Introduction
Single Beam UV-Vis spectrophotometer offers a wavelength range of 190 to 1000 nm and wavelength accuracy of 1 nm. It has an navigation. The socket-type tungsten and deuterium lamps allow easy switching without optics debugging. Its multiple data sharing options enable seamless application across the fields. Our spectrophotometer is extensively utilized for basic photometric and quantitative analysis.
This analytical equipment is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Our Single Beam UV-Vis Spectrophotometer is extensively utilized for fundamental photometric and quantitative analyses. Its versatility and precision, make it an indispensable tool in laboratory and industrial environments, enabling accurate and reliable sample analysis across a wide range of applications.
Specifications
| Wavelength Range | 190 to 1000 nm |
| Spectral Bandwidth | 2 nm |
| Wavelength Setting | Automatic |
| Optical System | Single Beam, Grating 1200 lines/ mm |
| Wavelength Accuracy | 1 nm |
| Wavelength Repeatability | Up to 0.5 nm |
| Photometric Accuracy | ±0.5% T |
| Photometric Repeatability | 0.3% T |
| Photometric Range | 0 to 200% T, -0.3 to 3 A, 0 to 9999 C |
| Stray Light | 0.3% T |
| Stability | ± 0.0002 A/h at 500 nm |
| Baseline Flatness | ± 0.002 A |
| Noise | ± 0.001 A |
| Work Mode | T, A, C, E |
| Display | 128 × 64 |
| Light Source | Deuterium and tungsten lamp |
| Detector | Silicon photodiode |
| Cuvette Holder | 10 mm Manual 4-cell holder |
| Output | , RS232 |
| Power Supply | AC 110 to 220V 50 to 60Hz |
| Dimensions | 700 × 580 × 340 mm |
| Gross Weight | 20kg |
Features
Automatic wavelength setting
Different work modes
Large sample chamber
Compact design
FAQs
1. What are the benefits of Socket-type lamps of this Single Beam UV-Visible Spectrophotometer?
Single Beam UV-Visible Spectrophotometer uses socket-type deuterium and tungsten lamps, which can be replaced without requiring optical alignment or calibration. It ensures stable and reliable UV-Visible light output for accurate measurements. Additionally, it minimizes downtime during operation.
2. What are the accessories that come with this Single Beam UV-Visible Spectrophotometer?
Single Beam UV-Visible Spectrophotometer includes four 10 mm glass cuvettes, two 10 mm quartz (UV) cuvettes, PC software, and a power cord. Glass cuvettes are suitable for measurement in the visible range (400 to 700), typically used for colorimetric and general spectrophotometric analysis. The Quartz (UV) cuvette is designed for UV measurements (below 400 nm).
3. How to export test data from the Single Beam UV-Visible Spectrophotometer?
Single Beam UV-Visible Spectrophotometer offers multiple data export options to ensure convenient and efficient data management. It includes a port for saving and transferring data to a computer for further analysis. An RS232 serial interface is also provided for real-time data transfer to a connected PC or printer. Additionally, the instrument is equipped with built-in memory for internal data storage, which can be accessed and exported as required. These versatile export features facilitate seamless data analysis, reporting, and archiving.
4. What are the different working modes available in this Single Beam UV-Visible Spectrophotometer?
Single Beam UV-Visible Spectrophotometer features multiple work;/ modes to meet various analytical demands. The available modes include T(Transmittance mode) evaluates the percentage of light that passes through a sample. The (A) Absorbance mode measures the amount of light absorbed by the sample at a chosen wavelength. Concentration mode (C) determines the sample concentration using a standard calibration curve, and Energy mode (E) assesses the energy of light transmitted through the sample.
5. Why does the Single Beam UV-Visible Spectrophotometer contain a socket-type lamp?
The Single Beam UV-Visible Spectrophotometer features a socket-type lamp to simplify maintenance and enhance ease of use. It allows for quick and effortless lamp replacement without requiring optical realignment, minimizing downtime and ensuring consistent performance. It provides a convenient solution for users, especially in busy laboratory environments where reliability and efficiency are essential.
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