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  6. We provide manufacturing technology for ultrasonic sound pressure measurement analysis systems.

We provide manufacturing technology for ultrasonic sound pressure measurement analysis systems.

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Ultrasonic sound pressure measurement probe

last updated:Dec 03, 2024

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

We will disclose the manufacturing know-how of ultrasonic probes - applying feedback analysis technology, ultrasonic sound pressure data analysis technology.

The Ultrasonic System Research Institute manufactures and sells the "Ultrasonic Tester NA (Recommended Type)," which makes ultrasonic measurement and analysis easy. We provide manufacturing technology and data analysis evaluation technology, including know-how for this system. System Overview (Recommended System: Ultrasonic Tester NA) 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, manuals, and various installation sets Features: - Measurement (analysis) frequency range: Specification from 0.1 Hz to 10 MHz - Ultrasonic oscillation: Specification from 1 Hz to 100 kHz - Capable of measuring surface vibrations - Continuous measurement for 24 hours - Simultaneous measurement of any two points - Measurement results displayed in graphs - Analysis software for time-series data included This is a measurement system using ultrasonic probes. The ultrasonic probe is attached to the target object for oscillation and measurement. The measured data is analyzed considering position, state, and elastic waves, detecting various acoustic performances.

    Water TreatmentMeasurement and analysis equipment leasing and rentalothers
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We provide manufacturing technology for ultrasonic sound pressure measurement analysis systems.

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  • Related Link - http://ultrasonic-labo.com/?p=15285

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basic information

This is a new foundational technology based on measurement, analysis, and evaluation techniques of ultrasonic propagation states. 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. The key point is the surface elastic wave utilization technology of ultrasonic elements. Depending on the conditions of the target object, it is important to confirm the ultrasonic propagation characteristics (Note 1) and address it as an original nonlinear resonance phenomenon (Notes 2 and 3). Note 1: Ultrasonic propagation characteristics Nonlinear characteristics, response characteristics, fluctuation characteristics, effects due to interactions. Note 2: Original nonlinear resonance phenomenon The occurrence of harmonics generated by original oscillation control, realized at high amplitudes through resonance phenomena, resulting in ultrasonic vibration resonance phenomena. Note 3: Transient ultrasonic stress wave Confirmation of dynamic excitation and response characteristics in a changing system, verification of attenuation characteristics and changes in interactions over time, and analysis and evaluation of transient ultrasonic stress waves based on the above. Ultrasonic propagation characteristics: Detection of vibration modes (changes in self-correlation), detection of nonlinear phenomena (changes in bispectrum), detection of response characteristics (analysis of impulse response), detection of interactions (analysis of power contribution rates).

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Applications/Examples of results

* : Management of sound pressure in ultrasonic cleaning machines * : Confirmation of acoustic characteristics of precision parts * : Consideration of optimal cleaning methods * : Inspection of parts and assembly conditions * : Evaluation of acoustic characteristics * : Examination of cleaning effects * : Comparative study of ultrasonic devices .... 2024. 5 Develop optimization technology related to the combination of sound and ultrasound 2024. 6 Develop optimization and evaluation technology for tanks, ultrasound, and liquid circulation 2024. 7 Develop ultrasonic probes using iron-plated polyimide film components 2024. 8 Develop a "megahertz ultrasonic control" method applying Shannon's juggling theorem 2024. 9 Develop acoustic flow control technology using portable ultrasonic cleaners 2024. 10 Develop "vibration technology" using megahertz ultrasound 2024. 10 Develop ultrasonic oscillation control probes using stainless steel vacuum double-walled containers 2024. 11 Develop megahertz flow-type ultrasound (underwater shower) technology 2024. 11 Develop data analysis and evaluation technology for ultrasonic sound pressure considering interaction and response characteristics

Detailed information

  • IMG_9592.jpg

    Sound Pressure Measurement and Analysis System: Features of the Ultrasonic Tester * Measurement (Analysis) Frequency Range Specification: 0.1 Hz to 10 MHz (Standard Type) Specification: 0.01 Hz to 100 MHz (Special Type) * Ultrasonic Oscillation Specification: 1 Hz to 100 kHz (Standard Type) Specification: 1 Hz to 1000 kHz (Special Type) * Capable of measuring surface vibrations * Continuous measurement for 24 hours * Simultaneous measurement of any two points * Measurement results displayed in graphs * Software for time-series data analysis included

  • 1a041.jpg

    Megahertz Ultrasonic Oscillation Control Probe: Overview Specifications Measurement Range: 0.01 Hz to 100 MHz Oscillation Range: 0.1 kHz to 10 MHz Materials: Stainless steel, LCP resin, silicone, Teflon, glass... Oscillation Equipment: Example - Function Generator

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    Ultrasonic oscillation control probe

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    Manufacturing technology for components of sound pressure measurement ultrasonic probes (surface residual stress relaxation treatment using ultrasound and fine bubbles)

  • IMG_2771.jpg

    Manufacturing technology for components of sound pressure measurement ultrasonic probes (surface residual stress relaxation treatment using ultrasound and fine bubbles)

  • IMG_3021.JPG

    Manufacturing technology for components of sound pressure measurement ultrasonic probes (aging treatment using megahertz ultrasound)

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    Ultrasonic system (sound pressure measurement analysis, oscillation control)

  • IMG_0007kkk.jpg

    Ultrasound system (sound pressure measurement analysis, oscillation control)

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    Ultrasound system (sound pressure measurement analysis, oscillation control)

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Megahertz ultrasonic oscillation control probe (patent document)

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Manufacturing technology for ultrasonic oscillation control probes (ultrasonic propagation characteristic testing)

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Ultrasonic probe (curved surface compatible) using components with iron plating on polyimide film (Nihon Barrel Industry Co., Ltd.)

