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Misonix S-4000 Ultrasonic Cleaner, Misonix (CAT#: STEM-GLE-0267-LGZ)

Highlights

1. In liquids, rapid vibration of the tip induces cavitation, formation of microscopic bubbles, and violent collapse. The collapse of thousands of cavitation bubbles releases enormous energy in the cavitation field. Erosion and impact of cavitation bubble collapse are the main mechanisms of fluid processing.
2. The diameter of the probe tip determines the amount of sample that can be efficiently processed. A smaller probe tip diameter (Microtip™ probe) provides high-intensity ultrasound, but the energy is concentrated in a small, concentrated area. Larger tip diameters can process larger volumes but provide lower strength.
3. Selection of generator and horn/probe to match volume, viscosity and other special application parameters. Horns can be used for direct and indirect ultrasound.

Cat Number: STEM-GLE-0267-LGZ

Application: For Cell disruption, Nanoparticle dispersion, Homogenization, Shearing DNA, Disaggregation, Focused cleaning, Mixing, Degassing, Catalyzing reactions.

Model: S-4000

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Description

The manufacturer of Misonix S-4000 Ultrasonic Cleaner is Misonix. Model is S-4000. The ultrasonic electronic generator converts the AC line power to a 20 KHz signal that drives the piezoelectric transducer/transducer. Due to the properties of the internal piezoelectric crystal, this electrical signal is converted into mechanical vibrations by the transducer. The vibrations are amplified and transmitted down the length of the horn/probe, where the tip expands and contracts longitudinally. The distance the tip moves depends on the amplitude selected by the user via the touch screen pad. As the amplitude increases, so does the ultrasonic intensity within the sample.

Specification

Condition: used
Max sample size (mL): 40,000
Power Rating: 600 Watts
Programmability: 10 memories plus sequencing
Programmable Timer: 1 second to 72 hours
Adjustable Pulse On/Off: 1 second to 24 hours
Power: 100-240 V , 50/60 Hz
Dimensions (" DxWxH): 19 X 8.5 X 10.5

Features

1. In liquids, rapid vibration of the tip induces cavitation, formation of microscopic bubbles, and violent collapse. The collapse of thousands of cavitation bubbles releases enormous energy in the cavitation field. Erosion and impact of cavitation bubble collapse are the main mechanisms of fluid processing.
2. The diameter of the probe tip determines the amount of sample that can be efficiently processed. A smaller probe tip diameter (Microtip™ probe) provides high-intensity ultrasound, but the energy is concentrated in a small, concentrated area. Larger tip diameters can process larger volumes but provide lower strength.
3. Selection of generator and horn/probe to match volume, viscosity and other special application parameters. Horns can be used for direct and indirect ultrasound.

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