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Raman sensor - List of Manufacturers, Suppliers, Companies and Products

Raman sensor Product List

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[Evaluation Case] Total Solution for PET Bottles

Cap, main body, and film all measurable! Can be mounted on a microscope and used for foreign substance analysis.

We will introduce a case study of PET bottle evaluation using simple measurement with objective lenses or probes. Measurements can be taken from general-purpose plastics such as PET, PP, PS, and acrylic, as well as other engineering plastics, super engineering plastics, and thermosetting plastics. In field measurements, it is possible to determine the type of plastic. [Features] ■ Rapid measurement in 1 to 5 seconds ■ Simultaneous measurement of PET bottles, caps, and films ■ Measurement of thermal deformation and load is possible ■ Can be mounted on a microscope and used for foreign substance analysis ■ Usable in the field of plastic recycling ■ Ability to determine the type of plastic in field measurements *For more details, please download the PDF or feel free to contact us.

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[Evaluation Example] Culture Medium Components

Introduction of media component evaluation in glucose concentration measurement.

We would like to introduce a case study using non-destructive medium measurement. The basic medium composition in 1L of MRS agar medium is: Proteose peptone 10.0g, Yeast extract 4.0g, Glucose 20.0g, Potassium hydrogen phosphate 2.0g. In the case study collection, you can see the results of glucose concentration measurements. [Case Overview] ■ Medium Component: Glucose Concentration Measurement *For more details, please download the PDF or feel free to contact us.

  • Other measurement, recording and measuring instruments
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Attachment-type micro Raman sensor "Raman EYE Series"

The world's smallest class micro-Raman sensor. Achieves low cost through miniaturization and optimized design. Easily attaches to existing microscopes.

The "Raman EYE series" is an attachable micro-Raman sensor that boasts one of the smallest sizes in the world, measuring W120×D95×H50mm (excluding some models). It features an attachable design that allows for easy installation on existing microscopes in about one minute, enabling high-sensitivity measurements using Raman spectroscopy without the need for dedicated equipment. Additionally, its compact and optimized design allows for a starting price of 4.5 million yen. 【Features】 ■ Achieves one of the smallest sizes in the world ■ Can be attached to various microscopes ■ Easy to introduce at a low price (from 4.5 million yen) ■ Remote operation using tablets or smartphones is possible ■ Can be connected to a materials analysis platform utilizing generative AI (sold separately) *You can view the evaluation case collection from "PDF Download." Please feel free to contact us for inquiries.

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Attachable Micro-Raman Sensor for Pharmaceuticals

Easy attachment to microscopes, Raman sensors that accelerate drug analysis.

In the pharmaceutical industry, drug analysis requires rapid and accurate substance identification. Particularly in quality control and research and development of pharmaceuticals, identifying trace components and confirming crystal polymorphs are crucial for ensuring product safety and efficacy. Our "attachable micro-Raman sensor" serves as a cost-effective alternative to expensive Raman microscope systems, easily attaching to your existing microscope in just one minute, streamlining drug analysis. 【Use Cases】 - Quality control of pharmaceuticals - Substance identification in research and development - Analysis of trace components - Confirmation of crystal polymorphs 【Benefits of Implementation】 - Improved operational efficiency through rapid analysis - Cost reduction - Establishment of an analysis environment that is not location-dependent - Enhanced analysis quality through data visualization

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Attachable Micro-Raman Sensor for Semiconductor Quality Control

Easy attachment to microscopes! Strongly supports quality control in semiconductor manufacturing.

In the semiconductor industry, quality control requires the rapid and accurate analysis of the fine structures and compositions of products. In particular, foreign matter detection on wafers and chips, as well as material composition analysis, are critical factors that influence product yield and reliability. Our "attachable micro-Raman sensor," which serves as a cost-effective alternative to expensive Raman microscope systems, can be easily attached to your existing microscope in just one minute, achieving overwhelming cost performance. As one of the world's smallest plug-in mini-Raman devices, it instantly transforms your microscope into a Raman device, allowing for immediate Raman spectroscopic measurements using a smartphone or tablet. 【Application Scenarios】 - Foreign matter analysis on wafers - Material composition analysis of chips - Quality control in manufacturing processes 【Benefits of Implementation】 - Increased efficiency in quality control through rapid analysis - Cost reduction - Improved convenience through remote measurement

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Attachment-type micro Raman sensor for materials science

Easily attachable to a microscope, structural analysis of materials anywhere.

