Overview
- Technology
- Power Inductor, Ferrite Core Wound
- Geography
- Global average data from equipment vendor specifications and industry literature
Terms used above
- PFC perfluorinated compounds; in power-supply contexts, power-factor correction
System boundary
The figure groups this dataset's unit processes by class. It is not a count of manufacturing steps — each process runs over as many passes as the flow requires, and those pass counts ship with the dataset.
Data quality and references
Pedigree scores follow the ecoinvent data-quality matrix: 1 is the best attainable, 5 the weakest. The composite is their aggregate.
- Sampling procedure
- Component vendor specifications, industry literature
- Coverage status
- Partial
- Pedigree-scored source files
- 3 — the source records behind this dataset's manufacturing operations. Each carries the five pedigree axes above; the composite DQI aggregates them.
Technosphere inputs
8 flows. Quantities are not published; they ship with the dataset on Circa.
Electricity, China (CN) ElectricitykWh · -26.8% / +33.9%
- Derivation basis
-
- Calculated from equipment energy across all manufacturing operations. It also covers the facility support this model includes: cooling water.
No source is attached to this row.
- Source citations
- Not stated
- Background data
- ecoinvent 3.12
- Background dataset
- electricity, medium voltage
- Uncertainty
- -26.8% / +33.9% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- kWh
Electricity, China (CN) - Cooling Water ElectricitykWh · -75% / +0%
- Derivation basis
-
- Calculated from equipment energy across all manufacturing operations. It also covers the facility support this model includes: cooling water.
The sources for this row are listed below.
- Source citations
-
- osti.gov (date not recorded). Performance Evaluation of Cleanroom Environmental Systems. Government report.
- escholarship.org (date not recorded). Cleanrooms Energy Efficiency: Metrics and Benchmarks. Government report.
- Background data
- ecoinvent 3.12
- Background dataset
- electricity, medium voltage
- Uncertainty
- -75% / +0% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- kWh
Cooling tower makeup water WaterL · -75% / +0%
- Derivation basis
-
- Calculated from process-water and ultrapure-water demand across all manufacturing operations, plus facility water allocated to each finished unit. The fresh intake shown is that whole demand: the water-recycling scenario this dataset assumes reuses none of it, so nothing has been deducted, and wastewater follows the same balance.
The sources for this row are listed below.
- Source citations
-
- osti.gov (date not recorded). Performance Evaluation of Cleanroom Environmental Systems. Government report.
- escholarship.org (date not recorded). Cleanrooms Energy Efficiency: Metrics and Benchmarks. Government report.
- Background data
- ecoinvent 3.12
- Background dataset
- tap water
- Uncertainty
- -75% / +0% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- L
Iron ore concentrate Materialkg · -10% / +11.3%
- Derivation basis
-
- Calculated from per-operation consumption, operation counts, and manufacturing yield.
No source is attached to this row.
- Source citations
- Not stated
- Background data
- proxy-mapped
- Background dataset
- iron ore concentrate
- Notes
- From Ferrite Core (70.0% iron oxide). Purchased input grossed to fund the authored process loss booked as Ferrite Sintering (mass-closure funding; the retained mass is the product-side figure).
- Uncertainty
- -10% / +11.3% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- kg
manganese(III) oxide Materialkg · -10% / +11.3%
- Derivation basis
-
- Calculated from per-operation consumption, operation counts, and manufacturing yield.
No source is attached to this row.
- Source citations
- Not stated
- Background data
- ecoinvent 3.12
- Background dataset
- manganese(III) oxide
- Notes
- From Ferrite Core (15.0% manganese oxide). Purchased input grossed to fund the authored process loss booked as Ferrite Sintering (mass-closure funding; the retained mass is the product-side figure).
- Uncertainty
- -10% / +11.3% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- kg
Zinc oxide Materialkg · -10% / +11.3%
- Derivation basis
-
- Calculated from per-operation consumption, operation counts, and manufacturing yield.
No source is attached to this row.
- Source citations
- Not stated
- Background data
- ecoinvent 3.12
- Background dataset
- zinc oxide
- Notes
- From Ferrite Core (15.0% zinc oxide). Purchased input grossed to fund the authored process loss booked as Ferrite Sintering (mass-closure funding; the retained mass is the product-side figure).
