---
_id: '24049'
abstract:
- lang: eng
  text: This paper presents a broadband sampler IC using a current-mode integrated-and-hold-circuit
    (IHC) as sampling circuit. The sampler IC exhibits 1dB large-signal bandwidth
    of 70 GHz and excellent signal integrity on hold-mode. With a sampling rate of
    5 GS/s, it achieves effective number of bits (ENOB) of 6 bit at 9.9 GHz input
    frequency. The chip was fabricated in a 130 nm SiGe BiCMOS technology from IHP.
author:
- first_name: Liang
  full_name: Wu, Liang
  id: '30401'
  last_name: Wu
- first_name: Maxim
  full_name: Weizel, Maxim
  id: '44271'
  last_name: Weizel
  orcid: https://orcid.org/0000-0003-2699-9839
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: '0000-0002-5950-6618 '
citation:
  ama: 'Wu L, Weizel M, Scheytt C. 70 GHz Large-signal Bandwidth Sampler Using Current-mode
    Integrate-and-Hold Circuit in 130 nm SiGe BiCMOS Technology. In: <i>Asia-Pacific
    Microwave Conference (APMC)</i>. ; 2019. doi:<a href="https://doi.org/10.1109/APMC46564.2019.9038239">10.1109/APMC46564.2019.9038239</a>'
  apa: Wu, L., Weizel, M., &#38; Scheytt, C. (2019). 70 GHz Large-signal Bandwidth
    Sampler Using Current-mode Integrate-and-Hold Circuit in 130 nm SiGe BiCMOS Technology.
    <i>Asia-Pacific Microwave Conference (APMC)</i>. <a href="https://doi.org/10.1109/APMC46564.2019.9038239">https://doi.org/10.1109/APMC46564.2019.9038239</a>
  bibtex: '@inproceedings{Wu_Weizel_Scheytt_2019, title={70 GHz Large-signal Bandwidth
    Sampler Using Current-mode Integrate-and-Hold Circuit in 130 nm SiGe BiCMOS Technology},
    DOI={<a href="https://doi.org/10.1109/APMC46564.2019.9038239">10.1109/APMC46564.2019.9038239</a>},
    booktitle={Asia-Pacific Microwave Conference (APMC)}, author={Wu, Liang and Weizel,
    Maxim and Scheytt, Christoph}, year={2019} }'
  chicago: Wu, Liang, Maxim Weizel, and Christoph Scheytt. “70 GHz Large-Signal Bandwidth
    Sampler Using Current-Mode Integrate-and-Hold Circuit in 130 Nm SiGe BiCMOS Technology.”
    In <i>Asia-Pacific Microwave Conference (APMC)</i>, 2019. <a href="https://doi.org/10.1109/APMC46564.2019.9038239">https://doi.org/10.1109/APMC46564.2019.9038239</a>.
  ieee: 'L. Wu, M. Weizel, and C. Scheytt, “70 GHz Large-signal Bandwidth Sampler
    Using Current-mode Integrate-and-Hold Circuit in 130 nm SiGe BiCMOS Technology,”
    Singapore , 2019, doi: <a href="https://doi.org/10.1109/APMC46564.2019.9038239">10.1109/APMC46564.2019.9038239</a>.'
  mla: Wu, Liang, et al. “70 GHz Large-Signal Bandwidth Sampler Using Current-Mode
    Integrate-and-Hold Circuit in 130 Nm SiGe BiCMOS Technology.” <i>Asia-Pacific
    Microwave Conference (APMC)</i>, 2019, doi:<a href="https://doi.org/10.1109/APMC46564.2019.9038239">10.1109/APMC46564.2019.9038239</a>.
  short: 'L. Wu, M. Weizel, C. Scheytt, in: Asia-Pacific Microwave Conference (APMC),
    2019.'
conference:
  end_date: 2019.12.13
  location: 'Singapore '
  start_date: 2019.12.10
date_created: 2021-09-09T12:26:04Z
date_updated: 2025-02-13T12:09:17Z
department:
- _id: '58'
doi: 10.1109/APMC46564.2019.9038239
language:
- iso: eng
publication: Asia-Pacific Microwave Conference (APMC)
status: public
title: 70 GHz Large-signal Bandwidth Sampler Using Current-mode Integrate-and-Hold
  Circuit in 130 nm SiGe BiCMOS Technology
type: conference
user_id: '44271'
year: '2019'
...
---
_id: '24057'
abstract:
- lang: eng
  text: Targeting the feasible application of microwave RFID systems with MIMO reader
    technology for tracking small objects in multipath fading conditions, we present
    a fully integrated Analog Front-End (AFE) designed and fabricated in a standard
    65-nm CMOS technology for low power passive RFID tags in the 5.8 GHz ISM band.
    A differential drive power scavenging unit is dimensioned to provide a 1.2 V rectified
    voltage resulting in a 1 V regulated voltage for the AFE while supplying a 50
    μW load. Transistors with standard threshold voltage (V th ) have been used for
    implementation. Measurements of the fabricated circuits show a maximum Power Conversion
    Efficiency (PCE) of 71.8% at -12.5 dBm, and an input quality factor (Q-factor)
    of approximately 10.
author:
- first_name: Sanaz
  full_name: Haddadian, Sanaz
  id: '59648'
  last_name: Haddadian
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: '0000-0002-5950-6618 '
citation:
  ama: 'Haddadian S, Scheytt C. A 5.8 GHz CMOS Analog Front-End Targeting RF Energy
    Harvesting for Microwave RFIDs with MIMO Reader. In: <i>IEEE International Conference
    on RFID Technology &#38; Application (RFID-TA) </i>. ; 2019. doi:<a href="https://doi.org/10.1109/RFID-TA.2019.8892037">10.1109/RFID-TA.2019.8892037</a>'
  apa: Haddadian, S., &#38; Scheytt, C. (2019). A 5.8 GHz CMOS Analog Front-End Targeting
    RF Energy Harvesting for Microwave RFIDs with MIMO Reader. <i>IEEE International
    Conference on RFID Technology &#38; Application (RFID-TA) </i>. <a href="https://doi.org/10.1109/RFID-TA.2019.8892037">https://doi.org/10.1109/RFID-TA.2019.8892037</a>
  bibtex: '@inproceedings{Haddadian_Scheytt_2019, place={Pisa, Italy}, title={A 5.8
    GHz CMOS Analog Front-End Targeting RF Energy Harvesting for Microwave RFIDs with
    MIMO Reader}, DOI={<a href="https://doi.org/10.1109/RFID-TA.2019.8892037">10.1109/RFID-TA.2019.8892037</a>},
    booktitle={IEEE International Conference on RFID Technology &#38; Application
    (RFID-TA) }, author={Haddadian, Sanaz and Scheytt, Christoph}, year={2019} }'
  chicago: Haddadian, Sanaz, and Christoph Scheytt. “A 5.8 GHz CMOS Analog Front-End
    Targeting RF Energy Harvesting for Microwave RFIDs with MIMO Reader.” In <i>IEEE
    International Conference on RFID Technology &#38; Application (RFID-TA) </i>.
    Pisa, Italy, 2019. <a href="https://doi.org/10.1109/RFID-TA.2019.8892037">https://doi.org/10.1109/RFID-TA.2019.8892037</a>.
  ieee: 'S. Haddadian and C. Scheytt, “A 5.8 GHz CMOS Analog Front-End Targeting RF
    Energy Harvesting for Microwave RFIDs with MIMO Reader,” 2019, doi: <a href="https://doi.org/10.1109/RFID-TA.2019.8892037">10.1109/RFID-TA.2019.8892037</a>.'
  mla: Haddadian, Sanaz, and Christoph Scheytt. “A 5.8 GHz CMOS Analog Front-End Targeting
    RF Energy Harvesting for Microwave RFIDs with MIMO Reader.” <i>IEEE International
    Conference on RFID Technology &#38; Application (RFID-TA) </i>, 2019, doi:<a href="https://doi.org/10.1109/RFID-TA.2019.8892037">10.1109/RFID-TA.2019.8892037</a>.
  short: 'S. Haddadian, C. Scheytt, in: IEEE International Conference on RFID Technology
    &#38; Application (RFID-TA) , Pisa, Italy, 2019.'
conference:
  end_date: 2019.09.27
  start_date: 2019.09.25
date_created: 2021-09-09T12:26:13Z
date_updated: 2025-02-13T14:26:02Z
department:
- _id: '58'
doi: 10.1109/RFID-TA.2019.8892037
language:
- iso: eng
place: Pisa, Italy
publication: 'IEEE International Conference on RFID Technology & Application (RFID-TA) '
status: public
title: A 5.8 GHz CMOS Analog Front-End Targeting RF Energy Harvesting for Microwave
  RFIDs with MIMO Reader
type: conference
user_id: '59648'
year: '2019'
...
---
_id: '24059'
abstract:
- lang: eng
  text: We present a complete Visible Light Communication (VLC) system for experimental
    Vehicular VLC (V-VLC) research activities. Visible light is becoming an important
    technology complementing existing Radio Frequency (RF) technologies such as Cellular
    V2X (C-V2X) and Dedicated Short Range Communication (DSRC). In this scope, first
    works helped introducing new simulation models to explore V-VLC capabilities,
    technologies, and algorithms. Yet, experimental prototypes are still in an early
    phase. We aim bridging this gap with our system, which integrates a custom-made
    driver hardware, commercial vehicle light modules, and an Open Source signal processing
    implementation in GNU Radio, which explicitly offers rapid prototyping. Our system
    supports OFDM with a variety of Modulation and Coding Schemes (MCS) and is compliant
    to IEEE 802.11; this is in line with the upcoming IEEE 802.11 LC standard as well.
