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Showing posts from October, 2023

High Resolution ToF 3d Depth Camera and 3d Depth Sensor| CUBE EYE

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Meerecompany created the CUBE EYE 3d depth camera. This is a maker of high resolution TOF 3d camera s and 3d depth sensor s for object detection and accurate volume measurement. High Resolution (TRUE VGA) / ToF3d Depth Camera S100D The ToF 3d Depth Camera S100D is a compact and low-power 3d depth camera. It uses a time-of-flight (ToF) sensor to measure the distance to objects in a scene, with a depth pixel count of 640x480 and an operating range of 0.2m to 4m. ToF cameras work by illuminating a scene with a modulated light source and measuring the phase shift between the emitted light and the reflected light. The phase shift is proportional to the distance to the object, so the camera can generate a depth map of the scene. ToF cameras have several advantages over other 3d depth sensing technologies, such as stereo vision and structured light. They are less sensitive to ambient light and can operate in low-light conditions. They also have a longer range and are more ac...

High-Performance Time-Of-Flight (ToF) Cameras | CUBE EYE

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The CUBE EYE brand of time-of-flight (ToF) cameras was developed by MeereCompany, a South Korean company that specializes in the research and manufacturing of high-tech equipment for the display, semiconductor, solar cell, and medical industries. It is a high-performance camera that can accurately measure the distance to objects up to 10 meters away. The camera is sunlight robust, so it can be used in outdoor applications. It is also dust and water resistant. Cube Eye TOF 3d Camera uses a laser to emit a light pulse and then measures the time it takes for the pulse to return. Distance to the object is calculated by dividing the speed of light by the time taken for the pulse to return. The Features of the Cube Eye TOF Camera: Software development kit (SDK): The software development kit (SDK) provides a variety of tools and functions for developing 3D applications. Pre-trained models: The pre-trained models can be used to quickly and easily create 3D applications. It ...

3D Vision Solution Can Be Used to Create a Variety of 3D Applications| CUBE EYE

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The CUBE EYE 3D Vision Solution is a suite of products and services that use the Cube Eye TOF 3D Depth Camera to provide 3D vision capabilities. The solution includes the camera, a software development kit (SDK), and a variety of pre-trained models. The Cube Eye 3D Vision Solution can be used to create a variety of 3D applications, such as: Gesture recognition: The camera can be used to detect and track gestures, such as hand movements or facial expressions. This can be used for applications such as human-computer interaction or gaming. Object tracking: The camera can be used to track the movement of objects in a scene. This can be used for applications such as robotics or augmented reality. 3D scanning: The camera can be used to create 3D models of objects or environments. This can be used for applications such as manufacturing or product design. Motion capture: The camera can be used to capture the movement of people or objects. This can be used for applications such as spo...

High-Quality TOF 3D Depth Camera | CUBE EYE

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CUBE EYE is a brand of time-of-flight (ToF) cameras developed by MeereCompany, a South Korean company that specializes in the development and manufacturing of high-tech equipment for the display, semiconductor, solar cell, and medical industries. ToF (time of flight) cameras use lasers to measure the distance between the camera and the object. Cube Eye is used in a variety of applications, including retail intelligence, surveillance, and 3D scanning.   Cube Eye TOF 3D Depth Camera ToF sensors work by emitting a light pulse and then measuring the time it takes for the pulse to return. The distance to the object is then calculated by dividing the speed of light by the time it took for the pulse to return. The Cube Eye TOF 3D Depth Camera uses a modulated light source. This means that the light source is turned on and off in a regular pattern. The receiver's detector is synchronized with the light source, so it only measures the light that is emitted during the on p...