The OWP-BL300H-A2-7 Electronic Coolant Pump is engineered to deliver reliable, long-lasting performance for industrial thermal energy applications. Designed with precision and durability in mind, this pump combines wide voltage compatibility, high efficiency, and extended service life to meet the demanding requirements of cogeneration systems. Whether for continuous operation or fluctuating load conditions, the OWP-BL300H-A2-7 ensures stable fluid circulation, optimal heat transfer, and minimal maintenance.
| Parameter | Details |
| Product Name | Electronic Coolant Pump |
| Model | OWP-BL300H-A2-7 |
| Rated Voltage | AC220V |
| Operating Voltage Range | 175VAC - 275VAC |
| Speed Range | 3100rpm - 5400rpm |
| Rated Power | 300W ±10% |
| Head & Flow Rate | ≥2880L/H at 17.5m head |
| Operating Ambient Temperature | -40℃ - 85℃ |
| Operating Relative Humidity | <90%RH |
| Protection Class | IP68 |
| Air Tightness | Test pressure 0.35MPa, leakage <0.8mL/min |
| Noise Level | ≤65dB (at 0.8m distance under rated load) |
| Service Life | >40,000 hours |
| Insulation Class | Class F |
| Medium Temperature | -40℃ - 85℃ (allowable instantaneous temperature 105℃) |
The OWP-BL300H-A2-7 Electronic Coolant Pump is specifically optimized for cogeneration (Combined Heat and Power, CHP) systems, where it plays a critical role in maximizing energy efficiency and operational reliability. Cogeneration systems generate both electricity and usable heat from a single energy source, and the OWP-BL300H-A2-7’s performance characteristics are tailored to support this dual-purpose operation.
First, the pump’s rated power of 300W ±10% and flow rate of ≥2880L/H at 17.5m head ensure efficient circulation of coolant through heat exchangers, engines, and generators in CHP systems. This high flow capacity enables effective heat dissipation, preventing overheating of key components and maintaining optimal operating temperatures for maximum energy conversion efficiency. Whether the system is running on natural gas, biogas, or other fuels, the OWP-BL300H-A2-7’s closed impeller design minimizes energy loss, contributing to the overall efficiency of the cogeneration process.
Second, the OWP-BL300H-A2-7’s wide voltage range (175VAC - 275VAC) makes it suitable for cogeneration systems operating in regions with unstable power grids or varying voltage supplies. This adaptability ensures consistent performance even during voltage fluctuations, avoiding system shutdowns and ensuring uninterrupted power and heat generation. For remote or industrial CHP installations where power stability is a concern, this feature is particularly valuable, reducing the risk of costly downtime.
Additionally, the pump’s extended service life of over 40,000 hours aligns with the long operational cycles of cogeneration systems, which often run continuously for months. This durability reduces maintenance frequency and replacement costs, making the OWP-BL300H-A2-7 a cost-effective choice for CHP operators. Its IP68 protection class and resistance to extreme temperatures (-40℃ to 85℃) also ensure reliable operation in outdoor or harsh industrial environments, where cogeneration systems are commonly installed.
Furthermore, the OWP-BL300H-A2-7’s low noise level (≤65dB at 0.8m) is beneficial for cogeneration systems located near residential areas or commercial facilities, minimizing noise pollution while maintaining high performance. The pump’s air tightness (leakage <0.8mL/min) prevents coolant loss, ensuring system efficiency and reducing the need for frequent refills. For CHP systems focused on sustainability, this leak-proof design also supports environmental compliance by preventing fluid waste.
In summary, the OWP-BL300H-A2-7 Electronic Coolant Pump is a critical component for cogeneration systems, offering the efficiency, durability, and flexibility needed to optimize energy production and heat utilization. Its technical specifications, including high flow rate, wide voltage compatibility, and long service life, are directly aligned with the demands of CHP operations, making it the ideal choice for operators seeking reliable and cost-effective coolant circulation solutions.




