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New developments in CCD imaging devices for low-level confocal light imaging

机译:用于低级共焦光成像的CCD成像装置的新发展

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Charge coupled devices (CCD) have several advantages over tube camera imaging devices. These advantages include: geometric stability, high dynamic range (12, 14, or 16 bits) and photometric linearity. In order to achieve low-readout noise the readout is usually limited to 50 kpixels per second. The readout time is several times longer than video rates; the slow readout at less than video rates is the major disadvantage. A new CCD imager has been coupled to a Nipkow disk, confocal light microscope and its performance is evaluated using both reflected light and low-light-level fluorescence imaging. The CCD imager is a TK515, silicon CCD which is sensitive$EQ@ve from the UV to the near-IR. The sensor is a full frame area imager, with CCDs fabricated using a buried channel, three-level polysilicon gate process with very high charge-transfer efficiency ($GRT@0.9999) and low dark current. Low noise on-chip amplifiers provide and interface to external preamplifiers with readout noise typically $LS@10 electrons at $MIN@90$DGR C, and 50 kpixels/second data rate. The chip is a thinned, back-illuminated device with anti-reflection coatings. The quantum efficiency is $GRT@80% at 400 nm and $GRT@90% at 600 nm. To determine its performance the Tektronix CCD was mounted in a Photometrics liquid cooled camera, attached to a Technical Instruments K2Bio confocal microscope.
机译:电荷耦合器件(CCD)在管相机成像装置上具有几个优点。这些优点包括:几何稳定性,高动态范围(12,14或16位)和光度线性度。为了实现低读数噪声,读出通常限制为每秒50 kpixels。读出时间比视频速率长几倍;慢速读数少于视频率是主要缺点。新的CCD成像器已经耦合到Nipkow盘,共聚焦光显微镜及其性能,使用反射的光和低光级荧光成像评估。 CCD成像器是TK515,硅CCD,硅CCD,从UV到近IR敏感的$ eq @ ve。传感器是全框架区域成像仪,使用埋入通道制造的CCD,三级多晶硅栅极工艺具有非常高的电荷 - 转移效率(MTGRTTGT@0.9999)和低暗电流。低噪声片上放大器提供和接口与读出噪声的外部前置放大器通常以$ MIN @ 90 $ DGR C,以及50 Kpixels /秒数据速率的$ LS @ 10电子。该芯片是具有抗反射涂层的变薄的后照射装置。量子效率为80%,在400纳米和600nm处为$ 90%。为了确定其性能,Tektronix CCD安装在光学测量液液体冷却相机中,连接到技术仪器K2BIO共聚焦显微镜。

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