Search Results - "Pijper, R."

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  1. 1

    Understanding the Self-Heating Effects Measured With the AC Output Conductance Method in Advanced FinFET Nodes by Tondelli, L., Asanovski, R., Scholten, A. J., Dinh, T. V., Tam, S.-W., Pijper, R. M. T., Selmi, L.

    Published in IEEE transactions on electron devices (01-11-2024)
    “…Accurate determination of thermal resistances having a clear physical interpretation is crucial for analyzing self-heating effects (SHEs) in bulk FinFETs and…”
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    Journal Article
  2. 2

    Charge transport and trapping in Cs-doped poly(dialkoxy- p -phenylene vinylene) light-emitting diodes by Gommans, H. H. P., Kemerink, M., Andersson, G. G., Pijper, R. M. T.

    “…Al/Cs/MDMO-PPV/ITO (where MDMO-PPV stands for poly[2-methoxy-5-(3()-7()-dimethyloctyloxy)-1,4phenylene vinylene] and ITO is indium tin oxide) light-emitting…”
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    Journal Article
  3. 3

    On the Accuracy of the Parameters Extracted From S-Parameter Measurements Taken on Differential IC Transmission Lines by Tiemeijer, L.F., Pijper, R., van Noort, W.

    “…In this paper, we compare the accuracy of the telegrapher's equation transmission line parameters extracted with different methods from deembedded S -parameter…”
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    Journal Article
  4. 4

    A 60GHz wideband low noise eight-element phased array RX front-end for beam steering communication applications in 45nm CMOS by Drago, S., van Schie, M. C. A., de Graauw, A. J. M., Osorio, J. F., Spella, M., Yu, Y., Vaucher, C. S., Pijper, R. M. T., Tiemeijer, L. F.

    “…This paper presents an 8-elements phased array receiver front-end in 45nm CMOS technology. The receiver uses a 4-bit resolution RF phase shifter to compensate…”
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    Conference Proceeding
  5. 5

    On the Output Conductance Dispersion due to Traps and Self-Heating in Large Bulk, FDSOI and FinFET nMOS Devices by Tondelli, L., Scholten, A. J., Asanovski, R., Pijper, R. M. T., Dinh, T. V., Selmi, L.

    “…We report experimental investigations on the AC small signal output conductance (g_{D D}) of large nMOSFETs with bulk, FDSOI, and bulk FinFET architecture. The…”
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    Conference Proceeding
  6. 6

    Assessment of the Transient Self-Heating Effect and its Impact on the Performance of Watt-Level RF Power Amplifier in a FinFET Technology by Dinh, T. V., Tam, S-W., Scholten, A. J., Tondelli, L., Pijper, R. M. T., Kondapalli, S. H., Xie, J., Wong, A., To, I., Asanovski, R., Selmi, L.

    “…The dynamic behavior of self-heating effect in FinFET devices has a profound impact on the performance of RF circuits. Hence an accurate assessment of such…”
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    Conference Proceeding
  7. 7

    Analysis, Design, Modeling, and Characterization of Low-Loss Scalable On-Chip Transformers by Tiemeijer, L. F., Pijper, R. M. T., Andrei, C., Grenados, E.

    “…A few important design choices for a low-loss scalable on-chip transformer are discussed, the most important one being that the capacitive and inductive…”
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    Journal Article
  8. 8
  9. 9

    On the Accuracy of the Parameters Extracted FromS-Parameter Measurements Taken on Differential IC Transmission Lines by Tiemeijer, L F, Pijper, R M T, van Noort, W

    “…In this paper, we compare the accuracy of the telegrapher's equation transmission line parameters extracted with different methods from deembeddedS-parameter…”
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    Journal Article
  10. 10

    FinFET compact modelling for analogue and RF applications by Scholten, A J, Smit, G D J, Pijper, R M T, Tiemeijer, L F, Mercha, A, Klaassen, D B M

    “…A new, compact expression for the effective FinFET gate resistance is derived and validated on experimental data. Moreover, FinFET thermal noise measurements…”
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    Conference Proceeding
  11. 11

    A Physics-Based Causal Bond-Wire Model for RF Applications by Nazarian, A. L., Tiemeijer, L. F., John, D. L., van Steenwijk, J. A., de Langen, M., Pijper, R. M. T.

