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  3. 超音波システム研究所
  4. An ultrasonic system that allows for easy measurement analysis and oscillation control.
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  • Sep 11, 2022
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Sep 11, 2022

An ultrasonic system that allows for easy measurement analysis and oscillation control.

超音波システム研究所 超音波システム研究所
The Ultrasonic System Research Institute (Location: Hachioji City, Tokyo) manufactures and sells a system that combines the "Ultrasonic Tester NA (recommended type)," which allows for easy measurement and analysis of ultrasonic waves, and the "Ultrasonic Oscillation System (20MHz)," which enables easy control of ultrasonic oscillation. We propose a system configuration (custom-made ultrasonic probes) tailored to the intended use (price and performance: cleaning, processing, stirring, inspection, etc.). Original Products: System Overview (Standard System) - Ultrasonic System (Sound Pressure Measurement and Analysis, Oscillation Control, 10MHz Type) - Model Number: US-2022xxxx - Ultrasonic Tester NA, 10MHz Type - Oscillation System, 20MHz Type - Price: 281,050 yen (including tax: 10% consumption tax) System Overview (Recommended System) - Ultrasonic System (Sound Pressure Measurement and Analysis, Oscillation Control, 100MHz Type) - Model Number: US-2022XXXX - Ultrasonic Tester NA, 100MHz Type - Oscillation System, 20MHz Type - Price: 354,000 yen (including tax: 10% consumption tax)
-- Ultrasonic System (Sound Pressure Measurement Analysis, Oscillation Control) --
-- Ultrasonic System (Sound Pressure Measurement Analysis, Oscillation Control) --
-- Ultrasonic System (Sound Pressure Measurement Analysis, Oscillation Control) --
-- Ultrasonic System (Sound Pressure Measurement Analysis, Oscillation Control) --
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超音波システム(音圧測定解析、発振制御)カタログ202208.pdf[2210467]

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Development of dynamic control technology for ultrasound based on sound pressure measurement analysis.

Dynamic control of ultrasound to achieve stress relaxation on metal surfaces.

The Ultrasonic System Research Institute has developed a completely new dynamic control technology for ultrasound by utilizing two function generators. By generating oscillations with two different waveforms (sweep), we have achieved a technique to control the nonlinear phenomena of ultrasound. Note: The generation of (10th order and higher) harmonics caused by original oscillation control is realized by resonating with low-frequency vibration phenomena, resulting in the generation of high-amplitude harmonics, which is a nonlinear (resonance) phenomenon 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 allows for the dynamic control of surface elastic wave changes according to the intended application. Practically, multiple (two types of) ultrasonic probes generate multiple (two types of) oscillations (sweep oscillation, pulse oscillation), which create complex vibration phenomena (original nonlinear resonance phenomena), achieving high sound pressure propagation states at high frequencies or low sound pressure levels at frequencies matched to the desired natural frequency.

  • Analysis and prediction system
  • Non-destructive testing
  • Vibration and Sound Level Meter

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Development of megahertz ultrasonic oscillation control technology using ultrasonic cleaners.

Combination technology of function generator and ultrasonic probe

The Ultrasonic System Research Institute has developed ultrasonic oscillation control technology that enables the utilization of ultrasonic propagation states above 100 MHz by applying a function generator and ultrasonic probe 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, it is possible to control ultrasonic stimulation above 100 MHz to the target object with an ultrasonic output of less than 20 W, even in a 1000-liter water tank. This 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. The key point is to confirm the ultrasonic propagation characteristics of the target object, and it is important to set the oscillation conditions of the function generator as a control method for the original nonlinear resonance phenomenon (Note 1). Note 1: Original Nonlinear Resonance Phenomenon This refers to the resonance phenomenon of ultrasonic vibrations that occurs when the generation of harmonics caused by original oscillation control is realized at a high amplitude due to resonance phenomena.

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On-Demand: Cleaning Seminar Using Ultrasound and Fine Bubbles

Optimization of Cleaning with Ultrasonic Waves and Fine Bubbles (Microbubbles) for Specific Purposes

Program 1) Basic knowledge and generation mechanisms of ultrasound and fine bubbles (microbubbles) 1. Basics of ultrasound 2. Propagation phenomena of ultrasonic vibrations 3. Fine bubbles (microbubbles) 2) Cleaning methods using ultrasound and fine bubbles (microbubbles) and their benefits 1. Basics of cleaning 2. Physical actions, chemical actions, interactions 3. Benefits of fine bubbles 3) Concepts of ultrasonic cleaning devices and know-how for introduction, development, and improvement 1. Installation methods for tanks and transducers 2. Microbubble generation liquid circulation systems 4) Specific application examples of cleaning and concrete examples of ultrasonic cleaning devices with proven cleaning effects

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Small pump and ultrasonic control technology using an ultrasonic probe.

