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Microplate Reader LMMR-A100 offers broad wavelength range of 200 to 1000 nm covering UV and visible regions. It supports 96-well plate format with rapid 12-second measurement speed. Built with advanced temperature regulation, ensuring reliable conditions for sensitive biological assays. Designed with advanced optical components and robust dual-path detection system, it provides stable results. Our Microplate Reader with long-life xenon lamp for strong, uniform illumination across detection spectrum.
Specifications
| Wavelength Range | 200 to 1000 nm |
| Microplate Compatibility | 96-well plate, 8 × 12 format |
| Measurement Range | 0 to 4 Abs |
| Linear Range | 0 to 3 Abs, ± 2% (96-well plate) |
| Accuracy at 405 nm | ± 1% (0 to 3 Abs), ± 2% (3 to 4 Abs) |
| Precision at 405 nm | CV less than or equal to 0.2% (0 to 3 Abs), CV less than or equal to 1.0% (3 to 4 Abs) |
| Resolution | 0.001 Abs |
| Speed | 12s |
| Optical Path | 12-channel detection with 1 real-time reference channel |
| Filter System | 405, 450, 492, 600, 650, 260, 280 nm |
| Light Source | Xenon lamp |
| Detection Modes | Single wavelength, dual wavelength |
| Shaker | 24 hr operation, continuous or interval |
| Incubation | RT +3℃ to 45℃ |
| Interface | 2 × USB ports |
| Dimension | 38×31×31cm |
| Weight | 15Kg |
Pricing
| Product | Price | Unit | Action |
|---|---|---|---|
| Microplate Reader LMMR-A100 | $ 13475 | Each of 1 |
Features
Multiple calculation functions
Integrated Shaker
Built-in filter wheel
User-Friendly operation
USB data transfer
Applications
Microplate Reader LMMR-A100 is employed in high-throughput analysis of biomolecules, cells, and chemical compounds for rapid detection in ELISA, enzyme activity, protein detection, nucleic acid quantification, drug screening, and microbial growth studies.
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Frequently Asked Questions
1 What is a Microplate Reader?
A Microplate Reader is an apparatus designed to detect biological, chemical, or physical events within the wells of a microplate.
2 How does Microplate Reader work?
It works by using optical detection methods such as absorbance, fluorescence, or luminescence to measure reactions in each well of a microplate.
3 Why is Microplate Reader important in drug discovery?
It is important in drug discovery because it enables high-throughput screening, allowing researchers to analyze thousands of samples quickly and accurately.
4 Can Microplate Reader be used for kinetic assays?
It is used for kinetic assays, allowing researchers to monitor changes in absorbance or fluorescence over time.
5 How is Microplate Reader used in ELISA assays?
It is used in ELISA assays to measure absorbance in microplate wells, quantifying the presence of specific proteins or antigens based on colorimetric changes.
6 Can Microplate Reader be used for cytotoxicity assays?
It can be used for cytotoxicity assays by detecting changes in absorbance or fluorescence that reflect cell viability or membrane integrity.
7 Can Microplate Reader be used for bacterial growth studies?
It can be used for bacterial growth studies by continuously measuring optical density, allowing researchers to monitor growth curves over time.
8 Can Microplate Reader be used for hormone detection?
It is commonly used for hormone detection in ELISA- or luminescence-based immunoassays, enabling accurate quantification of hormone levels in biological samples.
9 Can Microplate Reader be used in food safety testing?
It is used in food safety testing to detect contaminants, toxins, or pathogens via immunoassays or enzymatic reactions in microplate formats.
10 How is Microplate Reader used in environmental monitoring?
It is used in environmental monitoring for detecting pollutants, heavy metals, or microbial content using biochemical assays in water and soil samples.