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  6. Ultrasonic oscillation control system using an original ultrasonic probe.

Ultrasonic oscillation control system using an original ultrasonic probe.

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last updated:Jan 08, 2025

超音波システム研究所
超音波システム研究所
  • Official site

- Technology for controlling low-frequency resonance phenomena and high-frequency nonlinear phenomena based on sound pressure measurement analysis and evaluation.

The Ultrasonic System Research Institute manufactures and sells an "Oscillation System (20MHz)" that allows for easy control of megahertz ultrasonic oscillation. System Overview (Ultrasonic Oscillation System (20MHz)) Contents (20MHz Type) - Two ultrasonic oscillation probes - One set of function generator - One set of operation manual (USB memory) Features (20MHz Type) - Ultrasonic oscillation frequency Specification: 20kHz to 25MHz (or 24MHz) - Output range: 5mVp-p to 20Vp-p - Sampling rate: 200MSa/s (or 250MSa/s) This system utilizes commercially available function generators. We will propose a quoted price with a function generator set according to your needs. Standard Reference Example Oscillation System 20MHz starting from 80,000 yen November 2024: Development of megahertz flow-type ultrasonic technology November 2024: Development of ultrasonic sound pressure data analysis and evaluation technology December 2024: Development of nonlinear oscillation control technology for ultrasonic probes January 2025: Development of megahertz flow-type ultrasonic system

    Non-destructive testingVibration and Sound Level Meterothers
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Ultrasonic oscillation control system using an original ultrasonic probe.

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  • Related Link - http://ultrasonic-labo.com/?p=9285

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basic information

The Ultrasonic System Research Institute has developed a technology to control the nonlinear phenomena of surface elastic waves (ultrasonic vibrations) that propagate through the target object, using an original ultrasonic system (acoustic pressure measurement analysis, oscillation control). << Technology to Control Nonlinear Ultrasonic Vibration Phenomena >> 1) A control setting technology that enables the oscillation control conditions by a function generator to be adjusted according to the acoustic characteristics of the target object. 2) Manufacturing and development technology for ultrasonic oscillation control probes that make the ultrasonic propagation state controllable, including adjustments to the oscillation surface. 3) Manufacturing and development technology for ultrasonic measurement probes that enable control of ultrasonic vibrations above 900 megahertz. 4) Optimization technology for sweep oscillation conditions. Using the above technologies, we control the ultrasonic propagation state according to the objectives. Note: Based on the analysis and evaluation of acoustic pressure data related to nonlinear phenomena concerning the interaction between the acoustic characteristics of the target object and ultrasonic oscillation control, we perform dynamic control of ultrasonic waves (measurements, analysis, confirmation, and evaluation of acoustic pressure are conducted with an ultrasonic tester).

Price information

Standard reference example Oscillation system 20MHz from 80,000 yen ~ Please feel free to contact us.

Price range

P2

Delivery Time

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Applications/Examples of results

Specific examples 1) Preventing degradation of machining oil by ultrasonic irradiation at night 2) Improving quality through ultrasonic irradiation on NC machines 3) Ultrasonic irradiation on shelves storing metal and resin parts (surface modification) 4) Improving fluidity and uniformity of concentration in plating solutions, cleaning solutions, solvents, etc. through ultrasonic irradiation 5) Improving welding quality by ultrasonic irradiation on welding machines 6) Relieving surface residual stress through ultrasonic irradiation on brazing and bending machines 7) Improving cleaning levels by ultrasonic irradiation on ultrasonic cleaning machines 8) Preventing aging-related deterioration concerning vibrations through ultrasonic irradiation on various machine tools 9) Preventing internal adhesion in piping and pipes through ultrasonic irradiation 10) Improving internal fluidity and internal cleaning in pipelines through ultrasonic irradiation 11) Stabilizing rotation through ultrasonic irradiation on rotating devices 12) Improving aluminum fluidity in high-temperature conditions and uniformity of temperature changes (uniformity of surface residual stress) and enhancing surface quality through ultrasonic irradiation on aluminum die-casting equipment 13) Achieving uniformity of temperature changes (uniformity of surface residual stress) through ultrasonic irradiation on high-temperature systems such as casting and forging ...

