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The Front-End System For MARE In Milano

机译:Marano的母马前端系统

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The first phase of MARE consists of 72 μ-bolometers composed each of a crystal of AgReO_4 readout by Si thermistors. The spread in the thermistor characteristics and bolometer thermal coupling leads to different energy conversion gains and optimum operating points of the detectors. Detector biasing levels and voltage gains are completely remote-adjustable by the front end system developed, the subject of this paper, achieving the same signal range at the input of the DAQ system. The front end consists of a cold buffer stage, a second pseudo differential stage followed by a gain stage, an antialiasing filter, and a battery powered detector biasing set up. The DAQ system can be used to set all necessary parameters of the electronics remotely, by writing to a μ-controller located on each board. Fiber optics are used for the serial communication between the DAQ and the front end. To suppress interference noise during normal operation, the clocked devices of the front end are maintained in sleep-mode, except during the set-up phase of the experiment. An automatic DC detector characterization procedure is used to establish the optimum operating point of every detector of the array. A very low noise level has been achieved: about 3 nV/VHz at 1 Hz and 1 nVA/Hz for the white component, high frequencies.
机译:母马的第一阶段由72μ - 钻头组成,由SI热敏电阻组成的令人读出的令人读数的每个晶体。热敏电阻特性的涂布和吹射量大耦合导致探测器的不同能量转换增益和最佳工作点。检测器偏置电平和电压增益完全可通过开发的前端系统进行全遥遥控,本文的主题,在DAQ系统的输入中实现相同的信号范围。前端由冷缓冲阶段,第二伪差分阶段,后跟增益级,抗锯齿滤波器和电池供电的检测器偏置设置。 DAQ系统可用于通过写入每个板上的μ-Controller来远程设置电子设备的所有必要参数。光纤用于DAQ和前端之间的串行通信。为了在正常操作期间抑制干扰噪声,除了在实验的设置相位期间,前端的时钟设备保持在睡眠模式。自动直流检测器表征过程用于建立阵列的每个检测器的最佳操作点。已经实现了非常低的噪声水平:1 Hz的约3nV / VHz,白色部件的1 Hz和1个NVA / Hz,高频。

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