Development of "Control Technology for Nonlinear Phenomena" Using a Small Pump

The Ultrasonic System Research Institute has developed "ultrasonic control technology" that dynamically controls nonlinear phenomena related to ultrasonic propagation by utilizing a small pump for liquid circulation. Nonlinear phenomena are evaluated through analysis using an ultrasonic tester. The complex changes in ultrasound (such as ultrasonic cleaners, ultrasonic probes, etc.) are confirmed through time-series data analysis of sound pressure from ultrasonic oscillation and reception, identifying various interactions. Based on the confirmation of these interactions, the oscillation control conditions using ultrasonic probes are optimized, achieving a dynamic ultrasonic control system tailored to specific objectives. In practical applications, such as ultrasonic cleaning, the ON/OFF control (or control of flow rate and velocity, etc.) of the current liquid circulation device is optimized by considering the ultrasonic propagation characteristics related to the installation state of the device and the surface elastic waves of the target object, including the output, oscillation frequency, and control conditions of the ultrasound. In particular, by utilizing the vibration characteristics of the pump to alternately circulate liquid and gas, new nonlinear effects of ultrasound and microbubbles are realized.

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  • Scientific Calculation and Simulation Software

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Manufacturing technology for ultrasonic probes based on the classification of ultrasonic propagation phenomena.

- Development of manufacturing technology for ultrasonic probes that can control ultrasonic propagation conditions above 900 MHz -

The Ultrasonic System Research Institute has developed manufacturing technology for ultrasonic probes that can control ultrasonic propagation states above 900 MHz, based on the classification of ultrasonic propagation phenomena. We can manufacture and develop original ultrasonic oscillation control probes tailored to specific purposes. The key point is to confirm the ultrasonic propagation characteristics of the ultrasonic probes. The response characteristics to dynamic changes in ultrasonic waves are the most important. This characteristic determines the range of possible harmonic generation. Currently, we can manufacture for the following range: Ultrasonic Probe: Overview Specifications - Measurement Range: 0.01 Hz to 200 MHz - Oscillation Range: 1.0 kHz to 25 MHz - Propagation Range: 0.5 kHz to over 900 MHz (confirmation of sound pressure data analysis) - Materials: Stainless steel, LCP resin, silicone, Teflon, glass, etc. - Oscillation Equipment: Example - Function Generator By understanding (measuring, analyzing, evaluating) the acoustic characteristics based on materials, shapes, and structures, we realize the desired ultrasonic propagation states. We offer consulting services for this technology. If you are interested, please contact us via email.

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Ultrasonic system using a function generator

Ultrasonic oscillation (sweep oscillation) system for controlling nonlinear phenomena

The Ultrasonic System Research Institute has developed a technology to control the nonlinear vibration phenomena of surface elastic waves based on the acoustic characteristics of original ultrasonic probes. The key point is the setting of sweep oscillation conditions using two ultrasonic probes (essentially, it cannot be controlled with just one probe for ultrasonic oscillation control. By combining the oscillation settings of the two probes, the occurrence of resonance phenomena and nonlinear phenomena can be controlled). Resonance phenomena and nonlinear phenomena can be controlled within a frequency range tailored to the intended use. In particular, when strong stimulation is required, this is achieved by utilizing low-frequency resonance phenomena (e.g., breaking glass). When high-frequency stimulation is needed, this is achieved by utilizing high-frequency nonlinear phenomena (e.g., 700 MHz stimulation).

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  • Scientific Calculation and Simulation Software
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Ultrasound system using a function generator (one set)

-- Ultrasonic System (Sound Pressure Measurement Analysis, Oscillation Control) --

The Ultrasonic System Research Institute manufactures and sells a system that combines the "Ultrasonic Tester NA (recommended type)," which allows for easy measurement and analysis of ultrasound, and the "Ultrasonic Oscillation System (20 MHz)," which enables easy control of ultrasonic oscillation. We propose system configurations (custom-made ultrasonic probes) tailored to the intended use (price and performance: cleaning, processing, stirring, inspection, etc.). Original Products: System Overview (Standard System) - Ultrasonic System (Sound Pressure Measurement and Analysis, Oscillation Control 10 MHz Type) - Ultrasonic Tester NA 10 MHz Type - Oscillation System 20 MHz Type Price: 281,050 yen (including tax: 10% consumption tax)

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  • Vibration and Sound Level Meter
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Ultrasonic oscillation (sweep oscillation, pulse oscillation) system

Technology to control low-frequency resonance phenomena and high-frequency nonlinear phenomena.

The Ultrasonic System Research Institute has developed a technology to control the nonlinear vibration phenomena of surface acoustic waves using ultrasonic oscillation control technology. By confirming the basic acoustic characteristics of ultrasonic waves (response characteristics, propagation characteristics) for various targets (water tanks, transducers, probes, fixtures, objects, etc.), we realize ultrasonic propagation states tailored to specific applications through oscillation control. By setting the oscillation conditions for sweep oscillation and pulse oscillation using two or more types of nonlinear resonant ultrasonic oscillation control probes, we dynamically control high sound pressure level resonance phenomena and the generation of harmonics (nonlinear phenomena of the 10th order and above), achieving high-frequency propagation states of over 100 MHz. Note: Precision cleaning examples Sweep oscillation: 70 kHz to 15 MHz, 15 W Pulse oscillation: 13 MHz, 8 W This technology is an efficient method for utilizing low-power ultrasonic oscillation.

