Commercial & Industrial BESS · Air-Cooled · Outdoor DC Cabinet

112 or 225 kWh outdoor DC cabinet. Hybrid inverter, your choice.

HLY-BESS-Commercial-Industrial-112kWh-DC · HLY-BESS-Commercial-Industrial-225kWh-DC · Pairs with HLY-Inverter-Hybrid 30–125 kW
DC outdoor cabinet. Air-cooled LFP. Two capacity classes, one platform — manufactured in Dezhou, Shandong; European projects contracted and serviced from Romania.
What are the 112 kWh and 225 kWh DC cabinets?

The HLY-BESS-Commercial-Industrial-112kWh and 225kWh are Henley Power’s outdoor air-cooled DC battery cabinets for C&I sites. Both ship as battery-only enclosures paired with an HLY-Inverter-Hybrid on an external bracket. Seven 1P16S packs at 358.4 V (112 kWh); fourteen at 716.8 V (225 kWh). Stack up to ten units for 1.12 or 2.25 MWh. ≥8,000 cycles at 80% DoD, 25 °C, EOL 70% per IEC 62619. Dezhou-manufactured, Romania-serviced.

112–225

Capacity Range (kWh)
Two models · one platform

≥95%

Round-Trip Efficiency
DC–AC–DC · 0.5C · 25°C · BoL

8,000+

80% DoD · 25°C · EOL 70%

5+5yr

Standard + extended
WHY THIS PLATFORM

Four reasons engineers specify this platform.

1P16S × 7 packs · 358.4 V · 314 Ah

Battery architecture that doesn't fight your inverter

Seven LFP packs in series deliver 358.4 V DC — squarely inside the MPPT input window of all HLY-Inverter-Hybrid models without a DC/DC conversion stage. No voltage mismatch. No efficiency penalty. Cobalt-free LiFePO₄ chemistry, IEC 62619 certified, 20-year design life at field conditions.
IP54 outdoor · HVAC + active fans · −20°C to +50°C

Air cooling that holds temperature without liquid

The cabinet runs a door-mounted HVAC unit backed by active fan management. It keeps cells within operating range across −20 °C to +50 °C ambient — no glycol loop, no pump maintenance, no leak risk. Air-cooled is the right call for C&I sites where a liquid-cooling maintenance contract isn’t realistic.
DC-parallel · up to 10 units · 1.12 or 2.25 MWh

Stack to project scale without rearchitecting

Connect up to ten 112 kWh-DC or 225 kWh-DC units DC-parallel on a shared busbar. Each 112 kWh unit adds 112 kWh; each 225 kWh unit adds 225 kWh. The BMS handles balancing across packs. One inverter can serve multiple cabinets, or add inverters as capacity grows — whichever fits the site power budget.
Aerosol · CO detection · active exhaust · thermal sensor

Four-layer fire protection in an outdoor cabinet

Aerosol suppression activates on thermal runaway detection. CO gas monitoring runs continuously. Active exhaust ventilation prevents gas accumulation. Cell-level temperature sensors feed the BMS before anything escalates to suppression. IP54 enclosure keeps water and particulate out of the control electronics.
TECHNICAL SPECIFICATIONS

Two models. One platform.

Both models share identical cabinet footprint, BMS architecture, cooling method, fire protection, and communication stack. What differs: pack count, DC voltage, usable capacity, and compatible inverter range. Test conditions per IEC 62619. Inverter specifications in the HLY-Inverter-Hybrid datasheet.

