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{{:{{PAGENAME}}/ItemInfo}} | {{:{{PAGENAME}}/ItemInfo}} | ||
</div> | </div> | ||
==Summary== | ==Summary== | ||
You can find a tutorial on how the logistics stations work [[Logistics_Stations|here]]. | |||
== | ==Production Chain== | ||
{{ProductionChainTable/head}} | |||
{{ProductionChain | |||
|Building=Assembler | |||
|Replicator=Yes | |||
|Technology=Planetary Logistics System | |||
|Recipe= | |||
{{ItemRecipe | |||
|Out1=Planetary Logistics Station | |||
|Out1Qty=1 | |||
|CraftTime=20 s | |||
|In1=Steel | |||
|In1Qty=40 | |||
|In2=Titanium Ingot | |||
|In2Qty=40 | |||
|In3=Processor | |||
|In3Qty=40 | |||
|In4=Particle Container | |||
|In4Qty=20 | |||
}} | |||
}} | |||
|} | |||
===Production Progression Chart=== | |||
{{ProgressionChartCollapsible/begin}} | |||
{| class="wikitable" style="text-align:center; background-color:#0b161c | |||
|+ Unipolar Magnet-based production | |||
! Stage 1 | |||
! Stage 2 | |||
! Stage 3 | |||
! Stage 4 | |||
! Stage 5 | |||
|- | |||
| {{riq|Iron Ore|120}} | |||
| {{riq|Iron Ingot|120}} | |||
| {{riq|Steel|40}} | |||
| {{ppc skip}} | |||
|rowspan=8| {{riq|Planetary Logistics Station|1}} | |||
|- | |||
| {{riq|Titanium Ore|80}} | |||
| {{riq|Titanium Ingot|40}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|- | |||
| {{riq|Silicon Ore|320}} | |||
| {{riq|High-Purity Silicon|160}} | |||
|rowspan=2| {{riq|Microcrystalline Component|80}} | |||
|rowspan=4| {{riq|Processor|40}} | |||
|- | |||
| {{riq|Copper Ore|80}} | |||
| {{riq|Copper Ingot|80}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Iron Ingot|80}} | |||
|rowspan=2| {{riq|Circuit Board|80}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
|- | |||
| {{riq|Unipolar Magnet|200}} | |||
| {{ppc skip}} | |||
|rowspan=2| {{riq|Particle Container|20}} | |||
|rowspan=2| {{ppc skip}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
|} | |||
{| class="wikitable" style="text-align:center; background-color:#0b161c | |||
|+ Fire Ice-based production | |||
! Stage 1 | |||
! Stage 2 | |||
! Stage 3 | |||
! Stage 4 | |||
! Stage 5 | |||
! Stage 6 | |||
! Stage 7 | |||
|- | |||
| {{riq|Iron Ore|120}} | |||
| {{riq|Iron Ingot|120}} | |||
| {{riq|Steel|40}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|rowspan=14| {{riq|Planetary Logistics Station|1}} {{riq|Hydrogen|20}} | |||
|- | |||
| {{riq|Titanium Ore|80}} | |||
| {{riq|Titanium Ingot|40}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|- | |||
| {{riq|Silicon Ore|320}} | |||
| {{riq|High-Purity Silicon|160}} | |||
|rowspan=2| {{riq|Microcrystalline Component|80}} | |||
|rowspan=4| {{riq|Processor|40}} | |||
|rowspan=4| {{ppc skip}} | |||
|rowspan=4| {{ppc skip}} | |||
|- | |||
| {{riq|Copper Ore|80}} | |||
| {{riq|Copper Ingot|80}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Iron Ingot|80}} | |||
|rowspan=2| {{riq|Circuit Board|80}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
|- | |||
| {{riq|Iron Ore|160}} | |||
| {{riq|Iron Ingot|160}} | |||
| {{ppc skip}} | |||
|rowspan=4| {{riq|Electric Motor|80}} | |||
|rowspan=6| {{riq|Electromagnetic Turbine|40}} | |||
|rowspan=8| {{riq|Particle Container|20}} {{riq|Hydrogen|20}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Iron Ingot|80}} | |||
| {{riq|Gear|80}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Magnet|80}} | |||
|rowspan=2| {{riq|Magnetic Coil|80}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Magnet|80}} | |||
|rowspan=2| {{riq|Magnetic Coil|80}} | |||
|rowspan=2| {{ppc skip}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|- | |||
| {{riq|Fire Ice|40}} | |||
| {{riq|Graphene|40}} {{riq|Hydrogen|20}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|} | |||
{| class="wikitable" style="text-align:center; background-color:#0b161c | |||
|+ Coal- and Sulfuric Acid-based production | |||
! Stage 1 | |||
! Stage 2 | |||
! Stage 3 | |||
! Stage 4 | |||
! Stage 5 | |||
! Stage 6 | |||
! Stage 7 | |||
|- | |||
| {{riq|Iron Ore|120}} | |||
