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MCS,PHD
Argosy University/ Phoniex University/
Nov-2005 - Oct-2011
Professor
Phoniex University
Oct-2001 - Nov-2016
9.6Â Find a suitable state assignment for the flow table in Figure 9.42, using pairs of equivalent states, as explained in Example 9.15. Derive the next-state and output expressions.
9.7Â Find a state assignment for the flow table in Figure 9.42, using one-hot encoding. Derive the next-state and output expressions.
*9.8Â Implement the FSM specified in Figure 9.39, using the merger diagram in Figure 9.40a.
Â
                              Â
Â
|
Present state |
Next state |
Output z |
|
w2 w1Â = 00Â Â Â Â Â 01Â Â Â Â Â 10Â Â Â Â Â 11 |
||
|
A B C D E F G H J K L M |
A♠ B       C      – K     B♠ –       H F     –       C♠ M D♠ E       J       – A      E♠ –       M F♠ L       J       – D     G♠ –        H –      G      J       H F     –       J♠  H K♠ L       C      – A      L♠ –       H –      G      C      M |
0 0 0 1 0 0 0 â™ Â Â Â Â 1 0 1 0 â™ Â Â Â 1 |
Â
Figure P9.4Â Flow table for Problem 9.4.
Â
Hel-----------lo -----------Sir-----------/Ma-----------dam-----------Tha-----------nk -----------You----------- fo-----------r u-----------sin-----------g o-----------ur -----------web-----------sit-----------e a-----------nd -----------acq-----------uis-----------iti-----------on -----------of -----------my -----------pos-----------ted----------- so-----------lut-----------ion-----------.Pl-----------eas-----------e p-----------ing----------- me----------- on-----------cha-----------t I----------- am----------- on-----------lin-----------e o-----------r i-----------nbo-----------x m-----------e a----------- me-----------ssa-----------ge -----------I w-----------ill----------- be-----------