RCS Outdoor Capacitor Switch
11‑40.5 kV outdoor vacuum capacitor‑switch, capacitive‑switching current up to 800A, multiple‑drive options, high mechanical endurance, for frequent capacitor‑bank switching in distribution‑networks.
11‑40.5 kV outdoor vacuum capacitor‑switch, capacitive‑switching current up to 800A, multiple‑drive options, high mechanical endurance, for frequent capacitor‑bank switching in distribution‑networks.
This PDF product manual serves for tender evaluation, reactive‑power‑compensation‑project selection and pre‑sales technical review. This outdoor vacuum capacitor‑switch complies with IEC 62271‑1, IEC 62271‑100 and relevant ANSI/IEEE standards.
It adopts vacuum interrupter with APG silicone‑rubber coated technology, and provides three drive‑types: magnetic‑latching, spring‑driven and motor‑spring. This manual records wide operating‑temperature range of ‑40 ℃ ~ +85 ℃, pollution class‑IV adaptability, IP64‑rated waterproof joints, comprehensive dielectric‑withstand values, short‑time withstand‑current, fault‑making capacity, back‑to‑back capacitor breaking performance, multiple rated operating‑sequences, high‑frequency inrush‑current withstand capability and multi‑grade mechanical & electrical endurance indicators.
It is equipped with T2‑copper modular terminals, optional intelligent controller supporting remote monitoring & event‑recording, and complete set of standard insulating accessories. Custom‑manufacturing covering design adjustment, assembly and project‑specific factory‑acceptance‑test is available for harsh‑condition outdoor distribution‑grid projects. Please contact us for complete dimension drawings and full set of type‑test reports.
High-performance outdoor vacuum capacitor switch meeting IEC standards for 12kV and 38kV, enabling reliable power factor correction.
Outdoor three-phase capacitor switch for 40.5kV systems, enabling reliable and maintenance-free switching for power factor correction banks.
Single-phase outdoor capacitor vacuum switch for 15kV and 27kV systems, enabling reliable, maintenance-free power factor correction.
It needs to cope with back‑to‑back capacitor breaking, high‑frequency transient inrush‑current and specified operating‑sequence for repeated reactive‑power adjustment. Please contact us for application‑boundary explanation.
Magnetic‑latching achieves ultra‑high mechanical‑operation cycles; spring‑driven is economical; motor‑spring variant targets high‑capacity requirements. Selection depends on project lifespan and cost‑budget. Please contact us for drive‑type‑selection guide.
Vacuum‑interruption delivers high mechanical‑electrical endurance, reliable performance for back‑to‑back capacitor‑switching and high‑frequency inrush‑current conditions, lowering whole‑life‑cycle maintenance workload. Please contact us for performance‑comparison data.