Parameter

112 kWh-DC

225 kWh-DC

Battery System
Rated Energy112 kWh225 kWh
Cell ChemistryLiFePO₄ (LFP) · cobalt-free phosphate-stabilisedLiFePO₄ (LFP) · cobalt-free phosphate-stabilised
Cell Rating3.2 V / 314 Ah prismatic3.2 V / 314 Ah prismatic
Module Configuration1P16S1P16S
Battery Pack Count7 packs14 packs
Nominal DC Voltage358.4 V716.8 V
DC Voltage Range324.8 – 403.2 V1,164.8 – 1,476.8 V
Rated C-Rate0.5C continuous0.5C continuous
Cycle Life≥8,000 cycles @ 80% DoD · 0.5C · 25°C · EOL 70%≥8,000 cycles @ 80% DoD · 0.5C · 25°C · EOL 70%
Depth of Discharge80% standard (90% max)80% standard (90% max)
Cell SourcingTier-1 LFP cells from publicly listed manufacturers · multi-supplier homologatedTier-1 LFP cells from publicly listed manufacturers · multi-supplier homologated
Inverter Interface
Inverter TypeExternal hybrid inverter (DC cabinet only — no integrated inverter)External hybrid inverter (DC cabinet only — no integrated inverter)
Compatible InverterHLY-Inverter-Hybrid 30 / 50 / 60 / 100 / 125 kWHLY-Inverter-Hybrid 100 / 125 kW ③
Rated AC Output50 kW100 kW
Max. AC Apparent Power55 kVA110 kVA
Max. Output Current83.3 A166.7 A
AC Output Voltage380 / 400 / 415 V · 3L+N+PE · −15% ~ +10%380 / 400 / 415 V · 3L+N+PE · −15% ~ +10%
AC Grid Frequency50 / 60 Hz (45–55 / 55–65 Hz)50 / 60 Hz (45–55 / 55–65 Hz)
System RTE (DC–AC–DC)≥95%≥95%
Power Factor / THDi0.8 lag – 0.8 lead adjustable · THDi <3%0.8 lag – 0.8 lead adjustable · THDi <3%
Solar PV Input (MPPT)75 kW max · 165–850 V · 4 trackers · 2 strings156 kW max · 180–800 V · 10 trackers · 2 strings
Max. PV Input Current / MPPT42 / 32 / 42 / 32 A32 A
Island / Off-Grid ModeVia hybrid inverter (model dependent)Via hybrid inverter (model dependent)
Grid StandardsIEC 61727 · IEC 62116 · EN 50549 · VDE-AR-N 4105 · G99IEC 61727 · IEC 62116 · EN 50549 · VDE-AR-N 4105 · G99
Battery Management System
BMS Architecture3-level: cell BMU · pack BCU · system master3-level: cell BMU · pack BCU · system master
SOC Accuracy±2%±2%
Cell BalancingActive balancing — no passive resistive wasteActive balancing — no passive resistive waste
BMS CommunicationCAN (primary) · RS485 (backup)CAN (primary) · RS485 (backup)
Fault IsolationCell-level fault isolation without system shutdownCell-level fault isolation without system shutdown
Thermal Management & Environment
Cooling MethodSmart air cooling · door-mounted HVAC + active fansSmart air cooling · door-mounted HVAC + active fans
Operating Temperature−20°C to +50°C (ambient)−20°C to +50°C (ambient)
Charge Temperature Range0°C to +55°C (cell)0°C to +55°C (cell)
Humidity5 – 95% RH (non-condensing)5 – 95% RH (non-condensing)
Max. Altitude3,000 m (derate above 2,000 m)3,000 m (derate above 2,000 m)
Enclosure & Protection
Cabinet IP RatingIP54 outdoorIP54 outdoor
Inverter IP RatingIP65 (HLY-Inverter-Hybrid)IP65 (HLY-Inverter-Hybrid)
Corrosion GradeC3 standard · C4 optionalC3 standard · C4 optional
Cabinet Dimensions W×D×H725 × 1,200 × 2,260 mm725 × 1,200 × 2,260 mm
Cabinet Weight≤1,300 kg≤1,300 kg
InstallationOutdoor floor-mount · plug-and-playOutdoor floor-mount · plug-and-play
Safety & Fire Protection
Fire SuppressionAerosol suppression systemAerosol suppression system
Fire DetectionThermal runaway detection · smoke detectionThermal runaway detection · smoke detection
Gas ManagementCO gas detection · active exhaust ventilationCO gas detection · active exhaust ventilation
Communication & Control
ProtocolsRS485 · CAN · Ethernet · Modbus TCP/RTU · Wi-Fi / 4GRS485 · CAN · Ethernet · Modbus TCP/RTU · Wi-Fi / 4G
EMSLocal EMS + cloud remote monitoring · OTA firmware updatesLocal EMS + cloud remote monitoring · OTA firmware updates
SCADA IntegrationOpen protocols · Modbus TCP — no proprietary lock-inOpen protocols · Modbus TCP — no proprietary lock-in
Certifications & Compliance
Product CertificationsIEC 62619 · CE · UN 38.3IEC 62619 · CE · UN 38.3
EU Battery RegulationEU Reg 2023/1542 · battery passport ready · 18 Feb 2027EU Reg 2023/1542 · battery passport ready · 18 Feb 2027
Manufacturing QualityISO 9001 · ISO 14001 · ISO 45001ISO 9001 · ISO 14001 · ISO 45001
Service & Delivery
Lead Time35 days ex-works Dezhou, Shandong35 days ex-works Dezhou, Shandong
Delivery TermsCFR European portsCFR European ports
Warranty5 years standard · +5 years extended (paid)5 years standard · +5 years extended (paid)
Service Network9-region service network · EU · Eastern Europe · Central Asia · Southeast Asia · West Africa · North Africa · East Africa · Southern Africa · LATAM9-region service network · EU · Eastern Europe · Central Asia · Southeast Asia · West Africa · North Africa · East Africa · Southern Africa · LATAM
EU Service BaseRomaniaRomania
Min. Order1 unit1 unit
① Dimensions and weight subject to factory confirmation per project order. ② 225 kWh-DC inverter compatibility subject to project-specific confirmation with Henley Power engineering — DC voltage range (716.8 V nominal) requires validated inverter pairing. Test conditions per IEC 62619. Subject to change without notice. Final parameters confirmed in project-specific supply agreement.
Parameter
Mode A · Integrated
Mode B · Central PCS
Mode C · Hybrid Inverter
PCS source
On-board, integrated in cabinet
External central PCS, separate skid
External hybrid inverter (PV + BESS)
Rated AC power
200 kW (215, 225 kW optional)
630 / 1,000 / 1,250 / 1,500 / 2,000 / 2,500 kW
30 / 50 / 60 / 100 / 125 kW
Typical scale
1–10 cabinets · 0.4–4.2 MWh
4–40 cabinets · 1.7–16.7 MWh
1–4 cabinets · 0.4–1.7 MWh
Typical sites
C&I behind-the-meter, single-cabinet retrofits
Utility BESS, large industrial, FCR/aFRR plants
Solar-plus-storage rooftops, microgrids
SKU
HLY-BESS-Commercial-Industrial-418kWh
HLY-BESS-Commercial-Industrial-418kWh-DC
HLY-BESS-Commercial-Industrial-418kWh-DC + HLY-Inverter-Hybrid
Spec table reflects Mode A. Battery, BMS, thermal, and EMS identical across all three modes — only PCS strategy differs. Sizing and pairing confirmed per project at engineering review.
SYSTEM ARCHITECTURE