    In an extensive series of experiments, we assessed the communication performance
    by looking at realistic inter vehicle distances. Our results clearly show that
    our system supports even higher order MCS with very low error rates over long
    distances.
author:
- first_name: Muhammad Sohaib
  full_name: Amjad, Muhammad Sohaib
  last_name: Amjad
- first_name: Claas
  full_name: Tebruegge, Claas
  last_name: Tebruegge
- first_name: Agon
  full_name: Memedi, Agon
  last_name: Memedi
- first_name: Stephan
  full_name: Kruse, Stephan
  id: '38254'
  last_name: Kruse
- first_name: Christian
  full_name: Kress, Christian
  id: '13256'
  last_name: Kress
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: '0000-0002-5950-6618 '
- first_name: Falko
  full_name: Dressler, Falko
  id: '48097'
  last_name: Dressler
  orcid: 0000-0002-1989-1750
citation:
  ama: 'Amjad MS, Tebruegge C, Memedi A, et al. An IEEE 802.11 Compliant SDR-Based
    System for Vehicular Visible Light Communications. In: <i>IEEE International Conference
    on Communications (ICC)</i>. ICC 2019 - 2019 IEEE International Conference on
    Communications (ICC); 2019:1-6. doi:<a href="https://doi.org/10.1109/ICC.2019.8761960">10.1109/ICC.2019.8761960</a>'
  apa: Amjad, M. S., Tebruegge, C., Memedi, A., Kruse, S., Kress, C., Scheytt, C.,
    &#38; Dressler, F. (2019). An IEEE 802.11 Compliant SDR-Based System for Vehicular
    Visible Light Communications. <i>IEEE International Conference on Communications
    (ICC)</i>, 1–6. <a href="https://doi.org/10.1109/ICC.2019.8761960">https://doi.org/10.1109/ICC.2019.8761960</a>
  bibtex: '@inproceedings{Amjad_Tebruegge_Memedi_Kruse_Kress_Scheytt_Dressler_2019,
    place={Shanghai, China}, title={An IEEE 802.11 Compliant SDR-Based System for
    Vehicular Visible Light Communications}, DOI={<a href="https://doi.org/10.1109/ICC.2019.8761960">10.1109/ICC.2019.8761960</a>},
    booktitle={IEEE International Conference on Communications (ICC)}, publisher={ICC
    2019 - 2019 IEEE International Conference on Communications (ICC)}, author={Amjad,
    Muhammad Sohaib and Tebruegge, Claas and Memedi, Agon and Kruse, Stephan and Kress,
    Christian and Scheytt, Christoph and Dressler, Falko}, year={2019}, pages={1–6}
    }'
  chicago: 'Amjad, Muhammad Sohaib, Claas Tebruegge, Agon Memedi, Stephan Kruse, Christian
    Kress, Christoph Scheytt, and Falko Dressler. “An IEEE 802.11 Compliant SDR-Based
    System for Vehicular Visible Light Communications.” In <i>IEEE International Conference
    on Communications (ICC)</i>, 1–6. Shanghai, China: ICC 2019 - 2019 IEEE International
    Conference on Communications (ICC), 2019. <a href="https://doi.org/10.1109/ICC.2019.8761960">https://doi.org/10.1109/ICC.2019.8761960</a>.'
  ieee: 'M. S. Amjad <i>et al.</i>, “An IEEE 802.11 Compliant SDR-Based System for
    Vehicular Visible Light Communications,” in <i>IEEE International Conference on
    Communications (ICC)</i>, 2019, pp. 1–6, doi: <a href="https://doi.org/10.1109/ICC.2019.8761960">10.1109/ICC.2019.8761960</a>.'
  mla: Amjad, Muhammad Sohaib, et al. “An IEEE 802.11 Compliant SDR-Based System for
    Vehicular Visible Light Communications.” <i>IEEE International Conference on Communications
    (ICC)</i>, ICC 2019 - 2019 IEEE International Conference on Communications (ICC),
    2019, pp. 1–6, doi:<a href="https://doi.org/10.1109/ICC.2019.8761960">10.1109/ICC.2019.8761960</a>.
  short: 'M.S. Amjad, C. Tebruegge, A. Memedi, S. Kruse, C. Kress, C. Scheytt, F.
    Dressler, in: IEEE International Conference on Communications (ICC), ICC 2019
    - 2019 IEEE International Conference on Communications (ICC), Shanghai, China,
    2019, pp. 1–6.'
conference:
  end_date: 2019.05.24
  start_date: 2019.05.20
date_created: 2021-09-09T12:26:15Z
date_updated: 2025-02-25T05:56:30Z
department:
- _id: '58'
doi: 10.1109/ICC.2019.8761960
language:
- iso: eng
page: 1-6
place: Shanghai, China
publication: IEEE International Conference on Communications (ICC)
publisher: ICC 2019 - 2019 IEEE International Conference on Communications (ICC)
status: public
title: An IEEE 802.11 Compliant SDR-Based System for Vehicular Visible Light Communications
type: conference
user_id: '38254'
year: '2019'
...
---
_id: '24056'
abstract:
- lang: eng
  text: "Source-free all optical sampling, based on the convolution of the signal
    spectrum\r\nwith a frequency comb in an electronic-photonic, co-integrated silicon
    device will be presented\r\nfor the first time, to the best of our knowledge.
    The method has the potential to achieve very high\r\nprecision, requires only
    low power and can be fully tunable in the electrical domain. Sampling\r\nrates
    of three and four times the RF bandwidths of the photonics and electronics can
    be achieved.\r\nThus, the presented method might lead to low-footprint, fully-integrated,
    precise, electrically\r\ntunable, photonic ADCs with very high-analog bandwidths
    for the digital infrastructure of\r\ntomorrow."
author:
- first_name: Arijit
  full_name: Misra, Arijit
  last_name: Misra
- first_name: Christian
  full_name: Kress, Christian
  id: '13256'
  last_name: Kress
  orcid: 0000-0002-4403-2237
- first_name: Karanveer
  full_name: Singh, Karanveer
  last_name: Singh
- first_name: Stefan
  full_name: Preussler, Stefan
  last_name: Preussler
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: https://orcid.org/0000-0002-5950-6618
- first_name: Thomas
  full_name: Schneider, Thomas
  last_name: Schneider
citation:
  ama: Misra A, Kress C, Singh K, Preussler S, Scheytt C, Schneider T. Integrated
    source-free all optical sampling with a sampling rate of up to three times the
    RF bandwidth of silicon photonic MZM. <i>Opt Express</i>. 2019;27(21):29972-29984.
    doi:<a href="https://doi.org/10.1364/OE.27.029972">10.1364/OE.27.029972</a>
  apa: Misra, A., Kress, C., Singh, K., Preussler, S., Scheytt, C., &#38; Schneider,
    T. (2019). Integrated source-free all optical sampling with a sampling rate of
    up to three times the RF bandwidth of silicon photonic MZM. <i>Opt. Express</i>,
    <i>27</i>(21), 29972–29984. <a href="https://doi.org/10.1364/OE.27.029972">https://doi.org/10.1364/OE.27.029972</a>
  bibtex: '@article{Misra_Kress_Singh_Preussler_Scheytt_Schneider_2019, title={Integrated
    source-free all optical sampling with a sampling rate of up to three times the
    RF bandwidth of silicon photonic MZM}, volume={27}, DOI={<a href="https://doi.org/10.1364/OE.27.029972">10.1364/OE.27.029972</a>},
    number={21}, journal={Opt. Express}, author={Misra, Arijit and Kress, Christian
    and Singh, Karanveer and Preussler, Stefan and Scheytt, Christoph and Schneider,
    Thomas}, year={2019}, pages={29972–29984} }'
  chicago: 'Misra, Arijit, Christian Kress, Karanveer Singh, Stefan Preussler, Christoph
    Scheytt, and Thomas Schneider. “Integrated Source-Free All Optical Sampling with
    a Sampling Rate of up to Three Times the RF Bandwidth of Silicon Photonic MZM.”
    <i>Opt. Express</i> 27, no. 21 (2019): 29972–84. <a href="https://doi.org/10.1364/OE.27.029972">https://doi.org/10.1364/OE.27.029972</a>.'
  ieee: 'A. Misra, C. Kress, K. Singh, S. Preussler, C. Scheytt, and T. Schneider,
    “Integrated source-free all optical sampling with a sampling rate of up to three
    times the RF bandwidth of silicon photonic MZM,” <i>Opt. Express</i>, vol. 27,
    no. 21, pp. 29972–29984, 2019, doi: <a href="https://doi.org/10.1364/OE.27.029972">10.1364/OE.27.029972</a>.'
  mla: Misra, Arijit, et al. “Integrated Source-Free All Optical Sampling with a Sampling
    Rate of up to Three Times the RF Bandwidth of Silicon Photonic MZM.” <i>Opt. Express</i>,
    vol. 27, no. 21, 2019, pp. 29972–84, doi:<a href="https://doi.org/10.1364/OE.27.029972">10.1364/OE.27.029972</a>.
  short: A. Misra, C. Kress, K. Singh, S. Preussler, C. Scheytt, T. Schneider, Opt.
    Express 27 (2019) 29972–29984.
date_created: 2021-09-09T12:26:11Z
date_updated: 2025-07-02T12:19:03Z
department:
- _id: '58'
- _id: '230'
doi: 10.1364/OE.27.029972
intvolume: '        27'
issue: '21'
language:
- iso: eng
page: 29972-29984
project:
- _id: '302'
  grant_number: '403154102'
  name: 'PONyDAC: SPP 2111 - PONyDAC II - Präziser Optischer Nyquist-Puls-Synthesizer
    DAC'
- _id: '299'
  grant_number: 13N14882
  name: 'NyPhE: NyPhE - Nyquist Silicon Photonics Engine'
publication: Opt. Express
related_material:
  link:
  - relation: confirmation
    url: https://www.osapublishing.org/oe/fulltext.cfm?uri=oe-27-21-29972&id=421959
status: public
title: Integrated source-free all optical sampling with a sampling rate of up to three
  times the RF bandwidth of silicon photonic MZM
type: journal_article
user_id: '13256'
volume: 27
year: '2019'
...
---
_id: '24054'
abstract:
- lang: eng
  text: Optical sampling of pseudo random microwave signals with sinc-shaped Nyquist
    pulse sequences has been demonstrated in an integrated silicon photonics platform.