In the field of materials science, rapid and accurate structural analysis is required for the evaluation of material properties. Particularly in the development of new materials and quality control, it is important to obtain structural information from micro-regions non-destructively. Our "attachable micro-Raman sensor," which serves as an alternative to expensive large Raman microscope systems, can be easily attached to your existing microscope in just one minute. This facilitates the structural analysis of materials and contributes to the efficiency of research and development. 【Application Scenarios】 - Composition analysis of materials - Foreign substance analysis - Surface analysis - Thin film analysis 【Benefits of Implementation】 - Rapid data acquisition - Cost reduction - Increased convenience due to portability

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Attachment-type micro-Raman sensor for environmental pollutant analysis

Easily attachable to a microscope! Rapidly identify contaminants.

In the field of environmental science, there is a demand for the rapid and accurate identification of contaminants in soil and water quality. In particular, the detection of trace contaminants is crucial for environmental risk assessment. Traditional analytical methods can be time-consuming and costly, potentially hindering prompt responses. Our "Attachable Micro-Raman Sensor" can be easily mounted on your existing microscope, allowing for the swift identification of contaminants. 【Use Cases】 - Soil contamination investigation - Water quality contamination investigation - Analysis of particulate matter in the atmosphere 【Benefits of Implementation】 - Early response through rapid identification of contaminants - Detection of trace contaminants through high-sensitivity analysis - Improved cost performance

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Attachment-type micro Raman sensor for food applications

Easy Raman spectroscopic analysis of foreign substances in food using a microscope.

In the food industry, foreign matter contamination during the manufacturing process is a serious issue that not only compromises product quality but also leads to health hazards for consumers and a loss of trust for companies. Detecting foreign matter is a crucial challenge in ensuring food safety. Traditional foreign matter inspections required specialized knowledge and expensive analytical equipment. Our "attachable micro-Raman sensor" can be easily mounted on your existing microscope, allowing for the rapid and straightforward identification of foreign matter in food products. This reduces the risk of contamination and enhances food safety. 【Usage Scenarios】 - Foreign matter inspection on food production lines - Incoming inspection of raw materials - Quality control of products 【Benefits of Implementation】 - Faster foreign matter detection - Reduced analysis costs - Improved food safety

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Attachable Micro-Raman Sensor for Archaeology

Easy and accessible composition analysis of cultural properties, anywhere.

In archaeological cultural heritage investigations, it is essential to analyze the composition of valuable artifacts non-destructively to clarify their origins, manufacturing techniques, and preservation conditions. Particularly for large cultural properties that are difficult to move or when rapid analysis is required on-site, conventional large Raman microscope systems may face limitations in adequately addressing these needs. Our "attachable micro-Raman sensor" can be easily mounted on your existing microscope in just one minute, enabling convenient Raman spectroscopic measurements as one of the world's smallest plug-in mini-Raman devices. This allows for the rapid analysis of the composition of cultural properties, regardless of location. 【Application Scenarios】 - Investigations at archaeological excavation sites - Analysis of exhibits in museums and art galleries - Material analysis at cultural heritage restoration sites - Detailed analysis in laboratories 【Benefits of Implementation】 - Non-destructive composition analysis is possible - Portable and usable anywhere - Improved investigation efficiency through rapid analysis - Low-cost implementation

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Attachable Micro-Raman Sensor for Geology

Mineral identification made easy, anywhere. Simple attachment to a microscope.

In the field of geology, the rapid and accurate identification of mineral composition is essential. Traditional analytical methods are time-consuming and costly, making immediate analysis in the field difficult. Especially in field surveys and analyses outside the laboratory, portability and ease of operation are required. Our "attachable micro-Raman sensor" addresses these challenges. 【Application Scenarios】 - Mineral surveys in the field - Rapid mineral analysis in the laboratory - Analysis of exhibits in museums - Mineral observation in educational settings 【Benefits of Implementation】 - Improved survey efficiency through rapid mineral identification - Location-independent analysis due to portability - Achieving low-cost Raman spectroscopic analysis - Easy operation even without specialized knowledge

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