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A 3.6-Gb/s point-to-point heterogeneous-voltage-capable DRAM interface for capacity-scalable memory subsystems.

, , , , , , , , , , , , , , , and . IEEE J. Solid State Circuits, 40 (1): 233-244 (2005)

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DRAM Refresh with Master Wordline Granularity Control of Refresh Intervals: Position Paper., , , , and . MEMSYS, page 3:1-3:6. ACM, (2021)Reducing electrical power dissipation in computational imaging systems through special-purpose optics., , , , , and . ISCAS, page 1-4. IEEE, (2017)Reduction of CMOS Image Sensor Read Noise to Enable Photon Counting., , , and . Sensors, 16 (4): 517 (2016)Unraveling codes: fast, robust, beyond-bound error correction for DRAM., , , and . CoRR, (2024)Lensless Smart Sensors: Optical and thermal sensing for the Internet of Things., and . VLSI Circuits, page 1-2. IEEE, (2016)Optimization of CMOS Image Sensor Utilizing Variable Temporal Multi-Sampling Partial Transfer Technique to Achieve Full-frame High Dynamic Range with Superior Low Light and Stop Motion Capability., , , , , , and . IMSE, page 52-63. Society for Imaging Science and Technology, (2017)A 3.6-Gb/s point-to-point heterogeneous-voltage-capable DRAM interface for capacity-scalable memory subsystems., , , , , , , , , and 6 other author(s). IEEE J. Solid State Circuits, 40 (1): 233-244 (2005)Hardware validated unified model of multibit temporally and spatially oversampled image sensors with conditional reset., , and . J. Electronic Imaging, 23 (1): 013021 (2014)Understanding the Energy Consumption of Dynamic Random Access Memories.. MICRO, page 363-374. IEEE Computer Society, (2010)Multichannel sampling of low light level scenes with unknown shifts., , , , and . ICIP, page 863-867. IEEE, (2013)