• Title/Summary/Keyword: Electronic ink

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A KCDSA Magic Ink Sinature Secret Sharing Method (분배된 비밀 공유 기법을 이용한 KCDSA 매직 잉크 서명 방식)

  • 류영규
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.9 no.2
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    • pp.13-24
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    • 1999
  • Electronic cash is a digital signature issued by bank. If the concept of the distributed secret sharing and magic ink signature is introduced in the existing electronic cash system we can increase the security level and the availability of electronic cash system and trace the electronic cash itself and the owner of electronic cash which was issued anonymously to a user in case of illegal usage of electronic cash by users. If the trust is concentrated on one bank system. the problem of misuse of bank can be occurred. To solve this problem, the distributed secrete sharing scheme need to be introduced in electronic cash system. In this paper We propose a DSS(Digital Signature Standard) distributed magic ink signature scheme and a KCDSA(Korea Certificate-based Digital Signature Algorithm) distributed magic ink signature scheme using a verifiable secret sharing method. and we compare two methods with respect to the required computation amount for the generation of magic-ink signature.

Electronic Cash Protocol Using the Magic Ink Signature (매직 잉크 서명 기법을 이용한 전자 현금 프로토콜 설계)

  • 백종현;염흥열
    • Proceedings of the Korea Institutes of Information Security and Cryptology Conference
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    • 1997.11a
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    • pp.354-367
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    • 1997
  • Chaum's blind signature scheme is the typical withdrawal procedure of electronic cash. In blind signature scheme, a signer sign a document while he never knows the content of the signed document. Yung and Jakobsson presented new signature scheme with which the content of document can be unblinded if unusual activity is detected. This signature is referred to as the magic ink signature. In this paper, we analyze the magic ink signature, and present two new magic ink signature schemes using KCDSA and Schnorr signature algorithm. We propose two types of the efficient electonic cash system using these magic ink signature schemes. One is the electronic cash system with a single server magic init signature scheme, and the other is the electronic cash system with a distributed magic ink signature scheme.

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Advances in Microencapsulated Electrophoretic Ink for Flexible Electronic Paper Displays

  • McCreary, Michael D.
    • 한국정보디스플레이학회:학술대회논문집
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    • 2005.07a
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    • pp.234-235
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    • 2005
  • True electronic paper displays are being enabled by the development of two core technologies - plastic electronics for display backplanes and electrophoretic ink for use as the imaging layer. Electrophoretic ink developed by E Ink Corporation continues to advance performance along with parallel technology breakthroughs in flexible TFT backplanes. An overview of these advances in the ink imaging material will be discussed with special emphasis of the expected impact on the emerging flexible display applications.

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Development of Gesture-allowed Electronic Ink Editor (제스쳐 허용 전자 잉크 에디터의 개발)

  • 조미경;오암석
    • Journal of Korea Multimedia Society
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    • v.6 no.6
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    • pp.1054-1061
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    • 2003
  • Electronic ink is multimedia data that have emerged from the development of pen-based computers such as PDAs whose major input device is a stylus pen. Recently with the development and supply of pen-based mobile computers, the necessity of data processing techniques of electronic ink has increased. Techniques to develop a gesture-allowed text editor in electronic ink domain were studied in this paper. Gesture and electronic ink data are a promising feature of pen-based user interface, but they have not yet been fully exploited. A new gesture recognition algorithm to identify pen gestures and a segmentation method for electronic ink to execute gesture commands were proposed. An electronic ink editor, called GesEdit was developed using proposed algorithms. The gesture recognition algorithm is based on eight features of input strokes. Convex hull and input time have been used to segment electronic ink data into GC(Gesture Components) unit. A variety of experiments by ten people showed that the average recognition rate reached 99.6% for nine gestures.

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A Study on Image Reversal Phenomenon of Three-Electrode Type Electronic Paper Display (3전극형 전자종이 디스플레이의 이미지 반전현상에 관한 연구)

  • Shin, Yong-Kwan;Kim, Young-Cho
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.28 no.8
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    • pp.524-530
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    • 2015
  • We propose a three-electrode type electronic paper display and its fabrication process to realize single color at the same display panel. We establish a fabrication process with the mixing of electronic ink, loading of this ink, electronic ink assembly, packaging and driving. Also, we discuss an operating principle of this panel and the induced image reversal phenomenon by electric field area of the lower electrodes. This phenomenon is not occurred for the panel having $10{\mu}m$ electrode space. By this pixelation structure like this three-electronic paper display, a single color realization without color filter is possible and various kind of color is defined by a dye selection for charged particles and electrically neutral fluid.

Analysis of Optical Characteristics According to Electronic Ink Loading Method of Three-Electrode Type E-Paper Display (3전극형 전자종이 디스플레이의 전자잉크 주입 방법에 따른 광학 특성 분석)

  • Lee, Sang-Il;Hong, Youn-Chan;Kim, Young-Cho
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.31 no.3
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    • pp.171-176
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    • 2018
  • An electronic paper display was fabricated by injecting electronic ink, including white and black particles coated by positive and negative charge control agents (CCA), respectively, into closed cells surrounded by micro-barriers. These two types of charged, colored particles are easily damaged or their charging value can be changed by the injection process; therefore, the electrical and optical properties of the image panel fabricated by the injection method were estimated in this study. The active particle-loading method, proposed as a new electronic ink injection process, was applied, and the electro-optical properties of the resulting three-electrode-type e-paper image panel were analyzed. The reflection rate of the white image-panel fabricated with our new injection method was 24.7%, while that of the same panel fabricated with a previously reported injection method was 19.8%. In addition, the response time was improved by about five times compared to those reported in other publications.

