Loading
| Minimum Order Quantity | 4 Pieces |
| Capacity | 250 LPD |
| System Type | Non-Pressurized |
| Inner Tank Material | Galvanized Iron (GI) |
| Inner Tank Coating | Marine-Grade Protective Coating |
| Electric Backup Heater | Available |
| Warranty | 5 Years |
| Number of Tubes | 25 |
| Brand | Samurai |
| Evacuated Tube Size | 1800 × 58 mm (L × Dia) |
| Country of Origin | Made in India |
| Usage | Solar-Powered Water Heating |
The 250 LPD Samurai ETC Solar Water Heater is an advanced and energy-efficient hot water solution developed by Samurai Solar System Pvt. Ltd. Designed for residential, institutional and light-commercial applications, the system uses high-efficiency Evacuated Tube Collector technology to capture solar energy and convert it into dependable hot water for everyday use.
Its 25 multi-layer vacuum tubes are engineered to absorb maximum solar radiation while minimizing heat loss. This enables faster water heating and reliable performance, even during moderate sunlight and changing weather conditions. With a practical capacity of 250 litres per day, the system is well suited for large families, villas, hostels, guest houses, hospitals, restaurants and other establishments with regular hot water requirements.
The inner storage tank is manufactured from high-quality Galvanized Iron and protected with a marine-grade coating for improved resistance against corrosion, moisture and demanding outdoor conditions. Its non-pressurized design offers straightforward operation, low maintenance and dependable long-term performance. An optional electric backup heater can also be incorporated to maintain hot water availability when solar radiation is limited.
Built for Indian climatic conditions, the Samurai 250 LPD ETC Solar Water Heater helps reduce dependence on conventional electricity and lowers recurring water-heating expenses. Combining durable construction, efficient heat collection and environmentally responsible operation, it is a valuable long-term investment for customers seeking comfort, savings and sustainable energy performance.