Добірка наукової літератури з теми "Pixels per inch"

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Статті в журналах з теми "Pixels per inch"

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Joo, Won-Jae, Jisoo Kyoung, Majid Esfandyarpour, et al. "Metasurface-driven OLED displays beyond 10,000 pixels per inch." Science 370, no. 6515 (2020): 459–63. http://dx.doi.org/10.1126/science.abc8530.

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Анотація:
Optical metasurfaces are starting to find their way into integrated devices, where they can enhance and control the emission, modulation, dynamic shaping, and detection of light waves. In this study, we show that the architecture of organic light-emitting diode (OLED) displays can be completely reenvisioned through the introduction of nanopatterned metasurface mirrors. In the resulting meta-OLED displays, different metasurface patterns define red, green, and blue pixels and ensure optimized extraction of these colors from organic, white light emitters. This new architecture facilitates the cre
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Jung, Dongsoon, Ara Cho, Hokwon Kim, Minsu Jeong, and Jeong Hwan Lee. "32‐4: Late‐News Paper: A 1.03‐inch 2560x2560 3514 PPI Low Power OLEDoS Backplane with In‐pixel Up‐scaling Technique." SID Symposium Digest of Technical Papers 54, no. 1 (2023): 465–68. http://dx.doi.org/10.1002/sdtp.16593.

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Анотація:
A 1.03‐inch 2560x2560 low power OLEDoS backplane with a proposed in‐pixel up‐scaling technique is designed and implemented. Due to the proposed technique based on interpolated pixel scheme, the pixel density of the backplane realizes 3514 PPI (Pixels per Inch) with lower power consumption. The backplane has 1280x1280 input video resolution and output video resolution is upscaled to 2560x2560 without additional up‐scaler. A measured power consumption per 1 mega pixel without OLED frontplane is 16.3mW which is less than our previous 0.7‐inch 1920x1080 OLEDoS backplane with the same semiconductor
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3

Chu, Eun-Kyung, Eun Jeong Youn, Hyun Woong Kim, Bum Doo Park, Ho Kun Sung, and Hyeong-Ho Park. "Wafer-Scale Characterization of 1692-Pixel-Per-Inch Blue Micro-LED Arrays with an Optimized ITO Layer." Micromachines 15, no. 5 (2024): 560. http://dx.doi.org/10.3390/mi15050560.

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Анотація:
Wafer-scale blue micro-light-emitting diode (micro-LED) arrays were fabricated with a pixel size of 12 μm, a pixel pitch of 15 μm, and a pixel density of 1692 pixels per inch, achieved by optimizing the properties of e-beam-deposited and sputter-deposited indium tin oxide (ITO). Although the sputter-deposited ITO (S-ITO) films exhibited a densely packed morphology and lower resistivity compared to the e-beam-deposited ITO (E-ITO) films, the forward voltage (VF) values of a micro-LED with the S-ITO films were higher than those with the E-ITO films. The VF values for a single pixel and for four
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4

Hung, Chia-Che, Ching-Yung Chiu, Yung-Chih Chen, and Chun-Hsin Liu. "P‐63: Simple Pixel Circuit with External Compensation for High PPI Active‐Matrix MicroLED Displays Using PWM Method." SID Symposium Digest of Technical Papers 54, no. 1 (2023): 1719–21. http://dx.doi.org/10.1002/sdtp.16932.

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Анотація:
This work presents a novel pixel circuit that consists of five transistors and two capacitors for active‐matrix micro‐LED (AMμLED) displays. The proposed pixel circuit uses external compensation to compensate for variations in the low‐temperature polycrystalline‐silicon thin‐film transistor (LTPS TFT) threshold voltage and adopts pulse width modulation (PWM) to modulate the grayscale. According to the simulation results and a layout example, the proposed pixel circuit is expected to be applied in high pixels per inch (PPI) car displays in the future.
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Dogan, Tamer, Joris de Riet, Thijs Bel, et al. "1000-Pixels per Inch Transistor Arrays Using Multi-Level Imprint Lithography." IEEE Electron Device Letters 41, no. 8 (2020): 1217–20. http://dx.doi.org/10.1109/led.2020.3006343.

