Armstrong Fluid Technology launches new single-phase pumps in the Middle East

Armstrong Fluid Technology, a number one innovator in the design, engineering and manufacturing of intelligent fluid-flow and control options, has launched a new model of its Design Envelope pump, particularly to serve in light-duty installations where the available power is single-phase.
Many smaller commercial and residential buildings use single-phase power. The conventional method for these functions is usually to put in a low-cost, light-duty circulator. While เกจวัดแรงดันไฟฟ้า meets the appliance necessities, many circulators usually are not repairable, and are designed for only some years of operation.
Image copyright: Armstrong Fluid Technology
The new Single-Phase Design Envelope pumps provide sensible and economical options for those installations and are now obtainable for single part power (200–230V) in sizes starting from zero.25 to 1.5kW.
Kevin Laidler – Sales Director, Middle East and Africa, comments: ‘These pumps are designed to ship elevated reliability, which in turn helps to cut back costs. They are constructed to follow the design standard for commercial pumps, so they’re manufactured to last and can be economically repaired.’
As mechanical room piping for light-duty fluid-flow purposes is often put in vertically, the new single-phase pumps can be installed and operated in vertical piping.
Compared to conventional pumps that usually rely on wall-mounted drives and normal induction motors, Design Envelope pumps provide financial savings of up to 30% on working costs by way of:
Adjustable design point and setpoint to match on-site circumstances
Quadratic stress control curve for optimum efficiency in variable-speed functions
Constant flow operate to hold up a precise circulate price in recirculation applications
As with all our Design Envelope pumps, the model new single-phase pump contains built-in intelligence and connectivity to help Active Performance Management. The subscription-based Pump Manager service allows users to trace pump standing and performance, and can send alerts identifying points similar to cavitation and dead-head. It also permits performance optimization by way of cloud-based analytics.
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