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  • Rugged IP67-rated Fanless Edge System With NVIDIA® Jetson™ TX2, HDMI, GbE LAN, 1-CH PoE, USB 2.0 And 100 To 240 VAC Power Input

    eBOX800-900-FL - Axiomtek Co., Ltd.

    The Artificial Intelligence (AI) embedded system, eBOX800-900-FL, adopts a full IP67-rated extruded aluminum and heavy-duty steel case for dust protection and water resistance. Moreover, the AI embedded system comes with a wide operating temperature range of -30°C to 60°C (-22°F to +140°F) and a vibration endurance for up to 3Grms. The embedded system is powered by the NVIDIA Jetson™ TX2 module which has a powerful 64-bit ARM A57 processor and 256-core NVIDIA® Pascal GPU. It features M12 type I/O connectors and four N-jack waterproof antenna openings for operational stability in rugged environments. The eBOX800-900-FL is ideal for AI edge computing and deep learning applications, such as smart city, smart manufacturing, smart transportation, and much more. The eBOX800-900-FL has 8GB of LPDDR4 memory and 32GB eMMC onboard. It comes with a wide range of 100 to 240 VAC power input with 10kV surge protection. The rugged edge computer also features one M.2 SSD PCIe 2.0 x4 socket which supports high-performance NVM Express interface for extensive storage needs. Furthermore, the embedded box PC is equipped with a PoE port to support the applications that require the use of IP cameras or any PoE device, i.e., traffic flow monitoring, license plate recognition, vehicle recognition, machine vision.

  • Bearing Testers

    Anderon Meters - MOTOMEA

    *Measures the anderon value in an assembled bearing.*Detects slight surface irregularities arising from machining imperfections and other factors.*Detects displacement in a radial direction caused by rolling surface irregularities.*Provides the “anderon” value, a numerical expression of the degree of vibration and noise in the bearing, allows quantitative assessment of bearing performance.*Enables the discovery of the causes of vibrations (scratches on the raceways of outer and inner races made during machining, scratches on ball surfaces, contamination by dust particles, etc.).*Enables the sorting of bearings by precision class and more accurate assessment of bearing quality.*Development of high-quality products: aids in the development of high-quality, durable bearings that generate minimal vibration and noise.*Assurance of product quality: allows data to be gathered that can be used for objective assessment of quality, particularly vibration and noise characteristics.*Optimal management of products by quality: High-sensitivity detection of minute but critical variations in product characteristics, allowing to sort bearings accurately by quality for optimal product management.*Improved productivity: allows inspection of bearings before installation in high-precision, high-performance products susceptible to vibration, minimizing defects in assembled products and improving productivity.*Optimal parts control in the open market environment: permits high-accuracy acceptance inspections of delivered parts, allowing to test various samples obtained from both domestic and overseas manufacturers to help secure parts that offer optimal quality.

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