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The JNCN GCK low-voltage draw-out switchgear delivers robust breaking capacities and high dynamic stability for modern industrial lines. Combining high-capacity Power Centre feeding up to 2500A with modular Motor Control Centre drawers up to 630A.
The GCK type low-voltage withdrawable switchgear (hereinafter referred to as switchgear) is expertly engineered for three-phase AC 50Hz/60Hz systems, supporting rated working voltages of 380V or 690V, and a maximum horizontal main busbar rated current up to 4000A. It operates seamlessly across both three-phase four-wire and three-phase five-wire power networks. This flexible configuration is widely deployed by global power users, including power plants, electrical substations, industrial and mining enterprises, high-rise commercial buildings, luxury hotels, international airports, and shipping terminals.
It performs critical functions as a unified Power Centre (PC) and Motor Control Centre (MCC), allowing for custom hybrid layout designs mixing both fixed and withdrawable drawer cabinets to satisfy diverse power distribution criteria. The GCK platform stands out for its high breaking capacity, excellent dynamic and thermal stability, highly rationalized space-saving structure, and high shell protection metrics, proving to be an internationally advanced, ideal replacement solution.
High Breaking & Dynamic Stability: Meticulously designed to provide premium short-circuit breaking capacities alongside superb dynamic and thermal stability under rigorous industrial load environments.
Flexible Hybrid Design Mapping: Supports customized mixing layouts of both fixed structural blocks and withdrawable drawer components within a single cabinet to efficiently maximize limited floor space.
Dual Function Integration (PC & MCC): Dynamically consolidates large-capacity Power Centre (PC) energy delivery and Motor Control Centre (MCC) drive controls into a unified panel architecture.
Advanced Enclosure Engineering: Features an optimized structural chassis with robust compartment isolation and enhanced ingress safety parameters to provide a secure environment for site operators.
G: Enclosed Switchgear Chassis Structure
C: Withdrawable / Withdrawal Type
S: Control Centre (MCC) Classification
(K): Power Centre (PC) Functionality Indicator
[ ] : Main Circuit Programme Scheme Code Number
Ambient Air Temperature: Operates smoothly between -5°C and +40°C, ensuring the average temperature over a 24-hour period remains below +35°C. The minimum limit permitted for transport and storage logistics is -30°C.
Atmospheric Humidity: Clean air conditions where relative humidity must not exceed 50% at a peak temperature of +40°C. Higher relative humidity is safely accommodated at lower temperatures (e.g., 90% at +20°C), with close monitoring required for occasional condensation effects arising from temperature shifts.
Atmospheric Purity: Indoor atmosphere must be completely free from corrosive chemicals, flammable or explosive gases, and devoid of conductive dust particles that might damage structural insulation properties.
Installation Layout: Designed for vertical indoor installation where the alignment tilt does not exceed 5 degrees. The maximum operational altitude limit is 2000 meters above sea level.
Vibration & Environment: Must be installed in structured bays free from severe mechanical shaking, violent impact shocks, or environments causing accelerated chemical corrosion of electrical components.
Logistics Resilience: Safe for transport and warehouse storage conditions spanning -25°C to +55°C, tolerating brief intervals (under 24 hours) up to +70°C.
| Name | Unit | Technical Parameters |
| Rated Insulation voltage | V | 600, 1000 |
| Rated working voltage | V | 380, 690 |
| Horizontal busbar rated current | A | 1250, 1600, 2000, 3200, 4000 |
| Vertical busbar rated current | A | 1000 |
| Maximum current of feeder circuit | A | 2500 |
| Maximum current of drawer circuit | A | 630 |
| Maximum capacity of control motor | kW | 320 |
| Rated frequency | Hz | 50, 60 |
| Horizontal bus peak peak value withstand current | kA | 105, 176 |
| Horizontal bus short-time value withstand current (1s) | kA | 50, 80 |
| Vertical busbar peak withstand current | kA | 63, 105 |
| Vertical bus short-time value withstand current (1s) | kA | 30, 50 |
| Rated frequency withstand voltage (1min) | V | 2500 |
| Secondary frequency withstand voltage (1min) | V | 2500 |
| Shell protection grade | - | IP30, IP40 |
| Shell size | mm | W600 (800, 1000) $times$ D800 (1000) $times$ H2200 |
| Effective height of functional unit | mm | 1800 |
Selecting the right power distribution architecture underpins the core reliable execution of automated motor arrays and factory line grids. JNCN Power brings world-class manufacturing tolerances and advanced system optimizations to the GCK Series through the following foundational pillars:
Validated Structural Rigidities & Thermal Safety: JNCN optimizes the GCK frame profile to easily navigate immense peak withstand currents up to 176kA. Through optimized structural dynamics and layout mapping, our GCK cabinets reduce internal heat fields under sustained maximum loads of up to 4000A, eliminating common structural warp or component degradation.
Dual Capacity Hybrid Customization: We engineer the GCK line to deliver ultimate flexibility. JNCN can build customized internal panel maps that securely combine high-power fixed distribution units (PC) alongside precision withdrawable motor starter drawers (MCC) in the exact same vertical cabinet structure, providing localized footprints with maximum utilization.
Flawless Plug-in Mechanical Lifespans: Our withdrawable drawers feature ultra-precise rail tooling and robust silver-plated plug-in terminals. This design guarantees consistent contact tension and exceptionally smooth draw-out engagement over thousands of industrial cycles, shielding plant mechanics from misalignment arcs during emergency module hot-swaps.
Smart Monitoring Ready: Built to align with automated factory standard controls, JNCN GCK switchboards effortlessly adapt to modern sensor setups and smart protection relays. This allows for clear, comprehensive digital logging of busbar temperatures, current draw shifts, and trip indicators directly into your facility's DCS network.