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Related catalog(8)

Ultrasonic Sound Pressure Measurement, Analysis, and Evaluation Technology - Development of a Dynamic Control System for Ultrasound through Sound Pressure Measurement and Analysis -

Ultrasonic Sound Pressure Measurement, Analysis, and Evaluation Technology - Development of a Dynamic Control System for Ultrasound through Sound Pressure Measurement and Analysis -

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Experimental photos related to ultrasound research (August 28, 2022)

Experimental photos related to ultrasound research (August 28, 2022)

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--- Experiment using an ultrasonic system (sound pressure measurement analysis, oscillation control) ---

--- Experiment using an ultrasonic system (sound pressure measurement analysis, oscillation control) ---

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Development of ultrasonic processing technology based on sound pressure measurement and analysis.

Development of ultrasonic processing technology based on sound pressure measurement and analysis.

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Technology for utilizing surface acoustic waves on the surface of ultrasonic elements.

Technology for utilizing surface acoustic waves on the surface of ultrasonic elements.

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Ultrasonic combination technology - small pumps, ultrasonic humidifiers, glass containers...

Ultrasonic combination technology - small pumps, ultrasonic humidifiers, glass containers...

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Ultrasonic technology that controls nonlinear phenomena using a small pump and ultrasonic probe.

Ultrasonic technology that controls nonlinear phenomena using a small pump and ultrasonic probe.

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Surface modification technology using surface acoustic waves controlled by the oscillation of an ultrasonic probe.

Surface modification technology using surface acoustic waves controlled by the oscillation of an ultrasonic probe.

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[Free Catalog Distribution] Measures for "Near Misses" in Nursing and Care Settings. Prevent tripping and disconnection with codes! Wireless Series Bed Exit Sensors Linked to Nurse Call Systems.

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In facilities operating nurse call systems, we have made bed exit sensors wireless, allowing them to notify in conjunction with the nurse call system. By simply connecting the mat sensor "Foldable Thin Matt-kun," the body movement call "Ugo-kun," and the wheelchair body movement call "Ayumi-chan" to the transmitter HB-RS, you can make the bed exit sensor wireless. The infrared sensor "Just Place Pole-kun" has the transmitter HB-RS built-in. This helps prevent accidents caused by falls, slips, or wandering, contributing to the efficiency of medical operations. 【Features】 ○ Wireless conversion by simply connecting existing sensors to the transmitter HB-WSK. ○ Bed exit sensors notify wirelessly in conjunction with the nurse call system. ○ Up to 5 transmitters can be registered with one receiver. ○ The communication distance between the transmitter and receiver is approximately 10 meters. ◎ For more details, please contact us or download the catalog.

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[Free Materials Available] Introducing Useful Information on Vehicle Detection Sensors!

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To customers considering the introduction of vehicle detection sensors for parking lot construction, design, or management: Are you facing any challenges with current issues or selecting the right sensors for parking management? Hotron offers free materials that explain how to utilize vehicle detection sensors and the benefits of their introduction! ▽ Here is the lineup of materials ◉ Vehicle Detection Sensor Basic Guide This guide focuses on the challenges and solutions in parking lot operations, introducing the overview of vehicle detection sensors. ◉ Key Points for Introducing Vehicle Detection Sensors This material discusses the benefits of introduction based on installation locations and specific challenges. ◉ Case Studies of Vehicle Detection Sensor Implementation This document presents the challenges before implementation and the results after introduction. For more details, please download from our website and check it out. https://www.hotron.co.jp/download/

Nov 21, 2025

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We have released a YouTube video on the beautification cleaning of concrete floors in dirt areas [for logistics warehouses and factories].

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After the tenant vacated the logistics warehouse, we received a request to thoroughly clean tape marks, tire marks, oil stains, and rust. The Floor Agent Cleaning Team carried out the work. In the video, you can see the process of removing floor dirt in three steps: cleaning, pressure washing, and finishing wash.

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Introduction of aromatic space design at a nightclub in Tokyo.

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Nov 20, 2025

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We exhibited at the 41st Annual Meeting of the Japanese Society of Pestology in Niigata.

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At the 41st Annual Meeting of the Japanese Society of Pestology held on November 6 and 7, 2025, our company COMO exhibited a booth for our industry-specific construction management app "PICO." This year's theme of the conference was "IPM x SDGs - Towards Sustainable and Diverse Pest Control!" Recently, many businesses have been questioned about their methods and practices in construction and management, focusing on reducing environmental impact, ensuring safety and security in construction, and improving operational efficiency. It was a very valuable two days where we could engage in direct dialogue with everyone involved in diverse initiatives. We sincerely thank everyone who visited our booth. We also appreciate the efforts of everyone involved with the Niigata Pestology Society over the two days.

Nov 20, 2025

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