Built for 20 years of commercial operation.

LFP · 314 Ah · 1P16S · multi-supplier

Cell & Battery System

LiFePO₄ chemistry, 3.2 V / 314 Ah prismatic cells. Tier-1 LFP cells from publicly listed manufacturers, multi-supplier homologated — no single-vendor dependency across the warranty period. Seven packs in 1P16S configuration, 358.4 V nominal. Active BMS balancing at cell, pack, and system level. Cobalt-free chemistry meets EU Reg 2023/1542 supply-chain due-diligence requirements.
HLY-Inverter-Hybrid · 30–125 kW · integrated MPPT · island mode

Hybrid Inverter (External)

The cabinet is DC-only. The HLY-Inverter-Hybrid mounts on the external side bracket — it handles AC conversion, grid connection, solar MPPT input, and island-mode switching. Inverter size is selected per project load profile: 30, 50, 60, 100, or 125 kW. Five options is more than most projects need. Pick the one that fits.
3-level · cell / pack / system · active balancing · SOC ±2%

Battery Management System

Three-level hierarchy: cell BMU, pack BCU, system master. SOC accuracy ±2%. Continuous SOH tracking via internal resistance measurement. Active balancing — no passive resistive waste. Cell-level fault isolation without system shutdown. The BMS talks to the inverter over CAN and RS485; a pre-wired harness ships with the cabinet.
Cloud EMS · 4G/Wi-Fi · Modbus TCP · RS485 · OTA

EMS & Remote Monitoring

Cloud EMS provides remote dispatch, real-time state-of-health data, and OTA firmware updates. Protocols: RS485, CAN, Ethernet, Modbus TCP/RTU, 4G, Wi-Fi. The EMS doesn’t require a proprietary cloud subscription to operate the battery. Local operation continues if cloud connectivity drops.
Reference SLD only. Final single-line diagram issued per project.
APPLICATION SCENARIOS

Where this cabinet deploys.

Demand charge management

Charge during off-peak windows, discharge at the daily demand peak. A 112 kWh / 50 kW system reduces demand charges 15–30% on sites drawing 150–500 kW peak — typical for light manufacturing, cold storage, and logistics. This doesn’t replace a properly sized transformer; it defers the upgrade for 5–10 years.

