SPRUID8D September 2020 – January 2022 TMS320F280040-Q1 , TMS320F280040C-Q1 , TMS320F280041 , TMS320F280041-Q1 , TMS320F280041C , TMS320F280041C-Q1 , TMS320F280045 , TMS320F280048-Q1 , TMS320F280048C-Q1 , TMS320F280049 , TMS320F280049-Q1 , TMS320F280049C , TMS320F280049C-Q1
The various redundancy architectures possible for the safety instrumented systems are indicated in Table A-1. For more information, see [10].
Diagnostic Implementation | ||
---|---|---|
1 | 1oo1 Architecture |
None. |
2 | 1oo1D |
Diagnostic channel is implemented using various hardware diagnostic features like Watchdog, and so forth. |
3 | 1oo1D Same figure as above. |
Diagnostic channel is implemented using reciprocal comparison (uses two processing units for implementing reciprocal comparison) and other hardware diagnostic features. |
4 | 1oo2 |
Two different processing units are used to implement one channel. |
5 | 2oo2 |
Two different processing units are used to implement one channel. |
6 | 2oo2D |
Two 1oo1D structures of #2 wired together to implement a safe channel. |
7 | 2oo2D Same figure as above. |
Two 1oo1D structures of #3 wired together. |
8 | 1oo2D |
Similar to 2oo2D implementation of #6 with additional control lines wired to control one set of units using the other unit |
9 | 1oo2D Same figure as above. |
Similar to 2oo2D implementation of #7 with additional control lines wired to control one set of units using the other unit. |
10 | 2oo3 |
Use three different processing units to implement majority voting. The fourth channel can be used either standalone or with hardware diagnostic features. |