Ultrasonic Cleaner(200w) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
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Ultrasonic Cleaner Product List

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Multi-frequency ultrasonic cleaning machine "US-WS Series"

Three different frequency selections are available! An ultrasonic cleaner that can perform cleaning with various ultrasonic effects.

The "US-WS Series" is a tabletop multi-frequency ultrasonic cleaning machine capable of a wide range of cleaning, from rough and strong cleaning to fine and gentle cleaning. The ultrasonic oscillation employs a bolt-tightened Langevin-type transducer with high cleaning power. The wetted parts are made of stainless steel with excellent corrosion resistance, allowing for cleaning by switching between various frequencies or selecting a single frequency. Thanks to microcomputer control, the set time, temperature, and selected frequency are remembered during cleaning. 【Features】 ■ Capable of a wide range of cleaning ■ Ultrasonic oscillation uses a bolt-tightened Langevin-type transducer with high cleaning power ■ Wetted parts are made of stainless steel with excellent corrosion resistance ■ Allows for cleaning by switching between various frequencies or selecting a single frequency ■ Microcomputer control remembers the set time, temperature, and selected frequency during cleaning *For more details, please refer to the PDF document or feel free to contact us.

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Ultrasonic Finishing Device 'SONOFILE (SF-355)'

The classic of simple ultrasonic polishing!

The "SONOFILE.(SF-355)" is an ultrasonic finishing device composed of the oscillator "SF-355" and the ultrasonic handpiece "HP-9704." Compared to conventional models, the maximum output has increased from 30W to 45W, achieving a natural polishing effect. Additionally, it is compact yet capable of performing rough cutting to fine polishing. 【Features】 ■ Maximum output of 45W ■ Ultrasonic oscillation can be turned ON/OFF with a footswitch ■ Lightweight handling due to a small vibrator ■ Capable of rough cutting with an integrated tool and fine polishing with a clamp tool ■ The handpiece can be air-cooled, allowing for continuous operation by reducing heat generation *For more details, please download the PDF or contact us.

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CCD Image Imaging High-Throughput Bioluminescence Measurement Analysis System

Large-scale measurement analysis is possible! Ultra-high-throughput measurement analysis system.

This is a luminescence measurement analysis system that automatically measures the gene expression of a large number of biological samples over a long period of time, from several days to more than a week, using the "bioluminescence real-time measurement method." It is equipped with a high-sensitivity CCD and can accommodate various sample shapes, such as microplates, petri dishes, test tubes, and individual organisms (up to an area of A4 and a height of 13 cm). High-speed processing has been achieved through proprietary technology. When using a 96-well plate, it is possible to measure 19,200 samples at 100-minute intervals. 【Features】 ○ Real-time measurement of various shaped samples through image imaging ○ Ensures excellent operational stability by adopting proven industrial robot technology in the control system ○ High-speed processing made possible by proprietary technology ○ Sample transport robots are custom-made according to the measurement samples and applications ○ Operation can be easily performed using software on a PC For more details, please contact us or download the catalog.

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Test machine available: "Vapor Cleaning Machine SRS505 (Solvent Specification)"

Ideal for cleaning and drying metalworking/automotive parts! A low-cost steam cleaner with excellent drying capabilities.

The "Vapor Cleaning Machine SRS505" is an optimal steam cleaner for removing dirt such as oils, as well as for cleaning and drying metal processing and automotive parts. By using steam for cleaning, it achieves a significant improvement in cleaning efficiency. It also excels in drying, eliminating the need for additional drying processes. =============================== We also have test machines available for you to experience the performance firsthand. Please feel free to contact us. =============================== 【Features】 ■ Excellent cleaning and drying effects ■ Low-cost type with minimal functions ■ High recovery cooling design considering harmful gas leakage ■ Distillation regeneration possible with valve switching *For more details, please download the catalog or contact us.

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Touchless Ultrasonic Cleaner - WTC Series

You can operate the machine by holding your hand over it without touching it, using "Drive" and "Stop."

Introducing the touchless ultrasonic cleaning machines 'WTC-600-40/WTC-1200-40' handled by Nisshin Kiko Co., Ltd. Equipped with photoelectric sensors and voice guidance in the control panel, it allows for easy operation without touching the switches with wet or dirty hands, following the voice instructions. It provides stable cleaning that is less affected by variations in liquid type and liquid depth. 【Features】 ■ Utilizes photoelectric sensors and voice guidance in the control panel ■ Can start and stop without contact ■ Easy operation following voice guidance ■ Available in two models: 600W and 1200W ■ Provides stable cleaning that is less affected by variations in liquid type and liquid depth *For more details, please refer to the PDF document or feel free to contact us.

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Ultrasonic Finishing Device 'SonoCraft (ST-360)'

A multi-device that can be used for various purposes by changing the attachment tools.