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Surface treatment Ver2 using sweep oscillation control from 3 MHz to 20 MHz.

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Ultrasonic sound pressure measurement analysis system "Ultrasonic Tester NA"

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Statistical Mathematics of Ultrasonic Data (Analysis using the free statistical processing language and environment "R")

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Ultrasound sound pressure data analysis: autocorrelation, bispectrum, power contribution rate, impulse response.

Ultrasound sound pressure data analysis: autocorrelation, bispectrum, power contribution rate, impulse response.

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Measurement, analysis, and evaluation of ultrasonic sound pressure data.

Measurement, analysis, and evaluation of ultrasonic sound pressure data.

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Ultrasonic cleaning (control of nonlinear phenomena) technology Ver3 - Precision cleaning technology using fine bubbles and acoustic flow -

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Electroplating Technology - Megahertz Ultrasonic Cleaning -

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Control technology for nonlinear ultrasonic sweep oscillation based on the classification of ultrasonic propagation phenomena.

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Nonlinear resonance-type ultrasonic oscillation probe

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Design and manufacturing technology for ultrasonic dedicated tanks.

Design and manufacturing technology for ultrasonic dedicated tanks.

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Ultrasonic oscillation control probe using a stainless steel container (Ver2)

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Feedback Analysis Technique Using Multivariate Autoregressive Model No. 2

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News about this product(33)

Vibration technology using megahertz ultrasonic waves

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

  • Company news

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.

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Ultrasound probe

Manufacturing Technology of Ultrasonic Probes - Application of Measurement, Analysis, and Evaluation Techniques for Ultrasonic Propagation States -

  • Company news

The Ultrasonic System Research Institute has developed manufacturing technology for ultrasonic probes that takes into account the acoustic characteristics related to the propagation state of ultrasound, based on the utilization results of our original product: the ultrasonic tester, for parts inspection and precision cleaning. This is a new technology related to the development of ultrasonic probes. It allows for the use of ultrasound (propagation state) tailored to measurement, oscillation, and control. In particular, there is an increasing number of new utilization results of ultrasonic vibrations for parts inspection and precision cleaning of small components, utilizing the response characteristics derived from the combination of oscillation and reception. Ultrasonic Probe: Overview 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, silicone, Teflon, glass, etc. Oscillation Equipment Example: Function Generator We offer "Ultrasonic Consulting" regarding the above technology. If you are interested in more details, please contact the Ultrasonic System Research Institute via email. Ultrasonic Propagation Characteristics Detection of Vibration Modes Detection of Nonlinear Phenomena Detection of Response Characteristics Detection of Interactions

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Ultrasonic probe using components with iron plating.

Developed an ultrasonic probe using components with iron plating on polyimide film (Nihon Barrel Industry Co., Ltd.).

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The Ultrasonic System Research Institute has developed an ultrasonic oscillation control probe using components with iron plating on polyimide film. We provide consulting services applying this technology for "ultrasonic and vibration measurement, propagation control..." on various curved surfaces. Ultrasonic Probe: Overview 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... Oscillation Equipment Example: Function Generator By understanding the acoustic characteristics of the target object and installation conditions, we have achieved dynamic control of surface elastic waves (propagation state). We realize propagation states tailored to various purposes (cleaning, stirring, etc.). 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) Iron Plating Treatment: Nippon Barrel Industry Co., Ltd. Address: 1-2-7 Shinonome, Minami-ku, Hiroshima City, 734-0022 Japan

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Surface modification technology

Surface modification technology using ultrasound and fine bubbles.

  • Product news

<< Deaeration Fine Bubble (Microbubble) Generation Liquid Circulation Device >> 1) By narrowing the suction side of the pump, cavitation is generated. 2) Cavitation causes bubbles of dissolved gas to form. The above describes the state of the deaeration liquid circulation device. 3) When the concentration of dissolved gas decreases, the bubble size of the dissolved gas due to cavitation becomes smaller. 4) Through appropriate liquid circulation, fine bubbles (microbubbles) of less than 20μ are generated. The above describes the state of the deaeration microbubble generation liquid circulation device. 5) When ultrasonic waves are applied to the above deaeration fine bubble (microbubble) generation liquid circulation device, the ultrasonic waves disperse and crush the fine bubbles (microbubbles), and when measuring the fine bubbles (microbubbles), the distribution amount of ultra-fine bubbles becomes greater than that of fine bubbles. The above state indicates that ultrasonic waves can be stably controlled. 6) In a state where ultrasonic waves can be stably controlled, the original product: a megahertz ultrasonic oscillation control probe is used to control the oscillation of ultrasonic waves in the megahertz range (1-20 MHz).

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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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