Description
Armstrong 1/25 Horsepower Astro 230SS Wet Rotor Circulator Stainless Steel – 110223-306
The Armstrong Astro 230SS 1/25 Horsepower Circulator, model number 110223-306, is designed for efficient and maintenance-free circulation of water or ethylene-glycol solutions in closed hydronic or solar heating systems. Ideal for residential, small industrial, and commercial applications.
The Armstrong Astro 230SS 1/25 Horsepower Circulator, model number 110223-306, is designed for efficient and maintenance-free circulation of water or ethylene-glycol solutions in closed hydronic or solar heating systems. Ideal for residential, small industrial, and commercial applications.
Features
- Three-speed switch for customized flow
- Stainless steel construction for durability
- Quiet operation and zero maintenance
Specifications
Horsepower | 1/25 hp |
---|---|
Voltage | 115 VAC |
Amperage Capacity | 0.81 Amps |
Wattage | 80.5 watts |
Flow Rate | 0-18 GPM |
Maximum Feet of Head | 18.2 ft |
RPM | 2800 rpm |
Frequency | 60 Hz |
Pressure Rating | 150 psi |
Temperature Range | 0-230 Degrees Fahrenheit |
Impeller Material | Noryl |
Certifications | cETLus Intertek listed, NSF 372 certified |
Brand | Armstrong |
Model | 110223-306 |
Type | Wet Rotor Circulator |
Material | Stainless Steel |
Applications | For residential heating or cooling, potable water, water conservation |
What Our Experts Think
- 1/25 HP Motor – Perfect for smaller systems requiring moderate flow without consuming excess energy.
- Stainless Steel Construction – Provides excellent durability and corrosion resistance, ideal for a variety of fluids and demanding environments.
- Wet Rotor Design – Ensures quiet, efficient operation with minimal vibration and extended lifespan.
- Compact Size – Ideal for tight spaces or systems where a smaller circulator is needed without sacrificing performance.
- Versatile Application – Great for residential heating, cooling, and water circulation in systems like radiant heating and solar applications.
Q&A
Q: What is the Armstrong 110223-306 Astro 230SS circulator used for?
A: The Armstrong 110223-306 Astro 230SS circulator is designed for circulating water and other fluids in hydronic heating systems, domestic hot water systems, and light commercial applications, providing efficient fluid movement.
Q: What are the advantages of the wet rotor design in the Armstrong 110223-306?
A: The wet rotor design eliminates the need for mechanical seals, reducing wear and tear while ensuring quiet, vibration-free operation. It provides reliable and efficient performance for a variety of fluid circulation applications.
Q: How does the Armstrong 110223-306 circulator improve system efficiency?
A: The Astro 230SS circulator reduces energy consumption while providing consistent fluid flow, improving the overall energy efficiency of heating and cooling systems and extending the lifespan of the system.
Q: Is the Armstrong 110223-306 circulator pump easy to maintain?
A: Yes, the Armstrong 110223-306 is designed for low-maintenance operation due to its wet rotor design and durable stainless steel construction, requiring minimal upkeep and providing long-term reliability.
Maintenance Tips
- Inspect for Leaks – Regularly check the circulator pump for leaks around the rotor and connections. Tighten any loose fittings and replace damaged seals.
- Monitor for Unusual Sounds – Listen for abnormal noise, which could indicate wear or debris buildup. If heard, inspect and clean the pump immediately.
- Clean the Pump – Periodically remove debris and sediment from the rotor and internal components to ensure optimal performance and prevent blockages.
- Check Electrical Connections – Inspect the power supply and wiring for signs of wear, corrosion, or damage to prevent electrical failures.
- Verify Motor Function – Ensure the motor is running at the correct speed, and check for any signs of overheating or malfunction.
- Lubricate Bearings – Proper lubrication of the bearings will ensure smooth rotation of the wet rotor and reduce wear.
- Test Performance – Regularly monitor the flow rate and temperature to ensure the pump operates efficiently within the specified parameters.
- Replace Worn Parts – If any components such as the rotor or seals are showing signs of wear, replace them to maintain optimal functionality.
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