• Title/Summary/Keyword: LCD device driver

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Design of an Integrated Interface Circuit and Device Driver Generation System (인터페이스 회로와 디바이스 드라이버 통합 자동생성 시스템 설계)

  • Hwang, Sun-Young;Kim, Hyoun-Chul;Lee, Ser-Hoon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.6B
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    • pp.325-333
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    • 2007
  • An OS requires the device driver to control hardware IPs at application level. Development of a device driver requires specific acknowledge for target hardware and OS. In this paper, we present a system which generates a device driver together with an interface circuit. In the proposed system, an efficient device driver is generated by selecting a basic device driver skeleton, a function module code, and a header file table from the pre-constructed library and an interface circuit is constructed such that the generated device driver operates correctly. The proposed system is evaluated by generating a TFT-LCD device driver on the ARM922T core with 3.5 inch Samsung TFT-LCD in ARM-Linux environment. Experiment result shows that the writing time on the LCD is decreased by 1.12% and the compiled code size is increased by 0.17% compared to the manually generated one. The automatically generated device driver has no performance degradation in the latency of hardware control at the application program level. The system development time can be reduced using the proposed device driver generation system.

Portable RTOS Character LCD Device Driver (이식 가능한 RTOS용 Character LCD 디바이스 드라이버)

  • Hong, Jung-Hwan
    • KSCI Review
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    • v.14 no.2
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    • pp.153-158
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    • 2006
  • A device driver is the core construction providing connectable rules between a hardware and an operating system in Embedded softwares. It provides consistent interface for the control and mutual interactions so that an application program can use hardware's functionalities. However, the device driver is suffered to develop as it is related to both hardware and software and it is also wasted to newly develop whenever hardware platform changed. Therefore, this paper researches the method to provide high portability in heterogenous hardware and finally suggests efficient device driver development.

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Implementation of the embodiment for a Process Control Shipping Automation System (공정제어 출하 자동화 시스템을 위한 Graphic LCD Device Driver 설계 및 구현)

  • Jung, Byung-Chae;Sim, Hyun;Lee, Kyu-Su;Oh, Jae-Cheol
    • Proceedings of the KIEE Conference
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    • 2007.04a
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    • pp.193-195
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    • 2007
  • It will be able to deliver quickly information it measures a weight the numerous vehicles at real-time for the managers. It does the Graphic LCD driver development for in Factory automation embeded system and introduces the plan and an embodiment of process shipping automation system.

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Device driver for SoC actuator IP driving (SoC 액츄에이터 IP 구동을 위한 디바이스 드라이버)

  • Gang Sang-Woo;Park Jong-Seong;Moon Cheol-Hong
    • Proceedings of the IEEK Conference
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    • 2004.06b
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    • pp.407-410
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    • 2004
  • This paper describes an embedded system to put a SoC actuator IP in motion and linux drivers. The If that a embedded linux among embedded OS is ported is implemented as linux driver. The actuator IP is controlled by application programming. To make users use this easily, a QT is ported on the system. Application program can operate the actuator IP device driver on TFT LCD.

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Design of an Automatic Generation System of Device Drivers Using Templates (템플릿을 이용한 디바이스 드라이버 자동생성 시스템 설계)

  • Kim, Hyoun-Chul;Lee, Ser-Hoon;Hwang, Sun-Young
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.33 no.9C
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    • pp.652-660
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    • 2008
  • Applications running under embedded systems require various device drivers designed for different types and versions of the OS to manage resources effectively. In this paper, an automated device driver generator system which can generate the device drivers to be used in newer versions the target OS is proposed. In the proposed system, the structures of device drivers of specific OS are designed in the templates and stored in a library, and the target device drivers are generated by adding codes to the stored templates. Once device drivers are generated, they are registered into the kernel. The experimental results show that data transfer time has been slightly increased when compared against manually created drivers for TFT-LCD driver, USB interface keyboard/mouse driver, and AC'97 controller drivers. The code size for the generated drivers after compilation has also been increased slightly when compared with manually designed device drivers.

New Process Development for Hybrid Silicon Thin Film Transistor

  • Cho, Sung-Haeng;Choi, Yong-Mo;Jeong, Yu-Gwang;Kim, Hyung-Jun;Yang, Sung-Hoon;Song, Jun-Ho;Jeong, Chang-Oh;Kim, Shi-Yul
    • 한국정보디스플레이학회:학술대회논문집
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    • 2008.10a
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    • pp.205-207
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    • 2008
  • The new process for hybrid silicon thin film transistor (TFT) using DPSS laser has been developed for realizing both low-temperature poly-Si (LTPS) TFT and a-Si:H TFT on the same substrate as a backplane of active matrix liquid crystal display. LTPS TFTs are integrated on the peripheral area of the panel for gate driver integrated circuit and a-Si:H TFTs are used as a switching device for pixel in the active area. The technology has been developed based on the current a-Si:H TFT fabrication process without introducing ion-doping and activation process and the field effect mobility of $4{\sim}5\;cm^2/V{\cdot}s$ and $0.5\;cm^2/V{\cdot}s$ for each TFT was obtained. The low power consumption, high reliability, and low photosensitivity are realized compared with amorphous silicon gate driver circuit and are demonstrated on the 14.1 inch WXGA+ ($1440{\times}900$) LCD Panel.

