® Hex'/> Randomized Pulse-Modulating Instruction-Issue Control Circuit for a Current and Temperature Limiting System in a 7nm Hexagon™ Compute DSP
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Randomized Pulse-Modulating Instruction-Issue Control Circuit for a Current and Temperature Limiting System in a 7nm Hexagon™ Compute DSP

机译:7nm Hexagon™计算DSP中用于限流和限温系统的随机脉冲调制指令-问题控制电路

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A randomized pulse-modulation (RPM) circuit controls the instruction-issue rate in a Qualcomm® Hexagon™ compute DSP (CDSP) for adapting performance to limit current and temperature below target thresholds. The current and temperature limiting system contains on-die current and temperature sensors, a limits evaluation (LE) circuit, and the RPM instruction-issue control circuit. When current or temperature exceeds a target threshold, the RPM instruction-issue control circuit adjusts performance in ~5 CDSP clock cycles after accounting for the clock-domain-crossing synchronization overhead to satisfy the 1µs latency requirement for the entire limiting system. Silicon measurements from a 7nm Hexagon™ CDSP demonstrate that the RPM instruction-issue control circuit enables a 0.4% performance resolution across a wide range of operation from 100% to 0.4% while avoiding thread starvation during multi-threaded execution to maintain quality of service.
机译:随机脉冲调制(RPM)电路控制高通公司的指令发出率 ® Hexagon™计算DSP(CDSP)用于调整性​​能以将电流和温度限制在目标阈值以下。限流和限温系统包含芯片上的限流和温度传感器,限位评估(LE)电路和RPM指令发布控制电路。当电流或温度超过目标阈值时,在考虑了时钟域交叉同步开销后,RPM指令发出控制电路会在约5个CDSP时钟周期内调整性能,以满足整个限制系统的1µs延迟要求。 7nm Hexagon™CDSP的硅测量结果表明,RPM指令发布控制电路可实现0.4 从100开始的广泛操作范围内的性能分辨率 至0.4 同时在多线程执行过程中避免线程匮乏,以保持服务质量。

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