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Ultrasonic Cleaner(300) - List of Manufacturers, Suppliers, Companies and Products

Ultrasonic Cleaner Product List

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Tabletop Ultrasonic Cleaner WTC-404 / WTC-408

Equipped with four oscillation modes, achieving powerful cleaning with reduced unevenness.

■ Four cleaning modes can be selected according to the purpose. By choosing the appropriate cleaning mode, stable cleaning performance is achieved. ・STANDARD: Provides a cleaning process with minimal unevenness. It balances the features of both POWERFUL and MULTI modes. ・POWERFUL: Suitable for removing stubborn dirt by concentrating ultrasonic waves. ・MULTI: Ideal for precise cleaning that effectively removes dirt from hidden areas. ・BURST: Allows for energy-saving cleaning by intermittently emitting ultrasonic waves. ■ A simple design that combines functionality The clean form without protrusions from the drain valve and power cord eliminates wasted space for installation. The switch and power cord are located on the back, making it less likely to get wet. ■ Easy mode switching with button operation Timer, output, and temperature adjustments can be easily set with simple button operations.

  • Ultrasonic Cleaner

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Tabletop Ultrasonic Cleaner WTC-600-40/WTC-1200-40

Hands-free operation is possible with audio guidance and a photoelectric switch! A tabletop model with high output of 600W and 1200W.

■Tabletop model with high output (600W/1200W) ■Cleaning compatible with large equipment and machine parts has become possible. ■Adoption of photoelectric sensors and voice guidance in the control section. ■Operations can be confirmed via voice guidance without touching the switch with wet or dirty hands. ■Automatic tracking with oscillation frequency and set output. ■Stable cleaning power is achieved. Additionally, there is an alarm display for oscillation abnormalities. ■In addition to the drainage cock, an overflow drain installation hole has been provided. ■Expansion to a circulation system has become easier.

  • Ultrasonic Cleaner

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Separate-type ultrasonic cleaner WSC series

Achieving reduced cleaning unevenness and energy savings with FM+AM oscillation method.

FM modulation... continuously varying the frequency of ultrasound. AM modulation... continuously varying the high-frequency output of ultrasound. AM modulation is resistant to fluctuations in load (work, liquid type, liquid depth), while FM modulation can equalize the ultrasound in the tank, allowing for high-efficiency and uniform cleaning. ■ Adopts FM (frequency modulation) + AM (output modulation). It is a high-efficiency, energy-saving type that reduces cleaning unevenness. ■ The size and weight of the oscillator have been compacted to one-third of conventional models (compared to our company). ■ When replacing with the same specification transducer unit, no adjustment of the oscillator is required, making maintenance easy. ■ A wide range of power control is possible according to the cleaning and processing purposes.

  • Ultrasonic Cleaner

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Separate Type Ultrasonic Cleaner WSC(M) Series

Industrial compact cleaning machine for manufacturing lines, equipment integration, and space-saving solutions.

■We can manufacture the vibrator in the desired size. ■You can choose the combination of input voltage (100V or 200-230V) and ultrasonic frequency (28/40kHz). ■Remote control via external input is possible. ■It supports continuous operation for 24 hours.

  • Ultrasonic Cleaner

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Separate-type ultrasonic cleaner WDX series

Achieve both uniform cleaning and damage reduction! From soft cleaning to hard cleaning, you can obtain optimal cleaning power tailored to your needs.

■ Our unique "DynaShock Modulation (DM) method," made possible by full digital technology, allows for optimal cleaning power tailored to applications, ranging from soft to hard cleaning. * The DM (DYNASHOCK MODULATION) method is an oscillation method that controls the ultrasonic power ratio (modulation degree) generated simultaneously at two frequencies from the same transducer while maintaining a constant total output power, achieving optimal cleaning power from soft to hard cleaning. ■ By selecting the DM modulation degree, uniform ultrasonic waves with high sound pressure can be generated throughout the tank, enabling consistent cleaning without unevenness. ■ Various functions have been realized through digital control. - Achieving optimal cleaning: Stable cleaning is possible through optimal frequency control and ultrasonic output control. - Improved maintainability: No adjustment of the oscillator is required when replacing the transducer unit. - Wide power input range: Supports power input of AC200V to AC240V ±10%. - Monitoring function: Management of output power is possible via the front panel display. - Abnormal diagnosis function: An error message indicating the cause of the abnormality is displayed when an issue occurs. - Sweep function: Enables even more uniform ultrasonic cleaning.

  • Ultrasonic Cleaner

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Ultrasonic Testing Imaging Device HA-60A

Achieving improved operability and high-precision non-destructive testing.

■ The simultaneous display of three modes (A, B, C scopes) makes defect determination easier. ■ You can select a frequency suitable for the work (high-performance polymer concave ultrasonic transducer). ■ A Scope This represents the received sound pressure at the transducer and the propagation time of the ultrasound in a rectangular coordinate system. It allows you to grasp the reflected sound pressure from abnormal areas and the depth from the testing surface. ■ B Scope - Cross-sectional Image The A Scope waveform is represented as a line through brightness modulation, plotted in a rectangular coordinate system with the position (1D) on the sample under the transducer and the sound wave propagation time. The distribution, presence, and depth of abnormal areas under the transducer's scanning line are displayed, allowing for an intuitive understanding of the cross-sectional view. ■ C Scope - Planar Image The presence or absence of abnormal areas or reflected sound pressure under the transducer is brightness modulated (corresponding to taking a point on the sound wave propagation time axis of the B Scope image), plotted in a rectangular coordinate system with the position (2D) on the sample under the transducer. This method involves setting a gate or sampling point on the sound wave propagation time axis before recording and displaying. It provides a clear understanding of the distribution of planar abnormalities, making it suitable for testing flat materials. By changing the slice level, you can also determine changes in defect depth direction.

  • Flaw detection testing

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