| {{riq|Iron Ingot|120}} | |||
| {{riq|Steel|40}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|rowspan=15| {{riq|Planetary Logistics Station|1}} | |||
|- | |||
| {{riq|Titanium Ore|80}} | |||
| {{riq|Titanium Ingot|40}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|- | |||
| {{riq|Silicon Ore|320}} | |||
| {{riq|High-Purity Silicon|160}} | |||
|rowspan=2| {{riq|Microcrystalline Component|80}} | |||
|rowspan=4| {{riq|Processor|40}} | |||
|rowspan=4| {{ppc skip}} | |||
|rowspan=4| {{ppc skip}} | |||
|- | |||
| {{riq|Copper Ore|80}} | |||
| {{riq|Copper Ingot|80}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Iron Ingot|80}} | |||
|rowspan=2| {{riq|Circuit Board|80}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
|- | |||
| {{riq|Iron Ore|160}} | |||
| {{riq|Iron Ingot|160}} | |||
| {{ppc skip}} | |||
|rowspan=4| {{riq|Electric Motor|80}} | |||
|rowspan=6| {{riq|Electromagnetic Turbine|40}} | |||
|rowspan=9| {{riq|Particle Container|20}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Iron Ingot|80}} | |||
| {{riq|Gear|80}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Magnet|80}} | |||
|rowspan=2| {{riq|Magnetic Coil|80}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Magnet|80}} | |||
|rowspan=2| {{riq|Magnetic Coil|80}} | |||
|rowspan=2| {{ppc skip}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|- | |||
| {{riq|Coal|120}} | |||
| {{riq|Energetic Graphite|60}} | |||
|rowspan=2| {{riq|Graphene|40}} | |||
|rowspan=2| {{ppc skip}} | |||
|rowspan=2| {{ppc skip}} | |||
|- | |||
| {{riq|Sulfuric Acid|20}} | |||
| {{ppc skip}} | |||
|} | |||
{| class="wikitable" style="text-align:center; background-color:#0b161c | |||
|+ Crude Oil- and Sulfuric Acid-based production | |||
! Stage 1 | |||
! Stage 2 | |||
! Stage 3 | |||
! Stage 4 | |||
! Stage 5 | |||
! Stage 6 | |||
! Stage 7 | |||
|- | |||
| {{riq|Iron Ore|120}} | |||
| {{riq|Iron Ingot|120}} | |||
| {{riq|Steel|40}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|rowspan=15| {{riq|Planetary Logistics Station|1}} {{riq|Hydrogen|90}} | |||
|- | |||
| {{riq|Titanium Ore|80}} | |||
| {{riq|Titanium Ingot|40}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|- | |||
| {{riq|Silicon Ore|320}} | |||
| {{riq|High-Purity Silicon|160}} | |||
|rowspan=2| {{riq|Microcrystalline Component|80}} | |||
|rowspan=4| {{riq|Processor|40}} | |||
|rowspan=4| {{ppc skip}} | |||
|rowspan=4| {{ppc skip}} | |||
|- | |||
| {{riq|Copper Ore|80}} | |||
| {{riq|Copper Ingot|80}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Iron Ingot|80}} | |||
|rowspan=2| {{riq|Circuit Board|80}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
|- | |||
| {{riq|Iron Ore|160}} | |||
| {{riq|Iron Ingot|160}} | |||
| {{ppc skip}} | |||
|rowspan=4| {{riq|Electric Motor|80}} | |||
|rowspan=6| {{riq|Electromagnetic Turbine|40}} | |||
|rowspan=9| {{riq|Particle Container|20}} {{riq|Hydrogen|90}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Iron Ingot|80}} | |||
| {{riq|Gear|80}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Magnet|80}} | |||
|rowspan=2| {{riq|Magnetic Coil|80}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
|- | |||
| {{riq|Iron Ore|80}} | |||
| {{riq|Magnet|80}} | |||
|rowspan=2| {{riq|Magnetic Coil|80}} | |||
|rowspan=2| {{ppc skip}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
|- | |||
| {{riq|Copper Ore|40}} | |||
| {{riq|Copper Ingot|40}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|- | |||
| {{riq|Crude Oil|60}} | |||
| {{riq|Refined Oil|60}} {{riq|Hydrogen|30}} | |||
| {{riq|Energetic Graphite|60}} {{riq|Hydrogen|90}} | |||
|rowspan=2| {{riq|Graphene|40}} {{riq|Hydrogen|90}} | |||
|rowspan=2| {{ppc skip}} | |||
|- | |||
| {{riq|Sulfuric Acid|20}} | |||
| {{ppc skip}} | |||
| {{ppc skip}} | |||
|} | |||
'''Note:''' [[Hydrogen]] created during Crude Oil-based production must be recycled through the system to ensure full efficiency. Hydrogen quantity shown in Stage 7 is remaining surplus Hydrogen which can be diverted elsewhere. | |||
{{ProgressionChartCollapsible/end}} | |||
