Ultrasonic Cleaner GUC2501 – 2.5L Stainless Steel Tank, Fast-Acting Deep Cleaning

    Description

    An ultrasonic cleaner offers fast and effective cleaning, reaching hard-to-reach places without causing mechanical damage, making it ideal for professionals like electronics technicians, beauticians, jewelers, and watchmakers.

    An ultrasonic cleaner is perhaps the only device that solves one of the fundamental maintenance problems – removing dirt. Modern ultrasonic cleaning technology ensures fast and effective cleaning. Ultrasonic energy reaches hard-to-reach places, generating a huge number of pressure waves in the cleaning solution that detach contaminants from the surface. The electronic cleaning process, thanks to the penetrating power of liquid bubbles, reaches every nook and cranny. The process takes only a few minutes.

    Ultrasonic cleaning prevents mechanical damage, which is particularly important in medicine. Ultrasonic technology is widely used in cleaning hard-to-reach parts. To transmit the acoustic wave, a fluid is necessary – most often water, in which ultrasound causes cavitation. Millions of small bubbles implode on the surface of the object being cleaned, mechanically detaching contaminants. Ultrasonic cleaning does not cause any damage or scratches, which can occur with manual cleaning.

    This product is especially recommended for electronics technicians, beauticians, jewelers, and watchmakers. The Geti GUC 2501 pressure washer is made of the highest quality materials and is CE certified. It features a large 2.5-liter tank and a strong, solidly constructed plastic housing. A removable basket is also included. The device is equipped with a convenient control panel with an LED display and five timer programs, allowing you to tailor the operation to your current needs.

    Applications:

    • Electronics: Cleaning all types of dirt from boards and components, removing solder paste and flux residues in through-hole and surface mount assembly, cleaning fiber optic connectors in the production process.
    • Cosmetics: Cleaning dental and surgical instruments.
    • Medicine: Cleaning dental and surgical instruments.
    • Jewelry and Watchmaking: Cleaning jewelry, clockworks, and tools.
    • Optics: Cleaning lenses, lenses, and precision mechanisms in microscopes and cameras; thoroughly cleaning eyeglasses without removing the lenses from their frames.
    • Numismatics: Cleaning polishing paste from exhibits, removing tarnish.
    • And wherever thorough non-mechanical cleaning is required.

    To increase cleaning efficiency, special fluids are used for ultrasonic cleaners. Fluid particles, which are rougher than water particles, adhere to vibrating water particles, and act like small brushes. There is a wide range of fluids available – from general-purpose ones to specialized ones designed to remove greasy contaminants (e.g., polishing pastes).

    Ultrasound is currently the most effective known cleaning method for all kinds of small objects. Sound waves are generated in the cleaning chamber, initiating the cavitation process. Pressure waves are created near the surface of the cleaned objects, gradually breaking off contaminant particles. A significant advantage of ultrasonic cleaners is that they do not cause damage to the cleaned surfaces. This is not guaranteed with any mechanical cleaning method.

    In ultrasonic cleaners, the medium transmitting the ultrasound is a liquid poured into the chamber. Besides transmitting the waves, the liquid also acts as a cleaning agent. Therefore, it should be selected appropriately for the intended use and the contaminants it will treat, for example, easily evaporating alcohol in electronics, gasoline in mechanics, cleaning and disinfecting products in medicine and cosmetics, or simply water and dishwashing liquid for less precise applications.

    Ultrasonic cleaners are primarily used professionally. Due to their properties, they are ideal for cleaning electronics, injectors and carburetors, printing heads, medical instruments, and much more.

    Fluids:

    While commonly available cleaning fluids can be used, a decrease in cleaning efficiency should be considered. A further increase in cleaning efficiency can be achieved by soaking in warm water. In addition to very high cleaning efficiency and reaching the most inaccessible details, ultrasonic cleaning causes absolutely no mechanical damage to the items being washed. The amount of fluid added and the soaking time are determined experimentally, depending on the number of components and the degree of soiling.

    Technical Data:

    • Power supply: 230V, 50Hz
    • Power consumption: 170 W / 0.75 A (max.)
    • Heating up to 60°C
    • 5 operating programs: (180 sec, 280 sec, 380 sec, 480 sec, 90 sec)
    • Control panel with LCD display
    • Ultrasound frequency: 35 kHz
    • Dimensions: 290 x 223 x 185 mm
    • Weight: approx. 2.5 kg
    • Protection class: IP20
    • Container size: 250 x 150 x 75 mm (L x W x H)
    Product form

    Ultrasonic Cleaner GUC2501 – 2.5L Stainless Steel Tank, Fast-Acting Deep Cleaning

      An ultrasonic cleaner offers fast and effective cleaning, reaching hard-to-reach places without causing mechanical damage, making it ideal for professionals... Read more

      €137,15

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          Description

          An ultrasonic cleaner offers fast and effective cleaning, reaching hard-to-reach places without causing mechanical damage, making it ideal for professionals like electronics technicians, beauticians, jewelers, and watchmakers.

