KYN550-12 metal-clad enclosed switchgear cubicle

KYN550-12 Metal-Clad Switchgear

For high-capacity substations and station-service projects: KYN550-12 is the ETENZ metal-clad enclosed switchgear rated 12 kV with a 4000 A main busbar and cubicle widths from 550 to 1000 mm, 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

12kV
Voltage
4000A
Main busbar
550-1000mm
Width
IP4X
Protection

Product Features

Feature icon

Main busbar 4000 A

The ETENZ KYN550-12 carries a 4000 A main busbar with distribution busbars selectable from 630 to 4000 A. One line-up takes a large incomer and small feeders together, without sectionalising the busbar to derate it.

Feature icon

Main busbar 4000 A

The ETENZ KYN550-12 carries a 4000 A main busbar with distribution busbars selectable from 630 to 4000 A. One line-up takes a large incomer and small feeders together, without sectionalising the busbar to derate it.

Product Details

The identity part of KYN550-12 reads position by position: K is metal-clad enclosed switchgear, Y is the withdrawable pattern, N is indoor service, 550 is the design code and 12 is the voltage class. The 550 is also this model’s standard cubicle width — designation and width matching is not a coincidence. A complete order designation carries further positions after it: primary scheme number, operating-mechanism code (D for magnetic, T for spring), cubicle width, rated current and rated breaking current, confirmed cubicle by cubicle at quotation.

Position-by-position breakdown of the KYN550-12 type designation

Fitting a 4000 A main busbar into a 550 mm standard width rests on splitting the cubicle front from rear. The front section holds the LV, breaker and maintenance compartments; the rear section holds the busbar and cable compartments. Five functional rooms distributed front and rear rather than crowded into one depth is what keeps the width down — the source gives more than 30% floor-area saving against a conventional KYN28-12 cubicle. Front and rear sections can also be assembled separately, so batch production and site maintenance both work section by section. Four further widths of 600, 650, 800 and 1000 mm are available, taken per cubicle against its actual rated current and device fit-out, and mixing widths within one line-up is normal practice. The cubicle carries five-prevention functions with an electromagnetic door interlock. ETENZ sets the width step and the busbar transition cubicle by cubicle against the circuit schedule and the switchroom drawing.

The primary circuit of a KYN550-12 feeder cubicle runs from the busbar through the upper truck contacts, the circuit breaker, the lower truck contacts, the current transformers and the earthing switch to the cable termination; incomer, bus-tie, metering and auxiliary-transformer cubicles add or remove devices on that basis. The main busbar is rated 4000 A and the distribution busbar 630 to 4000 A in steps, so one line-up can hold a large incomer and a small feeder without sectionalising the busbar or derating it. Circuit count, bus-tie and sectionalising arrangement and spare positions are settled at drawing approval.

KYN550-12 accepts top entry with top exit, bottom entry with bottom exit and mixed arrangements; the direction follows the cable termination type and the routing on site. The roof-mounted busbar bridge carries the inter-panel connection. Because this type mixes widths from 550 to 1000 mm within one line-up, the busbar has to transition continuously between differing widths, and the bridge sections and supports are settled together with the line-up layout. ETENZ fixes cable terminations, busbar connections, inter-panel links and earthing points on the drawings before manufacture, leaving only the connection work on site.

Protection relays, metering devices, CT/VT and auxiliary supplies are installed, wired and checked circuit by circuit in the works, with all secondary signals brought to one terminal strip; the electrical side of the five-prevention interlocking and the electromagnetic door lock is completed at the same time. The LV compartment sits at the top of the front section, so the secondary devices and the terminal strip are grouped there and can be wired from the front. Everything beyond the terminal strip — the upper-level monitoring system, station control and external I/O — sits on the customer side, with interface type and protocol agreed at technical specification stage.

Supply Scope and Delivery Boundary

All three apply to every order: what is supplied, how far secondary work goes at the works, and which inspection records and documents ship with the cubicles.

Single Cubicle or Complete Lineup Supply

Cubicles are supplied singly or as a complete lineup against the order schedule. Enclosure, main circuit and internal connections are assembled at the works and shipped as complete cubicles; where transport limits apply, the lineup is split and the joining interface is set beforehand. Where the cubicles are to arrive inside a prefabricated cabin, the E-House line takes on the enclosure, internal arrangement and cubicle fixing, and the switchgear is delivered as equipment housed within it.

