• Indoor high-voltage load break switch with fuse
Indoor high-voltage load break switch with fuse
discuss personally
Model
FN3-6/400
Basic info
Brand ROCKWILL
Model NO. Indoor high-voltage load break switch with fuse
Rated voltage 6kV
Rated normal current 400A
Rated frequency 50/60Hz
Series FN
Product Detail

Product Overview

The FN3 - 12, FN3 - 12R, and FN3 - 12R/S load break switches are high - voltage electrical appliances installed indoors. They are suitable for AC 50Hz, 6kV or 10kV networks to break and close load and overload currents. They can also be used as switches for breaking and closing no - load long lines, no - load transformers, and capacitors. The load break switches with RN3 - type fuses (FN3 - 12R, FN3 - 12R/S) can cut off short circuits and be used as protection switches.This load break switch can be operated with CS3 - type and CS2 - type manual operating mechanisms.

Key Features

  • Multi - scenario Current Control:Suitable for 50Hz, 6kV/10kV AC networks. It can stably break and close load and overload currents, and also support the switching operations of no - load long lines, no - load transformers, and capacitors, covering multiple operation and maintenance scenarios of the distribution network.

  • Extended Short - circuit Protection:After being equipped with an RN3 - type fuse (such as the FN3 - 12R series), it has the ability to cut off short - circuit currents. It can be used as a protection switch to provide short - circuit fault protection for equipment and lines, simplifying the protection configuration of the distribution network.

  • Installation Scenario Adaptation:With an indoor installation design and a compact structure, it is suitable for typical indoor power distribution facilities such as ring main units and box - type substations, meeting the construction and renovation needs of indoor power distribution systems in urban distribution networks, industrial and mining enterprises, etc.

  • Operating Mechanism Compatibility:It supports CS3 and CS2 - type manual operating mechanisms, adapts to different operating habits and existing equipment support systems, reduces the cost of renovation and replacement, and improves the flexibility of on - site operation and maintenance.

  • Mature Technical Architecture:Iterated based on the classic FN3 series, it has stable arc - extinguishing performance, a long mechanical service life, and high long - term operation reliability, reducing the frequency of equipment failures and operation and maintenance workload.

Technical Parameters

Operating Environmental Conditions

  • Altitude: Not exceeding 1000 meters;

  • Ambient air temperature: Not higher than +40°C and not lower than -10°C;

  • Indoor places with air relative humidity not exceeding 90% (when the temperature is +25°C);

  • Environments free from conductive dust;

  • Environments free from corrosive gases that damage metals and insulation;

  • Places without severe vibration and impact;

  • Environments without fire and explosion hazards.

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
What should be noted when choosing a current transformer for a 10kV station transformer circuit?
What should be noted when choosing a current transformer for a 10kV station transformer circuit?
Practical Experience Sharing from an Electrical Engineer in the FieldBy James, 10 Years in the Electrical IndustryHi everyone, I'm James, and I've been working in the electrical industry for 10 years.From early involvement in substation design and equipment selection, to later taking charge of relay protection and automation system commissioning for entire projects, one of the most frequently used devices in my work has been the current transformer (CT).Recently, a friend who's just starting out
James
07/04/2025
What are the application and improvement directions of current transformers in power systems?
What are the application and improvement directions of current transformers in power systems?
As a front - line power operation and maintenance worker, I deal with current transformers (CTs) daily. Having witnessed the popularization of new photoelectric CTs and tackled numerous faults, I’ve gained practical insights into their application and testing improvements. Below, I’ll share my on - site experience with new CTs in power systems, aiming for a balance between professionalism and practicality.1. Application of New CTs in Power Systems1.1 CTs in Power SystemsMost new CTs
Echo
07/04/2025
What are the troubleshooting methods for current transformers?
What are the troubleshooting methods for current transformers?
As a front - line fault maintenance worker, I deal with current transformers (CTs) daily. A CT’s secondary winding in operation must never open - circuit! Once open - circuited, the secondary current and demagnetizing potential vanish. All primary - side magnetic potential then becomes the iron core’s exciting potential, sharply increasing its magnetic flux density. High voltage on the secondary side will endanger safety anytime.Despite strict power operation regulations, user electr
Felix Spark
07/04/2025
What are the criteria for selection of distribution transformer?
What are the criteria for selection of distribution transformer?
Transformer Selection Criteria: Essential Factors for Optimal PerformanceSelecting the appropriate transformer is critical for ensuring power distribution reliability across industrial, commercial, and residential systems. This process requires meticulous evaluation of load dynamics, environmental constraints, and regulatory standards. Below we outline key selection criteria to guide engineers and designers in making informed decisions.1. Maximum Demand AssessmentThe transformer’s capacity (kVA)
Master Electrician
07/03/2025
What are the causes of current transformer faults and the countermeasures for faults?
What are the causes of current transformer faults and the countermeasures for faults?
As a front - line maintenance technician, I deal with current transformers (CTs) daily. CTs convert high - magnitude primary current to low - magnitude secondary current for substation/line protection and measurement, operating in series long - term. However, they face faults from external (unbalanced loads, wrong wiring, etc.) and internal (insulation defects) issues. These faults, like secondary open - circuits or insulation breakdown, harm measurement accuracy, protection operation, and grid
Felix Spark
07/03/2025
Testing of Optical Current Transformers (OCT)
Testing of Optical Current Transformers (OCT)
With the development of modern economy and science and technology, photoelectric current transformers (PECTs) have fully transitioned from the trial operation stage to practical application. As a front - line testing personnel, I deeply feel their importance in the power system during daily work. I also realize the necessity of conducting in - depth research on their testing systems and calibration methods. This not only promotes the engineering application of PECTs but also enables the accurate
Oliver Watts
07/03/2025
×
Inquiry
Download
Experts Electrical is dedicated to serving the personnel in the global power industry.
Join Experts Electrical, not only can you discover power equipment and power knowledge, but also canhnd like - minded friends!