The "SonoCraft (ST-360)" is an ultrasonic finishing device composed of the oscillator "ST-360" and the ultrasonic handpiece "HP-9706." It supports fine work with a variety of vibration patterns suitable for engraving tasks, allowing for decoration as if painting. 【Features】 ■ Four oscillation modes can be selected: single pulse (-), intermittent (patterns of --- and ----), and continuous (―) ■ The oscillation time during intermittent mode can also be adjusted ■ A wide range of lineup allows for rough cutting with integrated tools and fine polishing with clamp tools ■ The handpiece can be air-cooled, enabling continuous operation by reducing heat generation ■ Not only suitable for engraving work but also for circuit board repairs and archaeological tasks *For more details, please download the PDF or contact us.

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Ultrasonic propagation control technology at frequencies above 900 MHz due to oscillation below 20 MHz.

Technology for controlling megahertz sweep oscillation using a technique for adjusting the piezoelectric elements of original ultrasonic probes.

Development of technology to enable ultrasonic propagation states above 900 MHz (sweep oscillation control technology using original ultrasonic probes) The Ultrasonic System Research Institute has developed: - Measurement technology for ultrasonic propagation states (original product: ultrasonic tester) - Analysis technology for ultrasonic propagation states (nonlinear analysis system for time-series data) - Optimization technology for ultrasonic propagation states (optimization processing of low-frequency vibrations and ultrasound) - Manufacturing technology and oscillation control technology for megahertz ultrasonic oscillation probes - Surface modification treatment technology using fine bubbles and ultrasound ... By applying the above technologies, we have developed a nonlinear oscillation control technology for ultrasound that enables the utilization of ultrasonic propagation states above 900 MHz. Note: Original nonlinear resonance phenomenon The generation of harmonics caused by original oscillation control has resulted in ultrasonic vibrations (resonance phenomena of harmonics above the 10th order) achieved through resonance phenomena that produce high amplitudes. For those interested in more details, please contact the Ultrasonic System Research Institute via email. Note: The propagation states above 900 MHz will be analyzed using sound pressure data.

  • Vibration and Sound Level Meter
  • Non-destructive testing
  • Other measuring instruments

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New model! Evolved standard model US-800 series

The first in the history of ultrasonic cleaners! A new series that allows for operational checks! A new tabletop ultrasonic cleaner incorporating new technology has arrived!

● Start-up inspection of the ultrasonic cleaner is possible  → Thanks to new technology, start-up inspection can be performed with a simple operation of just one switch  → Inspections are automatically conducted based on the manufacturer's shipping standards ● Various warning display functions  → Visualization of internal safety functions allows for quick detection of abnormalities   ・Equipped with a warning lamp to indicate heater abnormalities   ・Equipped with a maintenance lamp to inform results during start-up inspection ● Two types of cleaning modes are selectable  → Soft cleaning mode: Ideal for items like glass that require reduced damage  → Standard cleaning mode: Ideal for items like metal that require enhanced ultrasonic cleaning power ● With the advancement of new technology, cleaning time is possible for three times longer than conventional products  → Cleaning time can be selected from 1 minute to a maximum of 3 hours

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A technology/device that simultaneously irradiates multiple different "ultrasonic transducers."

Ultrasound is captured as a <ultrasound dynamic system>, and analysis and control are performed.

The Ultrasonic System Research Institute has applied and developed technology utilizing "ultrasonic transducers" of multiple different frequencies. The applied technology developed this time is a technique that changes the effects of cavitation and acceleration into a specific power spectrum of propagation frequency through the control of standing waves. With ultrasonic irradiation at frequencies of 28 + 72 kHz and an output of 200 W, it is possible to achieve a dispersion effect of 1 micron. Additionally, ultrasonic irradiation at frequencies of 28 + 40 kHz and an output of 280 W can clean without causing damage. Through original measurement and analysis technology of ultrasonic propagation states, we have confirmed that control states can be realized by the combination of transducers. This represents a new ultrasonic technology, which, including the general effects of ultrasonic dynamic characteristics, serves as a significant and distinctive operational technique for the development of new materials, stirring, dispersion, cleaning, chemical reaction experiments, etc., and is utilized and developed in consulting. We will provide consulting support regarding the logical explanation of the principles and specific methods (techniques).

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Utilization technology of rechargeable ultrasonic cleaner (50 kHz 10W)

Application of ultrasonic sound pressure measurement, analysis, and evaluation technology.

The Ultrasonic System Research Institute publishes experimental videos on ultrasonic utilization (control of acoustic flow) technology using rechargeable ultrasonic cleaners (50 kHz, 10 W) and tools (plastic containers, glass containers, stainless steel containers, etc.). Changes in ultrasonic propagation conditions are measured and analyzed with an ultrasonic tester. Sound pressure measurement device: Features of the ultrasonic tester (for the 100 MHz type) - Measurement (analysis) frequency range: Specification 0.1 Hz to 100 MHz - Ultrasonic oscillation: Specification 1 Hz to 1 MHz - Capable of measuring surface vibrations - Continuous measurement for 24 hours is possible - Simultaneous measurement of any two points - Measurement results displayed in graphs - Software for time-series data analysis included This is an oscillation, measurement, and analysis system using ultrasonic probes. For the measured data, we detect various acoustic characteristics considering position and state along with elastic wave propagation, and apply (control) them according to the purpose.

