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You are reading an Entry #454506 on Sindin Drop Shape Analyzer in the A' Design Awards' Design+Encyclopedia, the crowdsourced encyclopedia of art, architecture, design, innovation and technology. You too can contribute to the Design+Encyclopedia with your insights, ideas and concepts. Create a New Entry now. | ||||||||||||||||||
Sindin Drop Shape AnalyzerSindin Drop Shape AnalyzerSindin Drop Shape Analyzer is a sophisticated scientific instrument designed for precise measurement of surface tension and wettability properties between liquids and solids, representing a significant advancement in materials science research equipment. This precision apparatus integrates five essential components: a high-brightness LED light source system, a micro-injection unit, an adjustable sample table, a high-resolution image acquisition system, and specialized analysis software. The instrument's design exemplifies a harmonious blend of functionality and aesthetics, featuring a distinctive square contour with elegant arc transitions and a professional finish in black and silver aluminum alloy. Distinguished by its Silver A' Design Award in the Scientific Instruments and Research Equipment Design category, this analyzer offers comprehensive measurement capabilities for contact angles ranging from 0 to 180 degrees, utilizing advanced optical imaging principles for accurate data collection. The system's sophisticated design incorporates a three-dimensional sample table with precise movement controls, a high-resolution zoom microscope (0.7-4.5x), and an industrial-grade CCD digital camera, all seamlessly integrated through a USB 2.0 interface. The instrument's innovative features include automatic batch fitting capabilities, eliminating human error in measurements, and an intuitive software interface that generates detailed data reports. Particularly valuable in nano-material science and engineering research, this analyzer enables researchers to study surface modifications, hydrophobicity, and wettability characteristics across various materials including surfactants, PCB components, semiconductors, textiles, and coatings. The design's emphasis on operational efficiency and user experience is evident in its modular construction, allowing for adaptable configurations to accommodate different material testing requirements while maintaining exceptional precision and reliability in scientific measurements. Author: Adam Dawson Keywords: surface tension analysis, wettability measurement, contact angle determination, scientific instrumentation, materials characterization, hydrophobicity testing SOURCES: |
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