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Leica DMS1000 Leica Leica Microsystems

用于数码化分析、观察和测量的模块化数码显微镜系统 Leica DMS1000

  • 能源,采矿,自然资源显微镜

    能源,采矿,自然资源显微镜

    改造世界的基础设施同时保持可持续发展始终是一个优先事项。徕卡显微系统具有强大的和可定制的显微镜解决方案,帮助您充分利用您的资源,引导你的新项目,开发下一代的能源来驱动的世界,在我们的环境中研究的丰富的自然资源。
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  • 汽车 & 交通工业显微镜

    汽车 & 交通工业显微镜

    徕卡希望成为您密不可分的合作伙伴,带给您最佳成像解决方案,让您在竞争中保持领先地位。 徕卡智能成像解决方案可助您应对特殊应用,满足当前和未来的需要,让您专心致志进行创新。 您一定了解到消费者对于创新技术的需求与日俱增,因此必须在新型汽车中实施越来越多的创新技术。电动交通和导航的进步令出行变得更加方便。燃油效率和安全性也在不断提高。现代技术的通信和娱乐显著改变了人们对出行的态度。然而您会发现,这些车辆的设计绝非微不足道的小事。同时,您还必须满足 ISO 和 VDA 生产标准,并关注未来发展趋势,例如工业 4.0。
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  • 医疗器械

    医疗器械

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  • Coming to Grips with Biological Information Through Flexible Organic Electronics: Developing Bendable and Stretchable Biosensors and Device

    Coming to Grips with Biological Information Through Flexible Organic Electronics: Developing Bendable and Stretchable Biosensors and Device

    What do you associate with the word sensor? Perhaps technologies delivering automation in factories and other production sites? That may be what comes to mind, but advances in organic electronics are now driving the rapid development of biological sensors that measure physiological signals when in contact with the skin, organs, and other parts of the body.
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  • How Digital Microscopy can Contribute to Efficient Workflows for Microelectronics and Electronics

    How Digital Microscopy can Contribute to Efficient Workflows for Microelectronics and Electronics

    This report explains how users can benefit from the digital microscope portfolio of Leica Microsystems to attain cost-effectiveness over entire workflows in research and development (R&D), product innovation, process engineering, production, quality control and assurance (QC/QA), and failure analysis (FA).
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  • Using Telecentric Optical Systems to Optimize Forensic Image Accuracy and Reproducibility

    Using Telecentric Optical Systems to Optimize Forensic Image Accuracy and Reproducibility

    When the first compound microscopes were invented in 1590, scientists marveled at their new ability to see tiny objects and features that were previously invisible to the eye and therefore seemingly nonexistent. Ever since then, the study of these miniscule details has brought science into a forensic world once ruled by intuition and deduction. Choosing a microscope with the right optics can reduce these hidden errors considerably to provide results that are both more accurate and more reproducible – two attributes that are both essential in modern forensics.
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  • Using Telecentric Optical Systems to Optimize Industrial Image Accuracy and Reproducibility

    Using Telecentric Optical Systems to Optimize Industrial Image Accuracy and Reproducibility

    When the first multi-lens microscopes were invented in 1590, scientists marveled at their new ability to SEE small objects and features in the natural world that were previously invisible to the eye and therefore seemingly nonexistent. With the constant miniaturization of parts and products in automated manufacturing over the past 5 decades, the use of microscopes has spread increasingly from science to industry. Today microscopes are found in a multitude of assembly and inspection applications wherever visualization and measurement of miniscule features are required.
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  • What You Always Wanted to Know About Digital Microscopy, but Never Got Around to Asking

    What You Always Wanted to Know About Digital Microscopy, but Never Got Around to Asking

    Digital microscopy is one of the buzz words in microscopy – and there are a couple of facts that are useful to know. Georg Schlaffer, Product Manager with Leica Microsystems, has often been asked about digital microscopy by customers and colleagues alike. He has worked together with Scientific Writer Jim DeRose for comprehensive answers to the most important ones.
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  • Key Factors for Efficient Cleanliness Analysis

    Key Factors for Efficient Cleanliness Analysis

    In the automobile industry, even the smallest particles on single components can cause malfunctioning. Fuel, lubricant and urea filter systems are particularly vulnerable. Component cleanliness has therefore become a central quality characteristic in the modern manufacturing process, especially when fitting components of various suppliers.
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  • Clean Parts – More Reliable and Longer Lifetime

    Clean Parts – More Reliable and Longer Lifetime

    In the automotive industry, the technical cleanliness of function-critical individual and system components has become an increasingly critical criterion for reliability and service life. This trend is also reflected in ISO/DIS 16232 (road vehicles – cleanliness of components of fluid circuits). Microscope systems with corresponding analytical software enable efficient and reliable residual dirt analysis of injectors, pumps, control units and other micromechanical components.
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  • Technical Cleanliness in the Production of Automotive Components

    Technical Cleanliness in the Production of Automotive Components

    Interview with Dr. Michael Härtel, head of the materials testing laboratory at Continental Automotive GmbH, Powertrain Division, Limbach-Oberfrohna, Germany
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