Providing silent, low power, and optimal SWaP (Size, Weight, Power) performance through piezo technology.
Nanomotion's shutter technology optimizes SWaP (Size, Weight, and Power) by applying piezo technology, making it usable even in the most challenging environments (various temperatures, shocks, vibrations). It is active in fields such as IR image sensors.
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The S787 is a linear shutter combined with Nanomotion's EDGE motor. It enables an ultra-lightweight configuration while optimizing the distance from the focal plane array (FPA). The shutter is equipped with a movable blade measuring 17×15mm, capable of moving 15mm in 100ms. The movable blade is supported on one side by a bearing structure integrated within the EDGE actuator and by external shaft bearings to eliminate blade deflection and vibration. Additionally, Nanomotion offers an evaluation kit. This evaluation kit supports two operating modes: GUI mode using a PC and FPGA mode utilizing I2C communication. In GUI mode, users can install a dedicated Windows application on their PC to control the shutter. 〇 Key Features - Compact and lightweight 14.7x17.0mm 15g - Excellent quietness 15dB (5m) - High emissivity (blade) Over 94% (wavelength 8–14μm) - Environmental resistance Compliant with MIL-STD-810F - User-friendly control Built-in driver, I2C communication
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Infrared camera / Products compliant with MIL-STD-810F, etc.
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A workshop skilled in servo control. ○ In hydraulic servo control, we design and manufacture control devices, create control software, and collaborate with partner companies to design and produce optimal hydraulic units and hydraulic cylinders. We also select components such as hydraulic servo valves. ○ High-speed movement and high-precision positioning using ultrasonic motors. ○ Utilization in robots and unmanned transport vehicles with drivers for servo motors. ○ Controllers and control devices for construction machinery developed through contract development. ○ Creating moving objects such as hydraulic robots and designing and manufacturing 2-axis or 6-axis motion bases through industry-academia collaboration.