Armstrong 410135-200 707S Circulating Pump
Armstrong 410135-200 707S Circulating Pump
Couldn't load pickup availability
TIPS Contract Vendor
We are an officially awarded purchasing cooperative vendor.
π Procurement & Shipping Notice
- LTL Freight Dispatch: Heavy commercial units ship directly via insured LTL carrier with delivery coordination included.
- Project Timelines & Submittals: Need guaranteed delivery dates, formal submittals, or tax-exempt processing?
π Request a Commercial Quote or contact our procurement team for direct freight scheduling.
Corporate Procurement & PO Processing
Formal Purchase Orders (POs) and tax-exempt ordering are accepted for commercial contractors and institutional facilities.
Apply for Trade Account & Terms β| Performance Parameter | Engineering Baseline Value |
|---|---|
| Manufacturer Part Number (MPN) | 410135-200 |
| Model Designation | 707S |
Maintain consistent flow and temperature distribution in your hydronic heating or cooling system with the Armstrong 410135-200 707S circulating pump. This high-efficiency pump is engineered for quiet, reliable operation in residential and light commercial fluid circulation applications, ensuring your system operates at peak capacity.
The unit utilizes a centrifugal design to move heating media through your piping network with minimal resistance. By maintaining a constant flow rate, it prevents boiler short-cycling and helps extend the lifespan of your critical HVAC infrastructure, all while consuming minimal energy during standard operation cycles.
Key System Performance Baselines:
- Durable Construction: Engineered with premium-grade materials to withstand high-temperature hydronic environments.
- Consistent Fluid Dynamics: Optimized for smooth flow transition to reduce mechanical wear and pump noise.
- Seamless Integration: Designed for straightforward installation within standard Armstrong 707 series piping layouts.
β οΈ Application Profile: Ideal for hydronic space heating, radiant floor systems, and domestic water loop circulation where consistent pressure is required for optimal thermal comfort.
