Introduction
Microplate Reader within a wavelength range of 400nm to 800nm for optimal performance. The device can perform 12 different tests simultaneously on a single plate. It has auto lamp adjustment and calibration to enhance efficiency and reduce costs. Its built-in and external printer support ensures convenient result documentation. Our reader is ideal for diverse labs for disease diagnosis, biomedical research, and vaccine development.
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 Microplate Reader is ideal for diverse labs for disease diagnosis, biomedical research, and vaccine development. Its multi-parameter function and large data storage enable efficient screening, immunoassays, and vaccine studies.
Specifications
| Microplate types | 96/48 -well plate |
| Photodetector | Silicon Photodiode |
| Light source | 8V/50W Controlled tungsten halogen lamp or light |
| Wavelength range | 400nm to 800nm |
| Standard filters | 405,450,492,630nm and 4 optional |
| Reading range | 0.000 to 4.000A |
| Resolution | 0.001A |
| Accuracy | ±0.008A |
| Reproducibility | ≤0.2% |
| Stability | ±0.003A |
| Shaking | Linear Shaking, 3 speeds |
| Interface connections | |
| Power supply | 100 to 240V, 50 to 60Hz |
Features
Dual Wavelength Analysis
8-Channel Optical Scanning
Massive Data Storage
Comprehensive Report Output
PC Connectivity
FAQs
1. What is the operating wavelength range of the Microplate Reader?
The Microplate Reader operates within a wavelength range of 400nm to 800nm, providing optimal performance for various assays. This broad range ensures compatibility with a wide spectrum of diagnostic and research applications. It allows precise detection across multiple assay types, including and enzyme activity studies. The extended wavelength range enhances flexibility in protocol design. It also supports accurate measurement of both high- and low-absorbance samples.
2. How many tests can the Microplate Reader perform simultaneously?
It can perform 12 different tests on a single plate simultaneously, making it suitable for high-throughput laboratories and enhancing productivity. This multi-test capability improves workflow efficiency and reduces processing time. It enables comparative analysis across different samples in a single run. The feature is particularly beneficial in clinical diagnostics, vaccine studies, and large-scale screening programs.
3. Does the Microplate Reader support automatic features for improved performance?
Yes, the device includes auto lamp adjustment and auto calibration features. These functionalities enhance system efficiency and accuracy while reducing maintenance time and operational costs. Automatic calibration ensures consistent assay performance across multiple runs. Auto lamp adjustment extends the lifespan of the optical system and maintains reliable measurements.
4. What is a Microplate Reader?
A Microplate Reader, commonly called as plate reader or plate spectrophotometer, is an analytical instrument that reads or detects the physical, chemical, and biological events of the analyte, within the wells of the plate. It has numerous tiny wells where the sample analyte is introduced for analysis.
5. What is the difference between a spectrophotometer and a microplate reader?
A standard spectrophotometer measures the absorbance of one sample at a time. The sample is typically placed in a cuvette through which light is sent horizontally. An absorbance plate reader offers higher throughput and can measure the absorbance of samples in microplates (typically 96-well or even 384-well) by sending light through each well vertically.
6. What is the working principle of a microplate reader?
Microplate-based measurements detect light signals produced by a sample, converted by a sample, or transmitted through a sample. In the plate reader, the signal is measured by a detector, usually a photomultiplier tube (). PMTs convert photons into electricity that is then quantified by the microplate reader. The output of this process is numbers by which a sample is quantified.
7. What is the light source typically used in plate readers?
Tungsten-halogen or xenon flash lamps are generally used. LEDs have also come into the picture in some modern readers.
8. What is the detection technology of a plate reader?
The detection technology can be of 3 types- Monochromator based detection which provides flexibility, convenience, and spectral scanning; Filter based detection which enables rapid switch between different wavelengths; Hybrid detection which has dual technological advantage of both flexibility and sensitivity.
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