GLR-314 / GLR-280 / GLR-200 Rack LFP Battery product image
Battery Modules & PacksModel and configuration evidence review16.08 kWh / 14.34 kWh / 10.49 kWh

GLR-314 / GLR-280 / GLR-200 rack LFP battery: Verify Battery, Power and Scope

Current source identity: GLR-314 / GLR-280 / GLR-200 rack LFP battery; released manufacturer table, BOM and project documentation are not attached.

This page defines a rack-level battery family route for the GLR-314 / GLR-280 / GLR-200 rack LFP battery. The current record is a sourcing identity, not a released manufacturer package. Final capacity, power, battery/BMS, PCS, HVAC, fire protection, controls, installation and warranty scope must be fixed by the exact model and project BOM.

Configuration route
GLR-314 / GLR-280 / GLR-200 rack LFP battery
Supply layer
rack-level battery family route
Energy boundary
Nominal value is not verified usable energy
System boundary
Exact BOM and project interfaces required

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

Battery FormatRack-mount low-voltage LFP battery
Nominal Voltage51.2 V
Nominal Capacity314 Ah / 280 Ah / 205 Ah
Nominal Energy16.08 kWh / 14.34 kWh / 10.49 kWh
Voltage Range44.8–57.6 V
Recommended Current157 A / 140 A / 100 A recommended charge and discharge
Cycle Life>6,000 cycles at 0.5C, 25°C, 90% DoD
Recommended Charge Current157 A / 140 A / 100 A
Recommended Discharge Current157 A / 140 A / 100 A

System & Installation

Operating TemperatureCharge 0–55°C; discharge -10–60°C
CommunicationRS485 / RS232 / CAN
InstallationRack or cabinet installation; IP20 listed
Scalability2–16 modules in parallel listed; final layout and inverter compatibility to be confirmed
DimensionsUp to 838.5 × 478 × 278 mm, depending on model
Weight95.8–125.8 kg, depending on model
Model NumberGLR-314 / GLR-280 / GLR-200
Operating Humidity10% to 95%, non-condensing
Storage Humidity5% to 95%, non-condensing
Ingress ProtectionIP20
Compatible Inverters ListedGrowatt, Solis, GoodWe, Sol-Ark, SRNE, Deye
Design Lifespan15 years

Current document status

Request exact model/suffix, electrical and thermal table, cell/BMS/PCS/EMS schedule, enclosure/safety architecture, wiring/one-line, transport/certificates, warranty and full BOM before order release.

Current configuration evidence

Keep battery, rack, cabinet and project scopes distinct

A battery component, cabinet and container system have different electrical, safety and delivery boundaries.

Exact delivered layer

The current route is rack-level battery family route. Confirm whether cells, modules, rack, BMS, PCS, EMS, HVAC, fire system, transformer, switchgear and auxiliaries are included.

Energy and power

Confirm nominal and usable energy, continuous/peak DC and AC power, current, voltage window, C-rate, derating, auxiliary consumption and test basis.

Controls and safety

Confirm BMS/PCS/EMS/PPC interfaces, protocol/firmware, sensing, contactors, cooling, fire detection/suppression, alarms and fail-safe behavior.

Project and documents

Confirm enclosure/IP, foundations/civil, transport, installation, grid/utility studies, commissioning, FAT/SAT, warranty and responsibility matrix.

Storage RFQ checks

Six checks before finalizing storage scope

The final offer must define the exact equipment layer, operating duty and project interfaces.

Exact code and BOM

Request full model/revision, manufacturer, cell/module/rack or system BOM and supplied option schedule.

Energy and duty

State usable-energy target, power, duration, cycles, DoD, ambient, reserve, degradation and acceptance test conditions.

Electrical interfaces

Confirm battery voltage/current, PCS/AC voltage, protection, earthing, cable/terminal, transformer/MV where applicable and one-line.

Controls

Confirm BMS/PCS/EMS/PPC protocols, firmware, meters/CTs, remote access, cybersecurity, control permissions and commissioning.

Safety and site

Confirm thermal design, fire architecture, ventilation, enclosure, spacing, transport, civil works, emergency response and local approvals.

Evidence and commercial scope

Request test/certificate scope, manuals, warranty, spares, packing, lead time, FAT/SAT and substitution controls.

Storage boundaries

A kWh or MWh headline is not a complete storage-system guarantee

Usable energy, performance, safety and compliance depend on exact equipment, test conditions and project integration.

Nominal is not usable energy

Usable energy varies with DoD, power, temperature, ageing, reserve, BMS limits and auxiliary consumption.

Battery is not a complete ESS

A cell/module/rack route does not include PCS, EMS, HVAC, fire, AC/MV, enclosure, installation or commissioning unless explicitly listed.

Cabinet/container is not turnkey by default

Confirm every BOM layer, site/civil scope, grid interface, transformer/switchgear, transport, installation and acceptance responsibility.

Safety and approvals are site-specific

Do not infer destination fire, transport, grid or building approval from generic labels; verify exact model and project evidence.

Continue the storage review

Prepare an evidence-controlled storage RFQ

Use existing guidance to define the actual energy, power, interfaces and project delivery scope.

Storage RFQ FAQ

Questions to close before selecting a storage product

Exact model documents and project integration determine the final answer.

Is GLR-314 / GLR-280 / GLR-200 rack LFP battery a complete delivered system?

No. It is a battery-level route unless a complete system BOM explicitly includes the other equipment layers.

Can the nominal energy be used as usable project energy?

No. Confirm DoD, power, temperature, BMS limits, ageing, reserve, auxiliaries and the test basis.

Will it pair with any inverter or PCS?

No. Confirm voltage/current, BMS protocol, firmware, contactor/protection, approved compatibility and warranty for the exact pair.

What should the RFQ request?

Request exact model/BOM, electrical and thermal tables, controls, safety architecture, one-line, test/certificates, warranty, packing, FAT/SAT and project scope.

Prepare a verified GLR-314 / GLR-280 / GLR-200 rack LFP battery RFQ

Send energy and power duty, site/environment, AC/DC interfaces, controls, safety, grid and document requirements to define the exact scope.

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.

Verify Storage Scope

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