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The KSB UPA 200 and its enhanced version UPA S 200 are multistage vertical submersible centrifugal pumps engineered for medium to deep well water extraction and high pressure water supply systems. Their body, shaft, and impellers are constructed from AISI 304 or 316 stainless steel, ensuring high resistance to corrosion, impact, and abrasion. Both models feature a 200 mm discharge diameter and, depending on the number of stages, can deliver flow rates up to 500 m³/h with a maximum head of 380 meters. Water lubricated bearings and a multilayer mechanical seal provide secure sealing and low wear under demanding operating conditions. The mixed radial axial hydraulic design increases efficiency and minimizes pressure losses.
The UPA S 200 is an upgraded variant with optimized internal hydraulics for improved efficiency and longer service life, suitable for high pressure pipelines and corrosive water applications. These pumps can be coupled with submersible motors ranging from 15 to 200 kW, and the IP68 protection class ensures continuous underwater operation. The dynamically balanced shaft reduces vibration and extends bearing life. The UPA 200 and UPA S 200 series are ideal for industrial agriculture, municipal pumping stations, process water, power generation facilities, and desalination systems. Their anticorrosion coatings and modular construction simplify maintenance and significantly increase operational durability.
WEBSITE: KSB UPA 200 and its enhanced version UPA S 200 Iran
The KSB UPA 200 and UPA S 200 submersible pumps, designed with multistage hydraulics and high-efficiency IE2 and IE3 motors, offer highly optimized energy consumption for deep-well applications. Their hydraulic efficiency typically ranges from 65% to 78%, while stainless steel impellers minimize head losses and provide stable, consistent output. The UPA S 200, equipped with an enhanced cooling system, reduces energy consumption by up to 12% compared to similar models. A torsion-resistant shaft and wear-resistant bearings minimize mechanical losses, enabling continuous operation with low vibration and maximum efficiency. These features make both models highly economical in agricultural, industrial, and municipal water supply projects.









