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The Design of High Performance Low Power Triple-Track Magnetic Sensor Chip

机译:高性能低功耗三轨磁传感器芯片的设计

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摘要

This paper presents a design of a high performance and low power consumption triple-track magnetic sensor chip which was fabricated in TSMC 0.35 μm CMOS process. This chip is able to simultaneously sense, decode and read out the information stored in triple-track magnetic cards. A reference voltage generating circuit, a low-cost filter circuit, a power-on reset circuit, an RC oscillator, and a pre-decoding circuit are utilized as the basic modules. The triple-track magnetic sensor chip has four states, i.e., reset, sleep, swiping card and data read-out. In sleep state, the internal RC oscillator is closed, which means that the digital part does not operate to optimize energy consumption. In order to improve decoding accuracy and expand the sensing range of the signal, two kinds of circuit are put forward, naming offset correction circuit, and tracking circuit. With these two circuits, the sensing function of this chip can be more efficiently and accurately. We simulated these circuit modules with TSMC technology library. The results showed that these modules worked well within wide range input signal. Based on these results, the layout and tape-out were carried out. The measurement results showed that the chip do function well within a wide swipe speed range, which achieved the design target.
机译:本文提出了一种采用台积电0.35μmCMOS工艺制造的高性能,低功耗三轨磁传感器芯片的设计。该芯片能够同时感测,解码和读出存储在三轨磁卡中的信息。基准电压产生电路,低成本滤波器电路,上电复位电路,RC振荡器和预解码电路被用作基本模块。三轨磁传感器芯片具有四种状态,即复位,睡眠,刷卡和数据读出。在休眠状态下,内部RC振荡器处于关闭状态,这意味着数字部分无法优化能耗。为了提高解码精度并扩大信号的检测范围,提出了两种电路:命名偏移校正电路和跟踪电路。通过这两个电路,可以更有效,更准确地检测该芯片的功能。我们使用台积电技术库对这些电路模块进行了仿真。结果表明,这些模块在宽范围的输入信号中都能很好地工作。基于这些结果,进行了布局和流片。测量结果表明,该芯片在较宽的滑动速度范围内都能正常工作,从而达到了设计目标。

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