          An ultrasonic cleaner is perhaps the only device that solves one of the fundamental maintenance problems – removing dirt. Modern ultrasonic cleaning technology ensures fast and effective cleaning. Ultrasonic energy reaches hard-to-reach places, generating a huge number of pressure waves in the cleaning solution that detach contaminants from the surface. The electronic cleaning process, thanks to the penetrating power of liquid bubbles, reaches every nook and cranny. The process takes only a few minutes.

          Ultrasonic cleaning prevents mechanical damage, which is particularly important in medicine. Ultrasonic technology is widely used in cleaning hard-to-reach parts. To transmit the acoustic wave, a fluid is necessary – most often water, in which ultrasound causes cavitation. Millions of small bubbles implode on the surface of the object being cleaned, mechanically detaching contaminants. Ultrasonic cleaning does not cause any damage or scratches, which can occur with manual cleaning.

          This product is especially recommended for electronics technicians, beauticians, jewelers, and watchmakers. The Geti GUC 2501 pressure washer is made of the highest quality materials and is CE certified. It features a large 2.5-liter tank and a strong, solidly constructed plastic housing. A removable basket is also included. The device is equipped with a convenient control panel with an LED display and five timer programs, allowing you to tailor the operation to your current needs.

          Applications:

          • Electronics: Cleaning all types of dirt from boards and components, removing solder paste and flux residues in through-hole and surface mount assembly, cleaning fiber optic connectors in the production process.
          • Cosmetics: Cleaning dental and surgical instruments.
          • Medicine: Cleaning dental and surgical instruments.
          • Jewelry and Watchmaking: Cleaning jewelry, clockworks, and tools.
          • Optics: Cleaning lenses, lenses, and precision mechanisms in microscopes and cameras; thoroughly cleaning eyeglasses without removing the lenses from their frames.
          • Numismatics: Cleaning polishing paste from exhibits, removing tarnish.
          • And wherever thorough non-mechanical cleaning is required.

          To increase cleaning efficiency, special fluids are used for ultrasonic cleaners. Fluid particles, which are rougher than water particles, adhere to vibrating water particles, and act like small brushes. There is a wide range of fluids available – from general-purpose ones to specialized ones designed to remove greasy contaminants (e.g., polishing pastes).

          Ultrasound is currently the most effective known cleaning method for all kinds of small objects. Sound waves are generated in the cleaning chamber, initiating the cavitation process. Pressure waves are created near the surface of the cleaned objects, gradually breaking off contaminant particles. A significant advantage of ultrasonic cleaners is that they do not cause damage to the cleaned surfaces. This is not guaranteed with any mechanical cleaning method.

          In ultrasonic cleaners, the medium transmitting the ultrasound is a liquid poured into the chamber. Besides transmitting the waves, the liquid also acts as a cleaning agent. Therefore, it should be selected appropriately for the intended use and the contaminants it will treat, for example, easily evaporating alcohol in electronics, gasoline in mechanics, cleaning and disinfecting products in medicine and cosmetics, or simply water and dishwashing liquid for less precise applications.

          Ultrasonic cleaners are primarily used professionally. Due to their properties, they are ideal for cleaning electronics, injectors and carburetors, printing heads, medical instruments, and much more.

          Fluids:

          While commonly available cleaning fluids can be used, a decrease in cleaning efficiency should be considered. A further increase in cleaning efficiency can be achieved by soaking in warm water. In addition to very high cleaning efficiency and reaching the most inaccessible details, ultrasonic cleaning causes absolutely no mechanical damage to the items being washed. The amount of fluid added and the soaking time are determined experimentally, depending on the number of components and the degree of soiling.

          Technical Data:

          • Power supply: 230V, 50Hz
          • Power consumption: 170 W / 0.75 A (max.)
          • Heating up to 60°C
          • 5 operating programs: (180 sec, 280 sec, 380 sec, 480 sec, 90 sec)
          • Control panel with LCD display
          • Ultrasound frequency: 35 kHz
          • Dimensions: 290 x 223 x 185 mm
          • Weight: approx. 2.5 kg
          • Protection class: IP20
          • Container size: 250 x 150 x 75 mm (L x W x H)

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