Foundry
Foundry |
Recipe |
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+ + + + + → | |||||||||||||
Total raw |
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+ + + + + | |||||||||||||
Map color |
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Health |
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Stack size |
20 |
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5 |
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Dimensions |
5×5 |
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Energy consumption |
2500 kW (electric) |
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Drain |
83.33 kW (electric) |
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Crafting speed |
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Mining time |
0.2 |
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Base productivity |
50% |
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Pollution |
6/m |
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Module slots |
4 slots |
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Prototype type |
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Internal name |
foundry |
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Required technologies |
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Produced by |
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This article is a stub, and not comprehensive. |
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Space Age expansion exclusive feature.
The Foundry is a version of the assembling machine from Vulcanus that specializes in metallurgy. It has a built-in 50% productivity bonus.
The foundry can only be crafted on Vulcanus due to its higher atmospheric pressure, but it can be used on other planets once transported via space platform.
Recipes
The Foundry has twenty available unique recipes, of which one must be set before it can begin processing.
Note that the foundry recipe for making concrete can benefit from productivity modules, despite the regular concrete recipe not being able to use them.
Additionally, the foundry can also make other foundries, all belt types, and holmium plates, all of which use the same recipes as assembling machines.
Efficiency
Most of the foundry's recipes are more efficient than creating the same items in a furnace or assembling machine. However, because of the built-in +50% productivity bonus (which applies even to items like belts that don't benefit from productivity modules), and because the same bonus also applies to the recipes for molten iron and molten copper, the actual efficiency gains from using a foundry are much higher than the value listed in the recipe.
The table below compares the values of the base recipes (with 1 ore = 10 molten metal), and then shows the actual output of the recipe with the default foundry bonuses of 4 crafting speed and 150% productivity (1 ore = 15 molten metal). For example, inserting 200 iron ore into a foundry with no modules installed would result in 3,000 molten iron which could be turned into 450 iron plates.
Name | Base recipe values | With foundry bonuses | ||||||||||||
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Furnace/Assembler | Foundry | Efficiency | Foundry | Efficiency | ||||||||||
Time | Output | Time | Output | Time | Output | |||||||||
Iron plate | - | - | 100% | - | 225% | - | ||||||||
Steel plate | - | - | 167% | - | 375% | - | ||||||||
Iron gear wheel | - | - | 200% | - | 450% | - | ||||||||
Iron stick | - | - | 100% | - | 225% | - | ||||||||
Concrete | - | - | 50% | - | 113% | - | ||||||||
Pipe | - | - | 100% | - | 225% | - | ||||||||
Pipe to ground | - | - | 100% | - | 225% | - | ||||||||
Low density structure | 125% | 80% | 281% | 180% | ||||||||||
Copper plate | - | - | - | 100% | - | 225% | ||||||||
Copper cable | - | - | - | 200% | - | 450% |
Low density structure
The numbers in the table are relative to using Electric furnaces. However it is possible to use the highly efficient Foundries to make the intermediates, which requires even less ore, but more plastic and much more machine time:
Process | Raw resources to make |
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Furnaces + Assemblers | |
Foundry Direct | |
Foundries + Assemblers |