Detailed information

  • IMG_4955.jpg

    Ultrasonic oscillation control system from 20 kHz to 20 MHz.

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    Ultrasonic oscillation control system from 20 kHz to 20 MHz.

  • IMG_2588.jpg

    Ultrasonic oscillation control system from 20 kHz to 20 MHz

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    Ultrasonic oscillation control system from 20 kHz to 20 MHz

  • IMG_0058.jpg

    Ultrasonic oscillation control system from 20 kHz to 20 MHz

  • IMG_2565.jpg

    Ultrasonic oscillation control system from 20 kHz to 20 MHz

  • IMG_9576.jpg

    Ultrasonic oscillation control system from 20 kHz to 20 MHz.

  • IMG_9285.jpg

    Ultrasonic oscillation control system from 20 kHz to 20 MHz

  • IMG_8460-3.jpg

    Ultrasonic oscillation control system from 20 kHz to 20 MHz

catalog(31)

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Ultrasound System Specification Document (for *** Co.) - Ultrasound Sound Pressure Measurement, Analysis, Evaluation, and Oscillation Control System -

Ultrasound System Specification Document (for *** Co.) - Ultrasound Sound Pressure Measurement, Analysis, Evaluation, and Oscillation Control System -

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Ultrasonic oscillation system of megahertz ultrasonic (US-2024XXXX specifications)

Ultrasonic oscillation system of megahertz ultrasonic (US-2024XXXX specifications)

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Ultrasonic Oscillation System USP-2021-20MHz - Specification Document (Ultrasonic System Using Commercial Function Generator)

Ultrasonic Oscillation System USP-2021-20MHz - Specification Document (Ultrasonic System Using Commercial Function Generator)

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Utilization Technology of Megahertz Ultrasonic Waves - Oscillation Control Using Original Ultrasonic Probes -

Utilization Technology of Megahertz Ultrasonic Waves - Oscillation Control Using Original Ultrasonic Probes -

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Optimization Technology for Ultrasonic Cleaning Machines — Optimization and Control Technology for Cavitation and Acoustic Flow Based on Sound Pressure Measurement, Analysis, and Evaluation —

Optimization Technology for Ultrasonic Cleaning Machines — Optimization and Control Technology for Cavitation and Acoustic Flow Based on Sound Pressure Measurement, Analysis, and Evaluation —

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Methods for utilizing nonlinear vibration phenomena based on ultrasonic sound pressure measurement analysis.

Methods for utilizing nonlinear vibration phenomena based on ultrasonic sound pressure measurement analysis.

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Megahertz ultrasonic oscillation control probe manufacturing technology (patent document) - Ver4

Megahertz ultrasonic oscillation control probe manufacturing technology (patent document) - Ver4

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Technology for Evaluating the Dynamic Characteristics of Original Ultrasonic Probes - Ver2

Technology for Evaluating the Dynamic Characteristics of Original Ultrasonic Probes - Ver2

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Ultrasonic Cleaning Technology Based on Acoustic Characteristic Testing - Ver2

Ultrasonic Cleaning Technology Based on Acoustic Characteristic Testing - Ver2

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Improvement and enhancement of ultrasonic devices <Measurement, analysis, and evaluation of sound pressure data> Ver2

Improvement and enhancement of ultrasonic devices <Measurement, analysis, and evaluation of sound pressure data> Ver2

TECHNICAL
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Ultrasonic Oscillation System for Controlling Nonlinear Phenomena (Sweep Oscillation) - Ver4

Ultrasonic Oscillation System for Controlling Nonlinear Phenomena (Sweep Oscillation) - Ver4

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Control of Megahertz Ultrasonic Oscillation and Surface Acoustic Waves - Ver2

Control of Megahertz Ultrasonic Oscillation and Surface Acoustic Waves - Ver2

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Megahertz Ultrasonic Surface Elastic Wave Control Technology - Application of Original Ultrasonic Probe Manufacturing Technology -

Megahertz Ultrasonic Surface Elastic Wave Control Technology - Application of Original Ultrasonic Probe Manufacturing Technology -

TECHNICAL
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Ultrasound, Microbubbles, and Surface Elastic Waves - Surface Treatment Technology -

Ultrasound, Microbubbles, and Surface Elastic Waves - Surface Treatment Technology -

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Ultrasonic oscillation control at megahertz and optimization technology of surface acoustic waves based on the classification of ultrasonic propagation phenomena.

