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1 MW Data Center Power System Cost Breakdown (Q3 2026 China Supplier Pricing)

1 MW Data Center Power System Cost Breakdown (Q3 2026 China Supplier Pricing) — itemized bill of materials and FOB pricing for a typical configuration.

Last updated: 2026-09-12 · copper-linked items track the daily LME copper price

Estimated total (FOB): $557,962 · 1600 kVA transformer

Bill of materials

ItemSpecificationQtyPrice (USD)
HV incoming panel (KYN28A-12-630-315)630 A / 31.5 kA · vacuum2$4,896
HV bus-tie panel (KYN28A-12-630-315)630 A / 31.5 kA · vacuum1$2,448
Main transformer (each) (SCB13-1600/10)1600 kVA · Dry-Type · Copper · SCB132$53,534
LV incoming panel (GGD-2500)2500 A busbar · In 2309 A2$12,310
LV bus-tie panel (GGD-2500)2500 A busbar1$6,155
LV feeder panel (×2) (GGD-2500)distributes 8 circuits2$12,310
Cable branch box (LV) (DFW-0.4)1-in / 4-out · 0.4 kV · 630 A1$630
Main feeder cable (TX→LV) (YJV 0.6/1kV 300 mm² ×5)5× 300 mm² Cu · ΔU 0.90% @ 60 m · $154.0/m5$46,200
Feeder cable — IT feeder 1 (×8) (YJV 185 mm²)185 mm² Cu · 319 A · ΔU 1.0% · $103.0/m8$49,440
Branch trunk cable (LV → branch box 1) (YJV 300 mm² ×3)3× 300 mm² Cu · 1276 A · ΔU 0.8% · $154.0/m3$27,720
Main busbar (Cu) (Cu 125×10)125×10 · 2500 A rating · ref $147.8/mincludedPOA
Grounding electrode (Φ20mm × 2.5m rod)R₁ 39.6 Ω → 13 rod(s) ≤ 4 Ω13$125
Online double-conversion UPS module (1/2) (1250 kVA / 1125 kW)0.9 output PF · 92% efficiency · 10 min battery (181 kWh total)1$162,500
Online double-conversion UPS module (2/2) (1250 kVA / 1125 kW)0.9 output PF · 92% efficiency · 10 min battery (181 kWh total)1$162,500
UPS battery bank (VRLA / LiFePO4) (181 kWh)battery autonomy 10 min @ full IT load · $95/kWh1$17,195
DCIM / monitoring system (DCIM platform)power & environmental monitoring, metering, alarms (POA — not included in estimate)1POA
Rack PDU (end-of-row / column head cabinet) (rack PDU)per-rack power distribution + branch metering (POA — not included in estimate)13POA

Single-line diagram

CTCT50/5150/5187differentialFeed AFeed BKYN28A-12-630-315KYN28A-12-630-315HV bus-tieSCB13-1600/101600 kVA - Z=6%SCB13-1600/101600 kVA - Z=6%LV bus-tie0.4 kV0.4 kVIT feeder 1 - 319 AYJV 185 mm2IT feeder 2 - 319 AYJV 185 mm2IT feeder 3 - 319 AYJV 185 mm2IT feeder 4 - 319 AYJV 185 mm2IT feeder 5 - 319 AYJV 185 mm2IT feeder 6 - 319 AYJV 185 mm2IT feeder 7 - 319 AYJV 185 mm2IT feeder 8 - 319 AYJV 185 mm2Grounding 13xdia20mmx2.5m rod
LEGENDBreaker (52)DisconnectorCTCT (current transformer)PTPT (voltage transformer)50/51Protection relay 50/51/51N/87kWhMeter (kWh)SPD (surge protection)Transformer

How it was calculated

What drives the cost

  • Equipment — the transformer/switchgear/inverter is the largest single line item.
  • Storage (where applicable) — batteries are the biggest swing factor.
  • Copper & freight — copper-linked cabling and freight shift landed cost ±5–10%.

Frequently asked questions

What is N+1 vs 2N redundancy in a data center power system?
N+1 provides one spare module beyond the minimum (e.g. 4 UPS modules when 3 are needed), surviving a single failure. 2N duplicates the entire power path into two independent feeds, each able to carry full load, giving fault tolerance for any single component. 2N roughly doubles capex; N+1 adds about 25-35%. Tier III often implies N+1, Tier IV implies 2N.
How do I size a data center UPS from IT load?
Start from IT load in kW, add cooling and mechanical loads (typically 50-70% of IT load), apply a 20-30% growth margin, then convert to kVA at 0.9-0.95 power factor. A 1000 kW IT load with 60% cooling becomes ~1600 kW, about 1700-1780 kVA, so select 2000 kVA of UPS. The calculator applies these steps and matches standard UPS ratings.
What PUE should a modern data center target?
PUE is total facility power divided by IT power. Legacy facilities run 1.6-1.8; modern air-cooled data centers achieve 1.3-1.4, and hyperscale facilities with free cooling reach 1.1-1.2. Every 0.1 PUE reduction cuts non-IT energy about 10%. TIA-942 and Uptime Institute guidance use PUE as a key efficiency metric; the calculator reports facility vs IT load split.
What is the standard voltage architecture for a data center?
Typical architecture: 10 kV (or 35 kV) utility feed -> MV switchgear -> transformers to 0.4 kV -> UPS -> PDU -> rack. Medium to large facilities use 10/0.4 kV with dual MV feeds and 2N or N+1 topology. Rack density of 8-12 kW per rack is standard; high-density AI racks reach 30-100 kW and may use 48 V DC or liquid cooling.
How much battery runtime should the UPS provide?
Runtime is sized to bridge to generator start, typically 5-15 minutes (the calculator default is 10 minutes). Generators reach full load in 30-60 seconds, so longer battery only adds cost. For sites without generators, runtime extends to 30-60 minutes for graceful shutdown. The calculator sizes battery blocks from the chosen runtime and DoD.
What is the typical transformer sizing for a 1000 kW data center?
With IT load 1000 kW and cooling 60% plus UPS losses and margin, total demand reaches ~1800-2000 kW. At 0.95 pf that is ~1900-2100 kVA, so select two 1250 kVA transformers for N+1 (or 2x2000 kVA for 2N). MV/LV transformers are usually dry-type cast-resin SCB13/SCB14 with Class F insulation for fire safety.

Size your own configuration

Run the calculator for your exact load and get a full BOM + FOB price.

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