Modula Plus. Technical documentation Ver 1.01

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1 Modula Plus Technical documentation Ver 1.01

2 Table of contents Introduction Overview 2 General characteristics Main characteristics 4 Functional sements of a column 6 Main components of a functional 8 Busbars 10 Horizontal busbar 12 Vertical busbar 15 Lateral staircase busbar up to 630A 18 Rear busbar up to 630A 19 Functional units 20 Overview 20 Preferred cross section for electrical connections 21 Earthin concept 23 Torque values and screw loads 25 Torque values for electrical connections 26 Torque values for mechanical connections 27 Torque values for self-tappin screws 28 Screw loads for self-tappin screws 29 Heat dissipation values 30 Dimensional drawins 47 Texts for Prescribers 49 pae 2 of 50

3 Overview Technical documentation Introduction Contents This document describes the technical characteristics of system enclosures type Modula Plus. This document contains the followin topics: Introduction General characteristics Technical characteristics Busbars Functional units pae 3 of 50

4 Technical characteristics General characteristics Each cabinet, delivered as a kit, consist of a structure that is partly welded and partly bolted to combine both mechanical strenth and easy assembly by the customer. The top- and bottom frame are welded as one part. Vertical uprihts are bolted to the top and bottom frame to form the enclosure. Side-, top-, and rear panels and bottom plates are screwed to the frame structure. Coatin Type and thickness of coatin: Structure: wet paint, no texture, RAL 7044, Functional frame and internal covers wet paint, no texture, RAL 7035, Top-, side- and rear panels; doors epoxy powder coatin, structured, RAL 7035, Bottom plate zinc-plated Cover plates for functional units (GEPC/CEM) epoxy powder coatin, RAL7024, dark rey Mountin plates and mountin profiles zinc-plated Bases wet paint, no texture, RAL7022 Sheet steel Thickness - Structure 1,5 mm - Functional frame 1,0 mm - covers (rear, top, side) 1,5 mm - bottom plate 1,5 mm - doors (plain, transparent, desin) 2,0 mm - cover plates for functional units 1,5 mm Electrical specification: Rated operational voltae: Ue Rated insulation voltae Ui: Rated frequency 690V 1000V 50-60Hz Rated current of busbar systems: - horizontal in the top 3000A (IP55) 4000A (IP30) - vertical busbar 3000A (IP55) 4000A (IP30) Rated short circuit current Icw 70kA /1s - rear busbar 1450A (IP55) 2000A (IP30) Rated short circuit current Icw 50kA /1s Protection class I, protection aainst indirect contact by earthin. Protection deree: IP30 IP41 IP55 without doors or with ventilation with IP41 door with plain doors or transparent door pae 4 of 50

5 Technical characteristics General characteristics Protection aainst corrosion All external parts, like Doors, roof, rear panel and sidepanel are powder coated with epoxy paint, thickness 90 um. Colour RAL 7035 Structure, internal separations are made from zinc plated steel or are painted with an ETL paint, thickness 20um. Colour RAL 7044 Paint specification External parts: Epoxy powder coatin RAL 7035, loss 50% Internal parts: EC coated, RAL 7044 The standard coatin is resistant aainst: mineral oils oils and fats white spirit acids, dilluted leaches, dilluted Instructions how to coat an enclosure Overpaintin of the primer or powder coatin. After careful cleanin of the surface, the coatin can be overpainted with: DD loss paints Sinle component loss paints Dual component loss paint Car repair paints Powder paints Water based paints If in doubt, perform a compatibility test. Always follow the paint manufacturer s instructions. pae 5 of 50

6 Introduction Modula Plus Principle Functional units Busbar zone Cable zone A system enclosures type Modula Plus is subdivided in three functional zones: - Zone for functional units - Busbar zone - Cable zone The zone for functional units is located in the front area of a column. It is meant to install various type of functional units, especially desined to support LV devices offered by GE Power Controls. Functional units are delivered as kit and include mountin plates to be fixed at the front functional frame, coverplates with cut-outs adapted to each individual LV device and all accessories needed for fixation. LV devices are not included, they always have to be ordered separately. The busbar zone is located horizontally at the top of each column for main busbar system and in the rear for the vertical busbars. As option, internal separation screens can be added to sereate the busbar zone from area used for functional units or cables in order to protect maintenance people from accidental-contact with hazardous parts. The cable zone, interated in columns of width 900mm or offered as separate cable compartment, is desined for fast and comfortable cablin. pae 6 of 50

