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KYN61-40.5 3 phase indoor medium voltage metal clad electrical switchgear
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Accueil Appareillage électrique Appareils de commutation à enveloppe métallique KYN61-40.5(Z) 3-Phase Indoor Medium Voltage Metal-Clad Switchgear
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KYN61-40.5(Z) 3-Phase Indoor Medium Voltage Metal-Clad Switchgear

Engineered for three-phase AC systems, it serves as a critical node for power distribution, fault protection, and system control. The design complies with GB3906-1991, GB/T11022-1999, DL/T404-1997, and draws upon IEC 62271-200 for structural and safety standards.

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Catégories : Appareillage électrique, Appareils de commutation à enveloppe métallique
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Description

What Is KYN61-40.5(Z) Metal-Clad Switchgear?

The KYN61-40.5(Z) is a fully enclosed, metal-clad, withdrawable switchgear unit designed for indoor medium-voltage power distribution systems. Rated for 40.5kV and suitable for 50Hz AC, this switchgear is ideal for utility substations, power plants, and heavy industrial facilities that demand high safety, modularity, and long-term reliability.

Model meaning

metal-clad switchgear cabinet showing compartmentalized structure

Key Advantages of TRONKI KYN61-40.5(Z)

High Safety and Arc Protection

  • Fully compartmentalized metal-clad design ensures that faults are isolated, minimizing the risk of arc flash propagation.

  • Mechanical interlocking and “five-prevention” features guard against misoperation, enhancing personnel safety.

Modular Withdrawable Construction

  • Vacuum circuit breaker (VCB) units are mounted on handcarts, allowing for quick replacement and maintenance without shutting down the entire system.

  • Le screw-nut drive mechanism enables smooth insertion and withdrawal, preventing mechanical damage during operation.

Environmental and Mechanical Robustness

  • Suitable for ambient temperatures from -15°C to +40°C, with relative humidity up to 95%.

  • Withstands earthquakes up to intensity 8 and altitudes below 2000m, making it ideal for harsh environments.

Smart Space Utilization

  • Spacious cable chamber accommodates multiple cable terminations, and the optional grounding switch allows for fast and safe earthing.

Maintenance-Friendly and Smart Monitoring Options

  • All operations, including breaker insertion and isolation, can be done with the cabinet doors closed.

  • Optional support for digital diagnostics and remote monitoring, reducing onsite labor and enhancing predictive maintenance.

Main technical parameters of vacuum circuit breaker

Nom

Unité

Numerical value

Tension nominale

kV

40.5

Fréquence nominale

Hz

50

Rated power frequency withstand voltage

kV

95/1 min

Rated lightning impulse withstand voltage

kV

185

Courant nominal

A

1250 1600 2000

Rated Short-time withstand current

kA

20 25 31.5

Rated short-time on-off current

kA

20 25 31.5

Rated peak withstand current

kA

50 63 80

Rated short continuous current

ms

4

Opening Time

ms

30 ≤ t ≤  60

Closing Time

s

50 ≤ t ≤ 100

Rated short-circuit breaking current times

Third

20

Durée de vie mécanique

Third

10000

Protection level

 

IP43

Main technical parameters of vacuum switchgear

Nom Unité Numerical value
Tension nominale kV 40.5
Courant nominal A 1250 1600 2000
Fréquence nominale Hz 50
Courant nominal de courte durée kA 20 25 31.5
Courant de résistance nominal de crête kA 50 63 80
Rated power frequency withstand voltage kV 95/1min
Rated lightning impulse withstand voltage kV 185
Rated short-circuit duration s 4
Protection level   IP3X

Shape dimensions

Height

 

2650

Largeur

Rated Current   1600 A and below

1400

Depth

Cable incoming and outgoing line

2870

Overhead incoming and outgoing line

2950

Main technical parameters of spring operating mechanism

             Objet Unité           Value
Rated operating voltage Opening coil   v  DC220/110,AC220/110
Closing coil
Rated operating current Opening coil A 0.96(220V),1.05(110V)
Closing coil
Energy storage motor power  W           230
Rated voltage of energy storage motor V       DC220/110,AC220/110
Energy storage time S            ≤12