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  • Non-destructive testing
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Manufacturing, development, and consulting for ultrasonic cleaning machines.

Manufacturing, development, and consulting for ultrasonic cleaning systems tailored to tank sizes according to the purpose.

The Ultrasonic System Research Institute has developed measurement, analysis, and evaluation techniques regarding the effects of changes from standard sizes on ultrasonic propagation states for standard-type ultrasonic devices that allow for easy ultrasonic control. By applying this technology, we manufacture, develop, and provide consulting for ultrasonic systems tailored to the desired tank size. Device Overview * Ultrasonic System (Ultrasonic Cleaner) 1: Ultrasonic 2: Ultrasonic Tank 3: Circulation Pump (Deaeration and Microbubble Generation Liquid Circulation System) 4: Timer 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 Rate) 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

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Development and manufacturing technology of ultrasonic propagation tools based on the control of surface acoustic wave propagation.

We provide consulting services for the development methods of ultrasonic propagation tools tailored to various usage purposes. --Application of sound pressure measurement and analysis technology--

The Ultrasonic System Research Institute has developed manufacturing technology for ultrasonic probes that can control ultrasonic propagation states from 500 Hz to over 900 MHz, and has created new ultrasonic propagation tools. This technology is available for consulting. 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 By understanding the acoustic properties of metals, resins, glass, etc., we can achieve propagation states tailored to specific purposes regarding sound pressure level, frequency, and dynamic characteristics through oscillation control. This is a new foundational technology for precision cleaning, processing, stirring, and inspection based on measurement, analysis, and evaluation techniques for ultrasonic propagation states. By utilizing the acoustic properties (surface elastic waves) of various materials (such as glass containers), ultrasonic stimulation can be controlled for structures and machine tools weighing several tons, even in a 3000-liter water tank, with ultrasonic output below 20 W.

  • Water Treatment
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Ultrasonic oscillation control technology using two function generators.

Application technologies of measurement, analysis, and control using ultrasonic testers - sweep oscillation technology and pulse oscillation technology.

The Ultrasonic System Research Institute has developed a completely new dynamic control technology for ultrasound by utilizing two function generators. Through oscillation with two different waveforms (sweep), we have realized a technology to control the nonlinear phenomena of ultrasound. Note: Nonlinear (resonance) phenomena By generating (10th order and higher) harmonics through original oscillation control and resonating with low-frequency vibration phenomena, we have achieved the generation of high-amplitude harmonics, which is the nonlinear (resonance) phenomenon of ultrasonic vibrations. By optimizing the ultrasonic propagation characteristics of various materials according to their intended use, efficient ultrasonic oscillation control becomes possible. Through the measurement and analysis of sound pressure data from ultrasonic testers, this is a system technology that controls the dynamic changes of surface elastic waves according to the intended purpose.

  • Scientific Calculation and Simulation Software
  • Vibration and Sound Level Meter
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Technology for controlling nonlinear vibration phenomena of ultrasound.

Evaluation technology for ultrasonic propagation conditions based on the measurement and analysis of sound pressure data.

The Ultrasonic System Research Institute has developed a completely new dynamic control technology for ultrasound by utilizing two function generators. This technology enables the control of nonlinear ultrasonic phenomena through oscillation (sweep) with two different waveforms. Note: Nonlinear (resonance) phenomena By generating higher harmonics (above the 10th order) 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 allows for the dynamic control of surface elastic wave changes according to the intended use. 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)

  • Scientific Calculation and Simulation Software
  • Vibration and Sound Level Meter
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(Customizable) Megahertz ultrasonic oscillation control probe

A megahertz ultrasonic oscillation control probe that enables the utilization of ultrasonic propagation conditions from 1 to 900 MHz.

The Ultrasonic System Research Institute has developed a megahertz ultrasonic oscillation control probe that enables the utilization of ultrasonic propagation states from 1 to 900 MHz by combining it with a function generator for controlling ultrasonic propagation states. This is a new application technology based on measurement, analysis, and evaluation techniques of ultrasonic propagation states for precision cleaning, processing, stirring, and inspection. By utilizing the acoustic properties (surface elastic waves) of various materials, ultrasonic stimulation can be controlled for structures and machine tools weighing several tons, even in a 3000-liter water tank, with ultrasonic output below 20W. 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 technology for utilizing surface elastic waves on the surface of ultrasonic elements. By confirming the propagation characteristics of ultrasonic waves depending on the conditions of the target object, it is important to address it as an original nonlinear resonance phenomenon. Note 1: Propagation characteristics of ultrasonic waves include nonlinear characteristics, response characteristics, fluctuation characteristics, and effects due to interactions.

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