Oscillation Control Technology Using Original Ultrasonic Probes —

The Ultrasonic System Research Institute has developed ultrasonic oscillation control technology that enables the use of ultrasonic propagation states above 200 MHz with oscillation below 20 MHz by utilizing a function generator and an original ultrasonic oscillation probe in relation to ultrasonic cleaners. This is a new application technology for precision cleaning, processing, and stirring based on the measurement, analysis, evaluation, and technology of ultrasonic propagation states. By utilizing the acoustic properties (surface elastic waves) of various materials, ultrasonic stimulation to the target object can be controlled with an ultrasonic output of less than 20W, even in a 5000-liter water tank. It was developed as an application method for nonlinear phenomena through an engineering (experimental and technical) perspective on elastic waves and an abstract algebraic ultrasonic model. Ultrasonic probe for vibration measurement: Outline specifications - Measurement range: 0.01 Hz to 100 MHz - Oscillation range: 1 kHz to 25 MHz - Propagation range: 1 kHz to over 900 MHz - Materials: Stainless steel, LCP resin, silicon, Teflon, glass, etc. - Measurement equipment: Example - Oscilloscope - Oscillation equipment: Example - Function generator

Available for preview - Supporting Beyond 5G/6G communication, EV/HEV, autonomous driving, and power electronics.

  • others

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[Book] Development of Electromagnetic Wave Absorbing and Shielding Materials and Countermeasures for Electromagnetic Noise (No. 2244)

- Comprehensive explanation of noise countermeasures compatible with Beyond 5G/6G communication, EV/HEV, autonomous driving, and power electronics! - Detailed development of materials and countermeasure technologies for new applications that are "thin," "lightweight," and "flexible"! ------------------------------ ■ Table of Contents Chapter 1: Development of electromagnetic wave absorption materials compatible with GHz and THz bands, lightweighting, and flexibility Chapter 2: Lightweight and thin technologies for electromagnetic wave shielding materials Chapter 3: Design of electromagnetic noise reflection materials and radio wave propagation control technologies Chapter 4: Circuit noise suppression technologies and design of countermeasure components Chapter 5: Measurement and analysis technologies for electromagnetic noise, evaluation technologies for countermeasure materials Chapter 6: Simulation technologies for EMC design and countermeasures Chapter 7: Generation of noise from electronic devices, semiconductors, and power electronics and countermeasures Chapter 8: Generation of noise from vehicle electrification and autonomous driving and countermeasures Chapter 9: Noise countermeasures in communication devices and IoT ------------------------------ ● Publication Date: April 30, 2024 ● Format: A4 size, 556 pages ● Authors: 58 individuals ● ISBN: 978-4-86798-018-7 ------------------------------

Economical, safe, reliable, and easy! Construction is possible with the minimum required amount of excavation.

  • Renovation and repair methods

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[Specialized Books] "Development of Low Dielectric Constant and Low Dielectric Loss Materials," "Millimeter Wave Compatible Electromagnetic Wave Absorbing and Shielding Materials," "Design of Antennas...

  • others

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[Book] Latest Development Trends of High-Speed and High-Frequency Compatible Materials (No. 2089BOD)

- Towards 5G/Beyond 5G - ■Table of Contents Chapter 1: Development Status of 5G and Prospects for Beyond 5G Chapter 2: Low Dielectric and Low Transmission Loss of High-Frequency Substrate Materials Chapter 3: Adhesion and Joining Technologies of Resin/Copper in High-Frequency Substrates Chapter 4: Development Trends of Electronic Components and Modules for 5G Chapter 5: Development Trends of Electromagnetic Wave Absorption and Shielding Materials for 5G Chapter 6: Design of Antennas for 5G and Radio Wave Propagation Technologies Chapter 7: Measurement and Evaluation Technologies for Millimeter Wave High-Frequency Circuits and Materials Chapter 8: Development Trends of Optical Devices for Beyond 5G/6G -------------------------- ●Published: February 26, 2021 ●Authors: 62 ●Format: A4 size, 653 pages Hardcover edition: Price: 88,000 yen (tax included) ISBN: 978-4-86104-865-4   ↓↓ The hardcover edition is out of print ↓↓ On-demand edition available for sale       Price: 44,000 yen (tax included) ISBN: 978-4-86104-950-7       After receiving your order, we will perform simple printing and binding. --------------------------

Combination technology of sound and ultrasound—technology to optimize low-frequency resonance phenomena and high-frequency nonlinear phenomena.

  • pump
  • Other measuring instruments
  • others

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Dynamic control experiment of ultrasound using multiple ultrasonic oscillation control probes.

