Product Overview
Description
The Multi-Mode Series Microplate Reader is a versatile, high-performance detection system designed for medical, biological, and pharmaceutical research and development institutions. Built to support diverse applications in drug development, molecular biology, biochemistry, and cytology, this system delivers high-quality, accurate, and reliable analysis.
Equipped with absorbance, fluorescence, and luminescence detection, it also supports advanced modes such as fluorescence polarization and time-resolved fluorescence. With a modular design, users can easily upgrade to additional functionalities like automatic injectors and u-Nano ultra-micro plate readers. Its optimized optical system ensures precision, while intuitive software and flexible data management simplify workflows.
Features
Optical & Detection System
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Wavelength range: 200–1000 nm (monochromator-based).
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Filter-based fluorescence detection with xenon lamp + PMT.
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Time-resolved fluorescence with lanthanide dyes for high sensitivity.
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Optimized optical path with fast polarizer switching to minimize deviation.
Modular Design & Upgrades
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Modular Filter System – Quick replacement with QR-code scanning for accuracy.
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MSS-2 Automatic Injector Block (optional) – With liquid injection protection.
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u-Nano Ultra-Micro Plate Reader (optional) – Enables detection with only 2–4 µL sample volume.
Interface & Control
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10-inch Rotating Touchscreen with adjustable viewing angle.
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Intuitive software with user authority classification for secure access.
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Independent storage of programs and results for streamlined workflows.
Data Analysis & Management
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Built-in software supports:
- FTP Transfer Protocol – Seamless data upload to authorized computers.
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Independent PC analysis software (optional) for deeper reporting and algorithm-based results.
Performance & Reliability
Automatic calibration of light source, detector, monochromator, and position for stable operation.
Reference optical path ensures long-term stability of detection data.
Robust design for high-throughput nucleic acid and protein quantification.