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6

Chen, Dongchuan, Qiujie Su, Yingmeng Miao, et al. "29‐4: Research on Dual‐Gate Pixel Architecture Enabling High‐PPI and High‐Refresh‐Rate LCD Panels." SID Symposium Digest of Technical Papers 56, S1 (2025): 267–70. https://doi.org/10.1002/sdtp.18780.

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Анотація:
This paper introduces a novel dual‐gate pixel architecture for high‐PPI (Pixels Per Inch) LCD panels, enabling an 8K 120Hz display with Hardware Super Resolution (HSR) frequencydoubling driving using a‐Si technology. The proposed dual‐gate pixel architecture integrates an HSR driving to address bandwidth limitations in driver ICs and TCONs for 8K 120Hz systems, without additional hardware resources compared to traditional 60Hz designs. The solution supports scalable resolution‐refresh rate configurations, such as 4K HSR 240Hz and 2K HSR 480Hz, offering a cost‐effective approach for high‐ PPI a
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Kim, Yohan, Manuel Gensler, Jiyong Kim, et al. "69‐4: Late‐News Paper: Quantum Dot/Organic Nanohybrids for InP‐based QD‐LEDs and Their Patterning via Electrohydrodynamic Jet Printing." SID Symposium Digest of Technical Papers 54, no. 1 (2023): 982–85. http://dx.doi.org/10.1002/sdtp.16732.

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Анотація:
Quantum dot (QD)/organic nanohybrids were developed to be utilized in electrohydrodynamic (EHD) jet‐printed QD‐LEDs. Side‐chain copolymer with elongated aliphatic thiol groups was newly introduced into the nanohybrids to coordinate the polymer chains with the QD surface. The QD‐LEDs with the nonohybrids showed a higher current efficiency over 4‐fold than that with a QD‐only active layer. EHD jet‐printing was independently performed up to 5µm pixel pitch on a substrate, resulting in a resolution of ca. 5,080 pixels per inch.
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Chen, Lin, Xiuxia Wang, Yu Wei, and Chenggang Zhou. "A Magnetic Metal Hard Mask on Silicon Substrate for Direct Patterning Ultra-High-Resolution OLED Displays." Micromachines 13, no. 7 (2022): 997. http://dx.doi.org/10.3390/mi13070997.

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Анотація:
With the development of virtual reality/augmented reality (VR/AR) display devices, the conventional fine metal mask is limited by the wet etch process, which no longer meets the demand for high pixels per inch (PPI) displays. We deposited a layer of magnetic metal on the silicon substrate by physical vapor deposition (PVD), and then developed a 2-inch, 3175 PPI magnetic metal hard mask on silicon substrate (MMS) through deep silicon etching and other micro-nano processing for patterning Organic Light-Emitting Diodes (OLED) displays, which can achieve smaller pixel size and higher PPI. MMS can
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Peters, Klaus-Ruediger. "On LaserJet Printers:." Microscopy Today 4, no. 10 (1996): 17. http://dx.doi.org/10.1017/s1551929500063367.

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Анотація:
LaserJets, like many other printers, print in lines per inch (Ipi). The lines represent in digital image printing lines of pixels. If the pixels are printed squarely than each square area (of a width equal to that of the actual line width) must be printed with a desired amount of ink variations in order to generate the gray levels (see John Russ’ book for a nice illustration on how this is done in a LaserJet). LaserJets and Inkjets use dots as the smallest printed entity.
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Liu, Ya-Li, Tao Liu, Bin Yan, Jeng-Shyang Pan, and Hong-Mei Yang. "Visual Cryptography Using Computation-Free Bit-Plane Reconstruction." Security and Communication Networks 2022 (June 26, 2022): 1–14. http://dx.doi.org/10.1155/2022/4617885.

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Анотація:
Visual cryptography (VC) using bit-plane decomposition improves the quality of the reconstructed image. The disadvantage of this scheme is that the decoder needs computation in order to reconstruct the secret image from its bit-planes. To solve this problem, we propose a no-computation bit-plane decomposition visual cryptography (NC-BPDVC). In NC-BPDVC, we convert the grayscale secret image into a multitone image by multilevel halftoning. Then, by exploring the difference between a digital pixel and a printed dot, we design different dot patterns to render a digital pixel. By doing so, we aban
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Дисертації з теми "Pixels per inch"

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Herasymenko, A. O. "Method of calculating the dimensions of UAVs in pixels." Thesis, National Aviation University, 2021. https://er.nau.edu.ua/handle/NAU/50537.

