
40-HQ 2.411MWh Containerized Energy Storage Project Platform
Current source identity: a 40-HQ form-factor project platform, not a complete fixed DC+AC+MV system model; source AC and PV values are optional routes.
This source-derived 40-foot high-cube platform lists 2.411 MWh nominal LFP energy, 150 × 51.2 V/314 Ah battery modules, a 768 V rated battery route, air cooling and CAN/Modbus TCP/IP. A 1 MW/1.1 MVA AC block and several PV input powers appear only as source options and are not confirmed as included equipment. The exact DC container, PCS, transformer/MV, EMS, HVAC, fire system, usable energy, auxiliary load, transport condition and acceptance guarantees must be fixed by project BOM.
- Platform
- 40-HQ container / 2.411 MWh nominal LFP
- Displayed DC route
- 150 × 51.2 V 314 Ah / 768 V rated / 672–864 V
- Displayed AC option
- Up to 1 MW active / 1.1 MVA / 400 V; inclusion unconfirmed
- Physical record
- 12192 × 2438 × 2896 mm / 38 t source value
Current source-derived specifications
These values are preserved from the current product record. Read them with the configuration, compatibility, document and project boundaries below before using them in a quotation.
Battery & Energy
| Nominal Energy | 2.411 MWh |
|---|---|
| Battery Platform | LiFePO4; 150 × 51.2 V 314 Ah battery modules stated |
| Voltage | 672–864 V; 768 V rated battery voltage |
| Rated Capacity | 3,140 Ah |
System & Installation
| System Type | Air-cooled containerized energy storage system |
|---|---|
| Rated Power | Up to 1000 kW active off-grid AC power stated; grid block by project |
| Cooling | Air cooling |
| Protection | Modular fire-protection system described in source material |
| Communication | CAN bus / Modbus TCP/IP |
| Dimensions | 12192 × 2438 × 2896 mm (40-HQ) |
| Weight | 38 t |
| Recommended Application | Large industrial microgrids, renewable integration and utility-scale storage blocks |
| Depth of Discharge | 90% |
| System Charge Rate | 0.5C |
| System Discharge Rate | 0.5C to 1C |
| Operating Temperature | 0 to 50°C |
| Relative Humidity | 5% to 95% |
| Installation Altitude | <2,000 m |
| Design Lifespan | More than 15 years |
| AC Block (source option) | 1,100 kVA max.; 1,000 kW active power; 400 V; 50/60 Hz |
| PV Input (source option) | 1,000 V max.; 1,200 / 1,320 / 1,440 kW; 250 to 850 V MPPT range |
Current document status
Request a configuration-specific battery/PCS/EMS/HVAC/fire/MV BOM, datasheets, one-lines, container drawings, usable-energy/RTE and degradation basis, safety/transport files, civil loads, commissioning plan, warranty and performance guarantees.
Current container-platform evidence
Separate the DC battery container from optional AC, PV and MV blocks
The platform cannot be quoted as turnkey until the included equipment and interfaces are fixed.
DC battery identity
2.411 MWh nominal, 3,140 Ah, 768 V rated and 672–864 V are listed with 150 modules. Confirm racks/strings, BMS hierarchy, DC combiner/protection and usable energy.
Optional AC/PV routes
1 MW/1.1 MVA/400 V AC and 1,200/1,320/1,440 kW PV options appear in the source. They must not be treated as included or mutually compatible without a configuration matrix.
Thermal and fire scope
Air cooling and modular fire protection are described without HVAC capacity/redundancy, auxiliary consumption, detector/suppression design, standards or site fire interface.
Container and transport
40-HQ dimensions and 38 t are listed. Confirm CSC/structural status, shipping condition/SOC, gross transport weight, lifting, route limits, center of gravity and site unloading.
Container ESS RFQ checks
Six project packages required before comparing container offers
The buyer must define whether the quotation is DC-only, AC-coupled or a complete MV block.
Supply boundary
State DC battery container, PCS, transformer, MV switchgear, EMS/PPC, auxiliary transformer, HVAC, fire, metering, cables and spares as included, optional or by others.
Duty and guarantees
Define MW/MWh at POC, duration, cycles/day, SOC window, reserve, RTE boundary, auxiliary load, degradation, availability and end-of-life requirement.
Electrical architecture
Provide DC string/rack layout, PCS topology, AC voltage, transformer/MV, fault level, grounding, protection, grid code, PPC/SCADA and station-service power.
Thermal/fire/safety
Define climate, HVAC redundancy, gas/smoke/heat detection, suppression, ventilation/explosion strategy, emergency shutdown, separation and AHJ/code requirements.
Civil and logistics
Confirm foundation loads, drainage, cable trenches, clearances, access, crane/lifting, route survey, shipping SOC, dangerous-goods documents and destination handling.
Acceptance and warranty
Request design review, FAT, delivery inspection, SAT, capacity/RTE tests, controls/protection/grid tests, training, O&M, spares, warranty remedies and service response.
Container performance boundaries
2.411 MWh nominal does not establish a 1 MW turnkey plant
The AC/MV equipment, usable-energy basis and project acceptance boundary remain open.
DC nominal energy is not POC energy
Apply SOC/DoD, cell/BMS limits, DC and PCS losses, HVAC/fire/auxiliary load, transformer loss, temperature, degradation and reserve.
Optional AC/PV values are not a delivered BOM
Do not combine source options into one system without exact model codes, electrical compatibility, controls, protection and supplier confirmation.
15-year wording is not a performance warranty
Define warranted years, cycles/throughput, retained capacity, availability, environment, exclusions, augmentation and remedies in the contract.
Fire labels are not site approval
Require detailed design, test evidence, code/AHJ review, emergency response, ventilation logic, separation and commissioning of all safety interfaces.
Continue the container ESS review
Connect the container platform to utility scope and logistics
These resources help define the complete BOM and phased delivery responsibilities.
Utility project procurement solution
Coordinate storage blocks, MV equipment, controls, studies, civil work, logistics, commissioning and acceptance.
Review utility scope →Phased project delivery guide
Plan document release, factory readiness, logistics, site sequence, inspection and handover across project packages.
Review delivery controls →2.411 MWh container ESS FAQ
Questions to close before defining the turnkey boundary
The final answer must come from one approved project configuration and contract performance schedule.
Does the container include a 1 MW PCS and MV station?
Not proven by the current record. The 1 MW/1.1 MVA AC block is a source option. Define PCS, transformer, MV switchgear, EMS/PPC and auxiliary equipment explicitly in the BOM.
Is 2.411 MWh the usable energy at the grid connection?
No. It is nominal DC energy. Confirm warranted usable MWh at the stated POC after reserve, losses, auxiliaries, temperature, power and degradation.
Can the 38 t container ship without further review?
No. Confirm final gross weight, dimensions, CSC/structural documentation, dangerous-goods classification, shipping SOC, route/port limits, lifting and site unloading.
Which performance tests should be contracted?
Define capacity/usable-energy, RTE, power, auxiliary load, controls, protection, grid response, alarms/fire interfaces, availability and measurement/tolerance conditions.
Define a configuration-specific 2.411 MWh ESS RFQ
Send the required MW/MWh at POC, duty, DC/AC/MV supply boundary, grid/control requirements, climate/fire conditions, logistics and acceptance guarantees.
Start with the product, application or project information you have. We can help identify the remaining configuration, document or delivery questions before a final quotation.
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