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Interface Development for the Point-of-care device based on SOPC

  • Son, Hong-Bum;Song, Sung-Gun;Jung, Jae-Wook;Lee, Chang-Su;Park, Seong-Mo
    • Journal of Information Processing Systems
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    • v.3 no.1
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    • pp.16-20
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    • 2007
  • This paper describes the development of the sensor interface and driver program for a point of care (POC) device. The proposed pac device comprises an ARM9 embedded processor and eight-channel sensor input to measure various bio-signals. It features a user-friendly interface using a full-color TFT-LCD and touch-screen, and a bluetooth wireless communication module. The proposed device is based on the system on a programmable chip (SOPC). We use Altera's Excalibur device, which has an ARM9 and FPGA area on a chip, as a test bed for the development of interface hardware and driver software.

HC-06 Bluetooth based driver module for emergency LED Multi-Directional Indicator

  • Jung, Joonseok;Kwon, Jongman;Mfitumukiza, Joseph;Jung, Soonho;Lee, Minwoo;Cha, Jaesang
    • Journal of Satellite, Information and Communications
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    • v.12 no.1
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    • pp.114-119
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    • 2017
  • In this paper we present the search on HC-06 Bluetooth based driver module for emergency LED Multi-Directional Indicator. Nowadays, a growing trends in which electronic displays such as LED, LCD or plasma monitors are being installed in public places like bars, stores, entertainment areas, restaurants, lobbies, etc. In this paper, the study is curried out on efficiency of HC-06 Bluetooth module based controller driver that relates generally to the field of emergency signage management systems for displaying various indicator contents remotely on electronic displays in public and privates venues. It allows user smart devices interaction remotely with digital signage by providing content for displaying on at least one display in a venue. Depending on the emergency case, HC-06 Bluetooth based driver module proves the high efficiency as well as good performance of processing and communicating remotely the indicator based message that is displayed from a venue management control system by using smart devices. The system combines smart device that linked to HC-06 Bluetooth module with ATmega168/328 embedded micro controller which result by switching the displayer containing the digital signage indicator based message.

Design and Implementation of Seamless Folding Display Device (Seamless 접이식 디스플레이 장치 개발 및 구현)

  • Jin, Kyung-Chan;Chun, Keyoung-Jin;Kim, Si-Hwan
    • Proceedings of the IEEK Conference
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    • 2006.06a
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    • pp.911-912
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    • 2006
  • The recent growth in the portable display industry has been dominated by flexible display, moreover, several developing of using LCD technology has been in making the flexible display work effectively, however flexible device is not practical. Recently, the study on the multi-display screen has been published as the needs of larger screen in mobile device has been increased. The multi-display screen which is composed of two LCD panels, has the characteristics of the seamless gap between two panels. To meet the needs of this multi-display, in this paper, the study is performed to design the seamless device which consist of LCD panels, light film, back light and driver, and finally, we evaluated the effectiveness of seamless folding mechanism.

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Development of a New Hybrid Silicon Thin-Film Transistor Fabrication Process

  • Cho, Sung-Haeng;Choi, Yong-Mo;Kim, Hyung-Jun;Jeong, Yu-Gwang;Jeong, Chang-Oh;Kim, Shi-Yul
    • Journal of Information Display
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    • v.10 no.1
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    • pp.33-36
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    • 2009
  • A new hybrid silicon thin-film transistor (TFT) fabrication process using the DPSS laser crystallization technique was developed in this study to realize low-temperature poly-Si (LTPS) and a-Si:H TFTs on the same substrate as a backplane of the active-matrix liquid crystal flat-panel display (AMLCD). LTPS TFTs were integrated into the peripheral area of the activematrix LCD panel for the gate driver circuit, and a-Si:H TFTs were used as a switching device of the pixel electrode in the active area. The technology was developed based on the current a-Si:H TFT fabrication process in the bottom-gate, back-channel etch-type configuration. The ion-doping and activation processes, which are required in the conventional LTPS technology, were thus not introduced, and the field effect mobility values of $4\sim5cm^2/V{\cdot}s$ and $0.5cm^2/V{\cdot}s$ for the LTPS and a-Si:H TFTs, respectively, were obtained. The application of this technology was demonstrated on the 14.1" WXGA+(1440$\times$900) AMLCD panel, and a smaller area, lower power consumption, higher reliability, and lower photosensitivity were realized in the gate driver circuit that was fabricated in this process compared with the a-Si:H TFT gate driver integration circuit