Product Recommendation | ATP1030 mini spectrometer Spectrometer
2026-05-29
A spectrometer is a scientific instrument that analyzes the interaction between light and matter. It separates polychromatic light into its constituent wavelengths and records the intensity distribution across the spectrum.
Figure 1. Structure of spectrometer
A spectrometer typically uses a fixed blazed grating. The light to be measured is coupled into the spectrometer via an optical fiber, dispersed by the grating, and then each wavelength component is detected by individual pixels of a CCD or CMOS sensor, capturing the entire spectral range in one acquisition.
The basic building blocks of a fiber optic spectrometer include a fiber connector, entrance slit, collimating mirror, grating, focusing optics, and a detector. Depending on the configuration, the performance parameters and suitable applications vary.
01 Product Overview
ATP1030 is an ultra‑compact, high‑resolution fiber optic spectrometer developed by Optosky. Building on the ultra‑miniature form factor of the ATP1010 series, it incorporates a high‑resolution M‑type optical path and a UV‑enhanced 1024‑pixel CMOS detector. Compared to the ATP1010, the ATP1030 offers significantly higher resolution. And compared to other ATP series spectrometers, it provides a higher level of integration, making it highly adaptable to various analytical applications.
Figure 2. ATP1030 physical picture and optical path diagram
ATP1030 is characterized by high reliability, ultra‑fast data acquisition, low cost, and excellent value for money. It is suitable for a wide range of environments, including online process testing. The spectrometer covers an ultra‑broad spectral range from 190 nm to 1100 nm, and users can freely adjust the integration time via software, with a minimum setting of 1 ms.
02 Key Feature
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Ultra‑thin, ultra‑compact, high‑resolution design
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Maximum spectral range: 190 – 1100 nm (customizable)
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Detector: 1024‑pixel CMOS
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Integration time: 1 ms to 65 seconds
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Power supply: DC 5 V @ <200 mA
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Input power interface: Type‑C USB or expansion port
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ADC resolution: 16‑bit
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ADC maximum sampling rate: 10 MHz
03 Applications
Typical application areas include:
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Online multi‑parameter water quality analyzers
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Color measurement
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Handheld elemental analyzers (e.g., LIBS)
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Low‑volume, rapid spectrophotometry
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UV flue gas analyzers
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Compact spectral instruments (e.g., handheld Raman)
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Fluorescence spectrometers
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Reflectance and transmittance spectroscopy
04 Performance Measurements
Repeatability test
Linearity test
Typical measurement optical path
For more information, please contact:
Email: optoskyphotonics@gmail.com
Web: www.optosky.net
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