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Recording Front-End Systems Analysis

机译:记录前端系统分析

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As data rates continue to increase, front-end design techniques and analysis must evolve in order to manage the transmission line effects and the parasitic effects of the transducer, electronics, and electrical interconnect. In addition, the complete write process contains linear and non-linear effects, which requires write signal wave-shaping for optimum performance. Data signal fidelity is maintained by proper termination at the read/write integrated circuit (IC), which is dependent on the read/write transducer's impedance range. For writing, transmission-line termination techniques along with the write-driver electronics are utilized to induce the required overshoot for transitions in the write current waveform. For reading, the key aspects of signal-to-noise ratio (SNR) and bandwidth are the parasitic components at the read transducer and the input at the read amplifier. The Noise Figure (NF) of the front-end system can be modeled to include the parasitic effects along with the transmission losses of the interconnect. Here, we expound on design techniques and component values for the front-end system.
机译:随着数据速率的不断提高,前端设计技术和分析必须发展,以便管理传输线效应以及换能器,电子器件和电气互连的寄生效应。此外,完整的写入过程包含线性和非线性效应,这要求对写入信号进行波形整形以获得最佳性能。数据信号的保真度通过在读/写集成电路(IC)处的适当端接来保持,这取决于读/写传感器的阻抗范围。对于写入,利用传输线端接技术以及写入驱动器电子设备来引发写入电流波形过渡所需的过冲。对于读取,信噪比(SNR)和带宽的关键方面是读取换能器和读取放大器输入的寄生成分。可以对前端系统的噪声系数(NF)建模,以包括寄生效应以及互连的传输损耗。在这里,我们讨论前端系统的设计技术和组件值。

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