Solar self-consumption boost

The HLY-Inverter-Hybrid’s integrated MPPT captures surplus PV generation and routes it directly to battery charge. Self-consumption ratios above 90% are achievable on properly sized PV-to-storage ratios — typically 1:1 to 2:1 kWp per kWh storage. Works without a separate solar inverter, cutting BOS cost on new-build sites.

Critical load backup

At 0.5C continuous discharge, 112 kWh gives two hours of autonomy at 50 kW load. The hybrid inverter switches from grid to island mode on outage detection — transition time depends on inverter model, typically under 20 ms. Not a replacement for a UPS on sub-100 ms critical loads; a complement to one.

EV charging buffer

A 112 kWh buffer absorbs EV charging demand spikes that would otherwise trigger demand-charge events or require grid reinforcement. Charge the buffer overnight at flat-rate tariff; dispatch during fast-charge events at the site. Doesn’t replace a dedicated EV charger management system — it sits behind it on the AC bus.

Time-of-use arbitrage

In markets where time-of-use tariff spreads exceed €40–60/MWh, a 112 kWh system running two full cycles per day can recover €3,000–5,000 per year in avoided grid costs. The economics improve as tariff volatility increases — which it is, across most European markets in 2026.

Telecom & remote sites

IP54 cabinet, rated to −20 °C — the 112 kWh-DC deploys at telecom base stations, remote monitoring installations, and off-grid infrastructure without a climate-controlled enclosure. Pairs with a small HLY-Inverter-Hybrid and a PV array for autonomous operation. Lead time is 35 days from Dezhou, Shandong.
Certifications & Compliance

Certified for European deployment.

Test reports available under NDA on request. Full bankability package provided for DFI-financed and institutionally backed tenders.

IEC 62619

Battery Safety

IEC 62477-2

PCS Safety

CE

EU Conformity

UN 38.3

Transport

EU Reg 2023/1542

Battery Regulation

IEC 61727

Grid Connection

IEC 62116

Anti-Islanding

EN 50549

Grid Code EU

VDE-AR-N 4105

Grid Code DE

G99

Grid Code UK

ISO 9001

Quality Mgmt

ISO 14001

Environment

The 112 kWh and 225 kWh platforms run LiFePO₄ — cobalt-free, phosphate-stabilised chemistry that meets EU Reg 2023/1542 supply-chain due-diligence and carbon footprint declaration requirements. CE marked. Battery passport ready for the 18 February 2027 deadline. Warranty service runs from Romania, with no dependency on factory-direct service channels for European projects.

Direct manufacturer warranty · 5+5yr coverage (insurance-backed option) · DFI track record (China + Chad) · IEC test reports under NDA · FSR documentation per-tender ·
FAQ

Questions from engineers, developers, and lenders.

