• Title/Summary/Keyword: GPIB programming

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Development of Remote Vibration Measurement System Using the Internet (인터넷을 이용한 원격 계측 시스템 개발)

  • Kwak, Moon-Kyu
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2000.11a
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    • pp.322-326
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    • 2000
  • This paper is concerned with the development of remote vibration measurement system using the internet. Recently, various techniques are developed based on the advance of the internet environment. In this study, we developed the remote vibration measurement system using the internet server programming technique, the client programming technique, the GPIB programming, and the A/D, D/A programming techniques. Hence, we can control the measurement devices remotely. The feasibility of the system is validated using the experimental setup. The output of the D/A is connected to the small exciter and the piezoceramic sensor is connected to the A/D port. By sending out the exciting signal to the structure, we can collect the response. The experiment shows that the proposed idea works well. Another experiment consists of the function generator and the low-pass filter circuit. The wave form, amplitude, and the frequency of the function generator is controlled by the GPIB program and the output of the circuit is collected by the A/D port. The output is then displayed in HTML format.

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Implementation of Automatic measurement system for a Change of channel etching thickness with a HTS Transistor (고온 초전도 트랜지스터의 채널 식각 두께에 따른 임계 특성 자동 측정장치 구축)

  • Hyun, Ong-Ok;Kang, Hyeong-Gon;Ko, Seok-Cheol;Han, Byoung-Sung
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2003.07a
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    • pp.561-564
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    • 2003
  • 본 연구는 고온 초전도 자속 흐름 트랜지스터의 채널 식각 두께에 따른 임계 특성의 자동 측정을 위해 나노옴/마이크로 볼트 미터 와 전원공급기 등 측정에 필요한 장비들을 GPIB 인터페이스 보드를 통해 PC와 연결하여 측정 장치를 구축후 직접 제작한 측정 프로그램을 통해 자동으로 시편에 전류, 전압을 가한후 임계 특성값을 효율적인 방법으로 측정하고 측정 결과값들을 시간순서 및 측정 대상에 따라 데이터 베이스화 하는 방법에 대하여 소개한다. 부수적으로 임계 특성의 정확한 측정을 위해 실험에 변수가 되는 요소들을 찾아내고 실험 데이터값들로부터 오차를 발견, 오차의 원인이 되는 식각 방법 및 실험 환경등의 부가적인 요소들을 고려하여 개선된 측정 장치를 구축하는데 경제적, 시간적인 효율성 측면에 대해 언급했다.

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INTRODUCTION OF DATELLITE COMMUNICATION SYSTEM TEST LANGUNGE

  • Ahn, Dong-Hyun;Jung, Won-Chan
    • 제어로봇시스템학회:학술대회논문집
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    • 1994.10a
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    • pp.229-231
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    • 1994
  • For the effective use of satellite communication transponder, tests for the payload system such as IOT(In-Orbit Test), RPM(Routine Payload Monitoring), CSM(Communicatios System Monitoring), and REV(Remote Earth-Station Verification) have to be conducted. Those tests are used in order to verify the condition and generic design of the satellite, to provide a database for operational calculations, and to maintain the quality of communication services. As the satellite communication system gets with wider expansion with higher complexity of operation, tests for the communication system also need more complex operation that usesophisticated computer-controlled measuring system. For and C language based measurement functions, which uses GPIB protocol and SCPI commands. But SICL requires knowledge of BASIC and C language as well as GPIB and SCPL system. This paper introduces a new language called CALSTEP-Control and Access Language for the Systems of Test Equipment and Payload. This language is designed for the operator to perform the tests for the satellite communication system without any special knowledge that is mentioned above. This language has very limited number of commands which are to be used to control the payload system and test equipments to perform IOT and CSM, and those commands are very readable and easy to understand, so an operator without any knowledge of BASIC and C programming language, or SICL and SCPI command can use it.

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Development of Remote Experimental Laboratory Based on Internet (인터넷기반의 원격 계측 실험실 구축에 관한 연구)

  • Kwak Moon-K.;Chung Kyung-Kwon;Shin Jae-Ho
    • Journal of Engineering Education Research
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    • v.3 no.2
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    • pp.14-23
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    • 2000
  • This paper is concerned with the development of remote engineering laboratory using the internet. Recently, various virtual laboratories are introduced using the multimedia technologies but the internet laboratory using the real hardware system is not present. In this study, we developed the remote engineering laboratory by combining the GPIB program which controls the hardwares with the web programming which controls the internet. The function generator, LCR meter, and oscilloscope were considered as the measurement devices. The client program includes the user-interface which carry out experiment remotely. Several electrical experiments were set up to verify the experimental process. It has been found that the remote engineering experiments are feasible and valid. The methodologies will be discussed in detail.

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