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Unlocking High Resolution Arithmetic Operations within Memristive Crossbars for Error Tolerant Applications.

, , , , , and . VLSI-SoC, page 1-6. IEEE, (2022)

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Approximate hardware generation using symbolic computer algebra employing grobner basis., , and . DATE, page 889-892. IEEE, (2018)Approximate Hardware Generation Using Formal Techniques., , and . Approximate Circuits, Springer, (2019)Unlocking High Resolution Arithmetic Operations within Memristive Crossbars for Error Tolerant Applications., , , , , and . VLSI-SoC, page 1-6. IEEE, (2022)A Fully Fledged HDL Design Flow for In-Memory Computing with Approximation Support. Bremen University, Germany, (2022)base-search.net (ftsubbremen:oai:media.suub.uni-bremen.de:Publications/elib/5742).Multiply-Accumulate Enhanced BDD-Based Logic Synthesis on RRAM Crossbars., , and . ISCAS, page 1-5. IEEE, (2020)Polynomial Formal Verification of Approximate Functions., , and . ISVLSI, page 92-97. IEEE, (2022)ASNet: Introducing Approximate Hardware to High-Level Synthesis of Neural Networks., , , and . ISMVL, page 64-69. IEEE, (2020)Unlocking approximation for in-memory computing with Cartesian genetic programming and computer algebra for arithmetic circuits., and . it Inf. Technol., 64 (3): 99-107 (2022)Generation of Verified Programs for In-Memory Computing., and . DSD, page 815-820. IEEE, (2022)Logic Synthesis for Hybrid CMOS-ReRAM Sequential Circuits., , and . ISVLSI, page 431-436. IEEE, (2019)