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Near infrared spectrometer Product List

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Basic Principles of Near Infrared Analyzers (Near Infrared Spectrometers) [NIR Technical Document]

An introductory NIR technology booklet that explains the principles of near-infrared analyzers (near-infrared spectrometers) in an easy-to-understand manner without using formulas.

This is an introductory NIR technology booklet that explains what can be done with near-infrared analyzers (near-infrared spectrometers) without using complicated formulas. It is available for free download. It can be used as a text for those measuring with near-infrared analyzers (near-infrared spectrometers) for the first time and for their supervising managers. (PDF, 13 pages)

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  • Other inspection equipment and devices

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Simultaneous Measurement of Lubricating Oil Quality Parameters Using Near-Infrared Analyzer [Technical Document]

Application for rapidly measuring the acid value of lubricating oil using near-infrared spectroscopy (NIR) along with kinematic viscosity and moisture【Oil & Petrochemicals】.

Using visible-near infrared (Vis-NIR) spectroscopy, we determined several chemical and physical parameters in lubricating oil, including acid value (AN), kinematic viscosity at 40°C, moisture content, and color. This application note presents an example of how these parameters were measured quickly and simultaneously using Metrohm's near-infrared analyzer (Vis-NIRS).

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  • Lubricants
  • Spectroscopic Analysis Equipment
  • Lubricants and additives

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Quality Control of Polypropylene (PP) Using Near-Infrared Analyzer [Technical Document]

Non-destructive and easy measurement of melt index (melt flow rate) using near-infrared analysis without conducting rheology tests!

【Near Infrared Analyzer Technical Data 9 Petrochemicals Fibers】 To mold polypropylene (PP) resin into the desired shape, it must first be melted, making flow properties a crucial characteristic that influences the manufacturing process. One of the parameters that represent flow properties is the Melt Index (MI), also known as Melt Flow Rate (MFR). This measures the mass of material extruded from a die within a specified time (ASTM D1238). The standard procedure requires many tasks, such as packaging the sample, preheating, and cleaning. Visible near-infrared spectroscopy, which does not require sample pretreatment or chemicals, enables MFR analysis in less than one minute.

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  • Spectroscopic Analysis Equipment
  • plastic
  • Engineering Plastics

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Near-infrared analyzer: Quantitative analysis in accordance with ASTM E1655 [Technical Document]

Hints for developing calibration curve models for quality control using near-infrared analysis in the manufacturing processes of gasoline, petroleum, diesel oil, and lubricating oil.

Near-infrared analysis (NIRS) is a quantitative analytical method widely used in various industrial sites and laboratories. This white paper aims to describe the method development workflow for quantitative analysis in accordance with ASTM E1655.

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  • Spectroscopic Analysis Equipment
  • plastic
  • Composite Materials

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Quality Control of Gasoline Using Near Infrared Analysis (NIR) [Technical Document]

Measure research octane number, motor octane number, anti-knock index, aromatic content, and density all at once with a near-infrared analyzer!

【Near Infrared Analyzer Technical Data 15 Petroleum Gasoline Fuel】 The measurement of key quality parameters of gasoline, including Research Octane Number (RON, ASTM D2699-19), Motor Octane Number (MON, ASTM D2700-19), Anti-Knock Index (AKI), aromatic content (ASTM D5769-15), and density, required several different analytical methods, which were labor-intensive and required skilled technicians. This application note demonstrates a cost-effective analytical method for analyzing multiple parameters of gasoline simultaneously using the XDS RapidLiquid Analyzer, which measures in the visible-near infrared region (Vis-NIR).

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  • Near-infrared spectrophotometer
  • Spectroscopic Analysis Equipment
  • Lubricants

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Measurement of Epoxy Resin Using Near-Infrared Analyzer [Technical Document]

An application that simultaneously measures multiple parameters of epoxy resin using near-infrared analysis!

"Near Infrared Analyzer Technical Data 20 Petrochemicals Epoxy Resin" discusses the feasibility of using Vis-NIRS for simultaneous measurement of multiple chemical and physical parameters of epoxy resins. Vis-NIRS is a rapid method that serves as an alternative to traditional laboratory analysis techniques, allowing for quicker raw material inspection, process monitoring, and final product quality control.

