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Difference between revisions of "User:MrFake/NStepCyclicRepeater"
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(→3-step cyclic repeater: fix error in design - the upper-right plate should be linked to the LEFT pump, not the bottom one) |
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The bottom right channel has no plate, so the left pump just passes the water. Thus, odd steps are allowed. | The bottom right channel has no plate, so the left pump just passes the water. Thus, odd steps are allowed. | ||
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==== 2-step Alternating Repeater ==== | ==== 2-step Alternating Repeater ==== | ||
See [[User:MrFake/TwoStepAlternatingRepeater|this page]] for this special case using a double-pump stack design. | See [[User:MrFake/TwoStepAlternatingRepeater|this page]] for this special case using a double-pump stack design. |
Revision as of 23:32, 8 September 2010
General n-step Cyclic Repeater
Allows for cyclic pressure plate-based switching and deterministic timing using a robust repeater, for any n>1.
Layout
Side View
1 | 2 | 3 | ||||||||||
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Legend
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pump outputting to the right | |
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pressure plate | ||
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gear assembly supplying power | ||
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wall |
Description
Plate 1 (just left of pump 1) is connected to gear 2. Plate 2 is connected to gear 3 and so on, wrapping around from the beginning to create a cycle--in the layout above, plate 3 is shown connected back to gear 1. Plate i in an n-step repeater is connected to gear (i mod n)+1.
This allows for a sequential repeater with any n steps, where n is an integer greater than 1.
Examples
Legend
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pump outputting to the right | |
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pressure plate | ||
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channel with no plate | ||
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wall |
4-step cyclic repeater
Top Down View
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6-step cyclic repeater
Top Down View
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3-step cyclic repeater
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The bottom right channel has no plate, so the left pump just passes the water. Thus, odd steps are allowed.
2-step Alternating Repeater
See this page for this special case using a double-pump stack design.