Search Results - "Novello, Alessandro"

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  1. 1

    A 1.01 NEF Low-Noise Amplifier Using Complementary Parametric Amplification by Atzeni, Gabriele, Guichemerre, Jeremy, Novello, Alessandro, Jang, Taekwang

    “…This paper presents a discrete-time low-noise amplifier for miniaturized sensor nodes. Such amplifier achieves a noise efficiency factor of 1.01 and a power…”
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    Journal Article
  2. 2

    Challenges and Innovations in Fully Integrated DC-DC Converters for IoT and Modern Computing Platforms by Song, Suyang, Novello, Alessandro, Jang, Taekwang

    “…Fully integrated DC-DC converters have become pivotal components in the evolution of today's electronic landscape, especially in shaping the future of Internet…”
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    Conference Proceeding
  3. 3

    Design Challenges of Fully Integrated DC-DC Converters for Modern Power Delivery Architectures by Song, Suyang, Novello, Alessandro, Jang, Taekwang

    Published in IEEE solid-state circuits letters (2024)
    “…This letter presents recent design challenges of modern power delivery architectures and circuit techniques for them. Recent computational loads impose…”
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    Journal Article
  4. 4

    A 1.25-GHz Fully Integrated DC-DC Converter Using Electromagnetically Coupled Class-D LC Oscillators by Novello, Alessandro, Atzeni, Gabriele, Kunzli, Jonas, Cristiano, Giorgio, Coustans, Mathieu, Jang, Taekwang

    Published in IEEE journal of solid-state circuits (01-12-2021)
    “…Fully integrated power management circuits are promising candidates to provide small form factors and meet high power density demand of modern computing…”
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    Journal Article
  5. 5

    A 1.5-GHz Fully Integrated DC–DC Converter Based on Electromagnetically Coupled Class-D LC Oscillators and Resonant LC Flying Impedance Achieving 4.1-W/mm2 Peak Power Density and 77% Peak Efficiency by Novello, Alessandro, Atzeni, Gabriele, Keller, Tim, Jang, Taekwang

    Published in IEEE solid-state circuits letters (01-01-2024)
    “…This letter introduces a fully integrated DC–DC converter based on electromagnetically coupled class-D LC oscillators (EMLC) manufactured in a 22nm FDSOI CMOS…”
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    Journal Article
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    A 1.5GHz Fully Integrated DC-DC Converter Based On Electromagnetically Coupled Class-D LC Oscillators and Resonant LC Flying Impedance achieving 4.1W/mm2 Peak Power Density and 77% Peak Efficiency by Novello, Alessandro, Atzeni, Gabriele, Keller, Tim, Jang, Taekwang

    Published in IEEE solid-state circuits letters (07-12-2023)
    “…This letter introduces a fully integrated DC-DC converter based on electromagnetically coupled class-D LC oscillators (EMLC) manufactured in a 22nm FDSOI CMOS…”
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    Journal Article
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    A Second-Order Temperature-Compensated On-Chip R-RC Oscillator Achieving 7.93ppm/°C and 3.3pJ/Hz in -40°C to 125°C Temperature Range by Ji, Youngwoo, Liao, Jiawei, Arjmandpour, Sina, Novello, Alessandro, Sim, Jae-Yoon, Jang, Taekwang

    “…With the development of various miniaturized IoT applications, the need for on-chip time management has been growing rapidly. An on-chip RC oscillator is one…”
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    Conference Proceeding
  10. 10

    A 2.3-GHz Fully Integrated DC-DC Converter Based on Electromagnetically Coupled Class-D LC Oscillators Achieving 78.1% Efficiency in 22-nm FDSOI CMOS by Novello, Alessandro, Atzeni, Gabriele, Cristiano, Giorgio, Coustans, Mathieu, Jang, Taekwang

    Published in IEEE solid-state circuits letters (2021)
    “…This letter introduces a fully integrated dc-dc converter based on electromagnetically coupled class-D LC oscillators featuring on-chip stacked 8-shaped…”
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    Journal Article
  11. 11

    17.3 A 1.25GHz Fully Integrated DC-DC Converter Using Electromagnetically Coupled Class-D LC Oscillators by Novello, Alessandro, Atzeni, Gabriele, Cristiano, Giorgio, Coustans, Mathieu, Jang, Taekwang

    “…Over the past years, the constant reduction in the size of consumer electronics has strengthened the demand for fully integrated power management circuits…”
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    Conference Proceeding
  12. 12

    An Energy-Efficient Low-Noise Complementary Parametric Amplifier Achieving 0.89 NEF by Atzeni, Gabriele, Guichemerre, Jeremy, Novello, Alessandro, Jang, Taekwang

    “…This paper presents an energy-efficient low-noise amplifier, achieving 0.89 noise efficiency factor (NEF) using discrete-time parametric amplification. A…”
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    Conference Proceeding
  13. 13

    A 0.45/0.2-NEF/PEF 12-nV/√Hz Highly Configurable Discrete-Time Low-Noise Amplifier by Atzeni, Gabriele, Novello, Alessandro, Cristiano, Giorgio, Liao, Jiawei, Jang, Taekwang

    Published in IEEE solid-state circuits letters (2020)
    “…This letter proposes a discrete-time low-noise amplifier (LNA) achieving a 0.45 noise efficiency factor (NEF) and 0.2 power efficiency factor (PEF), the lowest…”
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    Journal Article
  14. 14

    An Impedance-boosted Switched-capacitor Low-noise Amplifier Achieving 0.4 NEF by Atzeni, Gabriele, Incandela, Rosario, Ji, Youngwoo, Novello, Alessandro, Ghiasi, Hesam, Cristiano, Giorgio, Liao, Jiawei, Huang, Qiuting, Jang, Taekwang

    “…This paper presents an impedance-boosted analog front-end (AFE) for mm-scale ultra-low power sensor nodes. The proposed AFE employs a discrete-time low noise…”
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    Conference Proceeding
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    A 2.3GHz Fully Integrated DC-DC Converter based on Electromagnetically Coupled Class-D LC Oscillators achieving 78.1% Efficiency in 22nm FDSOI CMOS by Novello, Alessandro, Atzeni, Gabriele, Cristiano, Giorgio, Coustans, Mathieu, Jang, Taekwang

    Published in 2021 Symposium on VLSI Circuits (13-06-2021)
    “…A fully integrated DC-DC converter based on electromagnetically coupled class-D LC oscillators achieving 0.42-3.2W/mm 2 power density and 69.4-78.1% efficiency…”
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    Conference Proceeding
  17. 17

    A 8.7ppm/°C, 694nW, One-Point Calibrated RC Oscillator using a Nonlinearity-Aware Dual Phase-Locked Loop and DSM-Controlled Frequency-Locked Loops by Cristiano, Giorgio, Liao, Jiawei, Novello, Alessandro, Atzeni, Gabriele, Jang, Taekwang

    Published in 2020 IEEE Symposium on VLSI Circuits (01-06-2020)
    “…This paper presents an on-chip timer composed of two DSM-controlled RC oscillators, locked through a non-linearity aware digital dual phase-locked loop. The…”
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    Conference Proceeding
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