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Mainframe Mainframe computer Characteristics of mainframes

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... 0-10 VDC, sinks up to 100mA per (40 µA max per circuit leakage to line) Each 0-10V output supports up to 50 ballasts/ drivers that draw the standard 2mA each Requires isolated LED drivers for optimal performance Temperature: 32°F to 104°F (0°C to 40°C) For indoor use UL Approved UL 508 Listed UL 924 ...
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... The main objectives in this section are to create and calibrate sensors to set the desired speed and measure the actual speed . The project aims at interfacing these sensors with a DC motor. The project also intends to familiarize us with the various control laws of an open as well as a closed loop ...
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... schedule to indicate spaces where occupants are expected, or, in the converse, as an indication that people are in spaces where they are not expected. As energy use codes have become more stringent, control has become a recognized means of reducing electrical consumption. Some form of control is now ...
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... 2. Control inputs A/B can be driven directly with CMOS logic (HC) with Vdd of 3 to 8 Volts applied to the CMOS logic gates. 3. DC Blocking capacitors are required for each RF port as shown. Capacitor value determines lowest frequency of operation. 4. Highest RF signal power capability is achieved wi ...
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Resilient control systems



In our modern society, computerized or digital control systems have been used to reliably automate many of the industrial operations that we take for granted, from the power plant to the automobiles we drive. However, the complexity of these systems and how the designers integrate them, the roles and responsibilities of the humans that interact with the systems, and the cyber security of these highly networked systems has led to a new paradigm in research philosophy for next generation control systems. Resilient Control Systems consider all of these elements and those disciplines that contribute to a more effective design, such as cognitive psychology, computer science, and control engineering to develop interdisciplinary solutions. These solutions consider such things such as how to tailor the control system operating displays to best enable the user to make an accurate and reproducible response, how to design in cyber security protections such that the system defends itself from attack by changing its behaviors, and how to better integrate widely distributed computer control systems to prevent cascading failures that result in disruptions to critical industrial operations. In the context of cyber-physical systems, resilient control systems are an aspect that focuses on the unique interdependencies of a control system, as compared to information technology computer systems and networks, due to its importance in operating our critical industrial operations.
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