This covers:
Single cubicle or complete lineup
Complete-cubicle shipment and split points
Joining and fixing interface
In-cabin delivery handled by the E-House line

Single Cubicle or Complete Lineup Supply

Cubicles are supplied singly or as a complete lineup against the order schedule. Enclosure, main circuit and internal connections are assembled at the works and shipped as complete cubicles; where transport limits apply, the lineup is split and the joining interface is set beforehand. Where the cubicles are to arrive inside a prefabricated cabin, the E-House line takes on the enclosure, internal arrangement and cubicle fixing, and the switchgear is delivered as equipment housed within it.

This covers:
Single cubicle or complete lineup
Complete-cubicle shipment and split points
Joining and fixing interface
In-cabin delivery handled by the E-House line

Technical Specifications

Product form
Indoor metal-clad enclosed switchgear
Model
KYN550-12
Rated voltage
12
kV
Rated frequency
50
Hz
Main busbar rated current
4000
A
Distribution busbar rated current
630 / 1250 / 1600 / 2000 / 2500 / 3150 / 4000
A
Short-time withstand current
Confirmed per project
kA
Peak withstand current
Confirmed per project
kA
1 min power-frequency withstand
42
kV
Lightning impulse withstand
75
kV
Cubicle width
550 / 600 / 650 / 800 / 1000
mm
Cubicle depth
1100 / 1340 / 1400 / 1450 / 1500 / 1650
mm
Cubicle height
2000 / 2100 / 2200 / 2300
mm
Compartments
Front: LV, breaker, maintenance. Rear: busbar, cable
Assembly
Front and rear sections can be joined separately
Anti-maloperation
Five-prevention functions with electromagnetic door interlock
Degree of protection
IP4X enclosure; IP2X with the breaker compartment door open
Mass
300, including the withdrawable truck
kg

Product FAQs

It need not be uniform. Five widths are available — 550, 600, 650, 800 and 1000 mm — chosen per cubicle against its rated current and component fit: small feeders take 550 or 600 while large incomers and bus-ties widen as needed. Mixing widths in one line-up is the normal approach and makes the total length shorter than a single-width arrangement. The point to watch is that the busbar has to run continuously across cubicles of different width, and ETENZ works that transition out at drawing stage.

It is this model’s main busbar rating, with distribution busbars also available to 4000 A. The typical places that need it are substation main incomers, large station-service supplies in power plants, and any line-up carrying many circuits on one busbar that should not be sectionalised. Where the busbar current falls short, the alternatives are sectionalising or adding a bus-tie, and both add cubicles and floor area. Send the total line-up load and whether sectionalising is acceptable, and whether 4000 A is a requirement or headroom becomes clear.

From the switchroom civil conditions first, with the electrical layout worked out afterwards. Depths run 1100 to 1650 mm in six steps and heights 2000 to 2300 mm in four. The switchroom depth has to take the cubicle depth plus front operating and maintenance space and the truck withdrawal travel, and the clear height has to take the cubicle plus the busbar bridge and top duct. Once those are set, busbar sizes and component layout are arranged in what remains. Send the switchroom layout with clear height and it can be confirmed during quotation.

On capacity and width. A 4000 A main busbar takes KYN550-12, the highest busbar rating in the series. A wide fault range with rated current to 3150 A takes KYN28A-12. A severely limited switchroom area, where 630 to 1600 A is acceptable, takes YF-KYN450-12 at 475 to 550 mm wide and 1100 mm deep. The series page carries the full five-model comparison.

Four things give a preliminary scheme: the single-line diagram, rated voltage and total line-up current, the system fault capacity, and the switchroom dimensions with clear height. For a contract-grade quotation, add each cubicle’s primary scheme and rated current, control supply type and voltage, metering and protection requirements, cable entry arrangement and cable sizes, communication interfaces, 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. The selectable widths help here, since the line-up can be packed more closely to a given module length. Where it goes inside as the primary equipment, ETENZ details the line-up arrangement, busbar connections and in-module interfaces, and the delivery boundary is settled once at contract stage.

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