Used HITACHI S-9360 #9162661 for sale

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ID: 9162661
Wafer Size: 12"
Scanning electron microscope, 12".
HITACHI S-9360 is a scanning electron microscope (SEM) that has been specifically designed for efficient metallography. It has a three-axis (X-Y-Z) sample stage and a multi-segmented sample holder allowing for efficient sample processing. Moreover, its compact design and multi-axis stage allows for easy operation. It has a variety of sample preparation related features including various specimen holders for accessibility to a wide range of specimen sizes and a low-vibration drive system for smooth operation with minimal vibration. The sample chamber is designed to guarantee a high degree of vacuum, making it suitable for large area samples when secured on the holder. HITACHI S9360 also employs a silicon drift detector (SDD) which is capable of achieving high-resolution digital imaging. It has a direct electron detection system that delivers contrast that is intelligible and renders details missed by other methods of image acquisition. The enhanced imaging hardware resolution and drift detection system mean S 9360 can measure nanostructures as small as two nanometers. The advanced image acquisition controls implemented in HITACHI S 9360 have spectral discrimination capabilities which can be used to differentiate between materials. This feature makes it especially ideal for studying complex materials or high-resolution narrow line scanning. Similarly, automated scanning for EDS mapping and WDX mapping assures accurate spatial resolution. The integrated software of S-9360 enables the user to control and analyze the image acquired from the SDD. Data from EDS mapping and WDX mapping can be merged, allowing complex combinations such as overlaying, masking and density measurements. Furthermore, the advanced analysis tools can be used to facilitate the quantification of data. S9360 is an inimitable piece of equipment due to its unique combination of cutting-edge technology and efficient operation. With its array of features, it facilitates low-cost, high-resolution image acquisition making it an ideal choice for both industrial and academic applications.
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