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A box substation scope for an EPC tender is the written boundary around one factory-assembled enclosure — the MV switchgear, the distribution transformer, the LV switchboard, the enclosure itself — together with the documents, tests and site interfaces that belong to it. Everything outside that boundary, such as civil works, external cables, the earthing grid and energization, must be allocated by name to another party, or it will surface later as a claim.
This guide turns that principle into tender-ready material: a supply-boundary table, an interface allocation table, the enclosure characteristics to state rather than assume, and the data a supplier needs before a quotation means anything.

Buyers meet this product class under several names: box substation, package or packaged substation, kiosk substation, and — in IEC-market documents — Compact Secondary Substation (CSS). The names describe the same idea: a prefabricated enclosure that takes in a medium-voltage supply and hands out low-voltage circuits, assembled and tested in a factory rather than built as a room on site.
IEC 62271-202 covers enclosed AC prefabricated substations within its stated scope, including service conditions, rated characteristics, structural requirements and tests, and it recognizes both walk-in and externally operated types. Confirm the edition and its applicability with the project engineer; treat the standard as the frame for what a tender should ask, not as a substitute for project requirements.
Scope questions arise because the enclosure hides the boundary. When a tender line only says “supply box substation”, nobody has decided who terminates the incoming cables, who casts the foundation, or whose engineer signs the earthing design. For background on where these units sit in a network, see advantages of medium voltage substation.
Start the scope table with the equipment that lives inside the enclosure. A typical box substation integrates three functional sections plus auxiliaries, and each deserves its own tender line so exclusions become visible.
| Scope line | What to specify in the tender | Common gap to close |
|---|---|---|
| MV section | Functions and number of ways (ring main unit, incomer, transformer protection), operating method | Whether the MV cable terminations and test adapters are supplied |
| Transformer | Duty, ratio, vector group requirements from the single-line diagram | Who confirms the transformer matches the LV fault and load data |
| LV section | Outgoing ways, metering provisions, spare ways policy | Metering and communication devices often sit in a different contract |
| Enclosure and internals | Operating concept, internal separation, lighting, small power, labelling | Language of labels and drawings for the operating team |
| Auxiliaries | Protection or monitoring devices, anti-condensation measures, alarms | Signal list and voltage for remote alarms |
Write each line against the project’s single-line diagram rather than a catalogue description. The JUBANG prefabricated substation category shows how one family spans utility distribution units and integrated cabins for renewable and storage projects; a tender still has to state which configuration it is buying. A primer on the equipment classes involved is in what is substation equipment.

