Search Results - "Jonnalagadda, V. P."

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  1. 1

    Temperature Evolution in Nanoscale Carbon-Based Memory Devices Due to Local Joule Heating by Bachmann, T. A., Alexeev, A. M., Koelmans, W. W., Zipoli, Federico, Ott, A. K., Dou, C., Ferrari, A. C., Nagareddy, V. Karthik, Craciun, M. F., Jonnalagadda, V. P., Curioni, Alessandro, Sebastian, A., Eleftheriou, Evangelos, Wright, C. David

    Published in IEEE transactions on nanotechnology (01-09-2017)
    “…Tetrahedral amorphous (ta-C) carbon-based memory devices have recently gained traction due to their good scalability and promising properties like nanosecond…”
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    Journal Article
  2. 2

    In-Memory Compute Chips with Carbon-based Projected Phase-Change Memory Devices by Syed, G. S., Brew, K., Vasilopoulos, A., Jonnalagadda, V. P., Kersting, B., Philip, T., Bragaglia, V., Ambrogio, S., Buchel, J., Giannopoulos, J., Gallo, M. Le, Cheng, C.-W., BrightSky, M., Narayanan, V., Saulnier, N., Sebastian, A.

    “…Achieving sufficient compute precision in matrix-vector multiply (MVM) operations is a key challenge for analog in-memory computing (AIMC) that relies on…”
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    Conference Proceeding
  3. 3

    Carbon-Based Resistive Memories by Koelmans, W. W., Bachmann, T., Zipoli, F., Ott, A. K., Dou, C., Ferrari, A. C., Cojocaru-Miredin, O., Zhang, S., Scheu, C., Wuttig, M., Nagareddy, V. K., Craciun, M. F., Alexeev, A. M., Wright, C. D., Jonnalagadda, V. P., Curioni, A., Sebastian, A., Eleftheriou, E.

    “…Carbon-based nonvolatile resistive memories are an emerging technology. Switching endurance remains a challenge in carbon memories based on tetrahedral…”
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    Conference Proceeding
  4. 4
  5. 5

    8-bit Precision In-Memory Multiplication with Projected Phase-Change Memory by Giannopoulos, I., Sebastian, A., Le Gallo, M., Jonnalagadda, V.P., Sousa, M., Boon, M.N., Eleftheriou, E.

    “…In-memory computing is an emerging non-von Neumann approach in which certain computational tasks such as matrix-vector multiplication are performed using…”
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    Conference Proceeding
  6. 6

    Joule heating effects in nanoscale carbon-based memory devices by Bachmann, T. A., Alexeev, A. M., Koelmans, W. W., Zipoli, F., Ott, A. K., Dou, C., Ferrari, A. C., Nagareddy, V. K., Craciun, M. F., Jonnalagadda, V. P., Curioni, A., Sebastian, A., Eleftheriou, E., Wright, C. D.

    “…Joule heating plays a key role in the operation of carbon based memory devices. We developed a model that describes the field and temperature dependence of…”
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    Conference Proceeding
  7. 7

    Optimal output fast feedback in two-time scale control of flexible arms by Siciliano, B., Calise, A. J., P. Jonnalagadda, V. R.

    “…Control of lightweight flexible arms moving along predefined paths can be successfully synthesized on the basis of a two-time scale approach. A model following…”
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    Conference Proceeding
  8. 8

    Optimal output feedback in two time scale systems by Calise, A. J., P. Jonnalagadda, V. R., Siciliano, Bruno

    “…A formulation is presented for designing optimal output feedback regulators of fixed order. The formulation exploits an observer canonical form to represent…”
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    Conference Proceeding