- Technology for controlling nonlinear vibration phenomena through oscillation control of original ultrasonic probes -
The Ultrasonic System Research Institute has developed oscillation control technology based on the acoustic characteristics of probes through the manufacturing technology of original ultrasonic probes. This has evolved into technology for controlling the nonlinear vibration phenomena of surface acoustic waves. The key point is the optimization control method for ultrasonic oscillation control tailored to the propagation characteristics of surface acoustic waves on the surface of ultrasonic elements and their intended use (conditions for combining sweep oscillation and pulse oscillation). To achieve this, it is important to dynamically evaluate the propagation state of ultrasound through operational verification of the ultrasonic propagation characteristics of the original probe (sound pressure level, frequency range, nonlinearity, dynamic characteristics, etc.). In particular, it is necessary to measure, analyze, and evaluate the dynamically changing oscillation characteristics of the ultrasonic probe (or element) and the oscillator (function generator) regarding their transmission and reception characteristics. 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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basic information
Currently, we are able to respond to the following range: Ultrasonic Probe: Outline Specifications - Measurement Range: 0.01 Hz to 200 MHz - Oscillation Range: 0.5 kHz to 25 MHz - Propagation Range: 0.5 kHz to over 900 MHz (confirmed through analysis) - Materials: Stainless steel, LCP resin, silicone, Teflon, glass, etc. - Oscillation Equipment: Example - Function Generator For various targets (water tanks, transducers, probes, fixtures, objects, etc.), by confirming the basic acoustic characteristics of ultrasound (response characteristics, propagation characteristics), we achieve ultrasonic propagation conditions tailored to the intended use through oscillation control. By setting the oscillation conditions for sweep oscillation and pulse oscillation using two or more nonlinear resonant-type ultrasonic oscillation control probes, we dynamically control high sound pressure level resonance phenomena and high-frequency propagation states above 100 MHz due to nonlinear phenomena (generation of harmonics of the 10th order and above). There is an increasing number of applications in ultrasonic cleaning, processing, stirring, chemical reactions, and more.
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Applications/Examples of results
2008. 8 Established the Ultrasonic System Research Institute ... 2012. 1 Started manufacturing and selling ultrasonic measurement and analysis systems (Ultrasonic Tester NA) ... 2024. 6 Developed optimization and evaluation technology related to tanks, ultrasound, and liquid circulation 2024. 7 Developed an ultrasonic probe using components with iron plating on polyimide film 2024. 8 Developed a "megahertz ultrasonic control" method applying Shannon's juggling theorem 2024. 9 Developed acoustic flow control technology using a portable ultrasonic cleaner 2024. 10 Developed "vibration technology" utilizing megahertz ultrasound 2024. 10 Developed an ultrasonic oscillation control probe using a stainless steel vacuum double-structure container 2024. 11 Developed megahertz flow-type ultrasonic (underwater shower) technology 2024. 11 Developed ultrasonic sound pressure data analysis and evaluation technology considering interaction and response characteristics 2024. 12 Developed nonlinear oscillation control technology for ultrasonic probes 2024. 12 Developed surface inspection technology based on ultrasonic propagation conditions 2025. 1 Developed a megahertz flow-type ultrasonic system using a degassing fine bubble generation liquid circulation device
Detailed information
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Ultrasonic Oscillation (Sweep Oscillation, Pulse Oscillation) Know-How -- Technology for Controlling Nonlinear Phenomena of Ultrasound --
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Ultrasonic Oscillation (Sweep Oscillation, Pulse Oscillation) Know-How -- Technology for Controlling Nonlinear Phenomena of Ultrasound --
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Ultrasonic Oscillation (Sweep Oscillation, Pulse Oscillation) Know-How -- Technology to Control Nonlinear Phenomena of Ultrasound --
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Ultrasonic Oscillation (Sweep Oscillation, Pulse Oscillation) Know-how -- Technology to Control Nonlinear Phenomena of Ultrasound --
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Ultrasonic Oscillation (Sweep Oscillation, Pulse Oscillation) Know-How -- Technology for Controlling Nonlinear Phenomena of Ultrasound --
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Ultrasonic control technology applied with the mathematical theory of communication - Dynamic control model of ultrasound -
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Ultrasonic Oscillation (Sweep Oscillation, Pulse Oscillation) Know-How --Technology for Controlling Nonlinear Phenomena of Ultrasound--
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Ultrasonic Oscillation (Sweep Oscillation, Pulse Oscillation) Know-How -- Technology for Controlling Nonlinear Phenomena of Ultrasound --
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Ultrasonic Oscillation (Sweep Oscillation, Pulse Oscillation) Know-How --Technology for Controlling Nonlinear Phenomena of Ultrasound--
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Company information
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.