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  1. AU="Schlebusch, Dirk"
  2. AU="Havranek, Edward P"
  3. AU="M Parvathi"
  4. AU="Negro Valdecantos, Vicente"
  5. AU="Nuñez-Butrón, Maria T"
  6. AU="Shepphird, Jennifer Kelly"
  7. AU="Ortenzi, Valerio"
  8. AU=Stramba-Badiale Marco
  9. AU=Sanderlin Jamie S
  10. AU="Stock-Martineau, Sophie"
  11. AU="Tang, Ni"
  12. AU="Brown, Catherine D"
  13. AU=Agrawal Ayush Kumar
  14. AU="Reza Seirafi"
  15. AU="Salehi, Ellen"
  16. AU="Terry, C"
  17. AU="Duron, Vincent P"
  18. AU="Gianoncelli, Olivia"
  19. AU=Jacob R A
  20. AU="Schaub, Theres"
  21. AU="He, Shengqu"
  22. AU="Elec, Florin I"
  23. AU="I.S. Carneiro"
  24. AU="Jia, Dongzheng" AU="Jia, Dongzheng"
  25. AU="Hollis-Perry, Monique"
  26. AU="Duman, Duygu"
  27. AU="Abdullahi, Akilu"
  28. AU="Daniela Maymó"

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  1. Konferenzbeitrag ; Online: 10.000 dpi 0.18in low-power OLED microdisplay utilizing a new flexible architecture in 28nm CMOS technology

    Wartenberg, Philipp / Fritscher, Andreas / Richter, Bernd / Damnik, Steffen / Schuster, Florian / Schlebusch, Dirk / Rolle, Martin / Brenner, Stephan / Zeltner, Johannes / Vogel, Uwe

    2024  

    Abstract: It is commonly known for digital logic integrated circuitries that they heavily scale with down-scaling of the process node enabling the integration of more functionality. However, this was not true so far for OLED microdisplays which were basically ... ...

    Abstract It is commonly known for digital logic integrated circuitries that they heavily scale with down-scaling of the process node enabling the integration of more functionality. However, this was not true so far for OLED microdisplays which were basically stuck at 90nm…250nm process nodes for several reasons. This paper will present a new approach to realize a microdisplay architecture with extended functionality as well as a first implementation in 28nm utilizing very small pixels of 2.5um, a flexible interface architecture, framerates up to 10kHz along with integration of totally new driving schemes to serve the power and form factor requirements of upcoming near-to-eye systems in AR/VR/MR applications.
    Schlagwörter OLED-on-Silicon ; microdisplay ; AR ; VR ; MR ; low-power ; CMOS technology ; µLED ; LCOS ; DDC::600 Technik ; Medizin ; angewandte Wissenschaften
    Sprache Englisch
    Erscheinungsland de
    Dokumenttyp Konferenzbeitrag ; Online
    Datenquelle BASE - Bielefeld Academic Search Engine (Lebenswissenschaftliche Auswahl)

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  2. Konferenzbeitrag ; Online: Combination of Organic and Inorganic Semiconductor for Sensing Applications

    Fehse, Karsten / Törker, Michael / Schlebusch, Dirk / Brenner, Stephan / Baumgarten, Judith / Rolle, Martin / Wartenberg, Philipp / Richter, Bernd / Vogel, Uwe

    2023  

    Abstract: Organic light emitting diodes (OLED) emerged from lab samples to standard light sources for high quality displays. Organic photodiodes (OPD) are not yet well established but are on the leap into commercial products. Here we present two sensor ... ...

    Abstract Organic light emitting diodes (OLED) emerged from lab samples to standard light sources for high quality displays. Organic photodiodes (OPD) are not yet well established but are on the leap into commercial products. Here we present two sensor applications using organic emitter as excitation source of a sensing dye and as light source to detect optical changes of a biomarker. The gas sensor uses an OLED on top of a CMOS chip whereas the biosensor utilizes a glass substrate and encapsulation with external control and driving unit for the OLED and OPD. Both sensor applications represent the first steps to integrated organic materials as key functional elements into sensor applications.
    Schlagwörter Substrates ; Optical sensors ; Photodiodes ; Organic light emitting diodes ; Glass ; Organic materials ; Stimulated emission ; OLED ; DDC::600 Technik ; Medizin ; angewandte Wissenschaften
    Sprache Englisch
    Erscheinungsland de
    Dokumenttyp Konferenzbeitrag ; Online
    Datenquelle BASE - Bielefeld Academic Search Engine (Lebenswissenschaftliche Auswahl)

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  3. Konferenzbeitrag ; Online: New small-node CMOS microdisplay backplane for high-speed programmable light modulation designed for OLED, microLED, and LCOS front-plane technologies

    Fritscher, Andreas / Wartenberg, Philipp / Richter, Bernd / Damnik, Steffen / Schuster, Florian / Schlebusch, Dirk / Rolle, Martin / Brenner, Stephan / Zeltner, Johannes / Lenk, Simone / Vogel, Uwe

    2024  

    Abstract: Using smaller CMOS nodes for the design of backplanes for light modulator enables the integration of additional features. This paper reports on a backplane designed in 28nm technology which embeds a complete framebuffer as well as a programmable high ... ...