7 Functional sements of a column General characteristics Principle Illustration A column of system enclosure type Modula Plus is subdivided in three functional zones. - Zone for functional units - Busbar zone - Cable zone The followin illustration shows the three functional zones of a column. Busbar zone Lateral cable or busbar compartment Area for functional units pae 7 of 50

8 General characteristics Main components of a functional unit based on mountin plates Principle Illustration A functional unit is a mechano-kit for safe and easy implementation of GE Power Controls LV devices into a system enclosure type Modula Plus. There are various functional units desined for each LV device, adapted exactly to it s dimensions, weihts etc. Most of the devices are fixed to the front functional frame by means of mountin plates. The followin illustration shows the main components of a functional unit based on mountin plates. Components The followin table ives a survey of the main components of a functional unit. Part Function 1 Mountin plate to support LV devices 2 Coverplate to protect from accidental contact with hazardous parts 3 Fixation screws for mountin plate and coverplate pae 8 of 50

9 General characteristics Main components of a functional unit based on mountin frame Principle Illustration A functional unit is a mechano-kit for safe and easy implementation of GE Power Controls LV devices into a system enclosure type Modula Plus. There are various functional units desined for each LV device, adapted exactly to it s dimensions, weihts etc. All bi LV devices are supported by a stable mountin frame fixed to the front and rear of the enclosure s structure The followin illustration shows the main components of a functional unit based on mountin frame. Components The followin table ives a survey of the main components of a functional unit based on mountin frame. Part Function 1 Depth profiles to support mountin frame 2 Horizontal profiles to fix LV devices 3 Coverplate to protect from accidental contact with hazardous parts 4 Fixation screws for mountin plate and coverplate pae 9 of 50

10 Busbar arranement General characteristics Principle Illustration System enclosures type Modula Plus offer various possibilities to implement busbars in horizontal and vertical position. All busbars are desined as 4 pole systems for use of standard copper of 5 or 10mm thickness.. Basically there are three different application: - a main busbar in the top - a vertical raiser in an interated or separate busbar compartment - a rear busbar, mounted space-savin behind functional units. The followin illustration ives an overview of the different possibilities to implement different busbars systems. Horizontal Bus bar up to 2000A bus bar At rear Staircase bus bar Up to 630A 630A bus bar At rear Vertical Bus bar Components The followin table ives a survey of the main components of a functional unit. Part Function 1 CU busbar 2 Insulator (4pole) 3 Mountin profile pae 10 of 50

11 General characteristics Form of internal separation Principle By addin separation screens between busbars and space for functional units, system enclosures type Modula Plus can be upraded from form1 to form2. Basically, the separation screens are made from insulatin material with a pattern of rectanular cut-outs to allow to uide cables from the busbar to the functional compartment in a quick and easy way by removin the plastic material between two cut-outs wherever needed. All separation screens are suitable for both enclosure depth 500 and 700mm, in case of depth500 the rear part of the screens can be cut in an easy way. Illustration The followin illustration ives an overview of the separation screens form2. Separation for Horizontal Bus bar Separation for Vertical Bus bar pae 11 of 50

12 Horizontal main busbar Busbars Principle The main busbar system is based on rectanular copper bars of 5mm thickness and a lenth of 1650mm. Each bar has lenthwise diameter 11mm openins every 25mm on both sides for easy and time-savin connections or to fix outoin cables. The copper bars are bent on one side for lenthwise or square couplin without any additional connection plate. The horizontal busbar system can be mounted at any heith of the enclosure Modula Plus and needs a heith of 250mm when usin copper bars up to 125 x 5 mm or 300mm for bars of 160 x 5 mm. The busbars can be covered usin blind front cover plates. In cabinets of depth 700mm the space in front of the busbars can be used for functional units for DIN-rail mounted modular devices. The busbar holders are mounted to the functional frame in front and the rear vertical uprihts of the enclosure with standard depth profiles ( for depth 500mm or for depth 700mm) Illustration The followin illustration ives an overview of the horizontal busbar system. Components The followin table ives a survey of the main components of a horizontal busbar system. Part Function 1 CU busbar 2 Insulator (4pole) 3 Mountin profile pae 12 of 50

