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  6. Ultrasonic sound pressure measurement analysis system "Ultrasonic Tester NA"

Ultrasonic sound pressure measurement analysis system "Ultrasonic Tester NA"

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Ultrasonic Tester NA

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 measure, analyze, and evaluate the propagation state of ultrasound using an ultrasonic tester.

Features (for standard specifications) * Measurement (analysis) frequency range Specification: 0.1 Hz to 10 MHz * Ultrasonic oscillation Specification: 1 Hz to 100 kHz * Capable of measuring surface vibrations * Continuous measurement for 24 hours * Simultaneous measurement of any two points * Display of measurement results in graph form * Attached software for time series data analysis This is a measurement system using an ultrasonic probe. 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. Ultrasonic Probe: Outline Specifications Measurement range: 0.01 Hz to 10 MHz Oscillation range: 1 kHz to 25 MHz Propagation range: 1 kHz to over 900 MHz Materials: Stainless steel, LCP resin, silicone, Teflon, glass... 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)

    Non-destructive testingOther measuring instrumentsothers
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Ultrasonic sound pressure measurement analysis system "Ultrasonic Tester NA"

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  • Related Link - http://ultrasonic-labo.com/?p=16120

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basic information

Product for Sale 1 Ultrasonic Sound Pressure Measurement Analysis System "Ultrasonic Tester NA" Product Specifications System Overview (Recommended System: Ultrasonic Tester NA) 1. Price 10 MHz Type: 198,000 yen (tax included: 10% consumption tax) 2. Contents Dedicated probe for measuring sound pressure of ultrasonic cleaning machines: 1 unit General-purpose ultrasonic measurement probe: 1 unit Oscilloscope set: 1 set Analysis software, manual, and various installation sets: 1 set (USB memory) Product Description This is a set for controlling the sound pressure of ultrasonic cleaning machines. The installation set is included on the USB memory. It is a type that needs to be installed on the computer used. Contents Dedicated probe for measuring sound pressure of ultrasonic cleaning machines: 1 unit General-purpose ultrasonic measurement probe: 1 unit Oscilloscope set: 1 set Installation data (including analysis software and installation tools): 1 set Manual: 1 set

Price information

Price 10MHz type: 198,000 yen (including tax: 10% consumption tax)

Price range

P3

Delivery Time

Please contact us for details

※Usually within 2 weeks.

Applications/Examples of results

Utilization methods according to purpose are possible. Example 1: Sound pressure management in an ultrasonic tank Example 2: Confirmation of ultrasonic frequency in an ultrasonic cleaner Example 3: Confirmation of ultrasonic propagation state based on the cleaning target (material, quantity, tools, etc.) Example 4: Setting ultrasonic conditions in ultrasonic stirring .............. As a result of analyzing the ultrasonic propagation on the surfaces of various components, it has become possible to detect and address surface characteristics (stress, scratches, surface treatment conditions, etc.) and states/properties (uniformity, material, manufacturing method, structure, 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) Note: "R" is a free statistical processing language and environment autcor: Autocorrelation analysis function bispec: Bispectrum analysis function mulmar: Impulse response analysis function mulnos: Power contribution rate analysis function

Detailed information

  • 20241103v1.jpg

    Analysis and evaluation of ultrasonic sound pressure data considering interaction and response characteristics.

  • 20241103v2.jpg

    Analysis and evaluation of ultrasonic sound pressure data considering interaction and response characteristics.

  • 20241103v3.jpg

    Analysis and evaluation of ultrasonic sound pressure data considering interaction and response characteristics.

  • 20241107c.png

    Analysis and evaluation of ultrasonic sound pressure data considering interaction and response characteristics.

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    Maintenance and servicing using ultrasound.

  • 20241107e.png

    Analysis and evaluation of ultrasonic sound pressure data considering interaction and response characteristics.

