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Comparison of the hierarchical and crossbar-based architectures for the construction multibank multiport memory

机译:基于分层和横杆的施工型式施工型架构的比较

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It is expected that a multi-bank multi-port memory can fulfill simultaneously the severe requirements of highly parallel systems with respect to access speed and high integration density, not possible with the conventional multi-port memory based on multiport cells. In this paper, we report a design study in 0.5μm 2 metal CMOS technology, which compares two possibilities for constructing a multi-bank multiport memory, the hierarchical construction (hierarchical multi-port memory (HMA)) and the conventional crossbar-switch based construction (crossbar memory). We also report an extrapolation formula for extending the design results to different memory configurations. Our results verify that the HMA approach allows more efficient designs than the crossbar approach for most practical memory configurations, achieving an average of about 26% smaller area for 32 and 64 blocks and 4, 8, 16 and 32 ports, and 28.5% shorter access time for reading.
机译:期望多银行多端口存储器可以同时满足高度平行的系统的严重要求,相对于访问速度和高积分密度,不可于基于多端口单元的传统多端口存储器。 在本文中,我们报告了0.5μm2金属CMOS技术的设计研究,它比较了构造多银行多端口存储器的两种可能性,分层结构(分层多端口存储器(HMA))和基于传统的横杆交换机 施工(横杆记忆)。 我们还报告了一个推断公式,用于将设计结果扩展到不同的内存配置。 我们的结果验证了HMA方法允许比大多数实用内存配置的横杆方法更有效,平均为32和64个块和4,8,16和32端口的平均面积约为26%,以及28.5%更短的接入 阅读时间。

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