KYN61-40.5 metal-clad withdrawable switchgear cubicle

KYN61-40.5 Metal-Clad Withdrawable Switchgear

For 35 kV substations and industrial intake projects: KYN61-40.5 is the ETENZ metal-clad withdrawable switchgear rated 40.5 kV, 1250-2500 A rated current and 20-31.5 kA rated breaking current, supplied as a standard configured assembly or installed as the primary equipment inside an MV switchgear E-House.

Switchgear Room & Distribution RoomPrimary Equipment E-HouseRenewable Grid-Connection Power DistributionCampus Distribution Room

Key Metrics

40.5kV
Voltage
1250-2500A
Current
20-31.5kA
Breaking
IP4X
Protection

Product Features

Feature icon

40.5 kV class

The ETENZ KYN61-40.5 is the KYN member covering 40.5 kV, the others stopping at 24 kV and below. Rated current runs 1250 to 2500 A and rated breaking and 4 s short-time withstand 20 to 31.5 kA, for the incomers, feeders and bus-ties of a 35 kV system.

Feature icon

40.5 kV class

The ETENZ KYN61-40.5 is the KYN member covering 40.5 kV, the others stopping at 24 kV and below. Rated current runs 1250 to 2500 A and rated breaking and 4 s short-time withstand 20 to 31.5 kA, for the incomers, feeders and bus-ties of a 35 kV system.

Product Details

The identity part of KYN61-40.5 reads position by position: K is metal-clad, Y is the withdrawable pattern, N is indoor, 61 is the design code and 40.5 is the voltage class. A complete order designation adds the primary scheme number, operating-mechanism code, rated current and rated breaking current. The first five fix what the product is; the last four fix how this particular cubicle is configured, and they are settled at quotation.

Position-by-position breakdown of the KYN61-40.5 type designation

KYN61-40.5 model code

Against a 12 kV cubicle, 40.5 kV changes project conditions in two places. First the insulation level: 95 kV power-frequency withstand and 185 kV lightning impulse, with the isolating gap higher again at 118 and 215 kV. The gap figure exceeds the to-earth figure because once the truck is racked out the insulation rests on that gap alone — a requirement of the withdrawable structure rather than spare margin. Second the envelope: 1400 wide, 2800 high and 2800 or 3000 mm deep, the deeper option going with an SF6 truck. Switchroom depth, craneage and transport height all have to be checked against this set, and changing it after the civil design is fixed is expensive. ETENZ confirms the configuration against system voltage, fault capacity and site constraints together.

Delivery Scope Options

Scope 1

Standard configured assembly

Cubicles, busbars, breaker trucks, current transformers and basic secondary wiring are built against the confirmed primary scheme and cubicle composition; labelling and standard delivery documents travel with the panels.

Scope Includes:
Cubicles and truck units
Busbars and inter-panel links
Basic secondary wiring
Labelling and standard documents
Scope 1

Standard configured assembly

Cubicles, busbars, breaker trucks, current transformers and basic secondary wiring are built against the confirmed primary scheme and cubicle composition; labelling and standard delivery documents travel with the panels.

Scope Includes:
Cubicles and truck units
Busbars and inter-panel links
Basic secondary wiring
Labelling and standard documents

Technical Specifications

Product form
Indoor metal-clad withdrawable AC switchgear
Model
KYN61-40.5
Rated voltage
40.5
kV
Rated current
1250-2500
A
Rated breaking current
20 / 25 / 31.5
kA
Short-time withstand current (4 s)
20 / 25 / 31.5
kA
Peak withstand current
50 / 63 / 80
kA
Rated making current
50 / 63 / 80
kA
1 min power-frequency withstand (phase / earth)
95
kV
1 min power-frequency withstand (isolating gap)
118
kV
Lightning impulse withstand (phase / earth)
185
kV
Lightning impulse withstand (isolating gap)
215
kV
Degree of protection
IP4X
Dimensions (W x D x H)
1400 x 2800(3000) x 2800; 3000 depth with an SF6 truck
mm

Product FAQs

It follows the system voltage, not the capacity. A 35 kV nominal system needs 40.5 kV equipment, and KYN61-40.5 is the member of the series that covers that class; the others reach 24 kV at most. Typical places are the incomers, feeders and bus-ties of a 35 kV substation, the main intake substation of a large industrial park, and the step-up side of a wind or solar plant. Where the system is 10 kV and only the capacity is large, that is a rated-current question and KYN28A-12 or KYN550-12 fits better.

Because in a withdrawable cubicle that gap has to hold on its own. Once the truck is racked to test or isolated position, one side of the gap is live and the other is not, and the insulation rests on that gap. If the gap withstand were set equal to the to-earth withstand, a switching overvoltage would break the gap down first and the isolation would be lost. The standard therefore sets the gap a step higher: 118 kV against 95 kV at power frequency and 215 kV against 185 kV on impulse. This is a structural requirement rather than spare margin, so the two sets are read together during selection.

The 3000 mm option goes with an SF6 truck and 2800 mm is the standard configuration, so the depth follows from the breaker type rather than being specified freely. What matters is checking the civil work first: at 1400 wide and 2800 high, the switchroom depth has to take the cubicle, the front operating and maintenance space and the truck withdrawal travel together, and this is what binds first on 35 kV projects. Send the switchroom layout with clear height, craneage route and transport height limit and the depth can be settled during quotation.

That is this model range: 1250 to 2500 A. At 40.5 kV the current for a given power is lower than in a 10 kV system, so 2500 A already corresponds to a substantial capacity and the range covers ordinary projects. Where a circuit genuinely needs more, it becomes a busbar and cubicle recalculation — send the circuit rating and system data with the enquiry.

Three things give a preliminary scheme: the single-line diagram, system nominal voltage and rated current, and the system fault capacity. For a contract-grade quotation, add the cubicle count with each primary scheme, control supply type and voltage, metering and protection requirements, cable entry arrangement and cable sizes, communication interfaces, switchroom dimensions and any depth limit, and the standards and document list for the destination market.

Yes. Switchgear is supplied as equipment while an MV switchgear E-House or power module is supplied as an enclosure — the first is the panel itself, the second covers the enclosure, equipment layout, auxiliary systems and interface integration. A 40.5 kV line-up is large, so in-module arrangement, maintenance space and truck travel are calculated during module design. Where KYN61-40.5 goes inside as the primary equipment, ETENZ works all of that out and the delivery boundary is settled once at contract stage.

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