Spectrum analyzer

A spectrometer identifies components and their concentrations by measuring the spectral characteristics of absorption, emission, or scattering resulting from the interaction between matter and electromagnetic waves. It is used for material composition detection, quality control, and environmental monitoring, with routine applications in fields such as chemical engineering and metallurgy.
Selection
When selecting a spectral analyzer, it is essential to clarify the type of substances to be detected and the required precision. Compare parameters such as the instrument's wavelength range, resolution, and detection limits. Consider the compatibility with the sample form, verify the equipment calibration and maintenance methods, and integrate the usage environment and budget for routine selection.

Terms

Standards

Instruments

Light spectrum LED Illuminant and Light spectrum Sensor, equipped with 14mm and 5mm dual measurement aperture, haze Repeatability ≤ 0.03, with open measurement area to support liquid and large size sample detection.

$ 1455.00

Using 380-1000nm Light spectrum instrument to achieve comprehensive measurement of total light transmitance, haze, color coordinates, etc. Precision wavelength +/- 0.3nm, built-in integrating sphere coating stable and durable, a variety of fixtures to meet the needs of liquid solid sample testing.

$ 20729.00

Light spectrum analysis technology using dual optical path, equipped with pulse xenon arc and LED dual Illuminant, support SCI + SCE simultaneous measurement, Measurement time is less than 4 seconds, with temperature and Humidity calculation compensation function.

$ 8109.00

Dual Light spectrum analysis technology, Wavelength range 360~ 780nm, Support SCI + SCE simultaneous fast measurement, Automatic calibration and Temperature Humidity Compensation to ensure High Accuracy and Stability.

$ 11337.00

Light spectrum LED light source, support sample surface free positioning measurement, repeability accuracy ≤ E * ab ≤ 0.07, Measurement speed of only 1.0 seconds, lightweight and portable.

$ 2623.00

Using 360~ 780nm composite full Light spectrum LED Illuminant, equipped with 256 pixel CMOS Detector, measurement wavelength range of 360~ 780nm, interval of 10nm, to achieve haze, transmittance, chroma and other Optical inspection indicators of accurate testing.

$ 6980.00

Light spectrum Response range 230-280nm, peak 254nm, measurement accuracy +/- 10%, equipped with magnetic attraction fixed and 1 Meter Probe line, can display MAX Maximum and current value simultaneously.

$ 420.00

Adopt 45/0 geometrical optics structure, repeability accuracy Delta E * ab within 0.04, equipped with large integrating sphere and 3.5 inch Touchscreen, support Light spectrum reflectance Linear dispersion display and color scheme function.

$ 2623.00

Adopt d/8 measurement structure and full Light spectrum LED Illuminant, repeability accuracy Delta E * ab ≤ 0.07, support a variety of Color space and Color difference formula, 3.5 inch touch screen operation is convenient, the battery can be continuously measured 10000 times.

$ 638.00

Light spectrum Bandwidth 4nm, stray light ≤ 0.1% T, using C-T monochromator structure to reduce interference, equipped with wide sample Chamber and automatic light source switching, support a variety of analysis function expansion.

$ 1138.00

Single beam of light Optical inspection system, Light spectrum Bandwidth 4nm, Wavelength range 340~ 1000nm, with automatic zero and 100% function, sealing grating monochromator to improve Metering accuracy and Stability.

$ 307.00

Utilizing a 360-780nm composite full-spectrum LED light source, equipped with a 256-pixel CMOS detector and a concave grating, it achieves spectral acquisition at 10nm intervals, supporting micro-transmittance measurements and a variety of optical index tests.

$ 6851.00

One-button automatic correction of ABS value, Light spectrum Bandwidth 5.0nm, Wavelength range 325~ 1050nm, can accommodate 5~ 100mm Cuvette, using Czerny-Turner optical path to ensure detection of linear Precision and ultra-low stray light.

$ 775.00

Optical inspection system with single beam of light, Light spectrum Bandwidth 4nm, Wavelength range 200-960nm, Support Transmittance, Absorbance and concentration direct reading Operating Mode, equipped with RS232 interface to connect external devices.

$ 670.00

One key automatic correction ABS value, Light spectrum Bandwidth 4.0nm, Wavelength range 325~ 1000nm, Imported tungsten lamp life up to 2000 hours, can accommodate 100mm Cuvette, support photometric detection and quantitative analysis.

$ 687.00

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.
Spectrophotometer measures ink spectral reflectance and opacity.
This article introduces how to measure the hiding power of ink using a spectrophotometer. The instrument irradiates the ink sample, measures its reflectance within the visible light spectrum, and calculates the hiding power using the Kubelka-Munk model.
UV-Vis-NIR spectrophotometer measures the transmittance of anti-reflection coatings.
This article introduces the method of measuring the transmittance of anti-reflective coatings using a UV-Vis-NIR spectrophotometer. The instrument is based on the Beer-Lambert law, calculating transmittance by comparing the light intensity of the sample and the reference, covering a wide spectral range from ultraviolet to near-infrared.
Atomic Absorption Spectrometer for Measuring Heavy Metal Content in Rubber
This article introduces a method for determining the heavy metal content in rubber using atomic absorption spectrometry. It first explains that rubber may contain harmful elements such as lead and cadmium, which require accurate measurement.
Application of Colorimeters in Controlling Color Differences in Paint Batches
This article introduces the role of colorimeters in controlling color consistency in paint production. Since human judgment of color is easily influenced by lighting and subjective factors, colorimeters quantify color differences in the CIELAB color space by measuring spectral data, providing an objective basis for production.
Atomic Absorption Spectrometer for Determining Heavy Metal Content in Coatings
This article introduces a method for determining the content of heavy metals such as lead, cadmium, chromium, and mercury in coatings using atomic absorption spectroscopy. The method is based on the absorption of characteristic wavelength light by atoms for quantification. It requires acid digestion pretreatment of coating samples and optimization of instrument conditions to improve accuracy.
The role of spectrophotometers in ink color matching
The spectrophotometer objectively quantifies color by measuring the spectral data of ink. Based on the Lambert-Beer law, it converts color into calculable spectral values, replacing traditional methods that rely on the human eye and experience.
Differences between xenon arc lamps, carbon arc lamps, and UV lamps in automotive interior and exterior light aging tests
Xenon lamps, carbon arc lamps, and UV lamps are three commonly used light sources in the photodegradation testing of automotive interiors and exteriors. Xenon lamps can simulate the full spectrum of sunlight, and by adjusting filters, they can match different environmental conditions, making them suitable for comprehensive evaluation of material aging.
A spectrophotometer uses digital language to describe colors, making color differences impossible to hide.
A spectrophotometer measures the color of an object through spectral analysis, converting reflected light data into spectral curves. It then calculates chromaticity parameters such as L*a*b* based on international standards, achieving a digital representation of color.