Shimadzu Corp.
It is a leading global producer of analytical instruments, laboratory equipment, medical diagnostic systems (such as X-ray and imaging systems), and industrial machinery.
- 81-75-823-1111
- 1 Nishinokyo Kuwabara-cho
Nakagyo-ku
Kyoto, 604-8511
Japan
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Product
Multi-omics Analysis Package
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The Multi-omics Analysis Package, developed for metabolic engineering applications, provides the ability to automatically generate metabolic maps and perform a variety of data analysis for the vast data generated in fields like metabolomics, proteomics and flux analysis. It offers a powerful platform to support drug discovery, bioengineering and other life science research applications.
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Product
Ceramics Bending Test Jig
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These test jigs enable 3- and 4-point bending tests in accordance with various JIS, ISO and ASTM standards.
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Product
Life Science Lab Instruments
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Shimadzu's Life Science Lab Instruments are focused on developing new tools to help accelerate life science research by integrating novel chemistry with innovative technology to achieve a unique position as a true provider of solutions for life scientists. Shimadzu brings together technologies and tools that help you find out more about your biological sample. Whether it is a gel based experiment for understanding protein expression, characterizing differences in metabolism in patient studies, imaging tissue with mass spectrometry, Shimadzu can help you discover more about the biology of disease.
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Product
Microchip Electrophoresis System For DNA/RNA Analysis MCE™
202 MultiNA
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This system is used to analyze the size of DNA/RNA samples, with convenientanalytical operability. It achieves analysis costs on par with agarose gel electrophoresis, and can perform fully automatic analyses of up to 108 samples. Using optimized reagent kits (four types for DNA analysis and one type for RNA analysis), the system achieves a high resolution and high sensitivity. It can significantly improve the workflow for mutation checks in genome editing, and genotype determination.
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Product
GC And GC-MS Application System
Py-GCMS
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Pyrolysis gas chromatography mass spectrometry (Py-GCMS) can be used to characterize most materials including insoluble and complex materials at trace levels often without any sample pretreatment e.g. polymers, plastics, rubber, paints, dyes, resins, coatings, cellulose, wood, textiles, oils etc.
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Product
LC Software
LabSolutions LCGC
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With LabSolutions, both LC and GC systems are operated from the same software, enabling simultaneous control of multiple instruments from a single PC. The LC and GC instruments connected can be used in a flexible manner by switching between them. The shared LC and GC analysis operating environment, which inherits the operability of LCsolution and GCsolution, lessens the training time for workstation operations.
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Product
Hydraulic Flat Grips
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These 1 kN pneumatic flat grips are designed for tensile testing metal foils. Unique grip features include a very rigid structure, which reduces swivel of the grip faces during testing, and specially shaped flat grip faces. As with all pneumatic grips, these grips allow quick specimen clamping with a repeatable clamping force.
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Product
Workstation Software For Gas Chromatograph-Mass Spectrometry
GCMSsolution
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GCMSsolution is the workstation software for Shimadzu GCMS-TQ series gas chromatograph mass spectrometers.
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Product
MS Software
LabSolutions Report Plus
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Using LabSolutions Report Plus, summary reports can be created in the format required for contract research organizations (CRO) that perform quantitative analysis on multiple components and multiple samples.
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Product
Smart Pesticides Database
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Smart Pesticides Database Ver. 2 is a residual pesticides database for GC-MS/MS Analysis, supports the Creation of Methods for MRM and SIM Mode Analysis of Residual Pesticides in Foods.
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Product
Application Specific LC Systems
Co-Sense for Impurities
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The FDA draft guidance, "Genotoxic and Carcinogenic Impurities in Drug Substances and Products: Recommended Approaches" prescribes permitted limits for genotoxic impurities in drug substances. These impurities demand more sensitive trace-level analysis than normal impurities. Generally, mass spectrometry methods, such as GC/MS or LC/MS, are used for the high-sensitivity analysis of impurities. However, there is increasing demand for the establishment of a high-sensitivity quantitation method using an absorbance or other conventional detector that is easy to operate and can easily apply existing LC analysis conditions.
