    “…A predictive causal physics-based compact model that describes the electrical behavior of multiple bond wires as a function of signal frequency and geometry of…”
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    Journal Article
  12. 12

    Investigation of power and linearity performance for low- and high-voltage SiGe HBTs by Dinh, T. V., Pijper, R., Vanhoucke, T., Gridelet, E., Klaassen, D. B. M.

    “…Linearity and power performance in both small-and large-signal region of low- and high-voltage SiGe HBTs has been investigated by on-wafer measurements and…”
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    Conference Proceeding
  13. 13

    A 60GHz digitally controlled phase shifter in CMOS by Yikun Yu, Baltus, P., van Roermund, A., Jeurissen, D., de Graauw, A., van der Heijden, E., Pijper, R.

    “…This paper presents a 60 GHz digitally controlled phase shifter in the 65 nm CMOS technology. Using a differential varactor-loaded transmission-line…”
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    Conference Proceeding
  14. 14

    Systematic Lumped-Element Modeling of Differential IC Transmission Lines by Tiemeijer, L.F., Pijper, R.M.T., van Steenwijk, J.A., van Noort, W.

    “…In this paper, we report a systematic and efficient approach to obtain lumped-element models for differential integrated-circuit interconnect transmission…”
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    Journal Article
  15. 15

    Compact noise modeling of SiGe Heterojunction Bipolar Transistors: Relevance of base-collector shot noise correlation and non quasi-static effects in the quasi-neutral emitter by Vitale, F., Pijper, R., van der Toorn, R.

    “…This paper addresses the challenge of compact model based noise prediction for present and upcoming generations industrial SiGe Heterojunction Bipolar…”
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    Conference Proceeding
  16. 16

    Base resistance distribution in bipolar transistors: Relevance to compact noise modeling and extraction from admittance parameters by Vitale, F, Pijper, R, van der Toorn, R

    “…We discuss the relevance of the distribution of the base resistance of planar bipolar transistors with respect to noise-and small-signal characteristics. We…”
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    Conference Proceeding
  17. 17

    Colpitts VCOs for low-phase noise and low-power applications with transformer-coupled tank by van der Heijden, E., Farrugia, A., Breunisse, R., Vaucher, C.S., Pijper, R.

    “…This paper presents two 17 GHz transformer-coupled tank VCOs, implemented in a 0.25 mum SiGe:C BiCMOS technology. The VCOs have different impedance-levels of…”
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    Conference Proceeding
  18. 18

    Fast noise prediction for process optimization using only standard DC and S-parameter measurements by Gridelet, E., Scholten, A. J., Klaassen, D. B. M., van Dalen, R., Pijper, R., Magnee, P. H. C., Tiemeijer, L. F., Dinh, V. T., Vanhoucke, T.

    “…This paper presents a method to select, amongst a series of devices differing on their process, the best device in terms of high-frequency noise…”
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    Conference Proceeding
  19. 19

    Contact resistance measurement structures for high frequencies by Roy, D., Pijper, R. M. T., Tiemeijer, L. F., Wolters, R. A. M.

    “…Knowledge of the interfacial contact impedance offered by the device at its operating frequency range is crucial for accurate modelling and understanding of…”
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    Conference Proceeding
  20. 20

    On-chip mm-Wave passives by van Noort, Wibo D., Detchevery, C., Rodriguez, A., Pijper, R.

    “…Waveguides and varactors are evaluated with their application in integrated SiGe mm-wave circuits in mind. Coplanar waveguides and hyperabrupt varactors show…”
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    Conference Proceeding