    An electronic-photonic, co-integrated depletion type silicon intensity modulator
    with high extinction ratio has been used to sample the microwave signal with a
    sampling rate, which corresponds to three times its RF bandwidth. Thus, a sampling
    rate of 21 GSa/s is achieved with a 7 GHz modulator, with 3 dBm of differential
    input power.
author:
- first_name: Arijit
  full_name: Misra, Arijit
  last_name: Misra
- first_name: Christian
  full_name: Kress, Christian
  id: '13256'
  last_name: Kress
  orcid: 0000-0002-4403-2237
- first_name: Karanveer
  full_name: Singh, Karanveer
  last_name: Singh
- first_name: Stefan
  full_name: Preussler, Stefan
  last_name: Preussler
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: https://orcid.org/0000-0002-5950-6618
- first_name: Thomas
  full_name: Schneider, Thomas
  last_name: Schneider
citation:
  ama: 'Misra A, Kress C, Singh K, Preussler S, Scheytt C, Schneider T. Integrated
    All Optical Sampling of Microwave Signals in Silicon Photonics. In: <i>2019 International
    Topical Meeting on Microwave Photonics (MWP)</i>. ; 2019:1-4. doi:<a href="https://doi.org/10.1109/MWP.2019.8892128">10.1109/MWP.2019.8892128</a>'
  apa: Misra, A., Kress, C., Singh, K., Preussler, S., Scheytt, C., &#38; Schneider,
    T. (2019). Integrated All Optical Sampling of Microwave Signals in Silicon Photonics.
    <i>2019 International Topical Meeting on Microwave Photonics (MWP)</i>, 1–4. <a
    href="https://doi.org/10.1109/MWP.2019.8892128">https://doi.org/10.1109/MWP.2019.8892128</a>
  bibtex: '@inproceedings{Misra_Kress_Singh_Preussler_Scheytt_Schneider_2019, place={Ottawa,
    ON, Canada, Canada}, title={Integrated All Optical Sampling of Microwave Signals
    in Silicon Photonics}, DOI={<a href="https://doi.org/10.1109/MWP.2019.8892128">10.1109/MWP.2019.8892128</a>},
    booktitle={2019 International Topical Meeting on Microwave Photonics (MWP)}, author={Misra,
    Arijit and Kress, Christian and Singh, Karanveer and Preussler, Stefan and Scheytt,
    Christoph and Schneider, Thomas}, year={2019}, pages={1–4} }'
  chicago: Misra, Arijit, Christian Kress, Karanveer Singh, Stefan Preussler, Christoph
    Scheytt, and Thomas Schneider. “Integrated All Optical Sampling of Microwave Signals
    in Silicon Photonics.” In <i>2019 International Topical Meeting on Microwave Photonics
    (MWP)</i>, 1–4. Ottawa, ON, Canada, Canada, 2019. <a href="https://doi.org/10.1109/MWP.2019.8892128">https://doi.org/10.1109/MWP.2019.8892128</a>.
  ieee: 'A. Misra, C. Kress, K. Singh, S. Preussler, C. Scheytt, and T. Schneider,
    “Integrated All Optical Sampling of Microwave Signals in Silicon Photonics,” in
    <i>2019 International Topical Meeting on Microwave Photonics (MWP)</i>, 2019,
    pp. 1–4, doi: <a href="https://doi.org/10.1109/MWP.2019.8892128">10.1109/MWP.2019.8892128</a>.'
  mla: Misra, Arijit, et al. “Integrated All Optical Sampling of Microwave Signals
    in Silicon Photonics.” <i>2019 International Topical Meeting on Microwave Photonics
    (MWP)</i>, 2019, pp. 1–4, doi:<a href="https://doi.org/10.1109/MWP.2019.8892128">10.1109/MWP.2019.8892128</a>.
  short: 'A. Misra, C. Kress, K. Singh, S. Preussler, C. Scheytt, T. Schneider, in:
    2019 International Topical Meeting on Microwave Photonics (MWP), Ottawa, ON, Canada,
    Canada, 2019, pp. 1–4.'
conference:
  end_date: 2019.10.10
  start_date: 2019.10.07
date_created: 2021-09-09T12:26:09Z
date_updated: 2025-07-02T12:18:46Z
department:
- _id: '58'
- _id: '230'
doi: 10.1109/MWP.2019.8892128
language:
- iso: eng
page: 1-4
place: Ottawa, ON, Canada, Canada
project:
- _id: '302'
  grant_number: '403154102'
  name: 'PONyDAC: SPP 2111 - PONyDAC II - Präziser Optischer Nyquist-Puls-Synthesizer
    DAC'
- _id: '299'
  grant_number: 13N14882
  name: 'NyPhE: NyPhE - Nyquist Silicon Photonics Engine'
publication: 2019 International Topical Meeting on Microwave Photonics (MWP)
related_material:
  link:
  - relation: confirmation
    url: https://ieeexplore.ieee.org/document/8892128
status: public
title: Integrated All Optical Sampling of Microwave Signals in Silicon Photonics
type: conference
user_id: '13256'
year: '2019'
...
---
_id: '24186'
abstract:
- lang: eng
  text: A 2nd transconductance subharmonic receiver for 245 GHz spectroscopy sensor
    applications has been proposed. The receiver consists of a 245 GHz on-chip folded
    dipole antenna, a CB (common base) LNA, a 2nd transconductance SHM (subharmonic
    mixer), and a 120 GHz push-push VCO with 1/64 divider. The receiver is fabricated
    in fT/fmax = 300/500 GHz SiGe:C BiCMOS technology. The receiver dissipates a low
    power of 288 mW. Integrated with the on-chip antenna, the receiver is measured
    on-chip with a conversion gain of 15 dB, a bandwidth of 15 GHz, and the chip will
    be utilized in PCB board design for gas spectroscopy sensor application.
author:
- first_name: Yanfei
  full_name: Mao, Yanfei
  last_name: Mao
- first_name: E.
  full_name: Shiju, E.
  last_name: Shiju
- first_name: Klaus
  full_name: Schmalz, Klaus
  last_name: Schmalz
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
citation:
  ama: 'Mao Y, Shiju E, Schmalz K, Scheytt C. 245 GHz Subharmonic Receiver With Onchip
    Antenna for Gas Spectroscopy Application. In: <i>Journal of Semiconductors</i>.
    ; 2018.'
  apa: Mao, Y., Shiju, E., Schmalz, K., &#38; Scheytt, C. (2018). 245 GHz Subharmonic
    Receiver With Onchip Antenna for Gas Spectroscopy Application. <i>Journal of Semiconductors</i>.
  bibtex: '@inproceedings{Mao_Shiju_Schmalz_Scheytt_2018, title={245 GHz Subharmonic
    Receiver With Onchip Antenna for Gas Spectroscopy Application}, booktitle={Journal
    of Semiconductors}, author={Mao, Yanfei and Shiju, E. and Schmalz, Klaus and Scheytt,
    Christoph}, year={2018} }'
  chicago: Mao, Yanfei, E. Shiju, Klaus Schmalz, and Christoph Scheytt. “245 GHz Subharmonic
    Receiver With Onchip Antenna for Gas Spectroscopy Application.” In <i>Journal
    of Semiconductors</i>, 2018.
  ieee: Y. Mao, E. Shiju, K. Schmalz, and C. Scheytt, “245 GHz Subharmonic Receiver
    With Onchip Antenna for Gas Spectroscopy Application,” 2018.
  mla: Mao, Yanfei, et al. “245 GHz Subharmonic Receiver With Onchip Antenna for Gas
    Spectroscopy Application.” <i>Journal of Semiconductors</i>, 2018.
  short: 'Y. Mao, E. Shiju, K. Schmalz, C. Scheytt, in: Journal of Semiconductors,
    2018.'
date_created: 2021-09-13T07:37:50Z
date_updated: 2022-01-06T06:56:09Z
department:
- _id: '58'
language:
- iso: eng
publication: Journal of Semiconductors
related_material:
  link:
  - relation: confirmation
    url: https://iopscience.iop.org/article/10.1088/1674-4926/39/12/125001
status: public
title: 245 GHz Subharmonic Receiver With Onchip Antenna for Gas Spectroscopy Application
type: conference
user_id: '15931'
year: '2018'
...
---
_id: '24192'
abstract:
- lang: eng
  text: The terahertz frequency range provides abundant bandwidth (25GHz ~ 50 GHz)
    to achieve ultra-high-speed wireless communication and enables data rates up to
    and above 100 Gbps. We choose Parallel Sequence Spread Spectrum (PSSS) as an analog
    friendly modulation and coding scheme that allows for an efficient mixed-signal
    implementation of a 100 Gbps wireless communication system. In our system design,
    we require a DAC (Digital to Analog converters) running at 1.67 G symbols/sec.
    The optimization of the bit resolution of this DAC will considerably reduce the
    hardware implementation efforts. In this work, we presented the analytical model
    for PSSS modulation and deduced a mathematical formula to calculate the number
    of discrete level amplitudes along with their probability distribution appearing
    at the output of the PSSS modulated signal. The analytical analysis assists in
    predicting the number of the quantization level of the DAC needed at the PSSS
    transmitter. The theoretical analysis shows that there are in total 225 discrete
    levels at the output of the PSSS encoder which leads to an 8-bit resolution of
    DAC. In this paper, we analyzed the variation of BER (Bit Error Rate) to the clipping
    of low probability amplitude levels and found that there is an only slight increase
    of the BER when we clip off the low probability amplitude levels. Thus, there
    is a tradeoff involved in a minor growth of BER concerning the reduction of the
    DAC bit resolution. Finally, we can reduce the DAC bit resolution from 8 bits
    to 7 bits and thus simplify the hardware implementation efforts of DAC operating
    at 1.67 Gbps.
author:
- first_name: KrishneGowda
  full_name: Karthik, KrishneGowda
  last_name: Karthik
- first_name: Lara
  full_name: Wimmer, Lara
  last_name: Wimmer
- first_name: Abdul Rehman
  full_name: Javed, Abdul Rehman
  last_name: Javed
- first_name: Andreas
  full_name: Wolf, Andreas
  last_name: Wolf
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
- first_name: Rolf
  full_name: Kraemer, Rolf
  last_name: Kraemer
citation:
  ama: 'Karthik K, Wimmer L, Javed AR, Wolf A, Scheytt C, Kraemer R. Analysis of PSSS
    modulation for optimization of DAC bit resolution for 100 Gbps systems. In: <i>15th
    International Symposium on Wireless Communication Systems (ISWCS) </i>. IEEE;
    2018. doi:<a href="https://doi.org/10.1109/ISWCS.2018.8491216">10.1109/ISWCS.2018.8491216</a>'
  apa: Karthik, K., Wimmer, L., Javed, A. R., Wolf, A., Scheytt, C., &#38; Kraemer,
    R. (2018). Analysis of PSSS modulation for optimization of DAC bit resolution
    for 100 Gbps systems. <i>15th International Symposium on Wireless Communication
    Systems (ISWCS) </i>. <a href="https://doi.org/10.1109/ISWCS.2018.8491216">https://doi.org/10.1109/ISWCS.2018.8491216</a>
  bibtex: '@inproceedings{Karthik_Wimmer_Javed_Wolf_Scheytt_Kraemer_2018, place={Portugal/Lisbon},
    title={Analysis of PSSS modulation for optimization of DAC bit resolution for
    100 Gbps systems}, DOI={<a href="https://doi.org/10.1109/ISWCS.2018.8491216">10.1109/ISWCS.2018.8491216</a>},
    booktitle={15th International Symposium on Wireless Communication Systems (ISWCS)
    }, publisher={IEEE}, author={Karthik, KrishneGowda and Wimmer, Lara and Javed,
    Abdul Rehman and Wolf, Andreas and Scheytt, Christoph and Kraemer, Rolf}, year={2018}
    }'
  chicago: 'Karthik, KrishneGowda, Lara Wimmer, Abdul Rehman Javed, Andreas Wolf,
    Christoph Scheytt, and Rolf Kraemer. “Analysis of PSSS Modulation for Optimization
    of DAC Bit Resolution for 100 Gbps Systems.” In <i>15th International Symposium
    on Wireless Communication Systems (ISWCS) </i>. Portugal/Lisbon: IEEE, 2018. <a
    href="https://doi.org/10.1109/ISWCS.2018.8491216">https://doi.org/10.1109/ISWCS.2018.8491216</a>.'
