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Editing Fluid logic

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The disadvantage is that it requires more resources to construct, and more careful planning, since floodgates tend to block paths. The presented drain-less gates depend on precise fluid depth and require that all incoming logic fluid is at the full 7/7 depth. This may necessitate building a reservoir or pumping system to compensate for flow irregularities or overcome the sluggishness of otherwise pressureless fluids. That's especially true when you decide to use [[magma|magma/lava]] as fluid.
 
The disadvantage is that it requires more resources to construct, and more careful planning, since floodgates tend to block paths. The presented drain-less gates depend on precise fluid depth and require that all incoming logic fluid is at the full 7/7 depth. This may necessitate building a reservoir or pumping system to compensate for flow irregularities or overcome the sluggishness of otherwise pressureless fluids. That's especially true when you decide to use [[magma|magma/lava]] as fluid.
  
==Speed Improvements==
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===Faster Version===
 
The main factors that affect the speed of these gates are the delays of floodgates and bridges, and the switch-off delay of pressure plates. These cannot be eliminated, although designs that seek to replace as many buildings as possible with doors and hatches may minimize delays.
 
The main factors that affect the speed of these gates are the delays of floodgates and bridges, and the switch-off delay of pressure plates. These cannot be eliminated, although designs that seek to replace as many buildings as possible with doors and hatches may minimize delays.
  
Another factor is the flowing speed of the water. It can be improved. First, the water should flow in from a reservoir a few z-levels higher than the gates themselves (the more the better). This way, water will flow in much faster. In infinite-flow gates, you can then replace the pressure plates with up stairs, and make a 2x1 room one z-level above. On one tile is a down stair, and on the other is the pressure plate. Now the water will also flow out faster, or at least the pressure plate will switch off sooner.  To minimize latency when deactivated, assuming sufficient inflow, the pressure plate can be set to trigger only on a full 7 units of water.  This increases the water consumption a bit, but it still remains relatively low.
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Another factor is the flowing speed of the water. It can be improved. First, the water should flow in from a reservoir a few z-levels higher than the gates themselves (the more the better). This way, water will flow in much faster. Next, replace the pressure plates with up stairs, and make a 2x1 room one z-level above. On one tile is a down stair, and on the other is the pressure plate. Now the water will also flow out faster, or at least the pressure plate will switch off sooner.  To minimize latency when deactivated, assuming sufficient inflow, the pressure plate can be set to trigger only on a full 7 units of water.  This increases the water consumption a bit, but it still remains relatively low.
  
 
==Edge Detector==
 
==Edge Detector==

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