What does "DC cabinet" mean — where is the inverter?
Both 112 kWh-DC and 225 kWh-DC are battery-only enclosures — 112 kWh at 358.4 V, and 225 kWh at 716.8 V respectively. Neither includes an inverter. The HLY-Inverter-Hybrid mounts externally on the side bracket and handles AC conversion, MPPT solar input, and grid connection. Inverter size is selected per load profile at the time of order: 30–125 kW for the 112 kWh model; 100–125 kW for the 225 kWh model.
≥8,000 full cycles at 80% depth of discharge, 0.5C charge and discharge rate, 25 °C cell temperature, to 70% end-of-life capacity. Those are the test conditions. Field performance varies with actual operating temperature, daily DoD, and discharge rate — Henley Power provides site-specific cycle projection on request for project finance cases.
Five years standard, extendable to ten with a paid service agreement. Insurance-backed warranty option available for project-finance lender packages. The warranty covers cell capacity retention, BMS faults, enclosure integrity, and thermal management system performance. It doesn’t cover damage from incorrect installation, grid events outside the specified voltage range, or operating conditions outside the rated −20 °C to +50 °C window.
Nine-region service network: EU, Eastern Europe, Central Asia, Southeast Asia, West Africa, North Africa, with East Africa, Southern Africa, and LATAM in 2026 expansion. European projects are serviced from Romania — spare parts stocked in-region, no factory-direct lead times for field response. Field response target is defined in the active service agreement.
The 112 kWh platform is in active deployment across C&I and telecom applications. First European delivery is a 10 MWh project in Moldova in Q2 2026 with a regional EPC partner — the front tranche of a 150 MWh pipeline. Factory reference installations in China are available on request under NDA.
IEC 62619:2022, CE marking, UN 38.3, EU Reg 2023/1542. Manufacturing under ISO 9001, ISO 14001, ISO 45001. Test reports available under NDA on request. Full bankability package — cell qualification, BMS validation, thermal characterisation — provided for DFI-financed and institutionally backed tenders.
RS485, CAN, Ethernet, Modbus TCP, Modbus RTU, 4G, Wi-Fi. The BMS communicates with the paired HLY-Inverter-Hybrid over CAN as primary and RS485 as backup. The cloud EMS uses Modbus TCP over Ethernet or 4G. No proprietary protocol lock-in — if your SCADA speaks Modbus, it talks to this system.
35 days ex-works from Dezhou, Shandong. Minimum order is one unit. Delivery CFR to European ports. The HLY-Inverter-Hybrid ships separately and isn’t included in the battery cabinet price — request a bundled quote if you need both. Transit to Romania is typically 28–32 days on a direct vessel.
Yes — the rated operating window is −20 °C to +50 °C ambient, with the door-mounted HVAC unit holding internal cell temperature in the 15–30 °C optimum band. Active fan management and integrated cell heating handle the cold side; the cabinet is IP54 outdoor-rated against driven snow and wind-blown dust. Below −15 °C ambient, the BMS reduces charge current automatically to protect cell chemistry. We don’t recommend continuous operation below the −20 °C rating; for sites colder than that, request the cold-climate variant with enhanced heating.
Up to ten units of the same model parallel on a shared external DC busbar — that’s how you reach 1.12 MWh (112 kWh-DC) or 2.25 MWh (225 kWh-DC). The busbar is an external switchgear panel, sized per project; it isn’t integrated into the cabinet because tying high-current DC inside a sealed enclosure creates fault-current paths you can’t isolate. Cabinets must be the same model (don’t mix 358 V and 716 V on one bus). The master BCU coordinates pack-level SOC balancing across the parallel string; the cloud EMS dispatches the array as a single resource to the inverter.
Battery Safety
GET IN TOUCH

Request a quote or datasheet.

Engineering response within 24 hours. We need a few details to send you what’s actually useful — not a generic brochure.

Send your inquiry.

"*" indicates required fields

By submitting you agree to be contacted regarding this inquiry. Data handled per GDPR.
GET IN TOUCH

Request a quote or datasheet.

Engineering response within 24 hours. We need a few details to send you what’s actually useful — not a generic brochure.

What you get

By submitting you agree to be contacted regarding this inquiry. Data handled per GDPR.

By submitting you agree to be contacted regarding this inquiry. Data handled per GDPR.

RELATED PRODUCTS

Other products in the Henley Power range.

C&I . LIQUID-COOLED

HLY-BESS-Commercial-Industrial-261kWh
261 kWh · Liquid-cooled LFP · IP54 cabinet / IP65 module · 10,000+ cycles (80% DoD, 25°C) · Integrated or external PCS 100–225 kW

C&I . LIQUID-COOLED

HLY-BESS-Commercial-Industrial-418kWh
418 kWh · Liquid-cooled LFP · IP54 cabinet / IP67 module · 10,000+ cycles (80% DoD, 25°C) · External central PCS 200–630 kW

INVERTER

HLY-Inverter-Hybrid
30 / 50 / 60 / 100 / 125 kW · Hybrid inverter for 112 kWh-DC & 225 kWh-DC · Integrated MPPT · Island mode · IP65 · EN 50549

RESIDENTIAL · STACKABLE

HLY-BESS-Residential-16kWh

HLY-BESS-Residential-16kWh

16 kWh

Stackable floor-standing LFP home battery. 16 kWh per unit, 51.2 V, 314 Ah. Parallel-expandable to 240 kWh.

View product

C&I · LIQUID-COOLED

HLY-BESS-Commercial-Industrial-261kWh

261 kWh in a single liquid-cooled cabinet.

261 kWh

Liquid-cooled outdoor cabinet, three deployment modes — All-in-One (100/110/125 kW PCS), DC-only for central PCS, or hybrid-inverter compatible.

View product

C&I · MODULAR · AIR-COOLED

HLY-BESS-Commercial-Industrial-Modular-16kWh

Modular HV stack BESS from 64 to 256 kWh.

64–256 kWh

Natural convection LFP. 16 kWh per module, 4–16 modules per cluster. Indoor IP21. DC-only with customer-supplied hybrid or central PCS.

View product