Hard-disk drive read-channel design trade-offs for areal densities beyond 2 Tb/in2

IF 1.2 4区 工程技术 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE Analog Integrated Circuits and Signal Processing Pub Date : 2023-12-18 DOI:10.1007/s10470-023-02198-0
Tertulien Ndjountche
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Abstract

Due to the ever-increasing recording densities, disk-drive read channels are required to operate efficiently at high speeds. With the use of conventional design techniques, a compromise should be made between speed, power, latency and chip area. Improvements of head and media technology and the move from conventional single-track magnetic recording to two-dimensional magnetic recording help increase the areal density of magnetic data storage. Especially for the read channel, a performance gain is achieved by using more powerful coding and signal processing algorithms to mitigate inter-symbol and inter-track interferences. Timing recovery is essential to extract timing information in order to sample read data without a significant bit error, while calibration is performed to cancel the effects of gain and dc offset errors. Speed improvement and power consumption diminution are achieved in the resulting read channel system by using high-speed and power-efficient building blocks based on improved algorithms and pipeline stages to shorten critical paths.

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面积密度超过 2 Tb/in2 的硬盘驱动器读取通道设计取舍
由于记录密度不断提高,磁盘驱动器读取通道需要高速高效运行。在使用传统设计技术时,必须在速度、功耗、延迟和芯片面积之间做出折衷。磁头和介质技术的改进以及从传统的单轨磁记录到二维磁记录的转变,有助于提高磁性数据存储的面积密度。特别是对于读取通道,通过使用更强大的编码和信号处理算法来减少符号间和磁道间的干扰,可实现性能提升。定时恢复对于提取定时信息至关重要,以便在没有明显位误差的情况下对读取数据进行采样,同时进行校准以消除增益和直流偏移误差的影响。通过使用基于改进算法和流水线阶段的高速、高能效构件来缩短关键路径,从而提高了读取通道系统的速度并降低了功耗。
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来源期刊
Analog Integrated Circuits and Signal Processing
Analog Integrated Circuits and Signal Processing 工程技术-工程:电子与电气
CiteScore
0.30
自引率
7.10%
发文量
141
审稿时长
7.3 months
期刊介绍: Analog Integrated Circuits and Signal Processing is an archival peer reviewed journal dedicated to the design and application of analog, radio frequency (RF), and mixed signal integrated circuits (ICs) as well as signal processing circuits and systems. It features both new research results and tutorial views and reflects the large volume of cutting-edge research activity in the worldwide field today. A partial list of topics includes analog and mixed signal interface circuits and systems; analog and RFIC design; data converters; active-RC, switched-capacitor, and continuous-time integrated filters; mixed analog/digital VLSI systems; wireless radio transceivers; clock and data recovery circuits; and high speed optoelectronic circuits and systems.
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