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Dead Tank SF6 Gas Circuit Breaker Original Manufacturer-145kV to 170kV

  • Dead Tank SF6 Gas Circuit Breaker Original Manufacturer-145kV to 170kV

Key attributes

Brand ROCKWILL
Model NO. Dead Tank SF6 Gas Circuit Breaker Original Manufacturer-145kV to 170kV
Rated voltage 170kV
Rated normal current 1600A
Rated frequency 50/60Hz
Rated short circuit breaking current 25kA
Series RHD

Description

The 145kV to 170kV  dead tank SF6 circuit breaker is a high-reliability high-voltage device designed to ensure stable operation of power systems. It adopts a dead tank structure, with live parts sealed in a metal casing filled with SF6 gas, ensuring rapid arc extinction and efficient fault current interruption to safeguard grid safety.

The low-center-of-gravity design gives it strong seismic resistance, adapting to harsh environments such as extreme climates. The equipment integrates bushings and current transformers to support multi-functional control such as measurement and protection.

With long mechanical/electrical life and a sealed structure, maintenance frequency is significantly reduced. Equipped with anti-misoperation interlocking devices, it ensures the safety of personnel and equipment. Widely used in power, metallurgy, transportation and other fields, it performs excellently in medium and high voltage scenarios.

Product Showcase Video

Product Advantages

  • Reliable & Maintenance-Free Mechanism: Spring-operated mechanism ensures stable operation and maintenance-free performance; mechanical life of 10,000 operations and electrical life of 20 operations (E2-M2-C2 class).

  • Superior Interrupting & Insulation Performance: Self-blast puffer hybrid interrupter chamber delivers strong interrupting capability and high continuous current rating; excellent insulation with low partial discharge, and 100% lightning impulse tested before delivery to eliminate insulation risks.

  • High-Quality Core Components: Insulators with proven reliability, strong corrosion resistance, and capable of withstanding magnitude-9 earthquakes, suitable for harsh environments.

  • Industry-Leading Technical Parameters: All parameters meet the highest industry standards; products and inspection criteria are recognized by State Grid Corporation of China and China Southern Power Grid.

  • Advanced R&D & Design: Leveraging finite element analysis, FMEA, and other advanced tools to achieve modular design, ensuring safety, stability, and ease of maintenance.

  • Stringent Quality Control: Supported by a premium supply chain and comprehensive internal management system, with end-to-end strict process control to guarantee long-term reliability.

Operation Mechanism

The enclosure has been verified to meet IP55 (dust-proof and water-jet resistant) and IK10 (impact-resistant) protection ratings, and is designed to operate across a wide temperature range from -40℃ to 55℃.

The cabinet adopts an integrated bending technique, offering an artistic appearance, high structural strength, and excellent impermeability. All internal components are sourced from internationally renowned brands, ensuring reliable quality and long-term stable performance.

Operation Mechanism

Technology Parameters

N Item Unit 145 kV 170 kV
1. Rated maximum voltage kV 145 170
2. Rated maximum current A 2500~4000 2500~4000
3. Rated frequency Hz 50/60 50/60
4. Lightning impulse withstand voltage kV 650/750 750/860
5. Rated short‑circuit breaking current kA 31.5~50 31.5~50
6. Rated peak withstand current kA 100~125 100~125
7. Creepage distance mm/kV 25~31 25~31
8. Partial discharge pC ≤10 ≤10
9. Opening time ms ≤30 ≤30
10 Alarm/blocking pressure MPa 0.45/0.40 0.55/0.50
11 Gas moisture content ppm(v) ≤150 ≤150
12 Heater voltage V AC220 AC220
13 Voltage of energy‑store motor V DC110/220 DC110/220
14 1min Power frequency withstand voltage kV 275/315 325/365
15 First open pole factor   1.5 1.5
16 Rated short‑circuit duration s 3 3
17 Rated cable/line charging breaking current A 160~2100 160~250
18 Rated making current (peak) kA 100~125 100~125
19 Operation sequence   O‑0.3s‑CO‑180s‑CO O‑0.3s‑CO‑180s‑CO
20 Breaking time ms ≤60 ≤60
21 Closing time ms ≤100 ≤100
22 Rated SF₆ gas pressure MPa 0.5~0.6 0.6~0.7
23 SF₆ annual gas leakage rate % ≤0.5 ≤0.5
24 Mechanical life times 10000 10000
25 Voltage of control circuit V DC110/220 DC110/220
26 Applied standards   GB/T 1984 / IEC 62271‑100