13 Horizontal main busbar Busbars Rated current The followin table ives an overview of rated current and cross section of the horizontal main busbars. Rated current / A Number of bars Cross section Min. heiht of cover plate IP30 IP55 per phase neutral mm mm x5 250mm x5 250mm x5 250mm x5 250mm x5 250mm x5 250mm x5 250mm x5 250mm x5 300mm x5 300mm Note: IP30 is IP55 with ventilation Rated current The followin table ives an overview about the maximum center distance between the busbar holders dependin on the short circuit capacity Icw Cross section Number of bars Busbar support center distance / mm mm per phase Icw = 12kA Icw = 25kA Icw = 35kA Icw = 50kA Icw = 70kA 63x x x x x x x x x x pae 13 of 50

14 Horizontal main busbar Power loss The followin table ives an overview of power losses at rated current dependin on the cross section of the horizontal main busbars. Number of bars Cross section Rated current IP 30 3 phase power loss at rated current per phase neutral mm A W / m x x x x x x x x x x Number of bars Cross section Rated current IP 55 3 phase power loss at rated current per phase neutral mm A W / m x x x x x x x x x x pae 14 of 50

15 Vertical main busbar Busbars Principle The main busbar system is based on rectanular copper bars of 5mm thickness and a lenth of 1650mm. Each bar has lethwise diameter 11mm openins every 25mm on both sides for easy and time-savin connections or to fix outoin cables. The copper bars are bent on one side for lenthwise or square couplin without any additional connection plate. The vertical busbar system can be mounted in an interated cable compartment of enclosure width 900mm or in a separate cable compartment, width 400mm. The busbar holders are mounted to the front and rear vertical uprihts of the enclosure with depth profiles ( for depth 500mm or for depth 700mm) Illustration The followin illustration ives an overview of the vertical busbar system. Components The followin table ives a survey of the main components of the vertical busbar. Part Function 1 CU busbar 2 Insulator (4pole) 3 Mountin profile pae 15 of 50

16 Lateral vertical busbar Rated current The followin table ives an overview of rated current and cross section of the vertical main busbars. Rated current / A Number of bars Cross section IP30 IP55 per phase neutral mm x x x x x x x x x x5 Note: IP30 is IP55 with ventilation Rated current The followin table ives an overview about the maximum center distance between the busbar holders dependin on the short circuit capacity Icw Cross section Number of bars Busbar support center distance / mm mm per phase Icw = 12kA Icw = 25kA Icw = 35kA Icw = 50kA Icw = 70kA 63x x x x x x x x x x pae 16 of 50

17 Lateral vertical busbar Power loss The followin table ives an overview of power losses at rated current dependin on the cross section of the horizontal main busbars. Number of bars Cross section Rated current IP30 3 phase power loss at rated current per phase neutral mm A W / m x x x x x x x x x x Number of bars Cross section Rated current IP55 3 phase power loss at rated current per phase neutral mm A W / m x x x x x x x x x x pae 17 of 50

18 Lateral staircase busbar up to 630A Rated current The followin table ives an overview of rated current and cross section of the lateral staircase busbar system. Rated current / A Number of bars Cross section Standard lenth of bars IP30 IP55 per phase neutral mm mm x x x Rated current The followin table ives an overview about the maximum center distance between the busbar holders dependin on the short circuit capacity Icw Cross section Number of bars Busbar support center distance / mm mm per phase Icw = 15kA Icw = 20kA Icw = 25kA Icw = 25kA 20x x x Power loss The followin table ives an overview of power losses at rated current dependin on the cross section of the horizontal main busbars. Number of bars Cross section Rated current IP30 3 phase power loss at rated current per phase neutral mm A W / m x x x Number of bars Cross section Rated current IP55 3 phase power loss at rated current per phase neutral mm A W / m x x x pae 18 of 50

19 Rear busbar up to 630A Rated current The followin table ives an overview of rated current and cross section of the rear busbar system up to 630A. Rated current / A Number of bars Cross section Standard lenth of bars IP30 IP55 per phase neutral mm mm x x x Rated current The followin table ives an overview about the maximum center distance between the busbar holders dependin on the short circuit capacity Icw Cross section Number of bars Busbar support center distance / mm mm per phase Icw = 15kA Icw = 20kA Icw = 25kA Icw = 25kA 20x * 300* x * 325* 30x * Rated short circuit duration 0,5 seconds Power loss The followin table ives an overview of power losses at rated current dependin on the cross section of the horizontal main busbars. Number of bars Cross section Rated current IP30 3 phase power loss at rated current per phase neutral mm A W / m x x x Number of bars Cross section Rated current IP55 3 phase power loss at rated current per phase neutral mm A W / m x x x pae 19 of 50

