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I&C Safety Guide DRAFT 20110803.doc
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7.73. Analysis that is part of the evidence of equipment qualification should include a justification of the methods, theories and assumptions used.

7.74. For example, the validity of the mathematical models used for equipment qualification may be justified on the basis of experimental data, test data, or operating experience.

7.75. Traceability should be established between each installed system and component important to safety and the applicable evidence of qualification.

7.76. This includes traceability not only to the component itself, but traceability between the qualified configuration and the installed configuration.

Suitability and correctness

7.77. The equipment qualification program should demonstrate that the design of I&C systems, and components meet all functional, performance, and reliability requirements contained in the applicable I&C design bases and equipment specifications.

7.78. Examples of functional requirements include, for example, functionality required by the application, functionality required to support system or equipment operability, operator interface requirements, and input /output range requirements.

7.79. Examples of performance requirements include, for example, accuracy, resolution, sample rate, and response time requirements.

7.80. Examples of reliability requirements include, for example, requirements for fail-safe behaviour, independence, failure detection, maintainability, and service life.

7.81. The equipment qualification program should demonstrate that the as-built I&c systems and installed components correctly implement the qualified design.

Environmental qualification

7.82. In this guide environmental qualification is qualification for temperature, pressure, humidity, chemical exposure, radiation, submergence, and ageing mechanisms that might affect the proper functioning of components under those conditions.

7.83. Systems, and components should be designed to accommodate the effects of, and be compatible with, the environmental conditions associated with normal operation and anticipated or postulated accidents when they are required to function.

7.84. Components should be shown to meet all design basis requirements when subjected to the range of environmental conditions specified in the design basis.

Components exposed only to mild environments

7.85. Environmental qualification of I&C system components whose environmental service conditions during accidents are at no time significantly more severe than conditions during normal operations (mild environments) may be based upon supplier certification that the components are suitable for the specified operating conditions.

Components exposed to harsh environments

7.86. Environmental qualification of components that are required to function in environmental service conditions that are at any time significantly more severe than the conditions during normal operations (harsh environments) should show that the component is, at the end of its qualified life, capable of performing its safety functions under the full range of specified service conditions.

7.87. The worst credible case for combinations of environmental service conditions, including synergistic effects between service conditions, must be addressed. If it is necessary to separately test for different environmental conditions (e.g., separate tests for radiation and temperature effects) the sequence in which these tests are conducted must be justified as one that appropriately simulates the degradation caused by the combined environments.

7.88. It is necessary to address significant ageing effects (e.g., radiation and thermal ageing) to show required functionality is maintained at the end of qualified life. Further conservatism ought to be provided, where appropriate, to allow for unanticipated ageing mechanisms.

7.89. It is common practice to apply the most rigorous environmental qualification methods only to safety components.

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