• Large-Capacity High-Speed Current-Limiting Circuit Breaker
Large-Capacity High-Speed Current-Limiting Circuit Breaker
discuss personally
Model
DGK-24/100
Basic info
Brand RW Energy
Model NO. Large-Capacity High-Speed Current-Limiting Circuit Breaker
Rated voltage 24kV
Rated normal current 100A
Rated frequency 50/60Hz
Series DGK
Product Detail

Product Introduction

  • The DGK is mainly applied in low-current systems, with a rated current of <630A and a rated breaking current of ≤200kA.

  • The DGK can complete current limiting and interrupt short-circuit current within 10ms, ensuring that the actual current present in the fault circuit is only 15~50% of the expected short-circuit current.

  • TXB3 = DGK + switchgear cabinets with different configurations. The TXB3 is assembled by connecting the DGK in series with general-purpose switchgear such as vacuum circuit breakers, load switches, or disconnectors. For normal switching operations and operations involving load current or overload current, these are performed via the switchgear (load switches or circuit breakers) integrated in the TXB3 device.

  • This product not only achieves low-cost interruption of short-circuit current but also eliminates the need to upgrade the dynamic and thermal stability parameters of relevant electrical equipment in branch circuits. Thus, it realizes rational circuit design and reduces the investment cost of project equipment.

Product Features and Benefits

  • Fast breaking speed (high speed), the whole breaking time is less than 10ms

  • The opening process has obvious current limiting characteristics (current limiting)

  • It is mainly used in small rated current systems

  • According to the needs of the project, the non-standard cabinet type is assembled, and there are a variety of configuration schemes

  • Reduce the cost of a large number of substation replacements of switches and other main equipment

Main technical parameters

serial number

Parameter Name

unit

Technical parameters

1

Rated voltage

kV

3.6~24

2

Rated current

A

6.3~500

3

Rated expected short-circuit breaking current

kA

20-120

4

Current limit coefficient = cut-off current / expected short-circuit current peak

%

15~50

5

Insulation level

Power frequency withstand pressure

       kV/1min

42/48

Lightning impact withstand pressure

            kV

75/85kV

Product Usage

  • Fast short-circuit protection of power branch bus in hydropower plants, limiting and quickly interrupting high-amplitude short-circuit current, avoiding the use of expensive generator circuit breakers, and improving technical economy

  • Large synchronous motor outlet

  • For fast breaking and rapid isolation of fault points in feeders prone to short circuit faults

 

Know your supplier
RW Energy
Zhejiang Rockwell Energy Technology Co., Ltd. is an international enterprise specializing in the research, development and manufacturing of recloser controllers, power quality management, power monitoring systems and other high-end power equipment. In today's critical period of global energy transition and power system upgrading, the company has gathered a group of top talents in the fields of power engineering, automation control, software development, etc., who carry the enthusiasm and persistence for the power business, and are committed to overcoming the complex problems in the power system, and promoting the intelligent development of the power industry with innovative technology. Mission: To make global electricity smarter, more reliable and more efficient with innovative technology. Vision: To be the leader in global power intelligence.
Main Categories
High Voltage Electrical Apparatus/New energy/Tester
Business Type
Design/Manufacture/Sales
Highest Annual Export (USD)
$100000000
Professional Experience
12 years
Workplace
30000m²
占位
占位
Related Products
Related Knowledges
Withstand voltage test of high-voltage cables
Withstand voltage test of high-voltage cables
Withstand voltage test is an insulation test, but it is a destructive test that can reveal insulation defects difficult to detect in non-destructive testing.The test cycle for high-voltage cables is three years, and it must be conducted after non-destructive tests. In other words, the withstand voltage test is performed only after all non-destructive tests have been passed.Most high-voltage cables used today are cross-linked polyethylene (XLPE) cables, which can have large cross-sections and cov
Oliver Watts
09/03/2025
Analysis of Abnormal Causes of High-Voltage Cable Grounding Circulation and Typical Cases
Analysis of Abnormal Causes of High-Voltage Cable Grounding Circulation and Typical Cases
I. Introduction to Cable Grounding Loop CurrentCables rated 110 kV and above use a single-core structure. The alternating magnetic field generated by the operating current induces a voltage on the metallic sheath. If the sheath forms a closed circuit through the earth, a grounding loop current will flow on the metallic sheath. Excessive grounding loop current (loop current exceeding 50 A, more than 20% of the load current, or a ratio of maximum-to-minimum phase current greater than 3) not only a
Felix Spark
09/03/2025
Considerations and Recommendations for Flame-Retardant Selection of High-Voltage Cables
Considerations and Recommendations for Flame-Retardant Selection of High-Voltage Cables
1.Flame-Retardant Cable Classification StandardsThe flame-retardant standard system is divided into two main categories. The first category follows the "Classification of Burning Behavior for Electric and Optical Fiber Cables" GB 31247. Cables complying with this standard system are widely used in densely populated areas such as high-speed railways and subways. This standard imposes strict requirements on parameters such as smoke density, heat release, and total smoke production, and cables typi
James
09/03/2025
Repair of high-voltage cable metallic sheaths
Repair of high-voltage cable metallic sheaths
I. Functions of Metallic Sheaths and Necessity of RepairThe metallic sheath of high-voltage cables is a metal shielding structure laid outside the insulation layer, including types such as lead sheaths, aluminum sheaths, and steel wire armor. Its core functions include mechanical protection (resisting external impact and compression), electrochemical corrosion protection (isolating moisture and soil pollutants), electromagnetic shielding (reducing electromagnetic interference to the environment)
Felix Spark
09/03/2025
What factors need to be considered when designing a transformer?
What factors need to be considered when designing a transformer?
Transformer design is a complex process that requires consideration of multiple factors to ensure safe and efficient operation. In addition, compliance with international and local regulations is essential to guarantee that transformers meet safety and performance standards. Below are key factors to consider in transformer design and the relevant regulations to follow:Transformer Design Factors: Voltage and Frequency: Determine the input and output voltage levels and the operating frequency. The
Vziman
09/02/2025
What failure modes are possible in a transformer? How to identify and fix these failures?
What failure modes are possible in a transformer? How to identify and fix these failures?
Transformers are critical components in power systems, and various failure modes can affect their operation. Timely identification and resolution of these failure modes are essential to prevent costly downtime and ensure system reliability. Below are some common transformer failure modes, along with methods to identify and address them: Insulation FailureIdentification: Insulation failure leads to decreased insulation resistance, which can be detected through insulation resistance testing (megge
Edwiin
09/02/2025
×
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!