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  • plastic
  • Other polymer materials
  • Spectroscopic Analysis Equipment

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Near-infrared analyzer Polyvinyl alcohol saponification degree [Technical Data]

Application for measuring the saponification degree of polyvinyl alcohol using near-infrared spectroscopic analysis!

Near Infrared Analyzer Technical Data 21 Petrochemicals Polyvinyl Alcohol Polyvinyl alcohol (PVA) has low toxicity, is less likely to adhere to proteins, and has film-forming properties, making it suitable for various pharmaceuticals (such as eye drops). PVA is a linear polymer and a copolymer of vinyl acetate and vinyl alcohol. The ratio of hydroxyl groups to all functional groups in the molecule is referred to as the saponification degree. This is an important indicator of the product's solubility, viscosity, and adhesiveness.

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  • Pharmaceutical materials and carriers
  • fiber
  • Paper and pulp

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Process Analysis Instrument Technical Documentation: Quality Control of Wafer Cleaning Tanks

Simultaneous analysis of ammonium hydroxide, hydrogen peroxide, and hydrochloric acid in the wafer cleaning tank monitored by inline near-infrared analyzer!

In semiconductor manufacturing, standard cleaning processes are conducted in wet benches within clean rooms, where the environment is controlled to prevent further contamination. However, it is common for space to be very limited for installing analytical instruments in such environments. To monitor the main parameters of cleaning solutions simultaneously, more safely, efficiently, and quickly without using reagents, inline analysis using near-infrared spectroscopy (NIRS) is effective. Online analyzers, process analyzers, inline analyzers.

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  • Spectroscopic Analysis Equipment
  • Wafer
  • Water quality testing

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Analysis of sugar content, glucose, etc. using near-infrared analyzer (NIR) [Technical Document]

Simultaneous measurement of sugar content (Brix), sucrose, fructose, and glucose using a near-infrared analyzer.

Near Infrared Analyzer Technical Data 23 Food and Beverages Sucrose, glucose, and fructose are three common sugars that are absorbed in different ways in the body. These sugars have slightly different effects. A key factor in their impact on our health is whether these sugars are naturally present in food or added during processing. The measurement of individual sugars and Brix (sugar content; °Bx, a scale for dissolved sugar content) is an important quality parameter in the food industry. These measurements can be performed using High-Performance Liquid Chromatography (HPLC), Ion Chromatography (IC), or Thin Layer Chromatography (TLC). However, these methods tend to be time-consuming and have high running costs. On the other hand, Near Infrared Spectroscopy (NIRS) can measure many sugars simultaneously within one minute without the need for chemicals or sample pretreatment.

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  • Near-infrared spectrophotometer
  • Food/beverage component analyzer
  • Brix Meter

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Quality Control of Chocolate Bars Using Near-Infrared Analysis【Technical Document】

Rapid quantification of calories, fat, saturated fat, carbohydrates, sugar, and protein in chocolate bars using near-infrared analysis (NIR)!

【Near Infrared Analyzer Technical Data 27 Food and Confectionery】 The production of food requires strict quality control to ensure its quality and protect consumers. Confectionery products, such as chocolate, are required to manage the final product to meet regulations and ensure consistent quality, which is especially important for luxury items. Near-infrared spectroscopy is a fast analytical method that requires no sample preparation and does not use chemicals, allowing for the determination of many important quality control parameters of chocolate bars. Near-infrared analyzers are easy to use and can be utilized in quality control laboratories as well as in environments close to the production site.

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  • Near-infrared spectrophotometer
  • Food Testing/Analysis/Measuring Equipment
  • Other analytical and testing equipment

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Quality Control of Dried Cannabis Using Near-Infrared Analysis Equipment [Technical Document]

Efficiency testing without chemical reagents in under one minute using near-infrared analysis (NIR)!

【Near Infrared Analyzer Technical Data 29 Pharmaceuticals】 Cannabis has a long medical history as a recreational drug and as an analgesic and antispasmodic. The discovery of the major cannabinoids tetrahydrocannabinol, cannabidiol, and cannabigerol (THC, CBD, and CBG) has increased interest in its medical effects. THC is psychoactive and classified as an illegal drug in most countries, while CBD is legally accepted for medical purposes in many regions around the world. CBD is believed to alleviate anxiety and stress and promote better sleep. Due to the various effects and potential legal implications, determining the cannabinoid profile in cannabis has garnered significant interest. Generally, efficacy testing of cannabis is conducted using HPLC analysis. HPLC can detect low concentrations of cannabinoids but requires chemical reagents and is quite time-consuming. This technical document explains why near-infrared spectroscopy (NIR) is an excellent method for quantifying THC, CBD, and CBG in dried cannabis, as it provides results in less than one minute and does not require chemical reagents.

