Labmate Nano Spectrophotometer LMNS-B103
Labmate Nano Spectrophotometer LMNS-B103 is a high-precision microvolume spectrophotometer designed for rapid nucleic acid and protein quantification. It supports sample volumes of 1–2 µL and operates over a wavelength range of 190–850 nm. Featuring automatic optical path conversion (1/0.5/0.05 mm), a 3864-element linear CCD array detector, and a long-life xenon lamp, it delivers ultra-fast, reliable absorbance measurements. The system includes a high-definition touchscreen, USB and network connectivity, and WiFi support for remote operation, ensuring seamless, high-throughput analysis in research and clinical settings.
Product Info
Key Features
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Microvolume measurement: 1–2 µL sample
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Automatic optical path conversion: 1/0.5/0.05 mm
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Wavelength range: 190–850 nm, ±1 nm accuracy
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Absorbance range: 0.002–300 Abs, 0.002 Abs resolution
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Rapid detection: <5 seconds
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High-definition touchscreen interface
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Xenon lamp light source for stable illumination
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3864-element linear CCD array for precise measurements
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USB, network, and WiFi connectivity
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Permanent data storage with auto-saving
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No warm-up required, built-in fiber protection
Technical Specifications
Specification Details Sample Volume 1–2 µL Optical Path Length 1/0.5/0.05 mm (automatic conversion) Wavelength Range 190–850 nm Wavelength Accuracy ±1 nm Wavelength Resolution 2 nm Absorbance Range 0.002–300 Abs Absorbance Resolution 0.002 Abs Absorbance Accuracy ±1% (0.76 Abs at 350 nm) Nucleic Acid Detection Range 0.4–1500 ng/µL dsDNA Protein Detection Range 0.01–400 mg/mL BSA Detection Time <5 seconds Detector 3864-element linear CCD array Light Source Xenon lamp Dimensions (L×W×H) 20×30×20 cm Weight 3.3 kg Applications
Labmate Nano Spectrophotometer LMNS-B103 is ideal for ultra-low volume analysis of nucleic acids, proteins, and other biomolecules. It is widely used in molecular biology, clinical diagnostics, pharmaceutical research, and educational laboratories.Selection Guide
LMNS-B103 is designed for laboratories that require fast, accurate measurements with minimal sample consumption. Its automatic optical path conversion and high-resolution CCD array allow precise quantification across a broad concentration range. WiFi-enabled remote monitoring and permanent data storage enhance usability for high-throughput workflows, making it suitable for research, clinical, and teaching applications.-

















