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Brand Name : HengAnshun
Model Number : ZW20-12(F)+GW9-10
Place of Origin : China
MOQ : 1set+3units
Price : USD2507/Unit Based on EXW
Supply Ability : 1000 units/month
Delivery Time : 10 work days
Packaging Details : Export wooden case packing
Standard : GB1984-2003/GB1985-2014
Trade Mode : EXW
Installation : Fixed
Collocation : GW9 Series outdoor disconnector switch
Usage : Protection
Application : Power transmission lines
Intelligent Boundary Load Switch GB1984-2003 GB1985-2014 Standard With GW9 High Voltage Disconnect Switch
Product Description:
The ZW20-12(F) pole mounted circuit breaker is a type of three-phase AC 50Hz outdoor high voltage switchgear primarily designed for use in rural and urban 10 kV outdoor distribution networks. It serves to handle load current, overload current, short circuit current, and similar scenarios.
The circuit breaker features a three-phase common box structure, consisting of several components, including an operating mechanism, a conductive circuit, an insulating system, a sealing element, and a shell. These components work together to ensure the efficient and safe operation of the circuit breaker.
Additionally, the ZW20-12(F) breaker is equipped with intelligent remote terminals that support various distribution automation applications, allowing for enhanced control and monitoring capabilities.
Moreover, there is another variant of this circuit breaker called ZW20-12(Z), which is an outdoor intelligent high voltage AC true air breaker. It incorporates a GSM short message function, enabling communication via text messages.
Furthermore, the ZW20-12(F) breaker can be combined with a dividing switch controller to form an outdoor dividing high voltage AC true air breaker system. This combination enhances the functionality and versatility of the circuit breaker, providing more comprehensive control and protection capabilities.
The GW9 outdoor disconnector switch is a new type of disconnecting switch designed and manufactured by synthesizing the domestic experience of existing disconnecting switch production and foreign advanced technology.
The disconnector switch is composed of base, pillar insulator, conductive part and organ part. It has the advantages of simple structure, less maintenance, high level of disconnection, high reliability, etc. It reaches the level of similar products at home and abroad.
Moreover, there is another type of disconnecting switch called GW9-12(W), with single-stage structure is suitable for power system with frequency 50Hz and line voltage 10kv.
It is suitable for use in power systems with a frequency of 50Hz and a line voltage of 10kv, and is used for closing and dividing lines when there is voltage and no load, and the antifouling isolating switches can meet the requirements of users in heavily fouled areas, and can effectively solve the problem of fouling flash that occurs when the isolating switches are in operation.
Double effect of using when GW9-10 series isolator swich can be used with the vacuum circuit breakers.
Characteristics of the controller:
1.It can be equipped with a 485/232 communication interface, or achieve long-distance monitoring through fiber optics or wireless communication. After reclosing, it has an acceleration function: when the switch recloses due to a permanent fault.
2.When a permanent fault occurs, it automatically accelerates to trip.
3.Remote control/manual reclosing with acceleration to trip, and reclosing interlock: After the user repairs the line and restores power, if they forget to remove the grounding knife switch, it should accelerate to trip.
4.The delay time for reclosing can be adjusted for all three attempts.
5.The trip/reclosing circuit is designed to prevent false operation and has anti-reclosing functionality.
6.Zero-sequence current can differentiate between faults inside and outside the zone.
7.The remote control trip/reclosing adopts a design to prevent false operation.
Collocation:
The relation between the outdoor vacuum circuit breaker and the outdoor high-voltage disconnect isolator lies in their complementary roles in the electrical system:
Circuit Interruption: The vacuum circuit breaker is responsible for interrupting the electrical circuit during normal operation or in the event of a fault. It acts as the primary means of breaking the current flow. In contrast, the disconnect isolator is used for isolating the circuit from the power source during maintenance or repair activities. It provides an additional layer of safety by physically opening the circuit.
Coordination: In high-voltage power systems, the vacuum circuit breaker and the disconnect isolator are often coordinated to work together. The circuit breaker is responsible for detecting faults and tripping to interrupt the current flow, while the disconnect isolator is used to physically isolate the circuit and provide a visible indication of the disconnection.
Safety and Maintenance: The disconnect isolator plays a crucial role in ensuring the safety of maintenance personnel. Before any maintenance work can be performed on the electrical equipment, the disconnect isolator is operated to open the circuit and provide a visible air gap. This ensures that the equipment is de-energized and safe to work on. The vacuum circuit breaker, on the other hand, protects the system during normal operation and in the event of faults.
Feature:
1.Strong ability to withstand pollution, high and low temperature resistance, and no combustion or explosion hazards.
2.Fully enclosed structure, filled with SF6 gas in the enclosure, excellent sealing performance, suitable for use in high-temperature and humid areas.
3.Equipped with a current transformer (CT) for outputting current to the intelligent controller for information analysis. The transformation ratio is adjustable, and the connection terminals can be connected to the corresponding terminal sockets.
4.The operating mechanism is innovative and simple, with a small size and light weight, ensuring safe and reliable operation.
5.The outer casing has conspicuous indicators for "energy storage," "open," and "close" states.
Application:
1.Mining Operations: The ZW20 switch is used in mining operations to control and protect electrical equipment and power distribution networks in underground and surface mines.
2.Data Centers: The switch is utilized in data centers to ensure reliable power distribution and protection for critical IT infrastructure. It enables efficient load switching and safeguards against electrical faults.
3.Oil and Gas Industry: The ZW20 switch finds application in the oil and gas industry for controlling and protecting electrical equipment in refineries, pipelines, and offshore platforms.
4.Infrastructure Projects: The switch is used in various infrastructure projects, such as airports, seaports, and stadiums, for reliable power distribution and protection.
5.Water and Wastewater Treatment Facilities: The ZW20 switch is employed in water and wastewater treatment facilities to control and protect electrical equipment in pumping stations, treatment plants, and distribution networks.
Condition:
1.Ambient air temperature: -40°C to +70°C.
2.Altitude: Not exceeding 3000m above sea level.
3.The surrounding air may be contaminated with dust, smoke, corrosive gases, steam, or salt mist. Pollution degree: Level IV.
4.Wind speed should not exceed 34m/s (equivalent to a pressure of 700Pa on the cylindrical surface).
5.Vibrations or seismic activity from external switchgear and control equipment can be neglected.
6.The amplitude of electromagnetic interference induced in the secondary system does not exceed 1.6kV.
Technical Parameters:
ZW20-12(F)
Serial No. | Parameter | Unit | Data | ||||||||
1 | Rated voltage | kV | 12 | ||||||||
2 | Insulation level of Fracture | Working Frequency(Dry Test/Wet Test) | 48 | ||||||||
Voltage of Lightning Shock Test (Peak) | 85 | ||||||||||
3 | Level of Insulation to ground/phase to phase | Working Frequency | Dry Test | 42 | |||||||
Wet Test | 34 | ||||||||||
Voltage of Lightning Shock Test (Peak) | 75 | ||||||||||
4 | Rated Current | A | 630, 1250 | ||||||||
5 | Rated short-circuit breaking current | kA | 16, 20, 25 | ||||||||
6 | Rated short-circuit breaking current breaking times | times | 30 | ||||||||
7 | Rated short-time withstanding current | kA | 16, 20, 25 | ||||||||
8 | Rated short-circuit duration | S | 4 | ||||||||
9 | Rated short-circuit closing current (peak) | kA | 40, 50, 63 | ||||||||
10 | Rated peak withstanding current | kA | 40, 50, 63 | ||||||||
11 | Mechanical lifetime | times | over 1000 | ||||||||
12 | Opening rated current | 10000 | |||||||||
13 | Net Weight | kg | 180 |
GW9-10
Serial No. | Parameter | Unit | Data | |||||||||
1 | Rated Voltage | kV | 12 | |||||||||
2 | Rated Current | Model No. | (H)GW9-12(W)/630-20 | A | 630 | |||||||
(H)GW9-12(W)/1000-20 | 1000 | |||||||||||
(H)GW9-12(W)/1250-31.5 | 1250 | |||||||||||
3 | 4s Short-time withstanding current | Model No. | (H)GW9-12(W)/630-20 | kA | 50 | |||||||
(H)GW9-12(W)/1000-20 | 50 | |||||||||||
(H)GW9-12(W)/1250-31.5 | 80 | |||||||||||
4 | Rated Insulation Level | Lightning surge withstand voltage(peak) | Polar-to-Earth (Positive & Negative) | kV | 75 | |||||||
Interfracture (Positive & Negative) | 85 | |||||||||||
Industrial frequency withstand voltage (1 min) (Effective value) | Dry Test/Wet Test | Polar-to-Earth | 42(Dry) 34(Wet) | |||||||||
Interfracture | 48(Dry) | |||||||||||
48(Dry) | ||||||||||||
48(Dry) 40(Wet) | ||||||||||||
5 | Main Circuit Resistance | μ Ω | 630 | |||||||||
1000 | ||||||||||||
1250 | ||||||||||||
6 | Mechanical Life Time | times | 50 | |||||||||
50 | ||||||||||||
80 |
Introduction of GW9 series outdoor disconnector switch►
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Intelligent Boundary Load Switch GB1984-2003 GB1985-2014 Standard With GW9 High Voltage Disconnect Switch Images |