Autor der Publikation

Sparse ReRAM engine: joint exploration of activation and weight sparsity in compressed neural networks.

, , , , , , und . ISCA, Seite 236-249. ACM, (2019)

Bitte wählen Sie eine Person um die Publikation zuzuordnen

Um zwischen Personen mit demselben Namen zu unterscheiden, wird der akademische Grad und der Titel einer wichtigen Publikation angezeigt. Zudem lassen sich über den Button neben dem Namen einige der Person bereits zugeordnete Publikationen anzeigen.

 

Weitere Publikationen von Autoren mit dem selben Namen

Monolithic GaN-Based Driver and GaN Switch With Diode-Emulated GaN Technique for 50-MHz Operation and Sub-0.2-ns Deadtime Control., , , , , , , , , und 1 andere Autor(en). IEEE J. Solid State Circuits, 57 (12): 3877-3888 (2022)A Pre-Charge Tracking Technique in the 40 MHz High-Speed Switching 48-to-5 V GaN-Based DC-DC Buck Converter for Reducing Large Self-Commutation Loss and Achieving a High Efficiency of 95.4%., , , , , , und . IEEE J. Solid State Circuits, 57 (7): 2045-2053 (2022)17.7 A 0.03mV/mA Low Crosstalk and 185nA Ultra-Low-Quiescent Single-Inductor Multiple-Output Converter Assisted by 5-Input Operational Amplifier for 94.3% Peak Efficiency and 3.0W Driving Capability., , , , , , , , und . ISSCC, Seite 267-269. IEEE, (2021)Sparse ReRAM engine: joint exploration of activation and weight sparsity in compressed neural networks., , , , , , und . ISCA, Seite 236-249. ACM, (2019)A 28nm 32Kb embedded 2T2MTJ STT-MRAM macro with 1.3ns read-access time for fast and reliable read applications., , , , , und . ISSCC, Seite 482-484. IEEE, (2018)A Pre-Charge Tracking Technique in the 40MHz High-switching 48-to-5V DC-DC Buck Converter with GaN Switches for Reducing Large Self-commutation Loss and Achieving a High Efficiency of 95.4%., , , , , , und . ESSCIRC, Seite 311-314. IEEE, (2021)Transcription factor regulatory modules provide the molecular mechanisms for functional redundancy observed among transcription factors in yeast.. BMC Bioinform., 20-S (23): 630 (2019)Identifying piRNA targets on mRNAs in C. elegans using a deep multi-head attention network., , , , und . BMC Bioinform., 22 (1): 503 (2021)Identifying biologically interpretable transcription factor knockout targets by jointly analyzing the transcription factor knockout microarray and the ChIP-chip data., und . BMC Syst. Biol., (2012)cisMEP: an integrated repository of genomic epigenetic profiles and cis-regulatory modules in Drosophila., , , und . BMC Syst. Biol., 8 (S-4): S8 (2014)