- Uncertainty
- -10% / +11.3% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- kg
Copper, cathode Materialkg · -10.1% / +14.5%
- Derivation basis
-
- Calculated from per-operation consumption, operation counts, and manufacturing yield.
No source is attached to this row.
- Source citations
- Not stated
- Background data
- ecoinvent 3.12
- Background dataset
- copper, cathode
- Notes
- From Copper Wire (100.0% copper material). Purchased input grossed to fund the authored process loss booked as Copper Wire Trim (mass-closure funding; the retained mass is the product-side figure).
- Uncertainty
- -10.1% / +14.5% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- kg
Wire drawing, copper Materialkg · -7.4% / +11.1%
- Derivation basis
-
- Calculated from per-operation consumption, operation counts, and manufacturing yield.
No source is attached to this row.
- Source citations
- Not stated
- Background data
- ecoinvent 3.12
- Background dataset
- wire drawing, copper
- Notes
- From Copper Wire (100.0% copper wire drawing). Transformation activity - does NOT include copper material
- Uncertainty
- -7.4% / +11.1% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- kg
Outputs and waste
Cooling tower blowdown Wastewaterm3 · -75% / +0%
- Source citations
-
- osti.gov (date not recorded). Performance Evaluation of Cleanroom Environmental Systems. Government report.
- escholarship.org (date not recorded). Cleanrooms Energy Efficiency: Metrics and Benchmarks. Government report.
- Background data
- carried, no background dataset
- Background dataset
- No treatment route recorded for this output.
- Uncertainty
- -75% / +0% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- m3
Ferrite Sintering Solid wasteg · -33.7% / +48%
- Derivation basis
-
- Calculated from the mass balance of spent materials and consumables, with treatment selected from the waste classification.
No source is attached to this row.
- Source citations
- Not stated
- Background data
- ecoinvent 3.12 treatment route
- Background dataset
- treatment of inert waste, sanitary landfill
- Uncertainty
- -33.7% / +48% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- g
Copper Wire Trim Solid wasteg · -37.5% / +50%
- Derivation basis
-
- Calculated from the mass balance of spent materials and consumables, with treatment selected from the waste classification.
No source is attached to this row.
- Source citations
- Not stated
- Background data
- ecoinvent 3.12 treatment route
- Background dataset
- market for copper scrap, sorted, pressed
- Uncertainty
- -37.5% / +50% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- g
Encapsulation Runners Solid wasteg · -33.3% / +50%
- Derivation basis
-
- Calculated from the mass balance of spent materials and consumables, with treatment selected from the waste classification.
No source is attached to this row.
- Source citations
- Not stated
- Background data
- ecoinvent 3.12 treatment route
- Background dataset
- treatment of inert waste, sanitary landfill
- Uncertainty
- -33.3% / +50% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- g
Rejected Components Solid wastekg · ±15%
- Derivation basis
-
- Calculated from the mass balance of spent materials and consumables, with treatment selected from the waste classification.
No source is attached to this row.
- Source citations
- Not stated
- Background data
- ecoinvent 3.12 treatment route
- Background dataset
- treatment of inert waste, sanitary landfill
- Notes
- Calculated reject material after accounting for the model's declared 98% manufacturing yield, applied to the material quantity this row is taken from.
- Uncertainty
- ±15% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- kg
Emissions to air
No emissions to air are recorded at this level.
Emissions to water
No emissions to water are recorded at this level.
Flows not quantified
2 flows are recorded for this dataset but carry no quantity — cut off below the significance threshold, or with no background dataset available. They remain inside the declared system boundary; each is listed with its reason.
Not modelled (2)
Compressed dry air Process gasm3
- Derivation basis
- Not stated
- Source citations
- Not stated
- Background data
- not modelled
- Background dataset
- Not applicable: this flow is not quantified in the inventory.
- Reason
- Compressed dry air is a known facility input for this category; no allocation driver has been established, so it is recorded but not quantified - deferred, not judged immaterial.
- Uncertainty
- No range defined.
- Unit
- m3
Other Materialkg · -94% / +84.2%
- Derivation basis
-
- Calculated from per-operation consumption, operation counts, and manufacturing yield.
No source is attached to this row.
- Source citations
- Not stated
- Background data
- not modelled
- Background dataset
- Not applicable: this flow is not quantified in the inventory.
- Notes
- Purchased input grossed to fund the authored process loss booked as Encapsulation Runners (mass-closure funding; the retained mass is the product-side figure).