Inside the transformer line, point to a concrete product basis where one exists — for example a 6–10 kV oil-immersed power transformer — and require the supplier to confirm the offered unit against the project data, not against the page.
Interfaces cause more tender disputes than equipment does. The ABB MV/LV substation guidance treats electrical, mechanical, construction and installation design as one coordinated task, which is exactly how a scope table should read: every physical interface has a named owner on each side.
| Interface | Supplier side (typical) | Buyer/EPC side (typical) | Must be stated in tender |
|---|---|---|---|
| Foundation and base | Base frame, anchor pattern, entry openings drawing | Civil design, casting, levelling, drainage | Who approves the foundation drawing |
| Cables | Internal wiring, gland plates or entry provisions | External MV and LV cables, pulling, termination | Termination responsibility and witness rules |
| Earthing | Internal earthing bar and enclosure bonding | Site earthing grid design and connection | Which party proves the combined arrangement |
| Transport and offloading | Packing, lifting provisions, delivery basis | Site access, crane, storage before installation | Delivery point and risk transfer |
| Energization | Support during commissioning as quoted | Switching authority, permits, operating staff | Test-and-energize sequence ownership |
Purchaser documents often add their own access, cable-connection and documentation requirements; the Ellevio prefabricated secondary-substation specification is a public example. Read such documents as evidence that owner requirements exist and vary — not as values to copy into an unrelated project.
Layout choices interact with these interfaces; the companion article on prefabricated substation layout and cable routing covers that planning work in detail.
A tender that stays silent on enclosure characteristics buys whatever the catalogue happens to contain. State the required characteristics and ask the supplier to confirm what the quoted assembly actually offers.
| Characteristic | What the tender should say | Do not assume |
|---|---|---|
| Internal arc classification (IAC) | Whether IAC is required and the classification the project intends, on the IEC 62271-202 basis | That any box substation label includes internal-arc performance |
| IP degree of protection | The required degree for each relevant enclosure part under IEC 60529 | One degree for every door, compartment and cable entry |
| Ventilation class | The required class and supporting documentation for the quoted assembly | That natural ventilation suits the transformer duty and climate |
| Partition class | The required class and the compartments it applies to | That a visible barrier equals a classified partition |
| Operating concept | Walk-in or externally operated, and the operating authority’s preference | That either concept fits every site or operator |
Classifications on this list are configuration-dependent. The supplier confirms what the submitted assembly offers; the responsible project parties confirm that it satisfies installation, operating and approval requirements.
Equipment without evidence cannot be accepted, so documents and tests deserve their own scope lines. The packaged-substations material presented through an IEEE section makes a distinction worth copying: the material scope of supply and the engineering-services scope are separate lists, and testing sits alongside them as its own commitment — see the ABB packaged substations presentation.
A workable document-and-test block asks for:
Tip: Ask for the completed data schedule with the offer, not after award — the habit comes from utility purchaser specifications such as the Ellevio document, which pair requirements with schedules the bidder must complete.
Before award, walk the boundary once more with each discipline. Useful prompts:
Fit boundary: this article suits buyers writing or reviewing tender scope lines for box substations in distribution, industrial or renewable projects. It is not a construction drawing, a protection or earthing study, a local-code interpretation, or a source of universal ratings and clearances. Final scope decisions belong to the responsible project engineer and the owner’s requirements.
For a product basis in this class, start with the YB□-12 Intelligent Integrated Substation for utility and industrial distribution scopes. Where the tender covers storage or renewable step-up scope, the same family includes the GTE-YB□ European-type integrated cabin.
Treat both as product-family starting points, not selections: suitability still depends on the single-line diagram, required classifications, site conditions and current JUBANG documentation. A standalone ring main unit is deliberately not recommended here, because a switching cabinet answers a different tender line than a transformer-based box substation.

Send these inputs with the RFQ so the first quotation is already comparable:
Submit the package through the online message form for a configuration review against the current product documentation.
Typically the enclosure with its MV section, distribution transformer, LV switchboard, internal wiring and auxiliaries, plus factory tests and documentation. Anything at the boundary — foundation, external cables, earthing grid, offloading, energization — must be allocated explicitly in the tender.
The terms overlap. Compact Secondary Substation (CSS) is the wording common in IEC-market documents, while box, package and kiosk substation are trade names for the same factory-assembled MV/transformer/LV concept. Always verify the actual configuration rather than relying on the label.
There is no default. The supplier normally provides the base frame, entry openings and interface drawings; civil works and external cables usually sit with the EPC or a site contractor. The tender must name the owner of each side of that interface.
Only as a rough budget indication. A quotation that can be compared and contracted needs the single-line diagram, system data and the required characteristics; without them, the offer will be built on catalogue assumptions the project has not accepted.
State whether internal arc classification is required and the intended classification, the IP degree for each relevant enclosure part, ventilation and partition class where applicable, and the operating concept. Ask the supplier to confirm each one for the quoted assembly.
Type-test or design-verification evidence, routine test records, a factory acceptance test plan with witness rights, manuals in the agreed language, as-built drawings and a completed data schedule submitted with the offer.
The single-line diagram and system data, required MV/transformer/LV configuration, site and service conditions, required classifications, interface allocation, the document-and-test list, and commercial data such as quantity, delivery location and Incoterms basis.