
Single-photon avalanche diode - Wikipedia
A single-photon avalanche diode (SPAD), also called Geiger-mode avalanche photodiode [1] (G-APD or GM-APD [2]) is a solid-state photodetector within the same family as photodiodes and …
什么是APD的盖革模式,和雪崩效应有什么区别。? - 知乎
雪崩效应只是 apd 的工作原理,和工作模式不是一个东西。 apd工作模式分 盖革模式 和 线型模式 ,区别在于线型模式偏置电压低于 反向击穿电压 ,盖格模式偏置电压高于击穿电压。 线性模 …
Geiger-mode avalanche photodiodes, history, properties and …
2006年11月1日 · Geiger-mode avalanche photodiodes (G-APDs) have been developed during recent years and promise to be an alternative to photomultiplier tubes. They have many …
arrays of Geiger-mode avalanche photodiodes (APDs) integrated with fast complementary metal-oxide semiconductor (CMOS) time-to-digital converter circuits [2–5]. Geiger mode, discussed …
avalanche photodiodes – APD, photon counting, Geiger mode ...
When operated in the so-called Geiger mode with carefully designed electronics, avalanche photodiodes can be used even for single photon counting with dark count rates well below 1 …
• Geiger-mode processes photons digitally and in real-time • Resolution and imaging speed of Geiger-mode is unsurpassed • 3D LiDAR applications being transformed • Maps generated …
探索APD的奥秘:浅析线性模式与盖革模式 - 百家号
2024年9月18日 · 二、 盖格模式( Geiger Mode) 盖格模式,也称为单光子探测模式,是 APD在反向偏置电压高于其雪崩击穿电压时的工作状态。 在此模式下,APD对单个光子的吸收即可 …
Geiger-Mode Avalanche Photodiode Arrays Integrated to All
2016年4月8日 · This article reviews MIT Lincoln Laboratory's work over the past 20 years to develop photon-sensitive image sensors based on arrays of silicon Geiger-mode avalanche …
Geiger Avalanche Photodiodes (G-APDs) and Their Characterization
2010年10月29日 · Single photons can be detected efficiently by avalanche diodes operating in Geiger mode, known as Single-Photon Avalanche Diodes (SPADs). Avalanche photodiodes …
Modelling and fabrication of Geiger mode avalanche photodiodes
As a first assessment for the fabrication of Geiger mode avalanche photodiode arrays, single pixel devices have been made. A CMOS compatible technology is used to allow the future …