New VCB Supply
VCB selection and supply against system voltage, rated current, fault level, control voltage and approved project requirements.
Discuss Scope →Supply, panel integration, retrofit, servicing, testing and commissioning support for selected 12 kV and 36 kV-class VCB equipment used in industrial power-distribution systems.
A Vacuum Circuit Breaker interrupts current within a sealed vacuum interrupter. The vacuum medium supports rapid dielectric recovery after contact separation and is widely used for medium-voltage switching applications.
Final VCB selection depends on system voltage, rated current, short-circuit duty, operating sequence, control voltage, mechanical arrangement, protection philosophy and the approved switchgear design.
Ratings, dimensions, construction, interlocks and performance values vary by make and model. Final suitability is confirmed against the approved technical inputs and equipment documentation.
The exact scope is finalized after reviewing the system requirement, existing equipment details, available drawings, site condition and spares compatibility.
VCB selection and supply against system voltage, rated current, fault level, control voltage and approved project requirements.
Discuss Scope →Integration with metal-clad switchgear, protection relays, CTs, PTs, metering, control wiring and interlocking.
Discuss Scope →Replacement planning for selected existing breakers, subject to dimensions, ratings, busbar interface, racking and control compatibility.
Discuss Scope →Inspection and servicing of operating mechanism, coils, auxiliary contacts, interlocks, racking and control circuits.
Discuss Scope →Contact resistance, insulation resistance, operating timing, sequence, control-circuit and functional checks.
Discuss Scope →Functional verification, protection interface checks, recommissioning support and service or test documentation as agreed.
Discuss Scope →System voltage and equipment voltage class are related but not identical. The selected VCB and switchgear assembly must match the applicable system, insulation, fault-duty and project requirements.
Typically associated with selected 12 kV-class VCB equipment, subject to system insulation level, rated current, breaking capacity, panel construction and approved specification.
Typically associated with selected 36 kV-class equipment, subject to the approved switchgear arrangement, protection requirements, site conditions and manufacturer documentation.
The values below are selection references, not blanket guaranteed ratings. Final parameters depend on the selected VCB make, model, switchgear design and approved project specification.
Opening time, break time, operating sequence, mechanical endurance, auxiliary contacts, internal-arc classification and enclosure IP rating are make/model and switchgear-design specific. They must be confirmed from the selected equipment documentation and agreed scope.
Available construction and safety features depend on the selected breaker, switchgear panel, accessibility requirements and approved project specification.
Metal-clad and compartmentalized switchgear construction where specified
Fixed or draw-out VCB arrangement
Horizontal isolation or project-specific racking arrangement
Integral earthing switch where included in the approved design
Mechanical and electrical interlocking
Single or double busbar configuration where required
Protection relay and instrument compartment
CT, PT, metering and indication integration
Shutters, racking and service-position safety checks
Cable, busbar and control-interface coordination
Testing scope is selected according to equipment condition, shutdown availability, applicable procedures and the mutually agreed service requirement.
Contact resistance measurement using suitable DC test current
Insulation resistance testing at the applicable test voltage
Opening and closing timing measurement
Close-open and operating-sequence verification
Closing coil and tripping coil circuit checks
Auxiliary-contact condition and sequence checks
Racking, shutters and interlock operation
Manual and electrical operation checks
Relay and trip-circuit functional verification
Secondary-injection coordination where included
Spring-charging motor and mechanism checks
Test observations and service report as agreed
The vacuum interrupter may require limited routine attention, but the complete breaker mechanism, racking system, coils, interlocks and control circuits still require condition-based inspection and maintenance.
Visual inspection and equipment condition assessment
Operating-mechanism cleaning and lubrication where applicable
Closing and tripping coil inspection
Spring-charging motor and limit-switch checks
Auxiliary contacts and control wiring inspection
Racking mechanism and interlock checks
Vacuum interrupter and contact-wear assessment as permitted by manufacturer procedure
Loose-connection, heating and insulation observations
Corrective recommendations and spare requirement identification
Recommissioning and operating checks after agreed work
VCB selection and service scope are developed around the electrical distribution system, operating duty and site-specific requirements.
For accurate review, share the system voltage, VCB make and model, rated current, breaking capacity, control voltage, panel photographs, nameplate details, SLD and the observed issue or required scope.
Supply, retrofit, repair and servicing availability is subject to the selected VCB make, model, rating, equipment condition, dimensional compatibility, shutdown access and spare-parts availability.