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  • Analysis of Fluid Inclusions
    As microscopic traces in geology, fluid inclusions are tiny bubbles of liquid and gas that get permanently trapped during the crystal formation process in a geological environment. When the host mineral gradually condenses and solidifies, these inclusions, like being sealed in a time capsule, accurately preserve the fluid sample at the moment of their capture. The size of these inclusions varies extremely, from less than one micrometer to several millimeters. Inside, they may contain aqueous solutions, carbonaceous compounds, tiny gas bubbles, and even finer microscopic minerals. Most importantly, the components of these fluids reflect the environmental conditions at the time of inclusion formation.
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    2024-11-21
  • Factors Affecting Heating Uniformity of Wafer Heating Plates
    In the semiconductor manufacturing process, wafer heating is a crucial component. Its main function is to provide uniform heating for wafers to ensure the precision and consistency of subsequent manufacturing processes. Heating uniformity is one of the key performance indicators of wafer heating plates, which directly affects the quality and efficiency of wafer processing.
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    2024-06-18
  • How to Use a Semiconductor Heating/Cooling Stage for New Material Testing?
    A semiconductor heating/cooling stage is an experimental device capable of precisely controlling the temperature of samples. It realizes the heating or cooling of samples by utilizing the semiconductor thermoelectric effect. Due to its rapid and accurate temperature adjustment capability, this device plays an important role in new material testing.
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    2024-05-30
  • Exploring the Use of Corona Polarization Devices in Industry
    The application of corona polarization devices in industry is extensive and profound, especially in the fields of material processing and surface treatment. Corona polarization is a physical phenomenon that can change the surface properties of materials, such as adhesion, wettability, and electrical conductivity.
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    2024-05-23
  • In Which Fields Are Ultra-High Temperature Heating Stages Widely Used?
    Ultra-high temperature heating stages are widely used in many scientific research and industrial fields, especially in scenarios where it is necessary to simulate and study the behavior of materials under harsh high-temperature conditions.
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    2024-05-10
  • Principles and Technical Advantages of External Adjustment Probe Station
    The external adjustment probe station is a type of semiconductor testing equipment, mainly used for electrical performance testing of chips. Its working principle is to place probes on the chip and conduct electrical performance tests on the chip. It places the test probes on the test points on the chip surface, then uses a signal source to apply a certain voltage or frequency signal to the chip, and then uses instruments such as oscilloscopes to detect the output electrical signal of the chip, thereby determining the electrical parameters and performance of the chip.
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    2024-04-24
  • Electrochemical Cell - Knowledge Popularization
    In the modern new energy technology field, electrochemical cells play an important role as an effective way to store and convert energy. Whether it is portable electronic devices driven by lithium - ion batteries, fuel cells providing power for automobiles, or even large - scale energy storage systems balancing the power grid demand, electrochemical cells all have important functions. Therefore, the accurate testing and evaluation of cell performance become particularly important. This article will deeply discuss the importance, methods, and challenges faced in electrochemical cell testing, and look forward to the future development direction of this field.
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    2024-04-22
  • Application of Mechanical Property Testing Technology for Flexible Materials in Temperature Environments
    Flexible electronic devices are developing rapidly and are widely used in fields such as medical diagnosis, monitoring, and flexible robots. Flexible electronics cover organic electronics, plastic electronics, bioelectronics, nanoelectronics, printed electronics, etc., including multiple applications such as RFID, flexible displays, organic electroluminescent (OLED) displays and lighting, chemical and biological sensors, flexible photovoltaics, flexible memory and storage, flexible batteries, and wearable devices. With their rapid development, the fields they involve have also expanded further, and they have now become one of the research hotspots in interdisciplinary sciences.
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    2022-07-30

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