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Ultrasonic liquid processor ULP
Ultrasonic liquid processor ULP

Ultrasonic liquid processor ULP

MOQ : 1 , , Piece

Ultrasonic liquid processor ULP Specification

  • Material
  • Stainless Steel and Polypropylene
  • Dimension (L*W*H)
  • 420 x 250 x 260 mm
  • Power
  • 500 W
  • Voltage
  • 220 V
  • Frequency
  • 20 kHz
  • Temperature
  • Ambient to 80C
 

Ultrasonic liquid processor ULP Trade Information

  • Minimum Order Quantity
  • 1 , , Piece
  • Supply Ability
  • , , Piece
  • Delivery Time
  • 7 Days
  • Main Domestic Market
  • Maharashtra
 

About Ultrasonic liquid processor ULP

Hand Held Liquid Processor

In ultrasonic liquid processor, processing of liquid is being done by high frequency ultrasonic vibrations. Ultrasonic liquid processors have various labotary applications like;

Degas solutions/duration : to remove air bubbles from samples
  • Continuous liquid processing is possible
  • Dispersion / de agglomeration of solid into liquids
  • Homogenizing : to reduce small particles in liquid
  • Ultrasonic transmogrification of oil into bio-diesel
  • Particle size reduction
  • Lye cell
  • Increase solubility
  • stirring of samples / mixing
  • Biochemical effect.

These all operations are being achieved by giving high frequency vibrations in liquid. The vibrations are give through ultrasonic horns or sonotrode, tip, which are made up of titanium. Johnson plastosonic can make different types of tip depending on size & vibrations needed Vibrations can be given continuously or pulsed type. Variable amplitudes can be set by Johnson's advanced ultrasonic generator system.

Technical Specification

Model

Frequency

Wattage

ULP20025

20KHZ

250W

ULP2005

20KHZ

500W

ULP2015

20KHZ

1500W



Advanced Ultrasonic Technology

Utilizing state-of-the-art ultrasonic energy, the ULP enables effective liquid processing, ensuring efficient mixing, dispersing, and homogenizing at a frequency of 20 kHz. Its sturdy stainless steel and polypropylene build provides longevity and chemical compatibility, making it suitable across a variety of laboratory settings.


Versatile Applications and User-Friendly Design

With an operating temperature ranging from ambient conditions up to 80C, the ULP meets the demands of a broad spectrum of processes. Its moderate size fits easily on laboratory benches, and the 500 W power ensures rapid results while maintaining energy efficiency.

FAQs of Ultrasonic liquid processor ULP:


Q: How does the Ultrasonic Liquid Processor ULP function in liquid processing applications?

A: The ULP utilizes high-frequency ultrasonic waves at 20 kHz to generate cavitation in liquids, which enhances mixing, dispersing, and breaking down of particles. This process improves efficiency and effectiveness in tasks like emulsification, cell disruption, and homogenization.

Q: What materials are used in the construction of the ULP?

A: The processor is built using stainless steel and polypropylene. Stainless steel offers durability and chemical resistance, while polypropylene contributes to lightness and additional chemical compatibility.

Q: When is it appropriate to use the ULP in a laboratory or industrial setting?

A: The ULP is suitable whenever precise and rapid liquid processing is required, such as during sample preparation, nanoparticle dispersion, or emulsifying substances. Its ambient to 80C temperature range accommodates temperature-sensitive applications.

Q: Where can the Ultrasonic Liquid Processor ULP be sourced from?

A: The ULP is manufactured, supplied, and exported from India, making it easily accessible to international laboratories and industries seeking quality liquid processors.

Q: What is the typical process for operating the ULP?

A: Operation involves placing the liquid sample into the processor, configuring the desired power, temperature, and time settings, and then activating the ultrasonic function. The device efficiently delivers ultrasonic energy to achieve the intended liquid process outcome.

Q: How does using the ULP benefit laboratory research and industrial workflows?

A: Using the ULP accelerates liquid processing tasks, delivers consistent and reproducible results, and reduces manual effort. Its efficient energy utilization and robust design also enhance safety and reliability in various research and production environments.

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