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1. Technology of typesetting and typesetting [Text]: textbook. way. / D. Vasilishin, O. Vasilishin; for order. O. Melnikov; rec .: O. Velychko, M. Antonyk, Yu. - Lviv: Ukr. acad. Drukarstva, 2011. - 272 p. - 300 pp. - ISBN 978-966-322-190-8. 2. Myers, Robert L. (4 October 2002). Format and Timing Standards. Display Interfaces: Fundamentals and Standards. Chichester: John Wiley and Sons. с. 132. ISBN 0-471-49946-3. 3. Rosch, Winn L. (21 February 2003). Display Systems. Winn L. Rosch Hardware Bible (вид. 6th edition). Que Publishing. с. 827. ISBN 0-7897-2859-1. 4. Gouldian Finch. What is mon
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Книги з теми "Pixels per inch"

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NoteBooks, Sappuris. Notebook Graph Paper 2 Squares per Inch for Teens, Gradient Pixel Texture in Gold Color Close-Up Shot Cover, 100 Pages - Large(8. 5 X 11 Inches). Independently Published, 2021.

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Тези доповідей конференцій з теми "Pixels per inch"

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Kuo, Ting-Jhih, Han-Yu Chao, Fang-Chung Chen, Hao-Chung Kuo, and Chien-Chung Lin. "A Highly Reliable Color Conversion Layer Based on Colloidal Quantum Dots with High Resolution of 3628 Pixel-Per-Inch." In CLEO: Applications and Technology. Optica Publishing Group, 2024. http://dx.doi.org/10.1364/cleo_at.2024.ath3o.6.

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Анотація:
A 3628-PPI color conversion layer based on colloidal quantum dots is demonstrated with high resolution and good reliability. The sub-pixel size is 2 microns and the color conversion efficiency is as high as 22%. A properly designed mirror can enhance the peak intensity more than two times.
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2

Chong, Wing Cheung, Wai Keung Cho, Zhao Jun Liu, Chu Hong Wang, and Kei May Lau. "1700 Pixels Per Inch (PPI) Passive-Matrix Micro-LED Display Powered by ASIC." In 2014 IEEE Compound Semiconductor Integrated Circuit Symposium (CSICS). IEEE, 2014. http://dx.doi.org/10.1109/csics.2014.6978524.

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3

Liu, Yu-Wei, Hsiang-Yu Hsieh, and Nanming Chen. "High-Speed Frame Grabber for Track Monitoring Systems." In 2011 Joint Rail Conference. ASMEDC, 2011. http://dx.doi.org/10.1115/jrc2011-56116.

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Анотація:
In recent years, image recognition, along with improvements in image processing technology, has become a mainstream method of object inspection. The quality of images directly affects the image-recognition rate. Track monitoring systems play an important role in ensuring safety and preventing derailments of trains, on the basis of the prevailing track conditions. Therefore, the conditions of track systems are very important. In this research, a high-speed frame grabber system is designed. The triggering rate of its line scan camera can be adjusted to match the vehicle speed of the train, so th
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4

Savoie, Charles, and Darryl Rivest. "Advanced Radiographic Scanning, Enhancement and Electronic Data Storage." In 2002 4th International Pipeline Conference. ASMEDC, 2002. http://dx.doi.org/10.1115/ipc2002-27174.

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Анотація:
It is a well-known fact that radiographs deteriorate with time. Substantial cost is attributed to cataloguing and storage. To eliminate deterioration issues and save time retrieving radiographs, laser scanning techniques were developed in conjunction with viewing and enhancement software. This will allow radiographs to be successfully scanned and stored electronically for future reference. Today’s radiographic laser scanners are capable of capturing images with an optical density of up to 4.1 at 256 grey levels and resolutions up to 4096 pixels per line. An industrial software interface was de
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