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A 65k pixel, 150k frames-per-second camera with global gating and micro-lenses suitable for fluorescence lifetime imaging

机译:65k像素,每秒15万帧的相机,具有全局选通和微透镜,适用于荧光寿命成像

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This paper presents our work on a 65k pixel single-photon avalanche diode (SPAD) based imaging sensor realized in a 0.35μm standard CMOS process. At a resolution of 512 by 128 pixels the sensor is read out in 6.4μs to deliver over 150k monochrome frames per second. The individual pixel has a size of 24μm~2 and contains the SPAD with a 12T quenching and gating circuitry along with a memory element. The gating signals are distributed across the chip through a balanced tree to minimize the signal skew between the pixels. The array of pixels is row-addressable and data is sent out of the chip on 128 lines in parallel at a frequency of 80MHz. The system is controlled by an FPGA which generates the gating and readout signals and can be used for arbitrary real-time computation on the frames from the sensor. The communication protocol between the camera and a conventional PC is USB2. The active area of the chip is 5% and can be significantly improved with the application of a micro-lens array. A micro-lens array, for use with collimated light, has been designed and its performance is reviewed in the paper. Among other high-speed phenomena the gating circuitry capable of generating illumination periods shorter than 5ns can be used for Fluorescence Lifetime Imaging (FLIM). In order to measure the lifetime of fluorophores excited by a picosecond laser, the sensor's illumination period is synchronized with the excitation laser pulses. A histogram of the photon arrival times relative to the excitation is then constructed by counting the photons arriving during the sensitive time for several positions of the illumination window. The histogram for each pixel is transferred afterwards to a computer where software routines extract the lifetime at each location with an accuracy better than 100ps. We show results for fluorescence lifetime measurements using different fluorophores with lifetimes ranging from 150ps to 5ns.
机译:本文介绍了我们在基于0.35μm标准CMOS工艺的65k像素单光子雪崩二极管(SPAD)成像传感器上的工作。在512 x 128像素的分辨率下,传感器在6.4μs内被读出,每秒可发送超过15万个单色帧。单个像素的大小为24μm〜2,包含带有12T淬灭和门控电路的SPAD以及一个存储元件。门控信号通过平衡树分布在整个芯片上,以最小化像素之间的信号偏斜。像素阵列是行可寻址的,数据以80MHz的频率并行地从128条线上发送到芯片之外。该系统由FPGA控制,该FPGA生成门控信号和读出信号,并可用于对来自传感器的帧进行任意实时计算。相机和传统PC之间的通信协议是USB2。芯片的有效面积为5%,可通过微透镜阵列的应用显着改善。本文设计了一种用于准直光的微透镜阵列,并对其性能进行了综述。除其他高速现象外,能够产生小于5ns照明时间的选通电路可用于荧光寿命成像(FLIM)。为了测量皮秒激光激发的荧光团的寿命,传感器的照射时间与激发激光脉冲同步。然后,通过对在敏感时间内在照明窗口的几个位置到达的光子进行计数,来构造相对于激发的光子到达时间的直方图。然后,将每个像素的直方图传输到计算机,在该计算机中,软件例程以高于100ps的精度提取每个位置的寿命。我们显示了使用不同荧光团的荧光寿命测量结果,其寿命范围为150ps至5ns。

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