RHD-145 Dead-Tank SF₆ Gas Circuit Breaker Diagram

Dead Tank SF6 Circuit Breaker Original Manufacturer-115kV to 170kV RHD-170 Dead-Tank SF₆ Gas Circuit Breaker Diagram

Dead Tank SF6 Circuit Breaker Original Manufacturer-115kV to 170kV

Environmental Conditions

Item Value
Max ambient air temperature +40°C
Max 24h average ambient air temperature +35°C
Min ambient air temperature -25°C
Altitude ≤ 1000 m
Max relative humidity (24h average) ≤ 95%
Max relative humidity (1 month average) ≤ 90%
Max water vapor pressure (24h average) 2.2 kPa
Max water vapor pressure (1 month average) 1.8 kPa
Solar radiation ≤ 1000 W/m²
Pollution level II

Documentation Resource Library Dead Tank Circuit Breaker

RHD-145 SF6 Gas Dead tank Circuit Breaker
Public.
RHD-145 SF6 Gas Dead tank Circuit Breaker
Drawings
English
RHD-170 SF6 Gas Dead tank Circuit Breaker FLYER
Public.
RHD-170 SF6 Gas Dead tank Circuit Breaker FLYER
Brochure
English
Rockwill Electric Group Profile
Public.
Rockwill Electric Group Profile
Brochure
English
RHD-145 SF6 Gas Dead tank Circuit Breaker FLYER
Public.
RHD-145 SF6 Gas Dead tank Circuit Breaker FLYER
Brochure
English
138kV Dead‑Tank Circuit Breaker Technical Specification | IEEE & ANSI Compliant
Restricted.
138kV Dead‑Tank Circuit Breaker Technical Specification | IEEE & ANSI Compliant
Technical Data
English
PDF
PDF
138kV Dead-Tank Circuit Breaker Technical Specification | IEC Compliant
Restricted.
138kV Dead-Tank Circuit Breaker Technical Specification | IEC Compliant
Technical Data
Chinese
PDF
PDF
RHB Hybird Switchgear Catalog
Restricted.
RHB Hybird Switchgear Catalog
Selection Guide
English
PDF
PDF

FAQ for Dead Tank Circuit Breaker

What applications are a live tank breaker and a dead tank breaker each best suited for?

 Live tank breakers are well-suited for outdoor high-voltage distribution with a dispersed layout. Dead tank breakers flexibly adapt to both indoor and outdoor applications, especially in space-constrained substations or where compact installation is required.

What are the characteristics of high-voltage vacuum circuit breakers ?
  1. Special Arc-Extinguishing Chamber: Needs larger volume (tens of mm electrode spacing), high-purity copper electrodes, and stricter vacuum (10⁻⁶~10⁻⁸Pa) to meet enhanced insulation/arc tolerance at high voltage. Optimized electrode shapes suppress arc diffusion.
  2. Breaking Capacity & Lifespan: Handles 25kA~63kA short-circuits via multi-break or magnetic arc tech. Mechanical lifespan reaches 5,000~10,000 cycles, suiting frequent operations (e.g., new energy grids).
  3. Reinforced Insulation: Internal insulation relies on high vacuum; external uses large-diameter ceramic/composite shells (≥25mm/kV creepage for 252kV) with extra skirts for high altitudes (>3000m).
  4. Eco & O&M Advantages: No SF₆, uses recyclable materials. O&M only needs checking mechanisms/shells, cycle 1~2 years, cost 30%~50% lower than SF₆ breakers.
What is the fundamental difference between a vacuum circuit breaker (VCB) and an SF₆ circuit breaker?

The core difference is the arc-extinguishing medium. A VCB uses a high vacuum inside a sealed ceramic or glass envelope — the vacuum rapidly diffuses ions and metal vapor after current zero, achieving arc extinction in <10 ms. An SF₆ CB uses sulfur hexafluoride gas, which has strong electron affinity — it captures free electrons to form heavy negative ions, quickly depleting the arc channel's conductivity.

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