- Reason
- Unspecified remainder of the authored mass breakdown for this component, recorded in this inventory. No upstream dataset can be attached to an unidentified material mix.
- Uncertainty
- -94% / +84.2% around the published quantity. The bounds themselves ship with the dataset on Circa.
- Unit
- kg
Limitations and unquantified flows (1)
Limits this dataset declares about itself: first any limit stated in its own description, then any limit it declares flow by flow, grouped by channel. Each entry below is the model's own disclosure.
- These flows are named in this inventory but ship without a quantity, so their burden is not carried anywhere in the dataset: Compressed dry air. Each row states its own reason on the row itself.
The flows above are this dataset's own records. What follows are the scope rules set once for the whole database in the methodology report, repeated here so every dataset page carries them.
Database-wide boundary policy — applies to every REEL dataset
These boundaries are set once for the whole database, in Chapter 2 of the methodology report, and apply to this dataset wherever they are relevant to it. The excluded flows listed above are specific to this dataset.
- Use phase
- Product operation is outside the cradle-to-gate scope.
- End-of-life treatment
- Recycling and disposal are outside the cradle-to-gate scope.
- Distribution and retail
- The gate is a finished component ready for integration into a higher-level assembly.
- Inbound transport of raw materials
- Transport of purchased raw materials to the manufacturing facility is already inside the upstream "market for" datasets that users link to a background database, so it is not modelled a second time here. This does not cover freight between REEL production stages, which is modelled where a dataset authors it.
- Returnable shipping containers
- Where freight between production stages is modelled, the mass moved is the product itself. The shipping container (FOSB, SEMI M31) is returnable capital equipment whose per-trip share is unsourced, so its tare is excluded from the transport effort.
- Photomask fabrication
- A mask set's embodied burden is amortised across a high-volume production run and is not attributed per wafer. Users assessing low-volume production should add mask fabrication separately; the methodology report gives the basis for the exclusion.
- Employee transport, administration and R&D overhead
- Employee transportation, facility administration and R&D/pilot-production overhead are outside scope.
- Capital goods
- Manufacturing equipment, cleanroom construction and facility infrastructure are excluded, on the grounds of absent public data on equipment embodied energy, uncertainty in equipment lifetime and allocation, common practice in electronics LCA, and a focus on the operational inventory. Future versions may include capital goods when sufficient public data becomes available.
- Precious metal recovery credits
- Scrap recovery credits for precious metals are excluded pending data availability.
- Wafer reclaim
- Test wafers and scrap are outside the system boundary.
Inside the boundary, linked rather than modelled
- Silicon ingot growth and wafer slicing
- Inside the cradle-to-gate scope, but treated as upstream material inputs linked to background databases rather than modelled as REEL processes.
- Freight between production stages
- Where a dataset's product moves between REEL production stages - wafer fabrication to the packaging site, for example - that leg is authored as a transport service and linked to an ecoinvent freight activity. It is measured as a transport effort in tonne-kilometres, not as a mass. Route distances are authored per route class with a stated band; a lower bound of zero is a modelling statement that the two sites can be co-located, not a missing value.
Cut-off criteria
A flow is excluded from a process inventory when it contributes less than 1 % of the total mass of inputs to that unit process, or less than 1 % of its total energy input. The denominator is total process inputs, not product mass. That distinction matters in semiconductor manufacturing, where the input mass of water, chemicals and gases greatly exceeds the product mass, so the threshold removes only genuinely minor flows.
Included regardless of the cut-off
- Perfluorocarbons (CF4, C2F6, SF6, NF3) - high GWP, EPA regulated
- Heavy metals (Pb, Cd, Hg, Cr(VI)) - RoHS regulated, high toxicity
- Volatile organics (photoresist solvents, PGMEA) - air quality
- Precious metals (Au, Ag, Pd, Pt) - high embodied impacts
- Ozone-depleting substances (legacy CFCs, HCFCs) - Montreal Protocol
Production covered
Power inductor used in Power Factor Correction (PFC) boost converter circuits. Features MnZn ferrite core for low-frequency power applications (50-500 kHz). Typically wound on E-core, toroid, or drum core geometry. Used in AC-DC power supplies to improve power factor towards unity.
Modelling choices
This dataset is modelled with no water reuse. No reclaim rate is published for this kind of plant, so the water shown is the full fresh intake and no recycling credit has been deducted from it.