Ultrasonic oscillation control at megahertz and optimization technology of surface acoustic waves based on the classification of ultrasonic propagation phenomena.

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Ultrasonic cleaning technology using ultrasound and fine bubbles - Ver4

Ultrasonic cleaning technology using ultrasound and fine bubbles - Ver4

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Know-how <Installation of ultrasonic transducers, degassing, microbubble generation liquid circulation> - Ver2

Know-how <Installation of ultrasonic transducers, degassing, microbubble generation liquid circulation> - Ver2

TECHNICAL
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Surface Inspection Technology Using Oscillation Control of Ultrasonic Probes - Ver4

Surface Inspection Technology Using Oscillation Control of Ultrasonic Probes - Ver4

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Technology for Adding Megahertz Ultrasonic Waves to Ultrasonic Cleaners - Ver2

Technology for Adding Megahertz Ultrasonic Waves to Ultrasonic Cleaners - Ver2

TECHNICAL
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Deaeration fine bubble generation liquid circulation system used in the <Ultrasonic Dynamic System> - Ver3

Deaeration fine bubble generation liquid circulation system used in the <Ultrasonic Dynamic System> - Ver3

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Technology for controlling two types of ultrasonic probes from a single oscillation channel - Ver3

Technology for controlling two types of ultrasonic probes from a single oscillation channel - Ver3

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Function generator oscillation of ultrasonic transducer (megahertz sweep oscillation technology) - Ver5

Function generator oscillation of ultrasonic transducer (megahertz sweep oscillation technology) - Ver5

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Analysis and evaluation of ultrasonic sound pressure data (evaluation technology for ultrasonic propagation state based on interaction, response characteristics, and nonlinearity)

Analysis and evaluation of ultrasonic sound pressure data (evaluation technology for ultrasonic propagation state based on interaction, response characteristics, and nonlinearity)

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Ultrasound sound pressure data analysis: autocorrelation and bispectrum - Ver3

Ultrasound sound pressure data analysis: autocorrelation and bispectrum - Ver3

TECHNICAL
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Optimization and evaluation technology related to water tanks, ultrasound, and liquid circulation.

Optimization and evaluation technology related to water tanks, ultrasound, and liquid circulation.

TECHNICAL
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Technology for adding megahertz ultrasound to ultrasonic cleaners—dynamic control of ultrasound based on acoustic pressure measurement analysis.

Technology for adding megahertz ultrasound to ultrasonic cleaners—dynamic control of ultrasound based on acoustic pressure measurement analysis.

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About ultrasonic sound pressure data and sound pressure graphs.

About ultrasonic sound pressure data and sound pressure graphs.

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Deaeration fine bubble generation liquid circulation device - Technology for uniformity of cleaning solution and acoustic flow control -

Deaeration fine bubble generation liquid circulation device - Technology for uniformity of cleaning solution and acoustic flow control -

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Sweep oscillation technology using ultrasonic probes

Sweep oscillation technology using ultrasonic probes

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Ultrasonic Oscillation System of Megahertz Ultrasonic Waves (Catalog) 2025.01.07

Ultrasonic Oscillation System of Megahertz Ultrasonic Waves (Catalog) 2025.01.07

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Dynamic Control Technology of Megahertz Ultrasonic - Ver2

Dynamic Control Technology of Megahertz Ultrasonic - Ver2

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News about this product(101)

Function generator oscillation of the ultrasonic transducer.

Function generator oscillation of ultrasonic transducer.

  • Company news

The Ultrasonic System Research Institute is applying measurement, analysis, and evaluation techniques related to the propagation state of ultrasound to publish technology that relaxes the surface residual stress of ultrasonic transducers using ultrasound and fine bubbles. This technology for relaxing surface residual stress has made it possible to improve fatigue strength against metal fatigue. As a result, the effects on various components, including ultrasonic tanks, have been demonstrated. Ultrasonic Probe: Outline 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 acoustic pressure data analysis) Materials: Stainless steel, LCP resin, silicon, Teflon, glass, etc. Oscillation Equipment: Example - Function Generator Measurement Equipment: Example - Oscilloscope By controlling oscillation, we achieve propagation states tailored to the objectives regarding sound pressure level, frequency, and dynamic characteristics. Ultrasonic Propagation Characteristics 1) Detection of vibration modes (changes in self-correlation) 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)

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Dynamic control of ultrasound

Dynamic control technology of megahertz ultrasound - Nonlinear control technology of ultrasound using multiple function generators.

  • Company news

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

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Measurement, analysis, and evaluation of ultrasonic propagation conditions.

Technology for evaluating nonlinear phenomena of ultrasound

  • Company news

The Ultrasonic System Research Institute conducts consulting related to the use of ultrasound by utilizing 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 using ultrasonic testers in a time series, we have developed a new evaluation standard (nonlinear phenomenon analysis parameters) that indicates the state of ultrasound suitable for the purpose. Note: - Nonlinear characteristics (harmonic generation characteristics) - Response characteristics - Fluctuation characteristics - Effects due to interactions Ultrasonic propagation characteristics: 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)

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Ultrasonic oscillation system (20 MHz)

Ultrasonic Oscillation System (20MHz) Catalog 2025.01.07

  • Product news

The Ultrasonic System Research Institute manufactures and sells an "Oscillation System (20MHz)" that allows for easy control of megahertz ultrasonic oscillation. System Overview (Ultrasonic Oscillation System (20MHz)) Contents (20MHz Type) - Two ultrasonic oscillation probes - One set of function generator - One set of operation manual (USB memory) Features (20MHz Type) - Ultrasonic oscillation frequency Specification: 20kHz to 25MHz - Output range: 5mVp-p to 20Vp-p - Sampling rate: 200MSa/s This system utilizes commercially available function generators. We will propose a quoted price with a function generator set according to your needs. Standard Reference Example - Oscillation System 20MHz: 100,000 yen (including 10% consumption tax) and up - The price of the function generator varies depending on the model.

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超音波システム研究所

超音波システム研究所

Service Industry

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The Ultrasonic System Research Institute conducts the following activities with its original product: ultrasonic systems (sound pressure measurement analysis, oscillation control): 1) Manufacturing and sales of ultrasonic systems (sound pressure measurement analysis, oscillation control) 2) Consulting services for various equipment (Note): cleaning machines, stirring devices, processing equipment, machine tools, plating devices, welding devices, etc. Ultrasonic System (Sound Pressure Measurement Analysis, Oscillation Control) We manufacture and sell a system that combines the "Ultrasonic Tester NA (recommended type)" for easy measurement and analysis of ultrasonic waves and the "Ultrasonic Oscillation System (1 MHz, 20 MHz)" for easy oscillation control. <Patent Applications Filed> Patent Application No. 2021-125866: Ultrasonic Control (Ultrasonic Oscillation Control Probe) Patent Application No. 2021-159990: Ultrasonic Welding Patent Application No. 2021-161532: Ultrasonic Plating Patent Application No. 2021-171909: Ultrasonic Processing Patent Application No. 2021-175568: Flow-type Ultrasonic Cleaning Some of the manufacturing technology for the ultrasonic oscillation control probe is described in Patent Application No. 2021-125866. Patent Application No. 2023-195514: Ultrasonic Plating Using Megahertz Ultrasonic Waves and Fine Bubbles.

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COPYRIGHT © 2001-2025 IPROS CORPORATION ALL RIGHTS RESERVED.
Please note that the English text on this page is automatically translated and may contain inaccuracies.