  • 20240629bbc.png

    Classification of Ultrasound

  • IMG_7158.jpg

    Classification of vibration characteristics using ultrasound

  • 20241107a.png

    Analysis and evaluation of ultrasonic sound pressure data considering interaction and response characteristics.

catalog(28)

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

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

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Cleaning technology using ultrasound and fine bubbles (microbubbles) - Ver3

Cleaning technology using ultrasound and fine bubbles (microbubbles) - Ver3

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Ultrasound sound pressure data analysis: autocorrelation and bispectrum - Ver3

Ultrasound sound pressure data analysis: autocorrelation and bispectrum - Ver3

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Ultrasonic Shower (Acoustic Flow Control) Technology - Ver2

Ultrasonic Shower (Acoustic Flow Control) Technology - Ver2

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Dynamic Control Technology of Acoustic Flow - Ver3

Dynamic Control Technology of Acoustic Flow - Ver3

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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

TECHNICAL
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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

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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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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 Oscillation System (20 MHz) Catalog

Ultrasonic Oscillation System (20 MHz) Catalog

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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

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Online Seminar Text: Fundamentals of Ultrasonic Cleaning Technology and Troubleshooting

Online Seminar Text: Fundamentals of Ultrasonic Cleaning Technology and Troubleshooting

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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 Technology Utilizing Statistical Thinking - Ver2

Ultrasonic Technology Utilizing Statistical Thinking - Ver2

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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.

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Flow-type Ultrasonic System Technology Based on Ultrasonic Sound Pressure Measurement Analysis - Ver4

Flow-type Ultrasonic System Technology Based on Ultrasonic Sound Pressure Measurement Analysis - Ver4

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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.

TECHNICAL
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Development and manufacturing technology for new ultrasonic propagation tools utilizing plating technology (Nihon Barrel Industry Co., Ltd.) - Ver2

Development and manufacturing technology for new ultrasonic propagation tools utilizing plating technology (Nihon Barrel Industry Co., Ltd.) - Ver2

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Ultrasonic probe-based component inspection technology (application of nonlinear analysis techniques for sound pressure data)

Ultrasonic probe-based component inspection technology (application of nonlinear analysis techniques for sound pressure data)

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Ultrasonic sound pressure measurement analysis system "Ultrasonic Tester NA"

Ultrasonic sound pressure measurement analysis system "Ultrasonic Tester NA"

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Ultrasonic Testing of Plated Surfaces - Surface Inspection Technology Using Ultrasound -

Ultrasonic Testing of Plated Surfaces - Surface Inspection Technology Using Ultrasound -

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Ultrasound sound pressure measurement analysis system (ultrasound tester): Nonlinear analysis of ultrasound (bispectrum) operation manual.

Ultrasound sound pressure measurement analysis system (ultrasound tester): Nonlinear analysis of ultrasound (bispectrum) operation manual.

MANUAL
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Feedback Analysis Technique Using Multivariate Autoregressive Model No. 2

Feedback Analysis Technique Using Multivariate Autoregressive Model No. 2

TECHNICAL
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Ultrasound Technology (R Language) Utilizing Statistical Thinking

Ultrasound Technology (R Language) Utilizing Statistical Thinking

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Ultrasonic equipment's <sound pressure measurement, analysis, and evaluation> (onsite) service

Ultrasonic equipment's <sound pressure measurement, analysis, and evaluation> (onsite) service

TECHNICAL
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News about this product(99)

The process of cavitation and acoustic flow.

Optimization Process of Cavitation and Acoustic Flow - Control Technology of Original Ultrasonic System -