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  • Near-infrared spectrophotometer
  • Other physical property measurements and component analysis
  • Pharmaceutical materials and carriers

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Quality Control of Zero-Calorie Sweeteners Using Near-Infrared Analyzers [Technical Document]

Rapid quality control of zero-calorie sweeteners such as stevia and sucralose using near-infrared analysis (NIR).

The use of zero-calorie sweeteners as sugar substitutes in food products has dramatically increased over the past decade in soft drinks and snacks. Two examples of this are stevia, derived from the leaves of the Stevia rebaudiana plant, and sucralose, a chlorinated sucrose derivative. Both are much sweeter than sugar and are used at much lower concentrations in food. On the other hand, regulations regarding zero-calorie (non-nutritive) sweeteners have become stricter to ensure food safety. In response to these regulations, various sweeteners can be measured using high-performance liquid chromatography (HPLC), ion chromatography, and thin-layer chromatography; however, these measurement methods are time-consuming and have high running costs. By using near-infrared spectroscopy (NIRS), it is possible to simultaneously quantify several types of sweeteners in under one minute without the use of chemicals and without the need for sample pretreatment.

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  • Food Testing/Analysis/Measuring Equipment
  • Spectroscopic Analysis Equipment
  • Near-infrared spectrophotometer

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Oil Refinery Contact Reforming Process - Monitoring of Octane Rating (Technical Document)

Monitoring the octane rating using process analyzers in the downstream process unit (catalytic reforming process) of the oil refinery.

At the refinery, high-octane products are required for the production of premium gasoline. This introduces a method for monitoring the octane rating in fuel with high precision in "real-time" using near-infrared spectroscopy (NIRS) technology.

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  • Analytical Equipment and Devices
  • Spectroscopic Analysis Equipment
  • Weighing Control

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Inline Process Near-Infrared Spectroscopy Analyzer SentroPAT BU

It is a real-time monitoring system for mixing uniformity and API/excipient content using NIR, designed to be attached and used on rotating containers in the pharmaceutical mixing process.

The SentroPAT BU, manufactured and sold by Sentronic based in Dresden, Germany, is a near-infrared spectrometer specifically designed for pharmaceutical mixing processes. It operates the created model in real-time, monitoring mixing uniformity and the content of API/excipients in real-time. ■ High-performance MEMS Spectrometer It uses a MEMS spectrometer with a wavelength-variable laser. Excellent optical resolution and low noise allow for high-resolution spectra. ■ Calibration/Scale-up This system was developed in close cooperation with pharmaceutical manufacturers. Scaling up from the lab to the factory is easy. ■ Compliance with GMP / Part 11 Designed for use in the pharmaceutical industry, it can be used in GMP environments. Additionally, the dedicated software SentroSuite complies with 21 CFR Part 11. ■ Features - Lightweight, compact, and easy to install - Smooth surface shape suitable for GMP - Accurate and reliable near-infrared technology - Excellent spectral performance - Low cost - No data loss during communication failures - OPC connection available - SiPAT interface

  • Spectroscopic Analysis Equipment
  • Testing Equipment and Devices
  • Analytical Equipment and Devices

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SentroPAT FO Process Near-Infrared Spectroscopy Analyzer

This is a probe-type near-infrared spectroscopy PAT tool. It can be used in various processes such as granulation, mixing, tableting, and coating.

This is an analytical device for inline and real-time monitoring of solid dosage form processes (mixing, granulation, drying, and tableting). It is installed at various points in the manufacturing process to analyze physical and chemical parameters. The hardware consists of a maximum of 4-channel NIR detection units and probes connected by optical fibers and cables. The software is a proven package that meets the specifications required for pharmaceutical manufacturing processes, including audit trail functionality, user management, and output of inspection results. We provide a complete PAT solution, as well as customized solutions tailored to customer requests.

  • Analytical Equipment and Devices
  • Other inspection equipment and devices

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