Fluorescence stereomicroscope

The fluorescence stereo microscope utilizes a binocular stereoscopic observation system and fluorescence illumination to excite the autofluorescence or labeled fluorescence of samples at specific wavelengths, producing three-dimensional stereoscopic images. It is used for observing material surface morphology, fluorescence marker distribution, and defect detection, with applications in ink adhesion testing and plastic additive dispersion analysis.
Selection
When selecting, consider sample size compatibility with the stage, fluorescence wavelength coverage for detection needs, objective magnification to meet observation detail requirements, camera resolution suitable for recording needs, an interface that aligns with usage habits, and maintenance costs fitting within the budget.

Terms

Standards

Instruments

Equipped with a long working distance flat-field color difference elimination objective lens and four sets of fluorescence filters, it supports phase contrast observation and fluorescence switching, and the fretting grid value is up to 2 μm, which is suitable for clear imagery of living cells and liquid samples.

$ 10207.00

Infinity Optical inspection system, support for Brightfield, Fluorescence, Phase Contrast, Polarization Observation mode; equipped with six-hole converter with DIC slot and 100W mercury lamp light source, providing high-resolution images; autofocus system to maintain sample focal plane stability.

$ 28652.00

Continuous zoom range 7X~ 63X, working distance up to 110mm, equipped with Process Color LED fluorescence excitation assembly and hinged trinocular observation head, support a variety of fluorescence Observation modes.

$ 3268.00

Optical inspection fluorescence technology for measurement of dissolved oxygen, no polarization time, fast Response and not affected by Flow velocity; Built-in temperature sensor, Measurement range 0.00-50 mg/L, accuracy up to 1.5% +/- 0.01mg/L; Protection Rating IP68, suitable for harsh environments.

$ 3401.00

Using fluorescence measurement technology without replacing the diaphragm and electrolysis solution, Measurement range 0.000~ 20.00mg/L accuracy +/- 0.20mg/L, support 3000 sets of Data storage and interval timing measurement, IP57 Protection Rating.

$ 1033.00

Optical inspection system with infinity, long working distance objective lens such as 10X0.25 working distance 4.3mm, swirl/spin swing-out concentrating system can observe high culture dishes without contamination, Modular fluorescence system is easy to adjust.

$ 10530.00

Optical inspection fluorescence method without reference solution, built-in temperature sensor to calibrate data in real time, dual range design covering 0~ 20mg/L and 0~ 200% Saturation, 10 Meters long cable to support deep water or remote installation, polyformaldehyde and stainless steel composite structure to enhance environmental adaptability.

$ 636.00

It adopts coaxial focusing mechanism with coarse fretting, with a fretting grid value of 2 μ m, equipped with 100W high voltage mercury lamp fluorescent epiphany illumination and 6V 20W halogen lamp transmission illumination, and supports B excitation light band 420~ 485nm and G excitation light band 460~ 550nm.

$ 2575.00

Optical inspection system and Modular design, equipped with flat-field color difference elimination fluorescent objective, fretting grid value of 2 μ m, support multi-band fluorescent filter group, comfortable operation.

$ 4688.00

Optical inspection system with infinite distance, equipped with flat-field color difference eliminating fluorescent objective, fretting grid value of 2 μ m, coarse fretting coaxial focusing, support for a variety of fluorescent filter sets, suitable for low-illumination microscopic image shooting.

$ 4398.00

Optical inspection system with infinity and Modular function design, equipped with flat-field color difference-cancelling fluorescent objective, with a fretting grid value of 2 μm, supports a variety of excitation bands of fluorescent filter sets to meet the needs of scientific research and observation.

$ 3753.00

Can measure ISO whiteness and fluorescence whiteness, Repeatability ≤ 0.02, support data cache and power-off protection, equipped with RS232 interface for easy communication, suitable for powder and flake samples.

$ 953.00

Equipped with 254nm and 365nm dual-wavelength ultraviolet light sources, it supports thin-layer analysis and paper-layer analysis, can identify fluorescent substances, and is equipped with a 200 * 50mm filter.

$ 198.00

Can measure ISO blue light whiteness and fluorescence whiteness, support powder whiteness measurement, Repeatability ≤ 0.02, built-in thermal printer, data can be cached and power-off protection, equipped with RS232 interface for easy communication.

$ 1051.00

With simulated D65 light source and a 150mm integrating sphere, it can complete fluorescence whiteness testing with one click, eliminating the need for manual switching. It features a dust-proof structure that effectively protects the optical system, ensuring accurate and stable measurements.

$ 1655.00

Articles

Use of Fluorescence Spectrophotometer in Measuring Excitation and Emission Spectra of Anti-Counterfeiting Fluorescent Inks
This article introduces the application of fluorescence spectrophotometry in the spectral measurement of anti-counterfeiting fluorescent inks, including instrument calibration, sample preparation, and methods for measuring excitation and emission spectra.
Sensitivity Enhancement of Dark Box UV Analyzers in Thin-Layer Chromatography Fluorescence Detection
This article explores how to enhance the sensitivity of dark box ultraviolet analyzers in fluorescence detection for thin-layer chromatography. Sensitivity is influenced by factors such as light source stability, wavelength accuracy, sample background, and ambient light.
Spectrophotometric Determination of Sulfur Content by Ultraviolet Fluorescence Method
The determination of sulfur content by ultraviolet fluorescence spectrophotometry involves burning the sample to convert sulfur into sulfur dioxide, which is then excited by ultraviolet light to produce fluorescence for detection.
Key Technical Points for Determining Arsenic and Mercury in Water Using Atomic Fluorescence Spectrophotometry
This article introduces the key techniques for determining arsenic and mercury in water using an atomic fluorescence spectrometer. The experiment requires attention to safety precautions, regular maintenance of the instrument, and proper disposal of waste liquids.
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