Indus Industrial Group supplies autonomous Solar-Powered Remote Irrigation Electromagnetic Flow Meters engineered from DN100 (4") to DN1600 (64") for remote agricultural irrigation networks, Ministry of Water Resources (MoWR) barrage diversions, raw river intake pump stations, and rural distribution canals across Iraq. Operating independently of municipal power grids, each turnkey metering unit integrates a dedicated monocrystalline solar panel, MPPT charge controller, high-temperature LiFePO4 battery storage, and an industrial 4G LTE/NB-IoT cellular telemetry RTU. The system transmits continuous flow rate, cumulative volume, battery status, and tamper alerts directly to ministerial cloud SCADA dashboards.
| Pricing Verification | Commercial Quote on Demand (RFQ) |
| Nominal Sizes | DN100 to DN1600 (4" to 64") Flanged to EN 1092-1 / ISO 7005 |
| Nominal Pressure Ratings | PN10 (10 Bar) / PN16 (16 Bar) |
| Power Supply Configuration | 50W–100W Monocrystalline Solar Panel + 12V 24Ah LiFePO4 Battery |
| Autonomy Duration | 14 days continuous operation under total zero-sunlight conditions |
| Operating Temperature | -20°C to +75°C (Electronics & Battery Storage Rating) |
| Wireless Telemetry | 4G LTE (B1/B3/B7/B8/B20/B28), NB-IoT, GSM/GPRS Fallback |
| Data Protocols | Modbus TCP / RTU, MQTT, DNP3, HTTP REST API |
| Sensor Protection | IP68 Submersible (potted with high-grade elastomeric resin) |
| Enclosure Protection | IP67 Outdoor Weatherproof Die-Cast Aluminum Cabinet |
| Metrological Compliance | ISO 4064:2014 / OIML R49 / AWWA C715 Class 1 & 2 |
| Sector & Division | Water & Wastewater (Div 01) |
| Parent Category | Electromagnetic Water Meters |
Ministry of Water Resources (MoWR) canal regulators, agricultural irrigation pump stations, Tigris & Euphrates river intake stations, and rural water supply distribution in Wasit, Dhi Qar, Maysan, Babel, and Nineveh.
Agricultural irrigation across the Euphrates and Tigris river basins requires precise, unalterable water accounting to prevent water theft, manage drought quotas, and modernize Iraq's agrarian economy. However, most rural off-take gates and pressurized canal pipes are located miles away from electrical substations. Indus Solar-Powered Remote Irrigation Electromagnetic Flow Meters solve this challenge by combining ultra-low-power electromagnetic metering technology with robust solar-battery storage engineered to withstand Iraqi ambient desert heat exceeding +52°C.
Built to ISO 4064 Class 1 and Class 2 irrigation standards, the full-bore electromagnetic meter body is lined with abrasion-resistant vulcanized hard rubber or fusion-bonded epoxy, ensuring zero head loss and zero mechanical wear from suspended river silt and sediment. The measuring electrodes are fabricated from AISI 316L stainless steel or Titanium. With no impellers, bearings, or mechanical gears to jam, the meter guarantees decade-long metrological stability without calibration drift.
The integrated solar power skid includes an industrial-grade 50W–100W monocrystalline photovoltaic panel mounted on a hot-dip galvanized anti-theft mast, paired with an IP67-rated control cabinet housing a military-grade MPPT solar regulator and a heat-tolerant Lithium Iron Phosphate (LiFePO4) battery pack capable of powering the flow meter and 4G/NB-IoT cellular modem for up to 14 days of total cloud cover or dust storm darkness. Complete systems are staged in Erbil, Baghdad, and Basra with full MoWR documentation.
Standard lead-acid batteries fail quickly above +45°C. Our solar metering packages exclusively utilize Lithium Iron Phosphate (LiFePO4) battery chemistry with an integrated thermal protection circuit, rated to operate continuously up to +75°C without degradation or thermal runaway.
Yes. The built-in 4G cellular RTU transmits automated hourly and daily flow logs, instant flow rate, and diagnostic alarms via MQTT or Modbus TCP directly to municipal or ministerial SCADA monitoring servers.