![]() But due to circuit failures, the outputs of the three circuits may be different.Ī majority logic gate is used to decide which of the circuits' outputs is the correct output. If there are no circuit failures, the outputs of the three circuits are identical. In TMR, three identical logic circuits (logic gates) are used to compute the same set of specified Boolean function. See also: Majority function Truth table of 3-input voter Modular redundancy is a basic concept, dating to antiquity, while the first use of TMR in a computer was the Czechoslovak computer SAPO, in the 1950s. For example, 5-modular redundancy communication systems (such as FlexRay) use the majority of 5 samples – if any 2 of the 5 results are erroneous, the other 3 results can correct and mask the fault. Called repetition code, some communication systems use N-modular redundancy as a simple form of forward error correction. Some ECC memory uses triple modular redundancy hardware (rather than the more common Hamming code), because triple modular redundancy hardware is faster than Hamming error correction hardware. ![]() Space satellite systems often use TMR, although satellite RAM usually uses Hamming error correction. ![]() The TMR concept can be applied to many forms of redundancy, such as software redundancy in the form of N-version programming, and is commonly found in fault-tolerant computer systems. If any one of the three systems fails, the other two systems can correct and mask the fault. In computing, triple modular redundancy, sometimes called triple-mode redundancy, ( TMR) is a fault-tolerant form of N-modular redundancy, in which three systems perform a process and that result is processed by a majority-voting system to produce a single output.
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