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Design of Energy-Efficient Cross-coupled Differential Photonic-SRAM (pSRAM) Bitcell for High-Speed On-Chip Photonic Memory and Compute Systems

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arxiv 2503.19544 v1 pith:XVOUOCTB submitted 2025-03-25 physics.optics

classification physics.optics
keywords memorypsramphotonicbitcelldifferentialhigh-speedcross-coupleddesign
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In this work, we propose a novel differential photonic static random access memory (pSRAM) bitcell design using fabrication-friendly photonic components. The proposed pSRAM overcomes the key limitations of traditional electrical SRAMs, which struggle with speed and power efficiency due to increasing bitline/wordline capacitance and interconnect resistance associated with long electrical wires as technology scales. By utilizing cross-coupled micro-ring resonators and differential photodiode structures, along with optical waveguides instead of traditional wordlines and bitlines, our pSRAM exhibits high-speed, and energy-efficient performance. The pSRAM bitcell demonstrates a read/write speed of 40 GHz, with a switching (static) energy consumption of approximately 0.6 pJ (0.03 pJ) per bit and a footprint of 330x290 um^2 using the GlobalFoundries 45SPCLO process node. These bitcells can be arranged into a 2D memory array, enabling large-scale, on-chip photonic memory subsystems ideal for high-speed memory, data processing and computing applications.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. X-pSRAM: A Photonic SRAM with Embedded XOR Logic for Ultra-Fast In-Memory Computing

    eess.SY 2025-06 conditional novelty 6.0 of 10

    A simulated photonic SRAM cell stores a bit and computes its XOR with an incoming optical bit in 100 ps, with WDM supporting parallel multi-bit operations.

  2. A Mixed-Signal Photonic SRAM-based High-Speed Energy-Efficient Photonic Tensor Core with Novel Electro-Optic ADC

    physics.optics 2025-06 conditional novelty 5.0 of 10

    A simulated photonic tensor core with photonic SRAM weights and a 3-bit one-hot electro-optic ADC reaches 4.10 TOPS and 3.02 TOPS/W at an ADC speed of 8 GS/s.

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