    Abstract Using smaller CMOS nodes for the design of backplanes for light modulator enables the integration of additional features. This paper reports on a backplane designed in 28nm technology which embeds a complete framebuffer as well as a programmable high speed data interface which can realize up to 576Gbit/s data transfer rate to pixel array utilizing a 1440 x 1080 resolution with a 2.5 micron pixel capable for LCOS, OLED and micro-LED front planes. The programmable modulation scheme will be discussed in detail using typical scanning examples.
    Schlagwörter Spatial light modulators ; CMOS backplane ; driver IC ; OLED-on-Silicon ; LCOS ; microLED ; digital optics ; DDC::600 Technik ; Medizin ; angewandte Wissenschaften
    Sprache Englisch
    Erscheinungsland de
    Dokumenttyp Konferenzbeitrag ; Online
    Datenquelle BASE - Bielefeld Academic Search Engine (Lebenswissenschaftliche Auswahl)

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  4. Konferenzbeitrag ; Online: Organic-on-silicon photonic platform for advanced imagers, microdisplays and sensors

    Wartenberg, Philipp / Richter, Bernd / Brenner, Stephan / Baumgarten, Judith / Lenk, Simone / Fehse, Karsten / Schlebusch, Dirk / Törker, Michael / Fritscher, Andreas / Zeltner, Johannes / Schmidt, Christian / Rolle, Martin / Damnik, Steffen / Mütze, Josephine / Schuster, Florian / Vogel, Uwe

    2023  

    Abstract: OLED-on-Silicon technology has reached industry maturity for OLED (organic light emitting diode) microdisplays, e.g., in near-to-eye applications. Anyway, there is a huge amount of further applications, which can be addressed with an organic frontplane ... ...

    Abstract OLED-on-Silicon technology has reached industry maturity for OLED (organic light emitting diode) microdisplays, e.g., in near-to-eye applications. Anyway, there is a huge amount of further applications, which can be addressed with an organic frontplane on an integrated CMOS backplane, e.g., OPD (organic photo diode). This paper will report on latest results in the field of OPD-on-silicon sensing as well as OLED-on-silicon displays, sketching up the impact of a universal photonic platform comprising emitters, photodetectors and CMOS driving and read-out circuitry, based on application scenarios.
    Schlagwörter microdisplays ; sensors ; OLED ; near-to-eye application ; CMOS backplane ; photodetector ; DDC::600 Technik ; Medizin ; angewandte Wissenschaften
    Sprache Englisch
    Erscheinungsland de
    Dokumenttyp Konferenzbeitrag ; Online
    Datenquelle BASE - Bielefeld Academic Search Engine (Lebenswissenschaftliche Auswahl)

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  5. Konferenzbeitrag ; Online: OLED-on-Silicon for microdisplays in near-to-eye applications and optoelectronic sensing

    Wartenberg, Philipp / Richter, Bernd / Baumgarten, Judith / Fritscher, Andreas / Brenner, Stephan / Lenk, Simone / Damnik, Steffen / Rolle, Martin / Zeltner, Johannes / Schmidt, Christian / Mütze, Josephine / Schlebusch, Dirk / Fehse, Karsten / Törker, Michael / Schuster, Florian / Vogel, Uwe

    2023  

    Abstract: 371 ... 374 ... The OLED-on-Silicon technology enables integration of light sources in a CMOS semiconductor process which can be used for various applications ranging from mulimillion independently controlled light sources (e.g in a microdisplay) to single ... ...

    Abstract 371

    374

    The OLED-on-Silicon technology enables integration of light sources in a CMOS semiconductor process which can be used for various applications ranging from mulimillion independently controlled light sources (e.g in a microdisplay) to single individual spots with especially designed emission spectrum for optoelectronic sensing (e.g. optical oxygen sensor). Either way all of these applications benefits from the chance to integrate tremendous number of electronic components directly in the CMOS backplane thus enabling miniaturized and very power efficient devices. Implementation examples will be presented in this paper.
    Schlagwörter OLED ; microdisplays ; near-to-eye applications ; CMOS ; semiconductor process ; optoelectronic ; backplanes ; DDC::600 Technik ; Medizin ; angewandte Wissenschaften
    Sprache Englisch
    Erscheinungsland de
    Dokumenttyp Konferenzbeitrag ; Online
    Datenquelle BASE - Bielefeld Academic Search Engine (Lebenswissenschaftliche Auswahl)

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