Fison Double Beam UV Visible Spectrophotometer designed for precise and reliable analysis in the 190–1100 nm range. It offers 1.5 nm spectral bandwidth, ±0.5 nm wavelength accuracy, and stable performance with low stray light. The double beam optical system with 1200 lines/mm grating ensures consistent results and minimal drift. It features a silicon photodiode detector, deuterium and tungsten light sources for easy operation. With fast, medium, and slow scanning modes, it supports flexible testing needs, delivering accurate absorbance, transmittance, and concentration measurements.
$6,562.00
| Wavelength Range | 190 to 1100 nm |
| Band Width | 0.5/1.0/2.0/4.0/5.0nm adjustable |
| Wavelength Accuracy | ±0.3 nm |
| Wavelength Repeatability | 0.1 nm |
| Photometric Accuracy | ±0.2% |
| Photometric Repeatability | 0.1% |
| Stray Light | ≤0.02% |
| Stability | 0.0003A/h@500 nm |
| Photometric Mode | T, A, C, E |
| Wavelength Setting | Automatic |
| Photometric Display Range | -4 to 4A |
| Display Mode | Touch LCDScreen (10inches) |
| Detector | Import Silicon Photodiode |
| Light Source | Import Deuterium Lamp and Tungsten Halogen Lamp |
| Power Supply | AC220V/50Hz110V/60Hz |
| Product Dimension | 650 × 430 × 240 mm |
| Weight | 21 Kg |
Double Beam UV Visible Spectrophotometer is suitable for biological research, bio-industry, pharmaceutical analysis, teaching and research, environmental protection, food hygiene, clinical examination, health monitoring, and epidemic prevention applications.
1cm Glass Cuvette 4 Pcs
1cm Quartz Cuvette 2pcs
Dust Cover 1 Pcs
Power Line(1m) 1pcs
Software Suite 1 Set
Fison Double Beam UV Visible Spectrophotometer offers a wavelength range of 190 to 1100 nm, wavelength accuracy up to ±0.5 nm, and adjustable spectral bandwidth options from 0.5 to 5 nm. Designed as a lab spectrophotometer, it features a double-beam optical system that supports stable absorbance and transmittance measurements with reduced measurement variations. USB and printer connectivity enable efficient data transfer and reporting, while advanced optical components provide consistent spectral analysis performance.