Related Planning Links
Move from Pyro Forge into the item pages and planning tools that most directly shape machine utilization, upstream supply, and downstream throughput.
Common outputs
Common inputs
Pyro Forge Planning FAQ
What does Pyro Forge do in StarRupture?
Pyro Forge supports 3 recipes and runs at 60W in this dataset. Use its recipe list to map where it fits in your production tree before you duplicate machine count.
Which items can Pyro Forge produce?
Pyro Forge commonly produces Goethite Ingot, Titanoferrite Ingot, and Wolfram Steel Ingot. Open each linked item page to inspect downstream uses, target rates, and supporting machine requirements.
How should you scale Pyro Forge?
Confirm stable feed rates for Goethite Ore, Titanium Bar, and Wolfram Bar, leave power headroom for synchronized cycles, and compare expected versus actual throughput after each expansion step.
Pyro Forge
60W
By StarRupture Data Team · Verified against in-game machine data
Production Profile
Pyro Forge supports 3 recipes and runs at 60W. Average output across listed recipes is 80.0 items per minute, with peak throughput reaching 120 items per minute.
Common outputs include Goethite Ingot, Titanoferrite Ingot, and Wolfram Steel Ingot. Typical inputs include Goethite Ore, Titanium Bar, and Wolfram Bar. Use these recipe cards to map bottlenecks, size supporting machines, and stabilize power demand before scaling.
Pyro Forge often becomes a throughput anchor once your factory starts feeding multiple downstream chains. Before cloning more instances, confirm that upstream extraction, transport, and intermediate crafting can sustain the target load continuously. This prevents hidden bottlenecks where one saturated input line silently limits every dependent product.
Scaling Checklist
- Map the highest-demand outputs first, then reserve power headroom so Pyro Forge can absorb demand spikes without brownouts.
- Validate input feed rates for Goethite Ore, Titanium Bar, and Wolfram Bar and keep at least one buffer tier between gathering and processing nodes.
- Track byproducts and side outputs early; redirecting excess flow usually improves both stability and material efficiency.
- After each expansion step, compare expected versus actual output rates and rebalance transport before scaling another stage.
Capacity Planning Notes
Capacity planning for Pyro Forge should be done in layers. First, stabilize raw input flow and transportation so every crafting cycle can start on time. Second, verify that each added machine produces usable output instead of saturating intermediate storage. Finally, watch how added demand changes neighboring lines, because many bottlenecks only appear after one stage is optimized.
If you are optimizing late-game chains, treat power as a shared system rather than a per-building stat. Spikes from synchronized recipes can make otherwise safe plans unstable. Incremental scaling plus periodic throughput checks usually outperforms large one-time expansions and helps keep failure impact small when recipe priorities change.
Related Recipes (3)
Compare inputs, output rates, and byproduct flow to design stable production lines around Pyro Forge.