  ieee: 'K. Karthik, L. Wimmer, A. R. Javed, A. Wolf, C. Scheytt, and R. Kraemer,
    “Analysis of PSSS modulation for optimization of DAC bit resolution for 100 Gbps
    systems,” Lisbon, Portugal , 2018, doi: <a href="https://doi.org/10.1109/ISWCS.2018.8491216">10.1109/ISWCS.2018.8491216</a>.'
  mla: Karthik, KrishneGowda, et al. “Analysis of PSSS Modulation for Optimization
    of DAC Bit Resolution for 100 Gbps Systems.” <i>15th International Symposium on
    Wireless Communication Systems (ISWCS) </i>, IEEE, 2018, doi:<a href="https://doi.org/10.1109/ISWCS.2018.8491216">10.1109/ISWCS.2018.8491216</a>.
  short: 'K. Karthik, L. Wimmer, A.R. Javed, A. Wolf, C. Scheytt, R. Kraemer, in:
    15th International Symposium on Wireless Communication Systems (ISWCS) , IEEE,
    Portugal/Lisbon, 2018.'
conference:
  end_date: 2018.08.31
  location: 'Lisbon, Portugal '
  start_date: 2018.08.28
date_created: 2021-09-13T07:37:58Z
date_updated: 2022-01-06T06:56:09Z
department:
- _id: '58'
doi: 10.1109/ISWCS.2018.8491216
language:
- iso: eng
place: Portugal/Lisbon
publication: '15th International Symposium on Wireless Communication Systems (ISWCS) '
publisher: IEEE
related_material:
  link:
  - relation: confirmation
    url: https://ieeexplore.ieee.org/document/8491216
status: public
title: Analysis of PSSS modulation for optimization of DAC bit resolution for 100
  Gbps systems
type: conference
user_id: '15931'
year: '2018'
...
---
_id: '24195'
abstract:
- lang: eng
  text: This paper demonstrates system level analysis of an energy efficient Radio
    Frequency (RF) receiver. The receiver is based on a Surface Acoustic Wave (SAW)
    correlator which is used for highly linear demodulation and interferer suppression
    in conjunction with envelope detection for ultra-low power dissipation and hardware
    efficiency. The receiver is to be used in Wireless Sensor Networks (WSN) as a
    Wake-up Receiver (WuR) to reduce the network nodes power dissipation and provide
    asynchronous data communication. Low latency and high interference robustness
    makes this scheme interesting for industrial real-time applications. In this paper,
    the SAW correlator transfer function is derived, which functions as a Matched
    Filter (MF). Since the receiver uses envelope detection and based on the characteristic
    of the SAW, the receiver sensitivity is analyzed by means of a non-linear approach.
author:
- first_name: Saed
  full_name: Abughannam, Saed
  id: '37628'
  last_name: Abughannam
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
citation:
  ama: 'Abughannam S, Scheytt C. System Analysis of a Wake-Up Receiver Based on Surface
    Acoustic Wave Correlator. In: <i>2nd URSI AT-RASC</i>. IEEE; 2018:1-4. doi:<a
    href="https://doi.org/10.23919/URSI-AT-RASC.2018.8471531">10.23919/URSI-AT-RASC.2018.8471531</a>'
  apa: Abughannam, S., &#38; Scheytt, C. (2018). System Analysis of a Wake-Up Receiver
    Based on Surface Acoustic Wave Correlator. <i>2nd URSI AT-RASC</i>, 1–4. <a href="https://doi.org/10.23919/URSI-AT-RASC.2018.8471531">https://doi.org/10.23919/URSI-AT-RASC.2018.8471531</a>
  bibtex: '@inproceedings{Abughannam_Scheytt_2018, place={Spain/Gran Canaria/Meloneras},
    title={System Analysis of a Wake-Up Receiver Based on Surface Acoustic Wave Correlator},
    DOI={<a href="https://doi.org/10.23919/URSI-AT-RASC.2018.8471531">10.23919/URSI-AT-RASC.2018.8471531</a>},
    booktitle={2nd URSI AT-RASC}, publisher={IEEE}, author={Abughannam, Saed and Scheytt,
    Christoph}, year={2018}, pages={1–4} }'
  chicago: 'Abughannam, Saed, and Christoph Scheytt. “System Analysis of a Wake-Up
    Receiver Based on Surface Acoustic Wave Correlator.” In <i>2nd URSI AT-RASC</i>,
    1–4. Spain/Gran Canaria/Meloneras: IEEE, 2018. <a href="https://doi.org/10.23919/URSI-AT-RASC.2018.8471531">https://doi.org/10.23919/URSI-AT-RASC.2018.8471531</a>.'
  ieee: 'S. Abughannam and C. Scheytt, “System Analysis of a Wake-Up Receiver Based
    on Surface Acoustic Wave Correlator,” in <i>2nd URSI AT-RASC</i>, 2018, pp. 1–4,
    doi: <a href="https://doi.org/10.23919/URSI-AT-RASC.2018.8471531">10.23919/URSI-AT-RASC.2018.8471531</a>.'
  mla: Abughannam, Saed, and Christoph Scheytt. “System Analysis of a Wake-Up Receiver
    Based on Surface Acoustic Wave Correlator.” <i>2nd URSI AT-RASC</i>, IEEE, 2018,
    pp. 1–4, doi:<a href="https://doi.org/10.23919/URSI-AT-RASC.2018.8471531">10.23919/URSI-AT-RASC.2018.8471531</a>.
  short: 'S. Abughannam, C. Scheytt, in: 2nd URSI AT-RASC, IEEE, Spain/Gran Canaria/Meloneras,
    2018, pp. 1–4.'
conference:
  end_date: 2018.06.01
  start_date: 2018.05.28
date_created: 2021-09-13T07:38:02Z
date_updated: 2022-01-06T06:56:09Z
department:
- _id: '58'
doi: 10.23919/URSI-AT-RASC.2018.8471531
language:
- iso: eng
page: 1-4
place: Spain/Gran Canaria/Meloneras
publication: 2nd URSI AT-RASC
publisher: IEEE
related_material:
  link:
  - relation: confirmation
    url: https://ieeexplore.ieee.org/document/8471531
status: public
title: System Analysis of a Wake-Up Receiver Based on Surface Acoustic Wave Correlator
type: conference
user_id: '15931'
year: '2018'
...
---
_id: '24196'
abstract:
- lang: eng
  text: This paper presents an approach for analog fault effect simulation automation
    based on random fault selection with a high fault coverage of the circuit under
    test by means of fault injection and simulation based on advanced sampling techniques.
    The random fault selection utilizes the likelihood of the fault occurrence of
    different electrical components in the circuit with a confidence level. Defect
    models of different devices are analyzed for the calculation of the fault probability.
    A case study with our implemented tool demonstrates that likelihood calculation
    and fault simulation provides means for efficient fault effect simulation automation.
author:
- first_name: Liang
  full_name: Wu, Liang
  id: '30401'
  last_name: Wu
- first_name: Mohammad Khizer
  full_name: Hussain, Mohammad Khizer
  last_name: Hussain
- first_name: Saed
  full_name: Abughannam, Saed
  id: '37628'
  last_name: Abughannam
- first_name: Wolfgang
  full_name: Müller, Wolfgang
  id: '16243'
  last_name: Müller
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
- first_name: Wolfgang
  full_name: Ecker, Wolfgang
  last_name: Ecker
citation:
  ama: 'Wu L, Hussain MK, Abughannam S, Müller W, Scheytt C, Ecker W. Analog fault
    simulation automation at schematic level with random sampling techniques. In:
    <i>2018 13th International Conference on Design &#38; Technology of Integrated
    Systems In Nanoscale Era (DTIS)) </i>. IEEE; 2018. doi:<a href="https://doi.org/10.1109/DTIS.2018.8368549">10.1109/DTIS.2018.8368549</a>'
  apa: Wu, L., Hussain, M. K., Abughannam, S., Müller, W., Scheytt, C., &#38; Ecker,
    W. (2018). Analog fault simulation automation at schematic level with random sampling
    techniques. <i>2018 13th International Conference on Design &#38; Technology of
    Integrated Systems In Nanoscale Era (DTIS)) </i>. <a href="https://doi.org/10.1109/DTIS.2018.8368549">https://doi.org/10.1109/DTIS.2018.8368549</a>
  bibtex: '@inproceedings{Wu_Hussain_Abughannam_Müller_Scheytt_Ecker_2018, place={Italy/Taormina},
    title={Analog fault simulation automation at schematic level with random sampling
    techniques}, DOI={<a href="https://doi.org/10.1109/DTIS.2018.8368549">10.1109/DTIS.2018.8368549</a>},
    booktitle={2018 13th International Conference on Design &#38; Technology of Integrated
    Systems In Nanoscale Era (DTIS)) }, publisher={IEEE}, author={Wu, Liang and Hussain,
    Mohammad Khizer and Abughannam, Saed and Müller, Wolfgang and Scheytt, Christoph
    and Ecker, Wolfgang}, year={2018} }'
  chicago: 'Wu, Liang, Mohammad Khizer Hussain, Saed Abughannam, Wolfgang Müller,
    Christoph Scheytt, and Wolfgang Ecker. “Analog Fault Simulation Automation at
    Schematic Level with Random Sampling Techniques.” In <i>2018 13th International
    Conference on Design &#38; Technology of Integrated Systems In Nanoscale Era (DTIS))
    </i>. Italy/Taormina: IEEE, 2018. <a href="https://doi.org/10.1109/DTIS.2018.8368549">https://doi.org/10.1109/DTIS.2018.8368549</a>.'
  ieee: 'L. Wu, M. K. Hussain, S. Abughannam, W. Müller, C. Scheytt, and W. Ecker,
    “Analog fault simulation automation at schematic level with random sampling techniques,”
    2018, doi: <a href="https://doi.org/10.1109/DTIS.2018.8368549">10.1109/DTIS.2018.8368549</a>.'
  mla: Wu, Liang, et al. “Analog Fault Simulation Automation at Schematic Level with
    Random Sampling Techniques.” <i>2018 13th International Conference on Design &#38;
    Technology of Integrated Systems In Nanoscale Era (DTIS)) </i>, IEEE, 2018, doi:<a
    href="https://doi.org/10.1109/DTIS.2018.8368549">10.1109/DTIS.2018.8368549</a>.
  short: 'L. Wu, M.K. Hussain, S. Abughannam, W. Müller, C. Scheytt, W. Ecker, in:
    2018 13th International Conference on Design &#38; Technology of Integrated Systems
    In Nanoscale Era (DTIS)) , IEEE, Italy/Taormina, 2018.'
conference:
  end_date: 2018.04.12
  start_date: 2018.04.09
date_created: 2021-09-13T07:38:03Z
date_updated: 2022-01-06T06:56:09Z
department:
- _id: '58'
doi: 10.1109/DTIS.2018.8368549
language:
- iso: eng
place: Italy/Taormina
publication: '2018 13th International Conference on Design & Technology of Integrated
  Systems In Nanoscale Era (DTIS)) '
publisher: IEEE
related_material:
  link:
  - relation: confirmation
    url: https://ieeexplore.ieee.org/document/8368549
status: public
title: Analog fault simulation automation at schematic level with random sampling
  techniques
type: conference
user_id: '15931'
year: '2018'
...
---
_id: '24198'
application_date: 16.07.2018
application_number: '18756368'
author:
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
- first_name: Liang
  full_name: Wu, Liang
  id: '30401'
  last_name: Wu
citation:
  ama: Scheytt C, Wu L. Integrier‐ und Halte‐Schaltung . Published online 2018.
  apa: Scheytt, C., &#38; Wu, L. (2018). <i>Integrier‐ und Halte‐Schaltung </i>.
  bibtex: '@article{Scheytt_Wu_2018, title={Integrier‐ und Halte‐Schaltung }, author={Scheytt,
    Christoph and Wu, Liang}, year={2018} }'
  chicago: Scheytt, Christoph, and Liang Wu. “Integrier‐ Und Halte‐Schaltung ,” 2018.
  ieee: C. Scheytt and L. Wu, “Integrier‐ und Halte‐Schaltung .” 2018.
  mla: Scheytt, Christoph, and Liang Wu. <i>Integrier‐ Und Halte‐Schaltung </i>. 2018.
  short: C. Scheytt, L. Wu, (2018).
date_created: 2021-09-13T07:38:06Z
date_updated: 2022-01-06T06:56:09Z
department:
- _id: '58'
ipc: H03K 3/42
ipn: EP000003656056A1
publication_date: 27.05.2020
related_material:
  link:
  - relation: confirmation
    url: https://depatisnet.dpma.de/DepatisNet/depatisnet?action=bibdat&docid=EP000003656056A1
status: public
title: 'Integrier‐ und Halte‐Schaltung '
type: patent
user_id: '15931'
year: '2018'
...
---
_id: '24199'
abstract:
- lang: eng
  text: This work describes a dielectric sensing system applying a 120 GHz electrical
    interferometer for contactless permittivity measurements. The applied IC was fabricated
    in a 130 nm SiGe process featuring an ft and fmax of 240 GHz and 330 GHz. The
    on-chip system contains a 120 GHz VCO with a tuning range of 7 GHz featuring a
    divide-by-64 circuit to enable external PLL operation. An important feature of
    the IC is high-precision and high-resolution phase shifting based on a slow-wave
    transmission lines approach with digital control. This allows for direct digital
    readout ability. The on chip power detector provides DC output signals giving
    the opportunity to record transfer functions of the interferometer. It enables
    sample emulation capability by phase shift inducement in the measurement as well
    as a reference transmission line. The motherboard of the system provides PLL stabilization
    for frequency sweeps. The proposed approach is capable of automated dielectric
    monitoring by phase compensation.
author:
- first_name: Jan
  full_name: Wessel, Jan
  last_name: Wessel
- first_name: Klaus
  full_name: Schmalz, Klaus
  last_name: Schmalz
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
- first_name: Dietmar
  full_name: Kissinger, Dietmar
  last_name: Kissinger
citation:
  ama: 'Wessel J, Schmalz K, Scheytt C, Kissinger D. Sensitive permittivity detector
    for dielectric samples at 120 GHz. In: <i>2018 IEEE Radio and Wireless Symposium
    (RWS)</i>. IEEE; 2018. doi:<a href="https://doi.org/10.1109/RWS.2018.8304967">10.1109/RWS.2018.8304967</a>'
  apa: Wessel, J., Schmalz, K., Scheytt, C., &#38; Kissinger, D. (2018). Sensitive
    permittivity detector for dielectric samples at 120 GHz. <i>2018 IEEE Radio and
    Wireless Symposium (RWS)</i>. <a href="https://doi.org/10.1109/RWS.2018.8304967">https://doi.org/10.1109/RWS.2018.8304967</a>
  bibtex: '@inproceedings{Wessel_Schmalz_Scheytt_Kissinger_2018, place={USA/Anaheim},
    title={Sensitive permittivity detector for dielectric samples at 120 GHz}, DOI={<a
    href="https://doi.org/10.1109/RWS.2018.8304967">10.1109/RWS.2018.8304967</a>},
    booktitle={2018 IEEE Radio and Wireless Symposium (RWS)}, publisher={IEEE}, author={Wessel,
    Jan and Schmalz, Klaus and Scheytt, Christoph and Kissinger, Dietmar}, year={2018}
    }'
  chicago: 'Wessel, Jan, Klaus Schmalz, Christoph Scheytt, and Dietmar Kissinger.
    “Sensitive Permittivity Detector for Dielectric Samples at 120 GHz.” In <i>2018
    IEEE Radio and Wireless Symposium (RWS)</i>. USA/Anaheim: IEEE, 2018. <a href="https://doi.org/10.1109/RWS.2018.8304967">https://doi.org/10.1109/RWS.2018.8304967</a>.'
  ieee: 'J. Wessel, K. Schmalz, C. Scheytt, and D. Kissinger, “Sensitive permittivity
    detector for dielectric samples at 120 GHz,” 2018, doi: <a href="https://doi.org/10.1109/RWS.2018.8304967">10.1109/RWS.2018.8304967</a>.'
  mla: Wessel, Jan, et al. “Sensitive Permittivity Detector for Dielectric Samples
    at 120 GHz.” <i>2018 IEEE Radio and Wireless Symposium (RWS)</i>, IEEE, 2018,
    doi:<a href="https://doi.org/10.1109/RWS.2018.8304967">10.1109/RWS.2018.8304967</a>.
  short: 'J. Wessel, K. Schmalz, C. Scheytt, D. Kissinger, in: 2018 IEEE Radio and
    Wireless Symposium (RWS), IEEE, USA/Anaheim, 2018.'
conference:
  end_date: 2018.01.18
  start_date: 2018.01.15
date_created: 2021-09-13T07:38:07Z
date_updated: 2022-01-06T06:56:09Z
department:
- _id: '58'
doi: 10.1109/RWS.2018.8304967
language:
- iso: eng
place: USA/Anaheim
publication: 2018 IEEE Radio and Wireless Symposium (RWS)
publication_identifier:
  issn:
  - '2164-2974 '
publisher: IEEE
related_material:
  link:
  - relation: confirmation
    url: https://ieeexplore.ieee.org/document/8304967
status: public
title: Sensitive permittivity detector for dielectric samples at 120 GHz
type: conference
user_id: '15931'
year: '2018'
...
---
_id: '24197'
abstract:
- lang: eng
  text: A monolithically integrated coherent receiver in silicon photonic technology
    is presented along with measurement results for constellation diagrams up to 64GBd
    and bandwidth of 34 GHz. To our knowledge this is the fastest single-chip coherent
    receiver.
author:
- first_name: Christian
  full_name: Kress, Christian
  id: '13256'
  last_name: Kress
- first_name: Sergiy
  full_name: Gudyriev, Sergiy
  last_name: Gudyriev
- first_name: Heiner
  full_name: Zwickel, Heiner
  last_name: Zwickel
- first_name: Juned N.
  full_name: Kemal, Juned N.
  last_name: Kemal
- first_name: Stefan
  full_name: Lischke, Stefan
  last_name: Lischke
- first_name: Lars
  full_name: Zimmermann, Lars
  last_name: Zimmermann
- first_name: Christian
  full_name: Koos, Christian
  last_name: Koos
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: https://orcid.org/0000-0002-5950-6618
citation:
  ama: 'Kress C, Gudyriev S, Zwickel H, et al. 64 GBd Monolithically Integrated Coherent
    QPSK Single Polarization Receiver in 0.25 µm SiGe-Photonic Technology. In: <i>Optical
    Fiber Communication Conference 2018, San Diego</i>. Vol Th4A.6. ; 2018.'
  apa: Kress, C., Gudyriev, S., Zwickel, H., Kemal, J. N., Lischke, S., Zimmermann,
    L., Koos, C., &#38; Scheytt, C. (2018). 64 GBd Monolithically Integrated Coherent
    QPSK Single Polarization Receiver in 0.25 µm SiGe-Photonic Technology. <i>Optical
    Fiber Communication Conference 2018, San Diego</i>, <i>Th4A.6</i>.
  bibtex: '@inproceedings{Kress_Gudyriev_Zwickel_Kemal_Lischke_Zimmermann_Koos_Scheytt_2018,
    title={64 GBd Monolithically Integrated Coherent QPSK Single Polarization Receiver
    in 0.25 µm SiGe-Photonic Technology}, volume={Th4A.6}, booktitle={Optical Fiber
    Communication Conference 2018, San Diego}, author={Kress, Christian and Gudyriev,
    Sergiy and Zwickel, Heiner and Kemal, Juned N. and Lischke, Stefan and Zimmermann,
    Lars and Koos, Christian and Scheytt, Christoph}, year={2018} }'
  chicago: Kress, Christian, Sergiy Gudyriev, Heiner Zwickel, Juned N. Kemal, Stefan
    Lischke, Lars Zimmermann, Christian Koos, and Christoph Scheytt. “64 GBd Monolithically
    Integrated Coherent QPSK Single Polarization Receiver in 0.25 Μm SiGe-Photonic
    Technology.” In <i>Optical Fiber Communication Conference 2018, San Diego</i>,
    Vol. Th4A.6, 2018.
  ieee: C. Kress <i>et al.</i>, “64 GBd Monolithically Integrated Coherent QPSK Single
    Polarization Receiver in 0.25 µm SiGe-Photonic Technology,” in <i>Optical Fiber
    Communication Conference 2018, San Diego</i>, San Diego, CA, USA , 2018, vol.
    Th4A.6.
  mla: Kress, Christian, et al. “64 GBd Monolithically Integrated Coherent QPSK Single
    Polarization Receiver in 0.25 Μm SiGe-Photonic Technology.” <i>Optical Fiber Communication
    Conference 2018, San Diego</i>, vol. Th4A.6, 2018.
  short: 'C. Kress, S. Gudyriev, H. Zwickel, J.N. Kemal, S. Lischke, L. Zimmermann,
    C. Koos, C. Scheytt, in: Optical Fiber Communication Conference 2018, San Diego,
    2018.'
conference:
  end_date: 2018.03.15
  location: 'San Diego, CA, USA '
  start_date: 2018.03.11
date_created: 2021-09-13T07:38:05Z
date_updated: 2023-01-10T13:08:09Z
department:
- _id: '58'
- _id: '230'
language:
- iso: eng
publication: Optical Fiber Communication Conference 2018, San Diego
publication_identifier:
  eisbn:
  - 978-1-943580-38-5
related_material:
  link:
  - relation: confirmation
    url: https://ieeexplore.ieee.org/abstract/document/8386360
status: public
title: 64 GBd Monolithically Integrated Coherent QPSK Single Polarization Receiver
  in 0.25 µm SiGe-Photonic Technology
type: conference
user_id: '15931'
volume: Th4A.6
year: '2018'
...
---
_id: '24189'
author:
- first_name: Sergiy
  full_name: Gudyriev, Sergiy
  last_name: Gudyriev
- first_name: Christian
  full_name: Kress, Christian
  id: '13256'
  last_name: Kress
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: https://orcid.org/0000-0002-5950-6618
citation:
  ama: 'Gudyriev S, Kress C, Scheytt C. Electronic Photonic Integrated Circuits for
    Coherent and Non-Coherent Receivers. In: <i>10th Sino-German Joint Symposium on
    Opto- and Microelectronic Devices and Circuits (SODC 2018)</i>. IEEE; 2018.'
  apa: Gudyriev, S., Kress, C., &#38; Scheytt, C. (2018). Electronic Photonic Integrated
    Circuits for Coherent and Non-Coherent Receivers. <i>10th Sino-German Joint Symposium
    on Opto- and Microelectronic Devices and Circuits (SODC 2018)</i>.
  bibtex: '@inproceedings{Gudyriev_Kress_Scheytt_2018, place={Germany/Aachen}, title={Electronic
    Photonic Integrated Circuits for Coherent and Non-Coherent Receivers}, booktitle={10th
    Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits
    (SODC 2018)}, publisher={IEEE}, author={Gudyriev, Sergiy and Kress, Christian
    and Scheytt, Christoph}, year={2018} }'
  chicago: 'Gudyriev, Sergiy, Christian Kress, and Christoph Scheytt. “Electronic
    Photonic Integrated Circuits for Coherent and Non-Coherent Receivers.” In <i>10th
    Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits
    (SODC 2018)</i>. Germany/Aachen: IEEE, 2018.'
  ieee: S. Gudyriev, C. Kress, and C. Scheytt, “Electronic Photonic Integrated Circuits
    for Coherent and Non-Coherent Receivers,” 2018.
  mla: Gudyriev, Sergiy, et al. “Electronic Photonic Integrated Circuits for Coherent
    and Non-Coherent Receivers.” <i>10th Sino-German Joint Symposium on Opto- and
    Microelectronic Devices and Circuits (SODC 2018)</i>, IEEE, 2018.
  short: 'S. Gudyriev, C. Kress, C. Scheytt, in: 10th Sino-German Joint Symposium
    on Opto- and Microelectronic Devices and Circuits (SODC 2018), IEEE, Germany/Aachen,
    2018.'
conference:
  end_date: 2018.09.19
  start_date: 2018.09.17
date_created: 2021-09-13T07:37:54Z
date_updated: 2023-01-10T13:06:13Z
department:
- _id: '58'
- _id: '230'
language:
- iso: eng
place: Germany/Aachen
publication: 10th Sino-German Joint Symposium on Opto- and Microelectronic Devices
  and Circuits (SODC 2018)
publisher: IEEE
related_material:
  link:
  - relation: confirmation
    url: http://www.iph.rwth-aachen.de/wp-content/uploads/SODC-2018-Program-General-Public.pdf
status: public
title: Electronic Photonic Integrated Circuits for Coherent and Non-Coherent Receivers
type: conference
user_id: '15931'
year: '2018'
...
---
_id: '24188'
author:
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: https://orcid.org/0000-0002-5950-6618
citation:
  ama: 'Scheytt C. Ultra‐broadband Signal Processing by means of Electronic‐Photonic
    Integration. In: <i>10th Sino-German Joint Symposium on Opto- and Microelectronic
    Devices and Circuits (SODC 2018)</i>. IEEE; 2018.'
  apa: Scheytt, C. (2018). Ultra‐broadband Signal Processing by means of Electronic‐Photonic
    Integration. <i>10th Sino-German Joint Symposium on Opto- and Microelectronic
    Devices and Circuits (SODC 2018)</i>.
  bibtex: '@inproceedings{Scheytt_2018, place={Germany/Aachen}, title={Ultra‐broadband
    Signal Processing by means of Electronic‐Photonic Integration}, booktitle={10th
    Sino-German Joint Symposium on Opto- and Microelectronic Devices and Circuits
    (SODC 2018)}, publisher={IEEE}, author={Scheytt, Christoph}, year={2018} }'
  chicago: 'Scheytt, Christoph. “Ultra‐broadband Signal Processing by Means of Electronic‐Photonic
    Integration.” In <i>10th Sino-German Joint Symposium on Opto- and Microelectronic
    Devices and Circuits (SODC 2018)</i>. Germany/Aachen: IEEE, 2018.'
  ieee: C. Scheytt, “Ultra‐broadband Signal Processing by means of Electronic‐Photonic
    Integration,” 2018.
  mla: Scheytt, Christoph. “Ultra‐broadband Signal Processing by Means of Electronic‐Photonic
    Integration.” <i>10th Sino-German Joint Symposium on Opto- and Microelectronic
    Devices and Circuits (SODC 2018)</i>, IEEE, 2018.
  short: 'C. Scheytt, in: 10th Sino-German Joint Symposium on Opto- and Microelectronic
    Devices and Circuits (SODC 2018), IEEE, Germany/Aachen, 2018.'
date_created: 2021-09-13T07:37:53Z
date_updated: 2023-01-10T13:05:12Z
department:
- _id: '58'
- _id: '230'
language:
- iso: eng
place: Germany/Aachen
publication: 10th Sino-German Joint Symposium on Opto- and Microelectronic Devices
  and Circuits (SODC 2018)
publisher: IEEE
related_material:
  link:
  - relation: confirmation
    url: http://www.iph.rwth-aachen.de/?p=2051
status: public
title: Ultra‐broadband Signal Processing by means of Electronic‐Photonic Integration
type: conference
user_id: '15931'
year: '2018'
...
---
_id: '24191'
author:
- first_name: Sergiy
  full_name: Gudyriev, Sergiy
  last_name: Gudyriev
- first_name: Christian
  full_name: Kress, Christian
  id: '13256'
  last_name: Kress
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: https://orcid.org/0000-0002-5950-6618
citation:
  ama: 'Gudyriev S, Kress C, Scheytt C. Electronic‐Photonic Integrated Systems for
    Ultrafast Signal Processing. In: <i>DFG Priority Programme SPP2111</i>. ; 2018.'
  apa: Gudyriev, S., Kress, C., &#38; Scheytt, C. (2018). Electronic‐Photonic Integrated
    Systems for Ultrafast Signal Processing. <i>DFG Priority Programme SPP2111</i>.
  bibtex: '@inproceedings{Gudyriev_Kress_Scheytt_2018, place={Germany/Paderborn},
    title={Electronic‐Photonic Integrated Systems for Ultrafast Signal Processing},
    booktitle={DFG Priority Programme SPP2111}, author={Gudyriev, Sergiy and Kress,
    Christian and Scheytt, Christoph}, year={2018} }'
  chicago: Gudyriev, Sergiy, Christian Kress, and Christoph Scheytt. “Electronic‐Photonic
    Integrated Systems for Ultrafast Signal Processing.” In <i>DFG Priority Programme
    SPP2111</i>. Germany/Paderborn, 2018.
  ieee: S. Gudyriev, C. Kress, and C. Scheytt, “Electronic‐Photonic Integrated Systems
    for Ultrafast Signal Processing,” 2018.
  mla: Gudyriev, Sergiy, et al. “Electronic‐Photonic Integrated Systems for Ultrafast
    Signal Processing.” <i>DFG Priority Programme SPP2111</i>, 2018.
  short: 'S. Gudyriev, C. Kress, C. Scheytt, in: DFG Priority Programme SPP2111, Germany/Paderborn,
    2018.'
date_created: 2021-09-13T07:37:57Z
date_updated: 2023-01-10T13:06:48Z
department:
- _id: '58'
- _id: '230'
language:
- iso: eng
place: Germany/Paderborn
publication: DFG Priority Programme SPP2111
related_material:
  link:
  - relation: confirmation
    url: https://ei.uni-paderborn.de/en/electrical-engineering/studies/electrical-engineering/degree-program/electrical-engineering/electrical-systems-engineering/electrical-engineering/news/electrical-engineering/ese-single/new-priority-program-electronic-photonic-integrated-systems-for-ultrafast-signal-processing
status: public
title: Electronic‐Photonic Integrated Systems for Ultrafast Signal Processing
type: conference
user_id: '15931'
year: '2018'
...
---
_id: '24187'
abstract:
- lang: eng
  text: In this paper, we present a monolithically integrated coherent receiver with
    on-chip grating couplers, 90° hybrid, photodiodes and transimpedance amplifiers.
    A transimpedance gain of 7.7 kΩ was achieved by the amplifiers. An opto-electrical
    3 dB bandwidth of 34 GHz for in-phase and quadrature channel was measured. A real-time
    data transmission of 64 GBd-QPSK (128 Gb/s) for a single polarization was performed.
author:
- first_name: Sergiy
  full_name: Gudyriev, Sergiy
  last_name: Gudyriev
- first_name: Christian
  full_name: Kress, Christian
  id: '13256'
  last_name: Kress
- first_name: Heiner
  full_name: Zwickel, Heiner
  last_name: Zwickel
- first_name: Juned N.
  full_name: Kemal, Juned N.
  last_name: Kemal
- first_name: Stefan
  full_name: Lischke, Stefan
  last_name: Lischke
- first_name: Lars
  full_name: Zimmermann, Lars
  last_name: Zimmermann
- first_name: Christian
  full_name: Koos, Christian
  last_name: Koos
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: https://orcid.org/0000-0002-5950-6618
citation:
  ama: 'Gudyriev S, Kress C, Zwickel H, et al. Coherent ePIC Receiver for 64 GBaud
    QPSK in 0.25μm Photonic BiCMOS Technology. In: <i>IEEE/OSA Journal of Lightwave
    Technology</i>. ; 2018:1-1. doi:<a href="https://doi.org/10.1109/JLT.2018.2881107">10.1109/JLT.2018.2881107</a>'
  apa: Gudyriev, S., Kress, C., Zwickel, H., Kemal, J. N., Lischke, S., Zimmermann,
    L., Koos, C., &#38; Scheytt, C. (2018). Coherent ePIC Receiver for 64 GBaud QPSK
    in 0.25μm Photonic BiCMOS Technology. <i>IEEE/OSA Journal of Lightwave Technology</i>,
    1–1. <a href="https://doi.org/10.1109/JLT.2018.2881107">https://doi.org/10.1109/JLT.2018.2881107</a>
  bibtex: '@inproceedings{Gudyriev_Kress_Zwickel_Kemal_Lischke_Zimmermann_Koos_Scheytt_2018,
    title={Coherent ePIC Receiver for 64 GBaud QPSK in 0.25μm Photonic BiCMOS Technology},
    DOI={<a href="https://doi.org/10.1109/JLT.2018.2881107">10.1109/JLT.2018.2881107</a>},
    booktitle={IEEE/OSA Journal of Lightwave Technology}, author={Gudyriev, Sergiy
    and Kress, Christian and Zwickel, Heiner and Kemal, Juned N. and Lischke, Stefan
    and Zimmermann, Lars and Koos, Christian and Scheytt, Christoph}, year={2018},
    pages={1–1} }'
  chicago: Gudyriev, Sergiy, Christian Kress, Heiner Zwickel, Juned N. Kemal, Stefan
    Lischke, Lars Zimmermann, Christian Koos, and Christoph Scheytt. “Coherent EPIC
    Receiver for 64 GBaud QPSK in 0.25μm Photonic BiCMOS Technology.” In <i>IEEE/OSA
    Journal of Lightwave Technology</i>, 1–1, 2018. <a href="https://doi.org/10.1109/JLT.2018.2881107">https://doi.org/10.1109/JLT.2018.2881107</a>.
  ieee: 'S. Gudyriev <i>et al.</i>, “Coherent ePIC Receiver for 64 GBaud QPSK in 0.25μm
    Photonic BiCMOS Technology,” in <i>IEEE/OSA Journal of Lightwave Technology</i>,
    2018, pp. 1–1, doi: <a href="https://doi.org/10.1109/JLT.2018.2881107">10.1109/JLT.2018.2881107</a>.'
  mla: Gudyriev, Sergiy, et al. “Coherent EPIC Receiver for 64 GBaud QPSK in 0.25μm
    Photonic BiCMOS Technology.” <i>IEEE/OSA Journal of Lightwave Technology</i>,
    2018, pp. 1–1, doi:<a href="https://doi.org/10.1109/JLT.2018.2881107">10.1109/JLT.2018.2881107</a>.
  short: 'S. Gudyriev, C. Kress, H. Zwickel, J.N. Kemal, S. Lischke, L. Zimmermann,
    C. Koos, C. Scheytt, in: IEEE/OSA Journal of Lightwave Technology, 2018, pp. 1–1.'
date_created: 2021-09-13T07:37:52Z
date_updated: 2023-08-04T08:32:31Z
department:
- _id: '58'
- _id: '230'
doi: 10.1109/JLT.2018.2881107
language:
- iso: eng
page: 1-1
publication: IEEE/OSA Journal of Lightwave Technology
related_material:
  link:
  - relation: confirmation
    url: https://www.osapublishing.org/jlt/abstract.cfm?uri=jlt-37-1-103&origin=search
status: public
title: Coherent ePIC Receiver for 64 GBaud QPSK in 0.25μm Photonic BiCMOS Technology
type: conference
user_id: '13256'
year: '2018'
...
---
_id: '24193'
abstract:
- lang: eng
  text: A complete system analysis for an integrated passive RFID transponder designed
    at 5.8 GHz range is presented, and a comprehensive set of design concerns for
    the rectifier circuit as the core of the harvesting block is also discussed. The
    system analysis is complemented by transistor-level design and simulation of harvesting
    circuits in a commercial 65 nm CMOS technology. A differential drive rectifier
    (DDR) has been selected as the most efficient harvesting topology for microwave
    frequency applications, which works at very low input power levels. The circuit
    was designed and simulated including chip layout parasitics and antenna matching
    circuitry. Considering the power budget of the tag chip, a power conversion efficiency
    of roughly 68.4% is achieved in simulation for an input RF power of around -11.26dBm.
author:
- first_name: Sanaz
  full_name: Haddadian, Sanaz
  id: '59648'
  last_name: Haddadian
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: '0000-0002-5950-6618 '
citation:
  ama: 'Haddadian S, Scheytt C. Wireless Energy Harvesting in RFID Applications at
    5.8 GHz ISM Band, a System Analysis. In: <i>Electromagnetics Research Symposium</i>.
    Vol 40th. ; 2018. doi:<a href="https://doi.org/10.23919/PIERS.2018.8597594">10.23919/PIERS.2018.8597594</a>'
  apa: Haddadian, S., &#38; Scheytt, C. (2018). Wireless Energy Harvesting in RFID
    Applications at 5.8 GHz ISM Band, a System Analysis. <i>Electromagnetics Research
    Symposium</i>, <i>40th</i>. <a href="https://doi.org/10.23919/PIERS.2018.8597594">https://doi.org/10.23919/PIERS.2018.8597594</a>
  bibtex: '@inproceedings{Haddadian_Scheytt_2018, place={Japan/Toyama}, title={Wireless
    Energy Harvesting in RFID Applications at 5.8 GHz ISM Band, a System Analysis},
    volume={40th}, DOI={<a href="https://doi.org/10.23919/PIERS.2018.8597594">10.23919/PIERS.2018.8597594</a>},
    booktitle={Electromagnetics Research Symposium}, author={Haddadian, Sanaz and
    Scheytt, Christoph}, year={2018} }'
  chicago: Haddadian, Sanaz, and Christoph Scheytt. “Wireless Energy Harvesting in
    RFID Applications at 5.8 GHz ISM Band, a System Analysis.” In <i>Electromagnetics
    Research Symposium</i>, Vol. 40th. Japan/Toyama, 2018. <a href="https://doi.org/10.23919/PIERS.2018.8597594">https://doi.org/10.23919/PIERS.2018.8597594</a>.
  ieee: 'S. Haddadian and C. Scheytt, “Wireless Energy Harvesting in RFID Applications
    at 5.8 GHz ISM Band, a System Analysis,” in <i>Electromagnetics Research Symposium</i>,  Toyama,
    Japan, 2018, vol. 40th, doi: <a href="https://doi.org/10.23919/PIERS.2018.8597594">10.23919/PIERS.2018.8597594</a>.'
  mla: Haddadian, Sanaz, and Christoph Scheytt. “Wireless Energy Harvesting in RFID
    Applications at 5.8 GHz ISM Band, a System Analysis.” <i>Electromagnetics Research
    Symposium</i>, vol. 40th, 2018, doi:<a href="https://doi.org/10.23919/PIERS.2018.8597594">10.23919/PIERS.2018.8597594</a>.
  short: 'S. Haddadian, C. Scheytt, in: Electromagnetics Research Symposium, Japan/Toyama,
    2018.'
conference:
  end_date: 2018.08.04
  location: ' Toyama, Japan'
  start_date: 2018.08.01
date_created: 2021-09-13T07:37:59Z
date_updated: 2025-02-13T14:25:10Z
department:
- _id: '58'
doi: 10.23919/PIERS.2018.8597594
language:
- iso: eng
place: Japan/Toyama
publication: Electromagnetics Research Symposium
publication_identifier:
  eisbn:
  - 978-4-8855-2316-8
  eissn:
  - '1559-9450 '
status: public
title: Wireless Energy Harvesting in RFID Applications at 5.8 GHz ISM Band, a System
  Analysis
type: conference
user_id: '59648'
volume: 40th
year: '2018'
...
---
_id: '24185'
abstract:
- lang: eng
  text: In this poster, we present the first experimental results of our OFDM-based
    Vehicular VLC (V-VLC) prototype. Our Bit Error Rate (BER) measurements show that
    for lower Modulation and Coding Schemes (MCS), the performance of our hardware-setup
    roughly behaves the same as it does in simulation for AWGN channel. However, for
    higher order MCS with high PAPR, the BER performance gets degraded due to non-linear
    behavior of LEDs, and deviates further from AWGN performance as the MCS order
    is increased. The obtained results suggest that unlike RF-Communications, where
    the focus is usually towards linearity of the amplifiers, for V-VLC, linearity
    within the whole system is required to achieve optimal performance.
author:
- first_name: Jörn
  full_name: Koepe, Jörn
  last_name: Koepe
- first_name: Christian
  full_name: Kaltschmidt, Christian
  last_name: Kaltschmidt
- first_name: Marvin
  full_name: Illian, Marvin
  id: '44169'
  last_name: Illian
- first_name: Robert
  full_name: Puknat, Robert
  last_name: Puknat
- first_name: Pascal
  full_name: Kneuper, Pascal
  id: '47367'
  last_name: Kneuper
- first_name: Steffen
  full_name: Wittemeier, Steffen
  last_name: Wittemeier
- first_name: Agon
  full_name: Memedi, Agon
  last_name: Memedi
- first_name: Claas
  full_name: Tebruegge, Claas
  last_name: Tebruegge
- first_name: Muhammad Sohaib
  full_name: Amjad, Muhammad Sohaib
  last_name: Amjad
- first_name: Stephan
  full_name: Kruse, Stephan
  id: '38254'
  last_name: Kruse
- first_name: Christian
  full_name: Kress, Christian
  id: '13256'
  last_name: Kress
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: '0000-0002-5950-6618 '
- first_name: Falko
  full_name: Dressler, Falko
  id: '48097'
  last_name: Dressler
  orcid: 0000-0002-1989-1750
citation:
  ama: 'Koepe J, Kaltschmidt C, Illian M, et al. First Performance Insights on Our
    Noval OFDM-based Vehicular VLC Prototype. In: <i>2018 IEEE Vehicular Networking
    Conference (VNC)</i>. IEEE; 2018. doi:<a href="https://doi.org/10.1109/VNC.2018.8628322">10.1109/VNC.2018.8628322</a>'
  apa: Koepe, J., Kaltschmidt, C., Illian, M., Puknat, R., Kneuper, P., Wittemeier,
    S., Memedi, A., Tebruegge, C., Amjad, M. S., Kruse, S., Kress, C., Scheytt, C.,
    &#38; Dressler, F. (2018). First Performance Insights on Our Noval OFDM-based
    Vehicular VLC Prototype. <i>2018 IEEE Vehicular Networking Conference (VNC)</i>.
