Primary switchgear ZF1-362
insulatedhigh-voltageshort-circuit

Primary switchgear - ZF1-362 - Dowei Electric - insulated / high-voltage / short-circuit
Primary switchgear - ZF1-362 - Dowei Electric - insulated / high-voltage / short-circuit
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Characteristics

Type
primary
Electrical characteristics
insulated, high-voltage, short-circuit, switching, heavy-duty, with overcurrent protection
Configuration
compact, metal-clad, gas-insulated
Applications
circuit breaker, for power plants, for electrical networks
Other characteristics
modular, floor-mounted
Primary current

3,150 A, 4,000 A, 5,000 A

VAC

362 kV

Description

• IEC 62271, ANSI/IEEE Std C37, NEMA
• ISO 9001, KEMA, CESI, CE, TUV, UL, ASTA
• Seismic design, ETGI-1.020, IEEE Std 693, NCh2369
• Structural design, ASTM A325, ANSI/AISC 360, AWS D1.1
• High altitude correction per IEC 62271 & IEEE C37, ~ 5000m
• High reliability, smart, compact and economic switchgear solutions
• Modular compact GIS offering outstanding flexibility for optimizing layouts

Gas Insulated Switchgear (GIS) 362kV

1. General Description
362kV Gas Insulated Switchgear (GIS) is a high-voltage compact switchgear system used in transmission substations for switching, protection, and control of electrical power networks. It integrates circuit breakers, disconnectors, earthing switches, current transformers (CT), voltage transformers (VT/CVT), busbars, and cable/line termination units inside sealed metal enclosures filled with insulating gas (typically SF6 or alternative gases).

Compared with conventional Air Insulated Switchgear (AIS), 362kV GIS requires much less installation space, provides higher environmental protection, and is suitable for urban substations, underground substations, and high-reliability transmission networks.

2. Typical Technical Specifications
·Equipment Type: Gas Insulated Switchgear (GIS)
·Rated Voltage: 362 kV
·System Voltage Class: 345 kV / 363 kV
·Standard: IEC 62271 / IEEE C37 series
·Rated Frequency: 50 / 60 Hz
·Rated Current: 3150 / 4000 / 5000 A
·Short-Time Withstand Current: 50 / 63 kA (3 s)
·Peak Withstand Current: 125 / 160 kAp
·Short-Circuit Breaking Current: 50 / 63 kA
·Lightning Impulse Withstand (BIL): Up to 1175–1425 kVp
·Power Frequency Withstand Voltage: Approx. 510–680 kV
·Installation: Indoor / Outdoor GIS Hall
·Insulation Medium: SF6 or eco-friendly gas alternatives
·Mechanical Endurance: M1/M2 class depending on component

Typical 362kV GIS designs include ratings around 4000 A continuous current and 63 kA short-circuit interruption capability.

3. Main Components

1.) Circuit Breaker (CB)
·High-voltage SF6 or alternative gas interrupter
·Interrupts fault currents
·Usually equipped with spring or hydraulic operating mechanisms
·Typical breaking capacity: 50–63 kA

2.) Main Busbar
·Encapsulated conductor system
·Single bus, double bus, or ring bus configurations
·Provides compact power distribution

3.) Disconnect Switch
·Provides visible electrical isolation
·Used during maintenance operations

4.) Earthing Switch
·Grounds isolated sections
·Includes high-speed and maintenance grounding types

5.) Current Transformer (CT)
·Measures current for:
·Protection relays
·Metering
·Fault detection

6.) Voltage Transformer / CVT Interface
·Provides voltage measurement signals

7.) Cable & Overhead Line Termination
·Connects GIS to:
·Underground cables
·Transformers
·Transmission lines

4. Typical GIS Bay Configuration
Common 362kV GIS arrangements:
Single Busbar
·Simple design
·Lower cost
Double Busbar
·Higher operational flexibility
·Allows maintenance without complete shutdown
Breaker-and-a-Half Scheme
·High reliability transmission applications
Ring Bus Configuration
·Used in critical substations

5. Advantages
*Compact footprint
·Requires significantly less space than AIS
*High reliability
·Protected from:
·Dust
·Humidity
·Salt contamination
·Pollution
*Lower maintenance
·Sealed gas compartments reduce environmental exposure
*Excellent insulation performance
·Suitable for extra-high voltage transmission systems
*Flexible installation
·Indoor installation possible even in dense urban areas

6. Applications
362kV GIS is commonly used in:
·Extra-high voltage transmission substations
·Urban power grids
·Hydropower transmission systems
·Nuclear and thermal power plants
·Renewable energy collection substations
·Underground substations
·Coastal/high-pollution areas

7. Applicable Standards
Typical standards include:
·IEC 62271-1 — Common specifications for high-voltage switchgear
·IEC 62271-100 — High-voltage circuit breakers
·IEC 62271-102 — Disconnectors and earthing switches
·IEEE C37 series — High-voltage switchgear requirements

8. Typical Manufacturers
Major suppliers of EHV GIS technology include:
·GE Vernova — 362/420kV class GIS solutions
·ABB — GIS systems for transmission applications
·Mitsubishi Electric — high-voltage switchgear solutions

Summary:
A 362kV GIS is an extra-high-voltage, metal-enclosed switching system designed for 345kV-class transmission networks, typically rated 4000A / 50–63kA, combining breakers, disconnectors, CTs, earthing switches, and busbars into a compact insulated enclosure for reliable power transmission applications.
*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.