Analysis on Current and Optical Characteristics by Electronic Ink Loading Method in Charged Particles Type Display (대전입자형 디스플레이에서 전자 잉크 주입 방법에 따른 전류 및 광특성 분석)

  • An, Hyeong-Jin;Kim, Young-cho
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.33 no.2
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    • pp.123-129
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    • 2020
  • We analyzed the drift current by charged particles according to the loading methods applied into a closed cell by electronic ink at a reflective-type display panel using an electrophoretic mechanism. For this experiment, various panels were fabricated with injection voltages for electronic ink taking values in the range -4~0 V. The size of each cell was 220 ㎛ × 220 ㎛ and height of the barrier rib was 54.28 ㎛. The electronic ink was fabricated by mixing electrically neutral fluid and single-charge white particles. Drift current was measured by moving charged particles. A biasing voltage of 6 V was applied to the display panel. As a result, the drift current was proportional to the injection voltage for electronic ink, but it decreased in case of an injection voltage above -3 V. Our experimentation ascertained that the concentration of charged particles injected into closed cells is controlled by the injection voltage and the selective injection of charged particles above movable q/m is possible.

Fabrication and Realization of Three-Electrode Type Color Reflective Display (3전극형 반사형 컬러 디스플레이의 제작 및 구현)

  • Shin, Yong-Kwan;Kim, Young-Cho
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.28 no.1
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    • pp.21-27
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    • 2015
  • We propose a fabrication process of a 3-electrode type reflective display and ascertain the realized color panel. The first design is proceeded with basis on Ti electrode for fast panel fabrication, easy align process, and high reflection of a white image. To observe the particle movement at the lower electrodes and optimize the space between electrodes, we design the second patterns, from which we establish a fabrication process with the mixing of electronic ink, loading of this ink, electronic ink assembly, driving, and packaging. After aging process, we ascertain a normally driving panel with black, white, and blue color.

Commercialization of Microencapsulated Electrophoretic Displays

  • McCreary, Michael
    • 한국정보디스플레이학회:학술대회논문집
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    • 2006.08a
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    • pp.524-524
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    • 2006
  • For decades, the pursuit of volume commercialization of low-power reflective displays with a paper-like look has been an unfulfilled dream. While steady technical progress was made throughout the late 1990s, there were still no volume products incorporating electronic paper displays (EPD) on the market. Now, microencapsulated electrophoretic display technology, also called electronic ink, has moved into volume production with a frontplane laminate (FPL) display component called E Ink Imaging Film™. This film is coated roll to roll on a flexible plastic substrate and integrated into a display module. Today, all-plastic segmented displays are being shipped as well as displays with electronic ink FPL being driven by glass TFT backplanes. A roadmap to active matrix flexible electrophoretic displays is being enabled by rapid technical progress on flexible TFT backplanes by a variety companies. Each of the approaches to these backplanes and flexible active matrix displays has different advantages for the various market segments being pursued including large format flexible displays for e-news and other reader applications, rollable displays for compact readers, and high resolution small format displays up to 400 ppi that can have fully integrated drive electronics to reduce size and drive down costs. Backplane approaches include Si on plastic, organic transistors on plastic, and Si transistors on flexible stainless steel substrate. Progress is also being made on next generation inks, including more reflective inks with higher contrast ratios. A full color 6 inch, 170 pixel per inch (PPI) active matrix display using a newer generation ink has been developed and this will be described and demonstrated. Large format segmented flexible displays will also be described.

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Sintering process of UV curable ink (UV 경화형 잉크의 최적의 경화 Process 확립)

  • Song, Young-Ah;Oh, Sung-Il;Cho, Sung-Nam
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2007.06a
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    • pp.532-532
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    • 2007
  • UV 경화형 ink를 inkjet printing을 통해 PCB에 patterning 하는 방법에 관한 연구이다. UV 경화형 ink는 일반적으로 ink의 투명도, 색깔, 두께에 따라 완전경화가 밀어나지 않을 수도 있는데 본 연구에서 사용한 UV ink는 particle이 첨가되어 있고 후막 인쇄를 목적으로 하기 때문에 완전경화가 어려웠다. 일반적으로 이러한 UV 경화형 ink의 문제점들을 해결하기 위하여 열경화성 첨가제를 일부 첨가하여 UV에 의한 표면경화와 얼에 의한 속 경화를 진행하는 hybrid system이 사용되고 있지만 본 연구는 PCB를 target으로 하기 때문에 열에 약한 PCB 내의 많은 소자들 때문에 열처리가 쉽지 않은 문제가 있다. 이러한 여러 제약적인 환경에서 UV ink의 완전경화를 위해 경화 process를 최적화 하였으며 10~20um의 후막 인쇄에도 ink가 완전 경화하여 연필경도 9H를 확보하는데 성공하였다.

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