首页> 外文会议>IEEE International Solid-State Circuits Conference >A 64×64-Pixel Digital Silicon Photomultiplier Direct ToF Sensor with 100MPhotons/s/pixel Background Rejection and Imaging/Altimeter Mode with 0.14 Precision up to 6km for Spacecraft Navigation and Landing
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A 64×64-Pixel Digital Silicon Photomultiplier Direct ToF Sensor with 100MPhotons/s/pixel Background Rejection and Imaging/Altimeter Mode with 0.14 Precision up to 6km for Spacecraft Navigation and Landing

机译:64×64像素数码硅光电倍增管直接TOF传感器,带100mphoton / s /像素背景抑制和成像/高度计模式,距离航天器导航和着陆达6km的0.14%精度高达6km

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Recent technology surveys identified flash light detection and ranging technology as the best choice for the navigation and landing of spacecrafts in extraplanetary missions, working from single-point altimeter to range-imaging camera mode. Among all available technologies for a 2D array of direct time-of-flight (DTOF) pixels, CMOS single-photon avalanche diodes (SPADs) represent the ideal candidate due to their rugged design and electronics integration. However, state-of-the-art SPAD imagers are not designed for operation over a wide variety of scenarios, including variable background light, very long to short range, or fast relative movement.
机译:最近的技术调查确定了Flash光检测和测距技术,作为航天特派团航天器导航和降落的最佳选择,从单点高度计到范围 - 成像相机模式。在2D直接飞行时间(DTOF)像素的所有可用技术中,CMOS单光子雪崩二极管(SPAD)代表了由于其坚固的设计和电子集成而导致的理想候选者。然而,最先进的SPAD成像仪不设计用于在各种场景上运行,包括可变背景光,很长到短范围,或快速相对运动。

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