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Improvement to the signaling interface for CMOS pixel sensors

机译:改进CMOS像素传感器的信号接口

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The development of the readout speed of CMOS pixel sensors (CPS) is motivated by the demanding requirements of future high energy physics (HEP) experiments. As the interface between CPS and the data acquisition (DAQ) system, which inputs clock from the DAQ. system and outputs data from CPS, the signaling interface should also be improved in terms of data rates. Meanwhile, the power consumption of the signaling interface should be maintained as low as possible. Consequently, a reduced swing differential signaling (RSDS) driver was adopted instead of a low-voltage differential signaling (LVDS) driver to transmit data from CPS to the DAQ system. In order to increase the capability of data rates, a serial source termination technique was employed. A LVDS/RSDS receiver was employed for transmitting clock from the DAQ system to CPS. A new method of generating hysteresis and a special current comparator were used to achieve a higher speed with lower power consumption. The signaling interface was designed and submitted for fabrication in a 0.18 μm CMOS image sensor (GS) process. Measurement results indicate that the RSDS driver and the LVDS receiver can operate correctly at a data rate of 2 Gb/s with a power consumption of 19.1 mW.
机译:CMOS像素传感器(CPS)的读取速度的发展是受未来高能物理(HEP)实验的苛刻要求推动的。作为CPS和数据采集(DAQ)系统之间的接口,该系统从DAQ输入时钟。系统并从CPS输出数据,信令接口的数据速率也应得到改善。同时,信令接口的功耗应保持尽可能低。因此,采用了摆幅减小的差分信号(RSDS)驱动器,而不是低压差分信号(LVDS)驱动器,将数据从CPS传输到DAQ系统。为了增加数据速率的能力,采用了串行源端接技术。 LVDS / RSDS接收器用于将数据从DAQ系统传输到CPS。使用一种新的产生磁滞的方法和一个特殊的电流比较器来实现更高的速度和更低的功耗。设计并提交了信号接口,以便在0.18μmCMOS图像传感器(GS)工艺中进行制造。测量结果表明,RSDS驱动器和LVDS接收器可以以2 Gb / s的数据速率正确运行,功耗为19.1 mW。

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