The Ultrasonic System Research Institute has developed a technology for controlling the oscillation of multiple ultrasonic waves by utilizing the nonlinear vibration phenomena of surface acoustic waves. Regarding complex vibration states, the optimization of multiple ultrasonic oscillation controls is aimed at the following items: 1) Linear phenomena and nonlinear phenomena 2) Interactions and acoustic characteristics of various components 3) Sound, ultrasound, and surface acoustic waves 4) Low frequency and high frequency (harmonics and subharmonics) 5) Oscillation waveform and output balance 6) Oscillation control and resonance phenomena (original nonlinear resonance phenomena (Note 1)) ... For the above, we will optimize using a new evaluation method for surface acoustic waves based on sound pressure measurement data and a statistical mathematical model (spectrum sequence (Note 2)). (Note 1) Original nonlinear resonance phenomena The resonance phenomena of ultrasonic vibrations that occur due to the generation of higher-order harmonics through original oscillation control, achieving high amplitude at high frequencies due to dynamic changes over time. (Note 2) A representation (statistical mathematical model) utilizing an original method that adapts changes in ultrasound to the spectral sequence of category theory and cohomology in abstract algebra.

【Available for preview】★ Delivering "unstable" drugs reliably and efficiently into "cells"!

  • others

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[Book] New DDS Technologies and Formulation for New Modalities Pharmaceuticals (No. 2187) [Available for Preview]

"Delivering 'unstable' drugs reliably and efficiently into 'cells'!" Table of Contents Chapter 1: DDS Technology Using Polymer Nanoparticles and Particle Creation and Control Chapter 2: Design of Polymer Micelle-Type Drug Carriers Chapter 3: Design and Modification Techniques for Lipid Nanoparticles and Liposome Formulations Chapter 4: Utilization and Design of Exosome DDS Carriers Chapter 5: Development of DDS Technology Using Conjugates Chapter 6: Notable DDS Technologies and Carrier Design Chapter 7: DDS Technology for Peptide Pharmaceuticals and Design of DDS Utilizing Cell Membrane Permeable Peptides Chapter 8: Utilization and Design of Viruses as DDS Chapter 9: Evaluation of Pharmacokinetics for Novel Modality Pharmaceuticals Chapter 10: Functional, Physical, and Chemical Evaluation of DDS Formulations Chapter 11: Utilization of Additives Used in Nanoparticle DDS Formulations Chapter 12: Manufacturing of Lipid Nanoparticles and Plant Design for Modality Pharmaceuticals --------------------- ●Publication Date: January 31, 2023 ●Format: A4, 580 pages ●Authors: 110 ●ISBN: 978-4-86104-936-1 ---------------------

[Free trial available - Specialized books] - Expression of tactile and textural qualities / VOC and odor reduction / HMI design / Noise reduction / Thermal management

  • others

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[Book] Improvement of Comfort in Automotive Interior Materials and Interiors (No. 2006)

- Expression of texture and tactile sensation / Reduction of VOCs and odors / HMI design / Improvement of quietness / Thermal management - ★ Increase in EV vehicles, realization of autonomous vehicles and connected cars, expansion of car sharing! ---------------------------- ■ Table of Contents Chapter 1: Interior and interior design required for next-generation vehicles Chapter 2: Expression of texture and durability improvement of new automotive interior materials Chapter 3: Decorative technologies for automotive interior materials Chapter 4: Design requirements for in-vehicle cockpits, HMI, and visibility improvement technologies Chapter 5: Odor and VOC measures for automotive interior materials Chapter 6: Noise and vibration control in automotive interiors using soundproofing/absorption and damping materials Chapter 7: Development of materials and automotive components aimed at improving driver comfort ---------------------------- ● Published: September 30, 2019 ● Format: A4 size, 514 pages ● Authors: 50 individuals ● ISBN: 978-4-86104-761-9 ---------------------------- * For details, please download the catalog. * "Preview" is available for free.

We introduce our company's uncompressed wireless devices and "Examples of Input and Output Connections for Video Equipment" with illustrations, which will convince you. As a result, we will eliminate ...

  • Elevator

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Surface treatment technology using a megahertz ultrasonic oscillation control probe -- Improvement treatment of metal fatigue strength (relaxation and uniformization of surface residual stress) --

  • Scientific Calculation and Simulation Software
  • Other measuring instruments
  • others

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Ultrasonic control technology applying mathematical theories of communication - Dynamic control model of ultrasound -

The Ultrasonic System Research Institute has developed ultrasonic control technology by applying the "Mathematical Theory of Communication" (Claude E. Shannon) to ultrasound. The developed technology utilizes ultrasonic sound pressure measurement, analysis, and evaluation techniques to adapt the propagation characteristics of ultrasound (dynamic characteristics) to the ensemble (entropy) of communication theory. Unlike the previous "technical problems" related to communication, this was developed as a technical application research addressing the "semantic problems" and "effect problems" related to ultrasonic phenomena. Furthermore, through the "evaluation technology for ultrasonic devices" at the Ultrasonic System Research Institute, concrete results using this method have been confirmed. For more details, we are responding and expanding this as a consulting business.

Introduction of the development background of non-compressed radios and the solutions to challenges in various utilization cases. Confidential information, understood!

