U.S. Solid JFFX00082 Manual

Ultrasonic vibrator

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Manual NO.: 9664
Ultrasonic Vibrator
The manual should be made available to all users of this equipment. For best
results and maximum durability of the equipment, carefully read and follow all
instructions. Failure to do so can lead to serious injury or catastrophic damage to
the user, machine, supplies, or surrounding areas. All safety suggestions must be
followed closely, and extreme precaution must be taken to ensure the proper
use of the equipment by only qualified personnel who have read this guide.
For questions or concerns, e-mail service@ussolid.com, visit www.ussolid.com

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  • Page 1 Manual NO.: 9664 Ultrasonic Vibrator The manual should be made available to all users of this equipment. For best results and maximum durability of the equipment, carefully read and follow all instructions. Failure to do so can lead to serious injury or catastrophic damage to the user, machine, supplies, or surrounding areas.
  • Page 2: Table Of Contents

    Contents I. Summary ................1 II. The Principle of Working ........... 2 III. Product Features .............. 7 IV. Precaution ................8 V. Working Environment ............11 VI. Maintenance ..............12 VII. Parameters ..............13 VII. Parameters ..............14 VII. Parameters ..............15 VIII. Operation ..............18 IX. Packing List ..............19 For questions or concerns, e-mail service@ussolid.com, visit www.ussolid.com...
  • Page 3: Summary

    I. Summary Ultrasonic Vibrator are indeed versatile tools with a wide range of applications in various fields. Their ability to induce cavitation in liquids and disrupt animal and plant tissues, as well as lyse microorganisms like yeast, bacteria, and spores, makes them valuable instruments in laboratories and industrial settings.
  • Page 4: The Principle Of Working

     Preparation of composite materials by dispersing nanomaterials  Homogenization mixing processes such accelerating dissolution, chemical reactions, synthesis, and oil-water emulsification Their multi-functionality and effectiveness in various processes make Ultrasonic Vibrator essential equipment for researchers and professionals working in these diverse fields. II.
  • Page 5 or probe. The ultrasonic power supply transforms the incoming single-phase 110 VAC, 60 Hz electricity into a 19-26 kHz alternating electrical signal. The system includes components such as a power rectifier, power switcher, frequency conversion system, power amplifier, phase-locked frequency automatic tracking device, power regulator, power detector, power protector device, and microcomputer controller.
  • Page 6 generate strong shear forces that can break or rupture cells. In fact, the cavitation forces are powerful enough to disrupt covalent bonds. As a result, ultrasonicators are effective tools for fragmenting high molecular weight DNA. When ultrasonic waves propagate in a liquid, their interaction with the medium causes physical and chemical changes, resulting in a series of mechanical, thermal, electromagnetic, and chemical ultrasonic effects, including...
  • Page 7 medium can produce a notable thermal effect.  Cavitation Effect: Tiny gas bubbles in the liquid vibrate under the influence of ultrasonic waves. When the sound pressure reaches a certain level, the bubbles rapidly expand and then suddenly collapse, generating a massive shock wave during the bubble closure.
  • Page 8  Chemical Effect: During the alternating cycle fluctuations of ultrasonic waves, small cavities generated in the liquid create high temperature and pressure moments at the brink of collapse, forming localized high-energy sites that trigger chemical reactions and significantly increase the reaction rates.
  • Page 9: Product Features

    III. Product Features  Automatically monitors frequency, with automatic sweep tracking between 19-26KHz.  Automatic energy compensation adjusts to the optimal frequency and output points based on sample flow-ability.  Three-dimensional exponential ultrasonic probe design enhances output efficiency compared to traditional probes and minimizes amplitude pole loss.
  • Page 10: Precaution

    IV. Precaution 1. Ensure that the equipment is placed in a clean, dry, and well-ventilated area to prevent damage and maintain optimal performance. 2. Handle the transducer with care to avoid any potential breakage or damage. 3. Allow the oscillator to cool down before use if it becomes hot during operation to prevent any potential hazards.
  • Page 11 This is a normal phenomenon caused by frequency sweeping. 7. It is recommended NOT to operate the equipment continuously for more than 1 hour. If continuous use exceeds 1-2 hours, or if prolonged operation is necessary, please be mindful of the following: ...
  • Page 12 8. The optimal immersion position for the ultrasonic probe is to submerge the first two sections into the liquid, up to the connection point between the ultrasonic transducer and the probe. Due to high power and small sample volume, splashing may occur, so it is recommended to immerse the first two sections.
  • Page 13: Working Environment

    V. Working Environment Based on the provided information, here are some key points about the working environment for the ultrasound equipment:  Environmental Temperature: recommended temperature range for the equipment is between 0-60 ℃.  Relative Humidity: The relative humidity should not exceed 85% at a temperature of 20 ℃.
  • Page 14: Maintenance

    solutions or mixtures of solutions. These specifications are important to ensure the proper functioning and efficiency of the ultrasound equipment. It is crucial to adhere to the recommended working environment conditions for optimal performance and longevity of the equipment. VI. Maintenance After each use, it is recommended to clean the ultrasonic probe (i.e., the titanium alloy part).
  • Page 15: Parameters

    VII. Parameters JFFX00080 JFFX00081 JFFX00082 Ultrasonic Power 480 W 600 W 750 W be set from 10% to 100% Power Regulation with a 10% increment Actual Power Consumption 160 W 200 W 250 W Frequency 20-26 KHz Voltage 110 V, 60 Hz...
  • Page 16: Parameters

    VII. Parameters JFFX00083 JFFX00084 JFFX00085 Ultrasonic 900 W 750 W 900 W Power Power be set from 10% to 100% Regulation with a 10% increment Actual Power 300 W 250 W 300 W Consumption Frequency 20-26 KHz Voltage 110 V, 60 Hz Length of 250 mm 275 mm...
  • Page 17: Parameters

    VII. Parameters JFFX00086 JFFX00087 JFFX00088 Ultrasonic 600 W 750 W 900 W Power Power be set from 10% to 100% Regulation with a 10% increment Actual Power 200 W 250 W 300 W Consumption Frequency 19-26 KHz Voltage 110 V, 60 Hz Length of 340 mm Amplitude...
  • Page 18 V. Structure ① Handle ② Screen ③ Ultrasonic Generator (Main Machine) ④ Power Adjustment Knob ⑤ Power Button For questions or concerns, e-mail service@ussolid.com, visit www.ussolid.com...
  • Page 19 V. Structure ⑥Time Display ⑩ Button to Turn Off Ultrasound ⑦Button to Reduce Time ⑪ Power Display/Frequency Display ⑧Button to Increase Time ⑫Amplitude ⑨ ⑬Ultrasonic Transducer Button to Turn On Ultrasound Note: Different models of vibrators have varying lengths. The pictures here simply identify the names of the different parts.
  • Page 20: Operation

    VIII. Operation 1. Use a cable to connect the ultrasonic generator to the ultrasonic vibration rod. 2. Plug in the power cord of the ultrasonic generator, and immerse the ultrasonic vibration rod into the solution. When securing the ultrasonic probe, be careful not to fix it in the area where ultrasonic vibrations occur.
  • Page 21: Packing List

    button for an additional 3 seconds to save your selection. 5. Press to set desired working time. can increases time, while can reduce time. Press ON button to start the process and OFF to pause it. While in use, the display window ⑪ shows the real-time frequency. IX.
  • Page 22 Contact US Company Name: U.S. Solid Address: 4560 Johnston Parkway, Cleveland, Ohio 44128 E-mail: service@ussolid.com For questions or concerns, e-mail service@ussolid.com, visit www.ussolid.com...

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