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A high-speed confocal microscope for 3D imaging of live or fixed biological samples, offering multi-wavelength laser excitation and high-resolution imaging capabilities.
A high-resolution TEM providing imaging, diffraction, and spectroscopic analysis at the atomic scale, suitable for materials science and nanotechnology applications.
An inverted optical microscope designed for high-resolution live-cell imaging, fluorescence microscopy, and advanced multi-channel experiments in cell biology and materials research.
A thermal processing system used to introduce p-type dopants into semiconductor substrates through controlled diffusion at elevated temperatures.
A high-temperature furnace is used to introduce n-type dopants into semiconductor wafers through controlled diffusion processes.
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The UV photolithography system transfers patterns onto semiconductor wafers using ultraviolet light. A patterned mask exposes photoresist to define microscopic structures. This process is fundamental to microelectronics fabrication.
The Tergeo plasma cleaner removes organic contaminants from sample surfaces using plasma. This improves sample cleanliness and imaging quality. It is commonly used before microscopy or surface analysis experiments.
The critical point dryer removes liquids from delicate samples without causing structural damage. It replaces liquid with gas at a critical point where surface tension disappears. This technique is commonly used in electron microscopy sample preparation.
The hydraulic pellet press compresses powdered materials into solid pellets using high pressure. These pellets can then be analyzed using spectroscopic techniques. The instrument is widely used in materials and chemical analysis laboratories.
The wire saw cuts fragile or hard materials using a thin moving wire and abrasive slurry. This method produces very precise cuts with minimal mechanical stress. It is frequently used for slicing semiconductor wafers and crystal samples.
The precision saw cuts samples with high accuracy while minimizing material damage. It is used to prepare wafers, ceramics, and other hard materials for further analysis. The instrument is essential for sample preparation in research laboratories.
The Mastersizer 3000+ measures particle size distribution using laser diffraction. It analyzes how particles scatter light to determine their size range. This instrument is commonly used in materials science and pharmaceutical research.
The cryostat maintains extremely low temperatures for cutting frozen biological or materials samples. It allows researchers to prepare thin sections while preserving sample integrity. Cryostats are commonly used in pathology and biological research.
The cryo-ultramicrotome cuts ultra-thin sections of samples at very low temperatures. Cooling the specimen preserves delicate structures and prevents deformation. This technique is often used for electron microscopy sample preparation.
The Leica RM2125 rotary microtome slices extremely thin sections of materials or biological samples. These sections are prepared for microscopic analysis. The instrument is widely used in histology and materials sample preparation.
The Filmetrics F-20 measures thin film thickness using optical reflectance spectroscopy. By analyzing reflected light from a film surface, the system calculates thickness and optical properties. It is widely used in semiconductor and coating research.
The DektakXT surface profilometer measures step heights and surface roughness on materials. A fine stylus scans across the sample surface to record topographical variations. It is commonly used to measure thin film thickness and etch depth.