In general near-infrared detection scenarios such as routine material analysis, food general inspection, agricultural and forestry germplasm screening, basic chemical monitoring, teaching spectroscopy experiments, and industrial routine quality control, most users do not need high-specification refrigeration equipment. Instead, they need a standardized spectroscopy device with high cost-effectiveness, stable performance, plug-and-play functionality, low operation and maintenance requirements, and wide adaptability. Traditional imported equipment is expensive and has excessive functions. Ordinary generic spectroscopes have problems such as unstable baseline, poor repeatability, high failure rate, and weak software compatibility, which significantly increase the daily detection and teaching research costs and are difficult to meet the requirements of regular, large-scale, and high-frequency general spectroscopy detection.
The 7IGF10-NIR-ST near-infrared fiber optic spectrometer from Saifan Optoelectronics is the "non-cooled standard version microspectrometer" of the 7IGF series, specially designed for common near-infrared non-destructive testing and basic spectroscopy research. It is equipped with a high-sensitivity InGaAs detector and an optimized fixed optical path, discarding redundant high-end configurations and focusing on core detection performance. With high cost-effectiveness, ultra-stable structure, millisecond-level fast detection, portable and easy integration, no maintenance, and universal applicability, it precisely adapts to the majority of common near-infrared detection conditions. It is a high-cost-effective main equipment for teaching laboratories, small and medium-sized enterprises' quality inspection, and general research.
Classic non-cooled architecture, sufficient and stable, with full performance
The 7IGF10-NIR-ST uses a mature commercial-grade InGaAs detector and is equipped with a professionally optimized optical path adjustment. It does not require a refrigeration module and has stable performance under normal temperature conditions. It is deeply adapted to indoor constant temperature, laboratory regular environment, and industrial normal temperature production line scenarios, effectively avoiding the problems of excessive noise and unstable baseline of conventional equipment. The spectral baseline is flat and the repeatability is excellent, fully meeting the precision requirements of common component analysis, color detection, material identification, and optical calibration. Compared to the refrigeration version, it significantly reduces procurement costs while ensuring basic detection accuracy and eliminates excessive performance, making it the optimal choice for general near-infrared detection scenarios.
Standard near-infrared exclusive wavelength band, suitable for the detection of the majority of substances
The device precisely covers the 900?1700nm classic near-infrared detection wavelength band, perfectly matching the characteristic absorption intervals of organic molecules such as C-H, O-H, and N-H, and can quickly identify moisture content, component ratio, purity difference, and quality grade of materials. It is equipped with a high-precision holographic fixed optical path, with uniform dispersion, excellent spectral linearity, and no spectral distortion. Whether it is for quality screening of grains and foods, basic identification of Chinese medicinal materials, routine monitoring of chemical materials, or optical device near-infrared transmittance and reflectance calibration, it can output precise, stable, and reproducible spectral data, covering over 90% of common near-infrared detection scenarios.
No mechanical fixed optical path, zero loss, ultra-long maintenance-free operation
It adopts the classic horizontal cross-fixed optical path design of the series, with no mechanical scanning moving parts in the entire machine, eliminating mechanical jamming, empty travel errors, and part wear and tear. The equipment structure is simple, resistant to vibration, interference, and temperature fluctuations, with a very low failure rate. It supports long-term high-frequency detection, 7×24-hour online monitoring, and no calibration or complex maintenance is required for long-term operation, significantly reducing the later operation and maintenance costs. The body is compact and lightweight, small in size, portable and easy to carry, getting rid of the cumbersome and complicated drawbacks of traditional spectroscopes, truly achieving ready use upon opening and immediate detection.
Millisecond-level high-speed sampling, non-destructive and rapid adaptation for batch detection
It is equipped with a high-speed data processing chip and efficient photoelectric detection unit, with fast response speed and short sampling cycle, enabling millisecond-level real-time spectral continuous collection and completing the global scanning of sample spectra in an instant. The entire process adopts a non-contact and non-destructive testing mode. The samples do not need to be crushed, do not require chemical pre-treatment, and there is no consumable material consumption. It does not damage the tested materials. It is particularly suitable for the rapid screening of precious samples such as food, medicinal materials, and precise new materials. It can efficiently handle large-scale sample surveys, production line batch quality inspections, and daily routine detection requirements. The detection efficiency is far superior to that of traditional laboratory detection methods.
Simple operation and strong compatibility, with low thresholds for multi-scenario implementation
Standard equipped with USB high-speed direct power supply and data transmission, no need for complex external power sources, plug-and-play, and convenient online connection. Equipped with specialized spectral analysis software from Sifan, integrating a complete set of functions such as real-time spectral display, peak picking, data storage, graph export, wavelength calibration, and comparative analysis. The operation is simple and intuitive, with zero learning curve, and even beginners can quickly master it. The equipment has strong scalability and can seamlessly connect with light sources, integrating spheres, optical probes, optical testing platforms, quickly building an integrated near-infrared spectroscopy testing system, suitable for teaching experiments, scientific research tests, industrial integration, and multiple scenarios.
Universal adaptation for all scenarios, covering teaching, research, and industrial use
With stable and durable, high-performance, non-destructive fast detection, easy integration core characteristics, the 7IGF10-NIR-ST near-infrared fiber spectrometer widely adapts to university near-infrared spectroscopy teaching training, routine quality inspection of food and grains, basic authenticity screening of medicinal materials, monitoring of chemical material components, identification of agricultural and forestry germplasm resources, optical characterization of basic materials, near-infrared calibration of conventional optical devices, online quality control of industrial production lines, etc. It is a benchmark-level cost-effective equipment for civilian, teaching, and routine industrial near-infrared detection.
Non-cooled high-performance standard version | 900?1700nm near-infrared standard band | No mechanical structure, ultra-stable, maintenance-free | Millisecond non-destructive fast detection | Portable and easy to integrate | Low operation and maintenance universal adaptation
Accurately adapt to routine detection, high-performance enabling popularization. The 7IGF10-NIR-ST near-infrared fiber spectrometer from Sifan, with mature optical performance, extremely easy-to-use equipment experience, and extremely high implementation cost performance, makes high-precision near-infrared spectroscopy detection no longer expensive, fully empowering the popularization of spectral teaching, routine scientific research innovation, and industrial lightweight quality control upgrades!