  • Company news

--Abstract Algebra Model and Ultrasonic Experimentation and Examination Cycle-- (Optimization Techniques for Resonance Phenomena and Nonlinear Phenomena) The Ultrasonic System Research Institute has developed ultrasonic <dynamic control> technology that optimizes the interaction of ultrasonic vibrations based on various analytical results of ultrasonic propagation states obtained through an original ultrasonic system (sound pressure measurement analysis and oscillation control) using an abstract algebra model. Note: Control of resonance phenomena (low harmonics) and nonlinear phenomena (high harmonics) is achieved by setting oscillation control conditions based on a logical model. Compared to previous control technologies, this technique establishes and implements optimal control states tailored to the purposes of ultrasonic applications (cleaning, stirring, processing, etc.) through new measurement and evaluation parameters (note) concerning the entire propagation path of ultrasonic vibrations, including various propagation tools. This is a method and technology that can be applied immediately, and we are proposing and responding to it as a consulting service (there is an increasing track record in precision cleaning, stirring, and processing at the nano level). Note: Parameters: Power spectrum, autocorrelation, bispectrum, power contribution ratio, impulse response characteristics, and others.

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Optimization technology for ultrasonic cleaning machines

Optimization techniques for the resonance phenomenon and nonlinear phenomena of ultrasonic cleaning machines—Analysis of ultrasonic sound pressure data: autocorrelation, bispectrum, power contribution rate, impulse response.

  • Product news

The Ultrasonic System Research Institute has developed a technology for ultrasonic <dynamic control> that optimizes the interaction of ultrasonic vibrations based on various analysis results of ultrasonic propagation states using an original ultrasonic system (sound pressure measurement analysis and oscillation control) and an abstract algebra model. Note: The control of resonance phenomena (low harmonics) and nonlinear phenomena (high harmonics) is achieved by setting oscillation control conditions based on a logical model. Compared to existing control technologies, this technique establishes and implements optimal control states tailored to the purposes of ultrasonic applications (cleaning, stirring, processing, etc.) through new measurement and evaluation parameters (note) related to the entire propagation path of ultrasonic vibrations, including various propagation tools. This is a method and technology that can be applied immediately, and we offer it as consulting services (there is an increasing track record of precision cleaning and stirring at the nano level). Note: Dynamic changes in the propagation state of tanks, transducers, target objects, and tools are measured, analyzed, and evaluated using original technology (ultrasonic testers).

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Ultrasonic tester

We provide manufacturing technology for ultrasonic sound pressure measurement analysis systems—evaluation technology for ultrasonic propagation characteristics.

  • Company news

The Ultrasonic System Research Institute manufactures and sells the "Ultrasonic Tester NA (Recommended Type)," which allows for easy measurement and analysis of ultrasonic waves. We provide manufacturing technology and data analysis and evaluation technology, including know-how for this system. System Overview (Recommended System: Ultrasonic Tester NA) 1. Price: 198,000 yen (including tax: 10% consumption tax) 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 3. Features (for standard specifications): * Measurement (analysis) frequency range: Specification: 0.1 Hz to 10 MHz * Ultrasonic oscillation: Specification: 1 Hz to 100 kHz * Capable of measuring surface vibrations * Continuous measurement for 24 hours is possible * Simultaneous measurement of any two points * Measurement results displayed in graphs * Analysis software for time-series data included 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

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Self-correlation and bispectrum

Analysis and evaluation of ultrasonic sound pressure data

  • Product news

The Ultrasonic System Research Institute conducts consulting related to the use of ultrasound by applying feedback analysis technology based on multivariate autoregressive models, utilizing a technique for measuring, analyzing, and evaluating the propagation state of ultrasound. By organizing the measurements, analyses, and results obtained using ultrasonic testers in chronological order, we establish and confirm new evaluation criteria (parameters) that indicate the appropriate state of ultrasound for specific purposes. Note: Nonlinear characteristics (dynamic characteristics of acoustic flow), response characteristics, fluctuation characteristics, effects due to interactions, etc. 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 detailed effects related to vibrational phenomena, referencing statistical mathematical concepts. As a result, there is an increasing number of cases demonstrating the effectiveness of new nonlinear parameters related to the propagation state of ultrasound and the surface of the target object, such as changes in bispectrum and changes in autocorrelation. In particular, evaluation cases related to cleaning, processing, and surface treatment effects lead to successful control and improvement based on good confirmations.

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Companynews list (582)

Company information

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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Phone number/address

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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