Shipping Details
Overhead stirrer is suitable for mixture of high viscosity liquid or solid-liquid. Widely used in chemical synthesis, pharmaceutical, physical and chemical analysis, petrochemical, cosmetics, health care, food, biotechnology and other fields.
Characteristics:
. Brushless DC motor drive, low noise and maintenance free.
. Stainless steel head restraints, more durable
. Stirrer with digital type has three kinds of rotation mode as positive rotation, inversion, reciprocal and mutual conversion.
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Simple & clear keyboard operation provides auto 0% & 100% adjustment, Error free T-A transformation, faster setting and direct concentration readout functions.
Imported Tungsten (W) Lamp, long service life.
Spacious sample compartment, suitable for various dimensions optical path rectangular cells(100mm max).
1 There are twelve tubes in two basket assembly.
2 Each test station is driven independently. Auto stop at timing point.
3 The bath liquid can achieve an even temperature.
4 A MPU is used to automatically control the temperature, time and frequency of nacelle back and forth.
5 Timing at will. The preset and real time data can be displayed alternately in time.
6 Automation: auto-test, auto-diagnose, auto-alarm.
Ideal for Mixing Solutions in Test Tubes or Small Flasks with Circular, Oscillating Movement
Variable Speed Control Allows Slow Speed Shaking Action up to High Speed Vortexing
CE Certified
PL(Product Liability) Insurance
Gentle Mixing to re-suspending Pellet
Supplied with Ø 76 mm Platform and Pop-Off Cup
Realize High Power, Stable Motion with Low Noise
Tough Metal Housing Provides a Stable Platform for all types of Mixing
3-position Power Switch Operates with Continuous Action or “Touch On” Control
Aluminum Die-casting with Powder Coating
Various Shapes, Sizes and Materials of the Head allows for mixing of almost all Common Tubes or Containers
A Spectrophotometer is an analytical instrument used to identify materials including organic polymers. Infrared spectrophotometers record the relative amount of energy as a function of the wavelength/frequency of the infrared radiation when it passes through a sample. Therefore, chemical structures of different samples will reflect differences in the IR absorption spectrum allowing for identification of a sample. Unlike a dispersive spectrometer, an FTIR spectrometer or FTIR spectrophotometer is used to simultaneously obtain spectral data of a sample. It does this by using an interferometer to collect the interferogram, also known as the raw data/signal format, which can then be translated into the infrared spectrum of the sample by means of a fourier transform algorithm. As a result there are many advantages including greater signal-to-noise ratio, high resolution, higher throughput, and a short wavelength limit. FTIR spectrometers can be used in a variety of industries including environmental, pharmaceutical, and petrochemical.
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