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  6. Ultrasonic sound pressure measurement analysis system (10MHz oscilloscope type)

Ultrasonic sound pressure measurement analysis system (10MHz oscilloscope type)

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Ultrasonic Tester NA (Oscilloscope 10MHz Type)

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

Ultrasound measurement and analysis can be easily performed with the ultrasound tester NA (10MHz oscilloscope type).

The Ultrasonic System Research Institute (located in Hachioji City, Tokyo) has developed the Ultrasonic Tester NA (100MHz oscilloscope type), which makes ultrasonic measurement and analysis easy. Features (Standard Specifications) - Measurement (Analysis) Frequency Range: 0.1Hz to 10MHz - Ultrasonic Oscillation: 1Hz to 1MHz - 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 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.

    Other analytical equipment
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Ultrasonic sound pressure measurement analysis system (10MHz oscilloscope type)

IMG_9593.jpg
IMG_9593.jpg
  • Related Link - http://ultrasonic-labo.com/?p=17972

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basic information

System Overview (Ultrasonic Tester NA 10MHz Type) 1. Price: 198,000 yen (including tax: 10% consumption tax) 2. Contents - Dedicated probe for measuring sound pressure of ultrasonic cleaners: 1 unit Model number: 120A16: Type A Cable length: 1000 mm Tip (stainless steel): 130 mm Weight: 76 g Cable thickness: Diameter 3 mm (Reference standard: ICE-61010 CATII) - General-purpose ultrasonic measurement probe: 1 unit Model number: 120B25: Type C Cable length: 1000 mm Tip (piezoelectric element): Diameter 22 mm Weight: 40 g, Connection plug: BNC Cable thickness: Diameter 3 mm (Reference standard: ICE-61010 CATII) - Oscilloscope set: 1 set (• Bandwidth (-3dB): 10MHz • Maximum sampling rate: 100MS/s) Analysis software, manual, and various installation sets: 1 set 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 4) Detection of interactions

Price information

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

Price range

P3

Delivery Time

P4

Applications/Examples of results

Sound pressure measurement of ultrasonic cleaning machines Improvements to ultrasonic cleaning machines Applications of ultrasonic cleaning machines August 2008: Establishment of the Ultrasonic System Research Institute ... January 2012: Start of manufacturing and sales of ultrasonic measurement and analysis systems (Ultrasonic Tester NA) ... April 2024: Development of optimization technology for resonance and nonlinear phenomena May 2024: Development of optimization technology related to the combination of sound and ultrasound June 2024: Development of optimization and evaluation technology concerning water tanks, ultrasound, and liquid circulation July 2024: Development of an ultrasonic probe using components with iron plating on polyimide film August 2024: Development of a "megahertz ultrasonic control" method applying Shannon's juggling theorem September 2024: Development of acoustic flow control technology using portable ultrasonic cleaners October 2024: Development of "vibration technology" utilizing megahertz ultrasound October 2024: Development of an ultrasonic oscillation control probe using a stainless steel vacuum double-structure container November 2024: Development of megahertz flow-type ultrasound (underwater shower) technology November 2024: Development of ultrasonic sound pressure data analysis and evaluation technology considering interaction and response characteristics

Detailed information

  • IMG_7268.jpg

    Ultrasonic sound pressure measurement analysis system (10MHz oscilloscope type)

  • IMG_5837.jpg

    Ultrasonic sound pressure measurement analysis system (10MHz oscilloscope type)

  • IMG_7984.jpg

    Ultrasonic sound pressure measurement analysis system (10MHz oscilloscope type)

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    Ultrasonic sound pressure measurement analysis system (oscilloscope 10MHz type)

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    Ultrasonic probe oscillation control technology

  • IMG_2639.jpg

    Ultrasonic oscillation control technology utilizing nonlinear vibration phenomena of surface elastic waves in wire materials.

  • 1249193d20023sss.jpg

    Ultrasound system

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    Ultrasound system

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News about this product(61)

Ultrasonic probe using a component with iron plating on polyimide film.

Ultrasonic probe using a component with iron plating on polyimide film (technology utilizing ultrasonic propagation characteristics of iron plating)

  • Product news

The Ultrasonic System Research Institute has developed an ultrasonic oscillation control probe using components coated with iron on polyimide film. By applying this technology, we provide consulting services for "ultrasonic and vibration measurement, propagation control..." for 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 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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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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Megahertz ultrasonic control

Ultrasonic control method in megahertz using Shannon's juggling theorem.

  • Product news

The Ultrasonic System Research Institute has developed an application technology based on Shannon's juggling theorem, using classification methods related to ultrasonic propagation phenomena derived from bispectral analysis results of ultrasonic sound pressure measurement data. Specifically, we have developed an original product: a "method for controlling the oscillation of megahertz ultrasonic waves" using an ultrasonic oscillation control system. This technology is offered through consulting proposals and implementation support. To utilize ultrasonic propagation phenomena stably and efficiently, it is necessary to examine the response characteristics and interactions related to conditions other than ultrasonic oscillation devices and ultrasonic transducers, as well as to develop dedicated tools. By examining the oscillation waveforms and control conditions of ultrasonic waves, we can discover new ultrasonic effects (Note 1: original nonlinear resonance phenomena). By utilizing ultrasonic phenomena primarily driven by nonlinear effects according to specific purposes, efficient ultrasonic utilization can be achieved. In particular, there has been an increase in achievements in nano-level ultrasonic technologies (stirring, cleaning, etc.). Note 1: Original nonlinear resonance phenomenon This phenomenon occurs due to the generation of harmonics resulting from original oscillation control, which is realized at high amplitudes through resonance phenomena, leading to ultrasonic vibration resonance phenomena.

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Abstract algebra model

Development of "Ultrasonic Control Technology" using Abstract Algebra Models

  • Product news

Development of "Ultrasonic Control Technology" using Abstract Algebra Models This technology has been realized through the combination of the following techniques, which have been developed through research on ultrasonic interactions with liquids, gases, and solids (elastic bodies): * "Simultaneous irradiation" technology using multiple different frequency oscillators * Application technology of "elastic waves" utilizing indirect containers * "Standing wave control" technology through methods of fixing oscillators * Technology utilizing "nonlinear phenomena of ultrasound" * "Ultrasonic measurement and analysis" technology through feedback analysis of time-series data * Statistical processing technology of "dynamic systems" related to liquid circulation * Ultrasonic welding technology tailored to the bonding state of the target object .... The above technologies are organized and developed as an abstract algebra model of ultrasound (Monoid: category of monoids). (Note): The entire phenomenon of basic ultrasonic oscillation is treated as a Ring (category of rings), while phenomena caused by cavitation (primarily based on oscillation frequency) are categorized as "category of Abelian groups." Phenomena caused by acceleration and acoustic flow (primarily based on frequency changes) are modeled as "Monoid (a unital algebra with a multiplicative identity)."

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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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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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