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I2C System-on-Chip for bi-dimensional gas-sensor arrays providing extended dynamic-range A/D conversion and row temperature regulation

机译:I 2 C片上系统,用于二维气体传感器阵列,提供扩展的动态范围A / D转换和行温度调节

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An I2C programmable 0.35µm CMOS System-on-Chip (SoC) for bi-dimensional gas-sensor arrays providing extended dynamic range read-out with suitable embedded A/D converter and digitally controlled row temperature has been developed. The SoC also features low-power consumption, low-cost production, wide re-configurability and thus large scale compliance with several types of micro-sensors, achieving maximum performance if connected to resistive metal-oxide gas-sensor grids. The CMOS SoC read-out sub-circuit is inspired to laboratory professional electrometers and made up of a current to digital converter plus suitable very low insertion loss analog multiplexers. If connected to a 5×5 gas-sensor array, it features 380 possible measurement configurations. Arbitrary read-out sequences and temperature profiles, in time and in space, in the range [25°C÷500°C] may be run through embedded I2C interface and, without requiring calibration circuits, the SoC features over 160dB measured dynamic range in sensor current read-out with a worst-case output rate of 1 reading per second. Concerning instead digital row temperature regulation, the SoC sub-circuit features an accuracy, including ripple, better than 1°C reaching the set-point temperature value in less than 30ms.
机译:用于二维气体传感器阵列的I 2 C可编程0.35µm CMOS片上系统(SoC),具有合适的嵌入式A / D转换器和数控行温度,可提供扩展的动态范围读数已经被开发出来。 SoC还具有低功耗,低成本生产,广泛的可重新配置性以及与多种类型的微传感器的大规模合规性的特点,如果连接到电阻式金属氧化物气体传感器网格,则可实现最佳性能。 CMOS SoC读出子电路的灵感来自于实验室专业的静电计,由电流数字转换器以及合适的极低插入损耗的模拟多路复用器组成。如果连接到5×5气体传感器阵列,它具有380种可能的测量配置。可以通过嵌入式I 2 C接口运行在[25°C÷500°C]范围内的时间和空间范围内的任意读出序列和温度曲线,而无需校准电路, SoC在传感器电流读数中具有超过160dB的动态范围测量值,最坏情况下的输出速率为每秒1个读数。相对于数字行温度调节,SoC子电路具有包括波动在内的精度,其精度优于1°C,且在不到30ms的时间内即可达到设定点温度值。

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