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A Double-Side CMOS-CNT Biosensor Array With Padless Structure for Simple Bare-Die Measurements in a Medical Environment

机译:具有无垫结构的双面CMOS-CNT生物传感器阵列,用于在医学环境中进行简单的裸片测量

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This paper presents a double-side CMOS-carbon nanotube (CNT) sensor array for simple bare-die measurements in a medical environment based on a 0.35 standard CMOS process. This scheme allows robust measurements due to its inherent back-side rectifying diodes with a high latch-up resistance. In particular, instead of using pads, only two contact metal structures: a wide ring structure around the sensor area on the front side and a plate structure at the backside are used for both power and single I/O line. The back-side rectification is made possible by creating VDD and VSS through the back-side and front-side, respectively. The single I/O line is conditioned such that it doubles as either the power source or the ground, depending on whether the chip is face down or face up. A modified universal asynchronous receiver/transmitter (UART) serial communication scheme with pulse based I/O signal transmission is developed to reduce the power degradation during the signaling intervals. In addition, communication errors and I/O power dissipation for the receiver path are minimized by using level sensitive switch control and double sampling difference amplifier. In order to implement these special functions, a controller chip with a special I/O protocol is designed. Using this controller chip, issuing commands and receiving data can both be performed on a single line and the results are flexibly measured through either the backside or the front side of the chip contacts. As a result, a stable operation of under 150 mW maximum power at 2 MHz data rate can be achieved. The double-side chips with 32 32 and 64 64 sensor arrays occupy areas of and , respectively.
机译:本文提出了一种双面CMOS-碳纳米管(CNT)传感器阵列,用于基于0.35标准CMOS工艺的医学环境中的简单裸片测量。由于其固有的背面整流二极管具有高闩锁电阻,因此该方案可以进行可靠的测量。特别是,不使用焊盘,而仅使用两种接触金属结构:正面和背面的板状结构分别用于电源线和单个I / O线,该金属环在正面侧围绕传感器区域,而在背面侧则采用平板结构。通过分别通过背面和正面创建VDD和VSS,可以进行背面整流。根据芯片是面朝下还是面朝上,对单个I / O线进行调节,使其可以兼作电源或接地。开发了一种改进的具有基于脉冲的I / O信号传输的通用异步接收器/发送器(UART)串行通信方案,以减少信令间隔期间的功率下降。此外,通过使用电平敏感的开关控制和双采样差动放大器,可以将接收器路径的通信错误和I / O功耗降至最低。为了实现这些特殊功能,设计了具有特殊I / O协议的控制器芯片。使用该控制器芯片,发出命令和接收数据都可以在一条线上完成,并且可以通过芯片触点的背面或正面灵活地测量结果。结果,可以在2 MHz数据速率下实现最大功率低于150 mW的稳定操作。具有32 32和64 64传感器阵列的双面芯片分别占据和的面积。

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