Difference between revisions of "Element:DLAY"

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DLAY is a new element coded by [http://powdertoy.co.uk/User.html?Name=arK| arK], it can be found in the [[elements:powered_materials| Powered Materials]] category.
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{{ infobox Element
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| icon = DLAY.png
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| longname = Delay
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| image =
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| identifier = DEFAULT_PT_DLAY
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| name = DLAY
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| description = Conducts with temperature-dependent delay. (use HEAT/COOL).
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| colour = 753590
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| menusection = SC_POWERED
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| menuvisible = 1
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| advection = 0
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| airdrag = 0
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| airloss = 0.9
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| loss = 0
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| collision = 0
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| diffusion = 0
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| explosive = 0
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| falldown = 0
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| flammable = 0
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| gravity = 0
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| hardness = 1
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| heatconduct = 0
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| hotair = 0
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| meltable = 0
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| state = ST_SOLID
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| temperature = 277.15
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| weight = 100
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| properties = TYPE_SOLID
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| lowtemperature =
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| lowtemperaturetransition =
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| hightemperature =
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| hightemperaturetransition =
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| lowpressure =
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| lowpressuretransition =  
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| highpressure =
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| highpressuretransition =
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}}
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Indestructible to heat and pressure, delays SPRK based on temperature (One degree equals one frame, the hotter it is, the more the SPRK is delayed), use HEAT/COOL to change temperature.
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== How to use, with pictures ==
  
 
It works like this:
 
It works like this:
* Accept current only from PSCN or NSCN
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* Accepts current only from PSCN
* Transfer current only to PSCN, NSCN or SWCH
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* Transfers current only to NSCN
* Does not transfer current back to where it came from
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* Does not conduct heat (use HEAT/COOL to change its temperature)
* Does not conduct heat (to be used with HEAT/COOL)
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* Delays current transfer by a number of frames equal to its temperature
* Delay current transfer to the amount of frames equal to its temperature
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* Can accept current immediately after delay is over (not like water)
* Can accept current immediately after delay is over (not like water -_-)
 
  
 
Here is an example of a DLAY set at 4 degrees:
 
Here is an example of a DLAY set at 4 degrees:
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[[File:QmxUJ8.gif]]
 
[[File:QmxUJ8.gif]]
  
It's delay is set by it's temperature; the hotter it is, the more the spark is delayed (a negative temperature delay will absorb spark and remain constantly on), and is controlled by it's life variable. When it is sparked by PSCN, it's life corresponds to it's temperature. Each frame, it's life moves down one. When the life reaches 0, the spark is released. So DLAY at 4 degrees Celsius will last four frames.
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Its delay is set by its temperature; the hotter it is, the more the spark is delayed (a negative temperature delay will absorb spark and remain constantly on), and is controlled by it's life variable. When it is sparked by PSCN, it's life corresponds to it's temperature. Each frame, it's life moves down one. When the life reaches 0, the spark is released. So DLAY at 4 degrees Celsius will last four frames.
  
 
[[File:W5Dm9u.gif]]
 
[[File:W5Dm9u.gif]]
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DLAY will work fine in large numbers, however there must be a two pixel gap between the PSCN and the NSCN, otherwise the spark will jump the 1 pixel gap and there will be a double spark, which can be useful in some situations.
 
DLAY will work fine in large numbers, however there must be a two pixel gap between the PSCN and the NSCN, otherwise the spark will jump the 1 pixel gap and there will be a double spark, which can be useful in some situations.
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Note: 60 frames = ~1 second on fast computers that can run Powder Toy at maximum speed. The frame rate will be smaller on slower computers, especially with big saves.
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{{Languages}}
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[[Category:Conductive]]

Latest revision as of 07:57, 22 February 2015

DLAY.png Delay
Properties
Section Powered Materials
Spawn temperature 4°C
Heat Conductivity 0%
Relative weight 100
Gravity 0
Acid dissolve rate 0.1%
Flammability 0
State Solid
Source code


Indestructible to heat and pressure, delays SPRK based on temperature (One degree equals one frame, the hotter it is, the more the SPRK is delayed), use HEAT/COOL to change temperature.

How to use, with pictures

It works like this:

  • Accepts current only from PSCN
  • Transfers current only to NSCN
  • Does not conduct heat (use HEAT/COOL to change its temperature)
  • Delays current transfer by a number of frames equal to its temperature
  • Can accept current immediately after delay is over (not like water)

Here is an example of a DLAY set at 4 degrees:

QmxUJ8.gif

Its delay is set by its temperature; the hotter it is, the more the spark is delayed (a negative temperature delay will absorb spark and remain constantly on), and is controlled by it's life variable. When it is sparked by PSCN, it's life corresponds to it's temperature. Each frame, it's life moves down one. When the life reaches 0, the spark is released. So DLAY at 4 degrees Celsius will last four frames.

W5Dm9u.gif

Here is an example of how it works in a simulation:

http://i52.tinypic.com/zmfegy.jpg

DLAY will work fine in large numbers, however there must be a two pixel gap between the PSCN and the NSCN, otherwise the spark will jump the 1 pixel gap and there will be a double spark, which can be useful in some situations.


Note: 60 frames = ~1 second on fast computers that can run Powder Toy at maximum speed. The frame rate will be smaller on slower computers, especially with big saves.

Language: [[::Element:DLAY|English]]