Choosing the right electrical panel manufacturer in India is critical for safety, uptime, and total cost of ownership.
Swiftkon Electromech Pvt. Ltd. designs and manufactures both MCC (Motor Control Center) and
PCC (Power Control Center) panels that meet stringent industrial standards and real-world operating conditions—backed by robust
protection, intelligent automation, and IP54–IP65 enclosures.
What is an MCC Panel?
An MCC Panel (Motor Control Center) is a modular power distribution panel designed to control, protect, and monitor
multiple electric motors from a central location. It is widely used in manufacturing, water treatment plants,
chemical, and process industries to ensure reliable motor operation, enhanced safety, and simplified maintenance.
Key Features
Centralized motor control for multiple loads
Equipped with ACB/MCCB/MCB, contactors, overload relays
Manual & automatic operation with start/stop push buttons
Heavy-duty copper/aluminum busbars with high fault withstand capacity
Modular, expandable design for quick maintenance
Protection against overload, short-circuit, and earth fault
Multifunction meters and digital displays for monitoring
Deployed in manufacturing, process plants, and utilities
Typical MCC Spec Options
Parameter
Range / Option
System Voltage
415V AC, 3-Phase, 50Hz
Busbar Material
EC Grade Copper / Aluminium
Busbar Rating
Up to 6300 A (fault withstand as per design)
Starter Types
DOL, Star-Delta, Soft Starter, VFD
Feeder Type
Fixed / Draw-out / Withdrawable
Meters
Multifunction energy meters, AMF/Protection relays
Ingress Protection
IP54 / IP55 / IP65
What is a PCC Panel?
A PCC Panel (Power Control Center) is the heart of power distribution in a plant. It handles incoming mains/transformer supply,
distributes power to various sub-panels and MCCs, and provides system-level protection and switching using ACBs/MCCBs, bus couplers,
and energy management instrumentation. PCCs demand higher fault withstand and clear segregation for safety and reliability.
Core Capabilities
Incoming ACB/MCCB feeders with protections & interlocks
Bus coupler/sectionalizer logic for redundancy
Power quality & energy monitoring (kW, kVA, PF, THD)
Upstream distribution to MCCs, PDBs, APFC
Arc-flash mitigation & form of separation as per design
Remote supervision via SCADA/EMS
PCC Design Snapshot
Parameter
Range / Option
Rated Voltage
Up to 690V AC
Busbar Rating
1600A – 6300A (custom)
Fault Level
Up to 65kA / 80kA / project-based
Switchgear
ACB/MCCB with protection relays
Metering
Advanced PQ meters, communication (Modbus/IEC)
Enclosure
MS/SS, powder-coated, IP54–IP65
MCC vs PCC: Which one do you need?
When to choose MCC
Multiple motors requiring centralized control
Frequent start/stop sequences and interlocks
Need for draw-out feeders to reduce downtime
Integration with VFD/soft starters for energy savings
When to choose PCC
Plant-wide incoming power distribution
High fault levels and redundancy needs
Energy monitoring and PQ compliance
Segregation and safety at system level
Tip: Most facilities deploy both—PCC for incoming & distribution, MCC for motor-level control.