Switchgear installation

a. Height of electrical room: ≥ 4500mm;
b. Distance from the wall behind the cabinet: ≥ 1500mm;
c. The flatness of the basic structure: ≤ 1mm / m;
d. The part of the foundation embedded channel steel above the ground shall not exceed 3mm;
e. Can be fixed on the foundation with bolts or welding;
f. The weight of the switch cabinet is about 1800kg;
g. The width of the switchgear operation corridor (single row): ≥ 3000mm; Double-sided (face-to-face) ≥ 4000mm.

Electrical engineer inspecting TRONKI medium voltage switchgear at a power plant installation

Equipment structure diagram

TRONKI vacuum circuit breaker handcart unit with insulated bushings

A. Instrument room 1. Pressure relief plate 6. Secondary plug 11. Grounding switch
B. Circuit breaker room 2. Ring 7. Heating device 12. Main bus
C. Busbar room 3. Valve 8. Current transformer 13. Support bus
D. Cable room 4. Circuit breaker 9. Cable 14. Busbar bushing
E. Small busbar room 5. Contact box 10. Insulation partition 15. Lightning arrester
16. Lighting

How It Compares to Similar Switchgear Types

While metal-enclosed switchgear—as per IEEE C37.20.3—may be suitable for light-duty applications due to compactness and lower cost, it lacks the high degree of fault isolation offered by metal-clad designs.
TRONKI’s KYN61-40.5(Z) features fully segregated compartments, making it ideal for critical infrastructure like:

  • Utility substations with high short-circuit levels

  • Power-intensive manufacturing plants

  • Data centers requiring high availability

Sources:

  • IEEE C37.20.2 standard on metal-clad switchgear

  • ABB White Papers on Medium Voltage Systems

  • Wikipedia – Switchgear

Selection Guide

When choosing the right switchgear for your application, consider the following:

  • Rated voltage and current capacity required by your system

  • Fault current level at the point of installation

  • Space constraints (KYN61 requires ~3m aisle width)

  • Need for smart monitoring and remote diagnostics

  • Environmental conditions (humidity, altitude, seismic activity)

Our team can provide customized configurations including optional components such as SF₆ breakers, smart relayset arc fault detection modules.

FAQ

Q1: What’s the difference between KYN28 and KYN61 switchgear?

A: KYN28 is typically rated for systems up to 24kV, while KYN61 supports 40.5kV. KYN61 is better suited for high-voltage, high-fault-level applications and offers enhanced insulation and breaking capacity.

Q2: Can the KYN61-40.5(Z) be used in remote or harsh environments?

A: Yes. With a rated IP3X/IP2X enclosure and wide environmental tolerance, the switchgear is ideal for remote substations, mining siteset areas with seismic activity.

Q3: What installation space is required?

A: Recommended space includes:

  • Ceiling height ≥ 4500mm

  • Rear wall clearance ≥ 1500mm

  • Single-row operation corridor ≥ 3000mm

  • Flat, level base with ≤1mm/m deviation

Ready to Upgrade Your Medium Voltage System?

TRONKI offers full-service support, from system design and on-site installation à 24/7 maintenance and remote monitoring.
Contact us today to request a technical datasheet, schedule a virtual consultation, or get a tailored quote.

Courriel: sales@tronkiele.com
Site web: www.tronkiele.com

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Le KYN28-12KV withdrawable AC metal-clad indoor switchgear is high-quality and tough for use in 3-phase AC 50Hz networks at the target voltage levels between 3.6kV and 12kV. With its brief or inner room approach, foreign technology gives this switchgear the cutting edge performance and protection within environments that are fierce. The switchgear is produced as an enclosed, armored structure, precision engineered using CNC machining for enhancing strength and reliability. It is under development with safety as the main consideration. All arc-proof constructions, strong interlocks, and high protection systems are adopted and abide by the international standards. It has passed electromagnetic compatibility and plateau tests at 3000m altitude.
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