Technology

A four-layer platform.
Cells. BMS. PCS. EMS.

Built around lithium iron phosphate chemistry and our own monitoring layer — every Orixe system is the same architecture, scaled.

L1 / CELL
LiFePO4 prismatic
Grade-A 3.2 V 100 Ah cells. Pressure-matched, capacity-matched, IR-matched per pack.
L2 / BMS
Multi-level battery management
Cell-level balancing, pack-level protections, rack-level master. CAN + RS485 + Ethernet.
L3 / PCS
Bi-directional power conversion
Hybrid inverters with integrated solar MPPT. Grid-tied, off-grid and island modes.
L4 / EMS
Orixe cloud EMS
Real-time telemetry, fleet dispatch, predictive maintenance and energy economics.
Layer 1 · Cell

LiFePO4 3.2 V · 100 Ah prismatic cells.

Lithium iron phosphate is the only chemistry we ship. It runs cooler than NMC, refuses to enter thermal runaway under abuse, and delivers more than 6,000 cycles at 80% depth of discharge.

  • ChemistryLiFePO4 (LFP)
  • Nominal voltage3.2 V
  • Nominal capacity100 Ah
  • Energy per cell320 Wh
  • Cycle life @ 80% DoD≥ 6,000
  • Operating temperature-20°C → 55°C
  • Round-trip efficiency≥ 95%
  • Self-discharge< 3% / month
+ ORIXE LFP 3.2V · 100Ah · 320Wh SN: 24/100/032/0014 DOM: 03/2026 BATCH: B-2026-Q1-117 QR ▢ ▢ ▢ ▢
Orixe BMS PCB visible inside an open cabinet — custom battery management hardware connecting cell modules
Layer 2 · BMS

Our own battery-management hardware.

We don't OEM a third-party BMS. The Orixe BMS PCB — cell-monitoring frontend, balancing FETs, isolated CAN bus and contactor control — is designed, populated and flashed in our Gurugram facility. Every Orixe pack runs the same firmware we wrote.

  • Architecture3-tier · cell · pack · rack
  • Cell channels per slave16
  • Voltage accuracy± 2 mV
  • Temp sensors per pack4× NTC
  • BalancingPassive · 200 mA
  • CommsCAN 2.0B + RS485 + Eth
  • ProtectionsOV / UV / OC / OT / SC
  • FirmwareOTA via Orixe EMS
Layer 2 · Modules

Stacked, fan-cooled, hot-swappable.

16 prismatic cells per module. Push-pull cooling, polarised power connectors on the front face, and a slave BMS board per module reporting upstream over CAN. Modules drop into the rack on rails — site replacement under 20 minutes.

  • Cells per module16 × 100 Ah
  • Module energy5.12 kWh nominal
  • Cooling2× 12 V axial fans
  • InterconnectAnderson SBS75X
  • Hot-swapYes (pack-level)
Stacked LiFePO4 battery modules with cooling fans and front-mounted power connectors
Layer 4 · EMS

Every system reports home.
In real time.

Orixe EMS is the cloud platform behind every system we ship. Stream SOC, power flow, fault alerts and dispatch decisions — for one inverter or a 500-site fleet.

portal.orixe.energy / fleet / pune-mfg-01 LIVE
OX-240K-3P
84% SOC
Charging
06:0012:0018:0000:00
PV Generation
142kW
Site Load
98kW
Grid Export
+44kW
EMS / 01

Fleet-wide telemetry

Every cell, pack, rack and site streams to one dashboard. Drill from a 500-site map to a single cell voltage in two clicks.

EMS / 02

Dispatch & schedules

Tariff-aware charge/discharge windows, demand-response participation, and zero-export modes — configured per site.

EMS / 03

Alerts & maintenance

Fault classification, predictive cell-degradation flags, and SMS/email alerts. OTA firmware for every layer of the stack.

Safety

Six layers of fault protection.

01

Cell-level fusing

Internal fusible link interrupts short-circuit conditions inside the cell.

02

Pack thermal sensors

4× NTC sensors per pack. BMS opens contactor on over-temperature.

03

Rack pyro-fuse

One-shot pyrotechnic fuse on DC bus. Triggers on detected internal arc.

04

Cabinet gas detection

VOC & H₂ sensors at cabinet ceiling. EMS-reported, audible alarm on threshold.

05

Suppression (≥120 kW)

Aerosol-based fire suppression in commercial and utility cabinets.

06

Remote isolation

EMS can open the AC contactor of any unit on the fleet from the cloud.

See it running live.

portal.orixe.energy hosts the live dashboard for every installed Orixe system. Request a demo account to look around.

Open the portal Request a demo