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Extra info for Application of Microprocessor-Based Equipment in Nuclear Powerplants

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Typically, these qualification approaches are applied to a single equipment or module. Studies documented in NUREG/CR-64063 show that for distributed systems communication interfaces are likely to be the most vulnerable elements. Thus qualification testing should confirm the response of any digital interfaces to environmental stress in a distributed system. Type testing should be the preferred method to achieve this. In cases where it is not practical to type test an entire system as a unit, the confirmation of the dynamic response of the distributed system should be based on type testing of the individual modules and analysis of the entire system.

Nuclear Regulatory Commission, Office of Nuclear Regulatory Research, Chief, Engineering Research Applications Branch, MS T-10L1, 2 White Flint North, 11545 Rockville Pike, Rockville, MD 20852 47. Eric J. S. Nuclear Regulatory Commission, Office of Nuclear Regulatory Research, Engineering Research Applications Branch, MS T-10L1, 2 White Flint North, 11545 Rockville Pike, Rockville, MD 20852 48. Evangelos C. S. Nuclear Regulatory Commission, NRR/DE/EEIB, MS O-11D19, 1 White Flint North, 11555 Rockville Pike, Rockville, MD 20852 49.

6 of IEC 60780-1998, depending on the standard being applied. If the latter is the standard being applied then, in addition, a temperature margin of +15°F (8°C) should be applied in the case where qualification testing is not being performed under saturated steam conditions. 5. Any life-limited component of the equipment should be identified and its shelf life should be documented. 6. Qualification should begin at the integrated-circuit-manufacturing level. ” From the IC manufacturer’s perspective, built-in quality can be enhanced by assuring, among other process control methodologies, a minimum level of stress tests and a guarantee of correct operation in a specified environment.

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Application of Microprocessor-Based Equipment in Nuclear Powerplants


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