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Loihi Asynchronous Neuromorphic Research Chip

机译:Loihi异步神经形态研究芯片

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摘要

Intel's "Loihi" neuromorphic research chip implements spiking neural networks on 128 custom cores with 1024 neurons each. It supports a wide variety of algorithms inspired by computational neuroscience, notably on-chip learning. Loihi's design is specified in the Communicating Sequential Processes (CSP) language and implemented by an automated flow that generates two-phase bundled-data (BD) asynchronous pipelines with pulsed latch datapaths. This optimizes area and energy while using a mostly standard cell library and simplifies integration with synchronous collateral. The pre-silicon design was verified by static timing analysis, back-annotated gate-level simulation, and FPGA emulation. Tunable delay lines provide sufficient timing margin in extreme corners such as near-threshold-voltage. Loihi was manufactured in Intel's 14nm ASIC process in Q4 2017 and is functional from 0.55V to 1.25V.
机译:英特尔的“Loihi”神经形态研究芯片在128个定制核心上实现了尖峰神经网络,每个核心有1024个神经元。它支持各种各样的算法灵感来自计算神经科学,特别是片上学习。 Loihi的设计是在通信顺序过程(CSP)语言中指定的,并通过自动流实现,自动流实现,该自动流实现,该流程生成具有脉冲锁存数据路径的两相捆绑数据(BD)异步管道。这在使用大多数标准单元库的同时优化区域和能量,并简化了与同步抵押品的集成。通过静态定时分析,回带栅级模拟和FPGA仿真验证了硅预设计。可调谐延迟线在诸如近阈值电压的极端拐角处提供足够的时序余量。 Loihi于2017年第四季度在英特尔的14nm ASIC过程中制造,功率为0.55V至1.25V。

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