  • Elevator

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Case Renewal! 2.4GHz Band High-Definition Video and Audio Stereo Uncompressed Wireless Device

【Specifications】 Model: GTV-T1/R1-B ● This is a renewed case for the GTV-T1/R1 model, compatible with both vertical and horizontal placement. ● The electrical performance is the same as that of the GTV-T1/R1. (Successor to the GTV-T1/R1) ● It is lighter, weighing approximately 230g, with dimensions of 80W × 116D × 41H mm. ● Dust resistance has been enhanced! ● "Technical conformity" certification obtained.

Adopting a structure without protrusions! Introducing openings designed with consideration for pedestrian safety.

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  • Processing Technology

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Technology for stirring, emulsifying, dispersing, and grinding at the nanoscale using techniques to control nonlinear phenomena of ultrasound.

  • Concrete admixture
  • Non-destructive testing
  • others

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Ultrasonic Oscillation Control System (Catalog)

--- Nonlinear Oscillation Control Device Using Megahertz Ultrasonic Waves --- The Ultrasonic System Research Institute manufactures and sells an "Ultrasonic Oscillation System" that allows for easy control of megahertz ultrasonic oscillation. Ultrasonic Probe: Outline Specifications Measurement Range: 0.01 Hz to 200 MHz Oscillation Range: 0.5 kHz to 25 MHz Propagation Range: 0.5 kHz to over 900 MHz (confirmed and evaluated through analysis) Materials: Stainless steel, LCP resin, silicone, Teflon, glass... Oscillation Equipment Examples: Function Generators 1) JDS6600-60M (60 MHz 2ch 266 MSa/s) 2) DG1022Z (25 MHz 2ch 200 MSa/s) 3) FY3224S (24 MHz 2ch 250 MSa/s) 4) MHS-5200A (25 MHz 2ch 200 MSa/s) Recommended Settings ch1 Square Wave 47.1% (duty) 8.0 MHz Output 13.4 V ch2 Square Wave 43.7% (duty) 11.0 MHz Output 13.7 V Sweep Oscillation Conditions Square Wave 3.5 MHz to 15 MHz, 2 seconds

- Surface modification technology (stress relaxation and uniformity) through nonlinear oscillation control of original ultrasonic probes -

  • Other analytical equipment

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Vibration control technology using megahertz ultrasound (control, improvement, and adjustment of vibration modes)

The Ultrasonic System Research Institute has developed a completely new technology for controlling vibrations using original products (ultrasonic systems). Based on the analysis and evaluation of ultrasonic sound pressure measurement and oscillation control technology developed so far, we perform oscillation control of megahertz ultrasonic waves based on the analysis and evaluation of nonlinear phenomena in ultrasonics. From the accumulation of data measuring, analyzing, and evaluating the dynamic characteristics of ultrasonic waves propagating on surfaces, we apply technology that can <measure, analyze, and evaluate> vibration states from low frequencies (0.1 Hz) to high frequencies (over 900 MHz). Regarding vibrations and noise from buildings and roads, equipment, devices, walls, piping, desks, handrails... the vibrations at the moment of metal melting during welding, instantaneous vibrations during machining, and the complex vibration states of entire manufacturing devices and systems... new countermeasures based on vibration measurement and analysis have become possible. This is a new method and technology, and various application cases have developed from the results obtained so far. In particular, since continuous data collection for a standard measurement time of 72 hours is possible, we can measure and respond to very low frequency vibrations and irregularly fluctuating vibrations.

Technology for controlling nonlinear phenomena of ultrasound.

  • Scientific Calculation and Simulation Software
  • Analysis and prediction system
  • others

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Development of optimization and evaluation technology related to water tanks, ultrasonic waves, and liquid circulation - Optimization technology for resonance phenomena and nonlinear phenomena.

The Ultrasonic System Research Institute has developed a technology to optimize ultrasonic propagation systems that can control resonance phenomena and nonlinear phenomena based on various analysis results of ultrasonic propagation states using an original ultrasonic system (sound pressure measurement analysis and oscillation control). Furthermore, we have advanced the above technology and developed optimization and evaluation techniques related to water tanks, ultrasonic waves, and liquid circulation. In contrast to previous control technologies, this technology utilizes new measurement and evaluation parameters (note) concerning the entire propagation path of ultrasonic vibrations, including various propagation tools, to achieve dynamic ultrasonic propagation states tailored to the purposes of ultrasonic applications (cleaning, stirring, processing, etc.). This is a method and technology that can be applied immediately, and we offer it as consulting services (with increasing achievements in ultrasonic processing, precision cleaning at the nano level, stirring, etc.). Note: The original technology product (ultrasonic sound pressure measurement analysis system) measures, analyzes, and evaluates dynamic changes in the propagation state of water tanks, transducers, target objects, and tools, among others. (Parameters: power spectrum, autocorrelation, response characteristics, etc.)

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