== | ==Used In== | ||
{{ProductionChainTable/head}} | |||
{{ProductionChain | |||
|Building=Assembler | |||
|Replicator=Yes | |||
|Technology=Interstellar Logistics System | |||
|Recipe= | |||
{{ItemRecipe | |||
|Out1=Interstellar Logistics Station | |||
|Out1Qty=1 | |||
|CraftTime=30 s | |||
|In1=Planetary Logistics Station | |||
|In1Qty=1 | |||
|In2=Titanium Alloy | |||
|In2Qty=50 | |||
|In3=Particle Container | |||
|In3Qty=20 | |||
}} | |||
}} | |||
|} | |||
==Player Tips & Tricks== | ==Player Tips & Tricks== | ||
* Each [[Planetary Logistics Station]] can host up to 50 [[Logistics Drone]]s. | |||
* Power draw of the station is proportional to the amount of current energy loss. This means that at 0 J, the total max charging power will be utilized across the power grid, and the power draw proportionally decreases the more the energy is stored in the station. | |||
** At a max charging power of 12 MW, the station will draw 10.8 MW when it only has 18 MJ stored (12 MW * (180 MJ - 18 MJ)/180 MJ) | |||
** At a max charging power of 12 MW, the station will draw 1.2 MW when it only has 162 MJ stored (12 MW * (180 MJ - 162 MJ)/180 MJ) | |||
** Because of this, power draw is relatively low once the station is charged, but it can overload low power networks when first created. | |||
==Historical== | |||
Prior to [[Patch Notes/0.6.15.5636|Patch 0.6.15.5636]], the recipe was: {{ItemRecipe | |||
|Out1=Planetary Logistics Station | |||
|Out1Qty=1 | |||
|CraftTime=20 s | |||
|In1=Steel | |||
|In1Qty=50 | |||
|In2=Titanium Ingot | |||
|In2Qty=50 | |||
|In3=Processor | |||
|In3Qty=50 | |||
|In4=Particle Container | |||
|In4Qty=20 | |||
}} | |||
{{Item Navbox}} | |||
[[Category:Item]] | [[Category:Item]] | ||
[[Category:Building]] | |||
[[Category:Logistics]] | |||
[[Category:Crafting Material]] |
Latest revision as of 08:18, 24 April 2022
Planetary Logistics Station
Logistics
The hub of the planetary logistics system, the logistics drones will automatically transport the cargo to the logistics station when you set the corresponding supply and demand.
Storage | 4 types | |
Max Charging Power | 60.0 MW | |
Idle Consumption | 60 kW | |
Accumulated | 180 MJ | |
Made In | Assembler | |
Hand-Make | Replicator | |
Stack Size | 10 |
Summary
You can find a tutorial on how the logistics stations work here.
Production Chain
Recipe | Building | Replicator? | Technology |
---|---|---|---|
✔ |
Production Progression Chart
- For more information on reading and using these charts, see Production Progression Chart.
Stage 1 | Stage 2 | Stage 3 | Stage 4 | Stage 5 |
---|---|---|---|---|
Stage 1 | Stage 2 | Stage 3 | Stage 4 | Stage 5 | Stage 6 | Stage 7 |
---|---|---|---|---|---|---|
Stage 1 | Stage 2 | Stage 3 | Stage 4 | Stage 5 | Stage 6 | Stage 7 |
---|---|---|---|---|---|---|
Stage 1 | Stage 2 | Stage 3 | Stage 4 | Stage 5 | Stage 6 | Stage 7 |
---|---|---|---|---|---|---|
Note: Hydrogen created during Crude Oil-based production must be recycled through the system to ensure full efficiency. Hydrogen quantity shown in Stage 7 is remaining surplus Hydrogen which can be diverted elsewhere.
Used In
Recipe | Building | Replicator? | Technology |
---|---|---|---|
✔ |
Player Tips & Tricks
- Each Planetary Logistics Station can host up to 50 Logistics Drones.
- Power draw of the station is proportional to the amount of current energy loss. This means that at 0 J, the total max charging power will be utilized across the power grid, and the power draw proportionally decreases the more the energy is stored in the station.
- At a max charging power of 12 MW, the station will draw 10.8 MW when it only has 18 MJ stored (12 MW * (180 MJ - 18 MJ)/180 MJ)
- At a max charging power of 12 MW, the station will draw 1.2 MW when it only has 162 MJ stored (12 MW * (180 MJ - 162 MJ)/180 MJ)
- Because of this, power draw is relatively low once the station is charged, but it can overload low power networks when first created.
Historical
Prior to Patch 0.6.15.5636, the recipe was: