• 3.6kV-24kVThe Indoor metal-clad withdrawable switchgear
3.6kV-24kVThe Indoor metal-clad withdrawable switchgear
discuss personally
Model
KYN-12/2000-15
KYN-24/4000-40
KYN-7.2/1600-25
KYN-3.6/1250-25
Basic info
Brand ROCKWILL
Model NO. 3.6KV-24KVThe Indoor metal-clad withdrawable switchgea
Rated voltage 12kV
Series KYN
Product Detail

Description:

The Indoor metal-clad withdrawable switchgear(hereinafter short as switchgear) is a complete power distribution device for 3.6~40.5kV, 3-phase AC 50/60Hz,single-bus and single-bus sectionalized system.

It is mainly used for power transmission of middle/small generators in power plants; power receiving, transmission for substations in power distribution and power system of factories, mines and enterprises, and starting of large high-voltage motor, etc. so as to control, protect and monitor the system. The medium voltage switchgear meets IEC298,GB3906-91. In addition to be used with domestic VS1 vacuum circuit breaker, it can also be used with VD4 from ABB, 3AH5 from Siemens domestic ZN65A, and VB2 from GE, etc. It is truly a power distribution device with good performance.

In order to meet the requirements for wall mounting and front-end maintenance, the medium voltage switchgear is equipped with a special current transformer, so that the operator can maintain and inspect it in front of the cubicle.

  • Enclosures able to withstand internal arcing.

  • 3 or 4 sides internal arc protection IAC: A-FL and A-FLR. Internal arc withstand: 12.5 kA 1s, 16 kA 1s and 20 kA 1s.

  • Mechanical and electrical interlocks, to prevent incorrect operations.

  • 100% factory-tested without the need for further tests on site.

  • Easy upgraded to meet your need and adapted to the extension of your installations.

  • Integration in factory-built outdoor substations for which the SM6 is particularly well designed.

  • Intelligent, connectable components like SC110 and TH110 provide continuous information about the health of your electrical installations, enabling asset management optimization through preventive maintenance.

Technical parameters:

image.png

Product detail:


企业微信截图_17211091605892.png

企业微信截图_17211092656460.png

企业微信截图_17211092834133.png

What is the working principle of the indoor metal armored pull-out  switchgear?

Circuit Control and Protection:

  • Circuit Control:

  • Circuit breakers control the opening and closing of circuits. The working principle of circuit breakers is based on electromagnetic induction and thermal effects. During normal operation, current flows through the contacts of the circuit breaker, which remain closed. When an overload condition occurs, and the current exceeds the rated current of the circuit breaker, the internal thermal trip mechanism will open the contacts due to the heat generated by the current, thereby interrupting the circuit.

  • In the event of a short circuit, the high short-circuit current will cause the internal electromagnetic trip mechanism to act instantly, quickly opening the contacts and protecting electrical equipment and lines from damage caused by excessive current.

Protection Devices:

  • Other protective devices, such as overcurrent relays and ground fault protection relays, are also equipped. These protection devices continuously monitor parameters such as current and voltage in the circuit. If any abnormality is detected, they send a trip signal to the circuit breaker, ensuring the safety of the circuit.

Power Distribution:

  • Power is introduced into the switchgear's busbar compartment via busbars. The busbars distribute the power to the circuit breakers in each branch. The circuit breakers then transmit the power to different load circuits, enabling the control of power supply to multiple loads. For example, in a building's power distribution system, medium-voltage power from a substation first enters the busbar of the switchgear and is then distributed to the distribution panels on each floor through circuit breakers, providing power to lighting, outlets, and other equipment on those floors.

Interlocking Functions:

  • To ensure operational safety, the switchgear is equipped with various interlocking mechanisms. For example:

  • The trolley can only be moved from the service position to the test or maintenance position when the circuit breaker is in the open (off) state.

  • There is an interlock between the grounding switch and the circuit breaker. When the grounding switch is in the closed (on) position, the circuit breaker cannot be closed, and vice versa.

  • These interlocking devices effectively prevent operator errors and avoid dangerous operations such as switching under load or closing the grounding switch while the circuit is energized.



Know your supplier
ROCKWILL
Rockwill Electric Group Global Manufacturer of High voltage and medium-voltage power equipment and smart grid solutions. Headquartered in Wenzhou, China. Serving 100+ countries with quality, innovation, and trust. What We Offer: • HV-MV switchgear (VCB, SF₆ circuit breakers, RMU, GIS) • Distribution transformers and substations • Smart grid and monitoring systems • Solar, wind, EV charging, and energy storage solutions • EPC turnkey power projects Certified: ISO 9001 / ISO 14001 / ISO 45001
Main Categories
High voltage
Business Type
Design/Manufacture/Sales
Highest Annual Export (USD)
$150,000,000
Professional Experience
16 years
Workplace
108000m²m²
占位
占位
Related Products
Related Knowledges
Analysis of Transformer Capacity, Load Rate and Number of Units Selection Issues
Analysis of Transformer Capacity, Load Rate and Number of Units Selection Issues
The safe and economical operation of power transformers is related to the safety, economy, stability, and reliability of the operations of various industries. The limitations of conditions such as the investment economic indicators for its selection, the economic benefits of maintenance and operation, and the adaptability in the new environment (access of distributed power sources, configuration of energy storage, etc.) make it impossible to include comprehensive factors in other aspects.The cap
Leon
07/17/2025
Analysis of the Impact of Immersion on the Performance of Low-Voltage Current Transformers
Analysis of the Impact of Immersion on the Performance of Low-Voltage Current Transformers
1 IntroductionLow - voltage current transformers for metering, with a through - core type epoxy resin structure, are widely used in distribution transformer areas and for small - to - medium - sized industrial and commercial electricity consumption. As a range expander for electric energy metering, their performance directly relates to electricity consumption safety and the accuracy of users' trade calculations. Studying long - term immersion's impact on these transformers is practically signifi
Felix Spark
07/17/2025
What is reactive power measurement?
What is reactive power measurement?
The power which exists in the circuit when the voltage and current are out of phase to each other, such type of power is known as the reactive power. The formula measures the reactive power in the circuitReactive Power Measurement & VarmetersReactive power measurement is critical as it indicates circuit power loss: low reactive power worsens load power factor, increasing system losses. Varmeters (volt-ampere reactive meters) measure reactive power and are categorized by circuit phases:Single
Edwiin
07/17/2025
How to Design and Install a Solar PV System?
How to Design and Install a Solar PV System?
Design and Installation of Solar PV SystemsModern society relies on energy for daily needs like industry, heating, transport, and agriculture, mostly met by non-renewable sources (coal, oil, gas). However, these cause environmental harm, are unevenly distributed, and face price volatility due to limited reserves—driving demand for renewable energy.Solar energy, abundant and capable of meeting global needs, stands out. Standalone PV systems (Fig 1) offer energy independence from utilities.
Edwiin
07/17/2025
What are the common faults that occur when low-voltage current transformers are combined with other power equipment?
What are the common faults that occur when low-voltage current transformers are combined with other power equipment?
Low-voltage current transformers, as indispensable measurement and protection devices in power systems, often encounter various faults when used in combination with other power equipment due to environmental factors, equipment linkage issues, and improper installation and maintenance. These faults not only affect the normal operation of power equipment but may also endanger personal safety. Therefore, it is necessary to gain an in-depth understanding of fault types, judgment methods, and prevent
Felix Spark
07/17/2025
What are the monitoring methods and future development trends of low-voltage voltage transformers?
What are the monitoring methods and future development trends of low-voltage voltage transformers?
With the continuous advancement of smart grid technology, intelligent monitoring systems are playing an increasingly important role in preventing and addressing faults in voltage transformers. These modern intelligent monitoring systems can collect key parameters from voltage transformers in real time—such as partial discharge levels, temperature, and oil quality—and use data analysis algorithms to assess the health status of the equipment, enabling early fault warnings and precise l
Echo
07/16/2025
×
Inquiry
Download
IEE-Business is dedicated to serving the personnel in the global power industry.
Join IEE-Business, not only can you discover power equipment and power knowledge, but also canhnd like - minded friends!