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Double Beam UV VIS Spectrophotometer TRDUV-603

Double Beam UV VIS Spectrophotometer TRDUV-603

Double Beam UV VIS Spectrophotometer TRDUV-603 Double Beam UV VIS Spectrophotometer TRDUV-603 is a small device that measures multiple wavelengths with a bandwidth of 1.8 nm and a wavelength range of 190 to 1100 nm. Blazed holographic gratings with a photometric accuracy of 0.3 % T (0 to 100 % T), 0.002A (0 to 0.5A), 0.004A (0.5A to 1A). Has an 8-inch touchscreen for ease of operating and parameter observing, and it has a Photometric Display Range of 0.0 to 200.0 % T, -0.301 to 4.000 A, 0.000 to 9999 C. It performs admirably in both qualitative and quantitative testing.

Monochromatic type Czerny turner
Focal length 160 mm
Wavelength Range 190 to 1100 nm
Band Width 1.8 nm
Wavelength Accuracy ±0.3 nm
Wavelength Repeatability ≤0.01 nm
Photometric Display Range 0.0 to 200 .0% T , -0.301 to 4.000 A , 0.000 to 9999 C
Photometric Accuracy ±0.3% T(0 to 100%T) / ±0.002A(0 to 0.5A) / ±0.004A(0.5A to1A)
Photometric Repeatability 0.15% T(0 to 100%T) / ±0.001A(0 to 0.5A) / ±0.002A(0.5A to 1A)
Photometric Mode T,A,C,E
Stray Light ≤0.03% τ (220nm NaI, 360 nm NaNO2)
Stability 0.0005A/h500 nm
Detector Import Silicon Photodiode
Scanning speed Fast-medium-slow
Power Requirement AC 220 V±22 50 Hz±1 Hz,200 W
Baseline Flatness ≤0.002A(200 to1090 nm)
Grating 1200 lines/mm
Drifting ≤0.0009 Abs/30 min
Noise 100 % (T)≤0.15 % (T);  0 % (T)≤0.1 % (T)
Dimensions(W×D×H) 74×63×45 Cm
Weight 35 Kg
  • 8-inch touchscreen display with a dual-beam optical system

  • Examine the entire spectrum

  • Linear regression analysis

  • The innovative user interface, powerful functions, and simple operation

  • Direct reading with concentration

  • Persistence of time-based kinetics

  • Detecting Peaks and Valleys

  • It shows great performance in qualitative and quantitative analysis

  • Measurement of multiple wavelengths

  • Extensive frequency band scanning

  • The zero and full scales are automatically adjusted

  • A USB interface is included

It is to determine the amount of light of a specific wavelength absorbed by an analyte in a sample. Although samples can be gases or liquids, an analyte dissolved in a solvent is discussed here.

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