High-speed monitoring of surface potential distribution on a plane up to 9 samples [contract measurement].
The surface potential distribution can be monitored rapidly up to 9 samples, allowing for quick measurement of the surface potential distribution. Additionally, it is easy to create reports on the surface potential at any point using a dedicated application. 【Features】 ■ High-speed monitoring of surface potential distribution ■ Continuous data acquisition at intervals of a few millimeters ■ Simultaneous measurement of temporal changes in surface potential for up to 9 samples ■ Measurement of surface roughness using a laser displacement meter is also possible ■ Report creation function with a dedicated application *For more details, please refer to the PDF document or feel free to contact us.
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【Other Features】 - The measurement capability varies depending on the accuracy of the displacement gauge (optional), but roughness measurements up to 0.01μm are possible. - Surface potential meters from various manufacturers can be selected. - Users can freely decide the driving program to control the stage. - The substrate can be charged from above using corona discharge while set in place. *For more details, please refer to the PDF document or feel free to contact us.
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Independent Administrative Institution National Institute of Advanced Industrial Science and Technology Technology Transfer Company The concept of "measuring force" will change significantly. The "small forces" that could not be measured with conventional measuring devices have become an accessible approach in research and development. NanoSees provides cutting-edge measurement devices and measurement technologies that can assist your research and development efforts. We are a solution company for measuring particle adhesion forces. Technology Introduction We offer measurement solutions focused on the measurement and analysis technologies related to the adhesion, aggregation, and friction forces of particles in the micrometer range. Accurately understanding the physical properties of powders from various angles is crucial technical information for product development. It is possible to predict the behavior of powders in bulk, including flowability, compressibility, and stress relaxation, as well as the behavior of aggregates. Our measurement methods allow for a significantly clearer evaluation of powder physical properties, which have been difficult to understand in previous research and development. This enables rapid product development, quality control of products, and stabilization of manufacturing processes (such as achieving measured and managed powder physical properties).