Labmate Nano Spectrophotometer LMNS-B105
Labmate Nano Spectrophotometer LMNS-B105 is a high-precision microvolume spectrophotometer designed for ultra-low sample analysis of nucleic acids and proteins. With a minimal sample requirement of 0.5–2 µL, it supports flexible optical path lengths (1/0.05 mm, automatic conversion) for accurate measurements across a wide concentration range. Built with stainless steel and quartz fiber bases, it provides durability and chemical resistance. Featuring an intuitive touchscreen interface, automatic measurement functions, permanent data storage, and USB connectivity, it ensures efficient data handling and simplified workflows for molecular biology, genomics, proteomics, and clinical research.
Product Info
Key Features
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Microvolume measurement: 0.5–2 µL
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Flexible optical path: 1/0.05 mm, automatic conversion
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Wavelength range: 190–850 nm, ±1 nm accuracy
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Absorbance range: 0.002–750 Abs, 1% accuracy
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Nucleic acid detection: 0.4–37500 ng/µL dsDNA
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Protein detection: 0.01–800 mg/mL BSA
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Detection time: <5 seconds
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Long-life pulsed xenon flash lamp
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No preheating required
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Liquid column abnormality detection
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Wireless printing support
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Permanent data storage with USB connectivity
Technical Specifications
Specification Details Sample Volume 0.5–2 µL Optical Path Length 1/0.05 mm, automatic conversion Wavelength Range 190–850 nm Wavelength Accuracy ±1 nm Wavelength Resolution 2 nm Wavelength Repeatability ±0.5 nm Absorbance Range 0.002–750 Abs Absorbance Accuracy 1% (0.76 Abs at 350 nm) Nucleic Acid Detection Range 0.4–37500 ng/µL dsDNA Protein Detection Range 0.01–800 mg/mL BSA Detection Time <5 seconds Detector 2048-element linear silicide CCD array Light Source Xenon lamp Dimensions (L×W×H) 20×30×20 cm Weight 3.3 kg Applications
Labmate Nano Spectrophotometer LMNS-B105 is ideal for rapid and reliable quantification of nucleic acids, proteins, and other biomolecules in molecular biology, genomics, proteomics, and clinical research laboratories.Selection Guide
LMNS-B105 is suitable for laboratories requiring high-sensitivity, low-volume measurements with fast detection and high absorbance capacity. Its automatic path conversion, durable construction, and integrated data management features make it ideal for high-throughput workflows and precise experimental requirements.-

