    <a href="https://doi.org/10.1109/VNC.2018.8628322">https://doi.org/10.1109/VNC.2018.8628322</a>
  bibtex: '@inproceedings{Koepe_Kaltschmidt_Illian_Puknat_Kneuper_Wittemeier_Memedi_Tebruegge_Amjad_Kruse_et
    al._2018, place={Taiwan/Taipeh}, title={First Performance Insights on Our Noval
    OFDM-based Vehicular VLC Prototype}, DOI={<a href="https://doi.org/10.1109/VNC.2018.8628322">10.1109/VNC.2018.8628322</a>},
    booktitle={2018 IEEE Vehicular Networking Conference (VNC)}, publisher={IEEE},
    author={Koepe, Jörn and Kaltschmidt, Christian and Illian, Marvin and Puknat,
    Robert and Kneuper, Pascal and Wittemeier, Steffen and Memedi, Agon and Tebruegge,
    Claas and Amjad, Muhammad Sohaib and Kruse, Stephan and et al.}, year={2018} }'
  chicago: 'Koepe, Jörn, Christian Kaltschmidt, Marvin Illian, Robert Puknat, Pascal
    Kneuper, Steffen Wittemeier, Agon Memedi, et al. “First Performance Insights on
    Our Noval OFDM-Based Vehicular VLC Prototype.” In <i>2018 IEEE Vehicular Networking
    Conference (VNC)</i>. Taiwan/Taipeh: IEEE, 2018. <a href="https://doi.org/10.1109/VNC.2018.8628322">https://doi.org/10.1109/VNC.2018.8628322</a>.'
  ieee: 'J. Koepe <i>et al.</i>, “First Performance Insights on Our Noval OFDM-based
    Vehicular VLC Prototype,” 2018, doi: <a href="https://doi.org/10.1109/VNC.2018.8628322">10.1109/VNC.2018.8628322</a>.'
  mla: Koepe, Jörn, et al. “First Performance Insights on Our Noval OFDM-Based Vehicular
    VLC Prototype.” <i>2018 IEEE Vehicular Networking Conference (VNC)</i>, IEEE,
    2018, doi:<a href="https://doi.org/10.1109/VNC.2018.8628322">10.1109/VNC.2018.8628322</a>.
  short: 'J. Koepe, C. Kaltschmidt, M. Illian, R. Puknat, P. Kneuper, S. Wittemeier,
    A. Memedi, C. Tebruegge, M.S. Amjad, S. Kruse, C. Kress, C. Scheytt, F. Dressler,
    in: 2018 IEEE Vehicular Networking Conference (VNC), IEEE, Taiwan/Taipeh, 2018.'
conference:
  end_date: 2018.12.07
  start_date: 2018.12.05
date_created: 2021-09-13T07:37:49Z
date_updated: 2025-02-25T05:55:32Z
department:
- _id: '58'
doi: 10.1109/VNC.2018.8628322
language:
- iso: eng
place: Taiwan/Taipeh
publication: 2018 IEEE Vehicular Networking Conference (VNC)
publication_identifier:
  eisbn:
  - 978-1-5386-9428-2
publisher: IEEE
status: public
title: First Performance Insights on Our Noval OFDM-based Vehicular VLC Prototype
type: conference
user_id: '38254'
year: '2018'
...
---
_id: '24190'
abstract:
- lang: ger
  text: 'We present a transmitter circuit to drive a commercial Light Emitting Diode
    (LED)-based headlight for automotive Visible Light Communication (VLC). Based
    on the design of the presented transmitter (TX), we provide a design methodology
    for VLC TXs and make it available as Open Hardware. Furthermore, a complete wireless
    VLC link is built using the GNU Radio signal processing tool chain and demonstrated
    on an Universal Software Radio Peripheral (USRP). The Total Harmonic Distortion
    (THD) of the system is below 5% for a wide input voltage range and the 1 dB compression
    point (P1dB) is at 1.02V, which makes the circuit attractive for more advanced
    modulation formates like Orthogonal Frequency Division Multiplexing (OFDM) or
    Pulse-Amplitude Modulation (PAM). '
author:
- first_name: Stephan
  full_name: Kruse, Stephan
  id: '38254'
  last_name: Kruse
- first_name: Christian
  full_name: Kress, Christian
  id: '13256'
  last_name: Kress
- first_name: Agon
  full_name: Memedi, Agon
  last_name: Memedi
- first_name: Claas
  full_name: Tebruegge, Claas
  last_name: Tebruegge
- first_name: Muhammad Sohaib
  full_name: Amjad, Muhammad Sohaib
  last_name: Amjad
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: '0000-0002-5950-6618 '
- first_name: Falko
  full_name: Dressler, Falko
  id: '48097'
  last_name: Dressler
  orcid: 0000-0002-1989-1750
citation:
  ama: 'Kruse S, Kress C, Memedi A, et al. Design of an Automotive Visible Light Communications
    Link using a Off-The-Shelf LED Headlight. In: <i>ANALOG 2018 16. GMM/ITG-Fachtagung</i>.
    IEEE; 2018.'
  apa: 'Kruse, S., Kress, C., Memedi, A., Tebruegge, C., Amjad, M. S., Scheytt, C.,
    &#38; Dressler, F. (2018). Design of an Automotive Visible Light Communications
    Link using a Off-The-Shelf LED Headlight. <i>ANALOG 2018 16. GMM/ITG-Fachtagung</i>.
    16. GMM/ITG-Fachtagung: ANALOG 2018, Bürokomplex Campeon München/ Neubiberg.'
  bibtex: '@inproceedings{Kruse_Kress_Memedi_Tebruegge_Amjad_Scheytt_Dressler_2018,
    place={Germany/Munich}, title={Design of an Automotive Visible Light Communications
    Link using a Off-The-Shelf LED Headlight}, booktitle={ANALOG 2018 16. GMM/ITG-Fachtagung},
    publisher={IEEE}, author={Kruse, Stephan and Kress, Christian and Memedi, Agon
    and Tebruegge, Claas and Amjad, Muhammad Sohaib and Scheytt, Christoph and Dressler,
    Falko}, year={2018} }'
  chicago: 'Kruse, Stephan, Christian Kress, Agon Memedi, Claas Tebruegge, Muhammad
    Sohaib Amjad, Christoph Scheytt, and Falko Dressler. “Design of an Automotive
    Visible Light Communications Link Using a Off-The-Shelf LED Headlight.” In <i>ANALOG
    2018 16. GMM/ITG-Fachtagung</i>. Germany/Munich: IEEE, 2018.'
  ieee: 'S. Kruse <i>et al.</i>, “Design of an Automotive Visible Light Communications
    Link using a Off-The-Shelf LED Headlight,” presented at the 16. GMM/ITG-Fachtagung:
    ANALOG 2018, Bürokomplex Campeon München/ Neubiberg, 2018.'
  mla: Kruse, Stephan, et al. “Design of an Automotive Visible Light Communications
    Link Using a Off-The-Shelf LED Headlight.” <i>ANALOG 2018 16. GMM/ITG-Fachtagung</i>,
    IEEE, 2018.
  short: 'S. Kruse, C. Kress, A. Memedi, C. Tebruegge, M.S. Amjad, C. Scheytt, F.
    Dressler, in: ANALOG 2018 16. GMM/ITG-Fachtagung, IEEE, Germany/Munich, 2018.'
conference:
  end_date: 2018.09.14
  location: Bürokomplex Campeon München/ Neubiberg
  name: '16. GMM/ITG-Fachtagung: ANALOG 2018'
  start_date: 2018.09.13
date_created: 2021-09-13T07:37:55Z
date_updated: 2025-02-25T06:01:20Z
department:
- _id: '58'
language:
- iso: eng
place: Germany/Munich
publication: ANALOG 2018 16. GMM/ITG-Fachtagung
publisher: IEEE
related_material:
  link:
  - relation: research_paper
    url: https://ieeexplore.ieee.org/document/8576855
status: public
title: Design of an Automotive Visible Light Communications Link using a Off-The-Shelf
  LED Headlight
type: conference
user_id: '38254'
year: '2018'
...
---
_id: '28231'
author:
- first_name: Eric
  full_name: Bodden, Eric
  id: '59256'
  last_name: Bodden
  orcid: 0000-0003-3470-3647
- first_name: Falko
  full_name: Dressler, Falko
  id: '48097'
  last_name: Dressler
  orcid: 0000-0002-1989-1750
- first_name: Friedhelm
  full_name: Meyer auf der Heide, Friedhelm
  id: '15523'
  last_name: Meyer auf der Heide
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
- first_name: Ansgar
  full_name: Trächtler, Ansgar
  id: '552'
  last_name: Trächtler
citation:
  ama: Bodden E, Dressler F, Meyer auf der Heide F, Scheytt C, Trächtler A. <i>Intelligente
    technische Systeme</i>. Vol 369. Verlagsschriftenreihe des Heinz Nixdorf Instituts,
    Paderborn; 2017.
  apa: Bodden, E., Dressler, F., Meyer auf der Heide, F., Scheytt, C., &#38; Trächtler,
    A. (2017). <i>Intelligente technische Systeme</i> (Vol. 369). Verlagsschriftenreihe
    des Heinz Nixdorf Instituts, Paderborn.
  bibtex: '@book{Bodden_Dressler_Meyer auf der Heide_Scheytt_Trächtler_2017, series={Verlagsschriftenreihe
    des Heinz Nixdorf Instituts, Paderborn}, title={Intelligente technische Systeme},
    volume={369}, publisher={Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn},
    author={Bodden, Eric and Dressler, Falko and Meyer auf der Heide, Friedhelm and
    Scheytt, Christoph and Trächtler, Ansgar}, year={2017}, collection={Verlagsschriftenreihe
    des Heinz Nixdorf Instituts, Paderborn} }'
  chicago: Bodden, Eric, Falko Dressler, Friedhelm Meyer auf der Heide, Christoph
    Scheytt, and Ansgar Trächtler. <i>Intelligente technische Systeme</i>. Vol. 369.
    Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn. Verlagsschriftenreihe
    des Heinz Nixdorf Instituts, Paderborn, 2017.
  ieee: E. Bodden, F. Dressler, F. Meyer auf der Heide, C. Scheytt, and A. Trächtler,
    <i>Intelligente technische Systeme</i>, vol. 369. Verlagsschriftenreihe des Heinz
    Nixdorf Instituts, Paderborn, 2017.
  mla: Bodden, Eric, et al. <i>Intelligente technische Systeme</i>. Verlagsschriftenreihe
    des Heinz Nixdorf Instituts, Paderborn, 2017.
  short: E. Bodden, F. Dressler, F. Meyer auf der Heide, C. Scheytt, A. Trächtler,
    Intelligente technische Systeme, Verlagsschriftenreihe des Heinz Nixdorf Instituts,
    Paderborn, 2017.
date_created: 2021-12-02T11:53:20Z
date_updated: 2022-01-06T06:57:53Z
department:
- _id: '26'
intvolume: '       369'
language:
- iso: ger
publication_identifier:
  isbn:
  - 978-3-942647-88-5
publication_status: published
publisher: Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn
series_title: Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn
status: public
title: Intelligente technische Systeme
type: misc
user_id: '60046'
volume: 369
year: '2017'
...