20 Functional units Functional units Principle A functional unit is a mechano-kit for safe and easy implementation of GE Power Controls LV devices into a system enclosure type Modula Plus. There are various functional units desined for each LV device, adapted exactly to it s dimensions, weihts etc. Most of the devices are fixed to the front functional frame by means of mountin plates. Illustration The followin illustration ives basic sketch of the functional units to be implemented in system enclosures rane Modula Plus. Overview Functional units are offered in width 500mm or width 750mm. Dependin on the space required for the LV devices they are desined to receive, they can be mounted in both enclosures depth 500 and 700mm or in depth 700mm only. The followin table is ivin an overview about the space required per function (see annex ordercodes) pae 20 of 50

21 Functional units Preferrable cross section for connectin LV devices Table The followin table ives an overview of preferrable cross section for wirin of LV devices: Preferrable section of connection between components and busbars. In (A) Flexi copper(mm) Fix copper (mm) Cable (mm²) x x x x20/1 20x x20/1 20x x24/ x32/1 30x x32/1 40x x40/1 2x30/ x40/1 50/ x50/ x(4x50/1) 2x40/ x(6x40/1) 2x50/ x(5x50/1) x(6x50/1) 2x50/10 - For standard insulated wirin use cable of type H07-VU or H07- VR accordin to IEC The choice of cross sections of conductors is responsibility of the manufacturer of a panel. Please be aware there may be major deviation to this recommendation, dependin on ambient temperature, lenth of connections, the way the conductors are laid and other criterion specific for each individual panel. Warnin! The operator must apply all relevant safety precautions includin those mentioned in this book. Take all precautions to prevent accidential contact with hazardous parts. Before carryin out any adjustments, maintenance or repair, switch off the voltae of the affected column(s). pae 21 of 50

22 Functional units Wirin of non-protected circuits aainst short-circuit Principle For non-protected circuits like backup circuits, etc... take followin precautions to minimize the risk of havin short-circuit : - Use wire with very hih mechanical strenth material like FTPE insulation or double insulated conductors with an enhanced outer sheath rated for use up to 3KV, for example wires accordin to IEC , IEC or IEC There should be an short-circuit protective device on load side. - The lenth of these non-protected circuits may be up to 3m - The risk of havin mechanical damae should be reduced to minimum - The minimum section should be 6mm² - Respect clearance and creepae distances as for the main busbar system pae 22 of 50

23 Overview Earthin concept Introduction Illustration This section describes the earthin concept of System Enclosures type Modula Plus. The followin illustration ives an overview of the earthin concept of System Enclosures type Modula Plus. pae 23 of 50

24 Earth bar Overview The followin table ives an overview of selection and recommended cross section for earth bars. Principle As standard the earth bar is 32x5mm and mounted directly on the frame. This section is sufficient for rated short-circuit current of 50kA and not time delayed MCCB s. In case outoin circuit breakers are time delayed, increase the section of the earth bar accordin to the maximum short circuit current to earth that can flow (1 sec) accordin to recommendations iven in the followin table: Earth bar dimensions Cross section I I Width / mm Thickness / mm mm² ka rms ka pk pae 24 of 50

25 Overview Introduction Contents Torque values and screw loads This section ives a survey of all torque screw values for all standard bolt and screw connections. This document contains the followin topics: Torque values for electrical connections Torque values for mechanical connections Torque values for self-tappin screws Screw load for self-tappin screws pae 25 of 50

26 Torque values for electical connections Torque values for electrical connections Where applied? Property classes The torques shall be applied for all electrical screw joints in System Enclosures type Modula Plus. The values indicated are related to property classes 5.8 to 8.8 for unreased screws, bolts and nuts. Deviatin torques Deviatin torques are only admissible if: - special manufacturer instructions have to be followed. - special tihtenin torques are requested in drawins or manufacturin instructions. Torques for The followin table ives a survey of the torque for terminal screws: Terminal screws Screw size Nominal torques (+10%) Nm Terminals M4 2,5 1,50 M5 5,0 2,50 M6 8,0 4,00 M8 25,0 15,0 M10 40,0 20,00 M12 70,0 36,00 Minimum torques for maintenance Nm Use only screw type class 8.8! Unused Connection screws Unused connection screws have to be tihtened with a torque of 0,2-0,3 Nm. pae 26 of 50

27 Torque values for mechanical connections Torque values for mechanical connections Where applied? Property classes The torques shall be applied for all mechanical screw joints in System Enclosures type Modula Plus. The values indicated are related to property classes 5.6 to 8.8 for unreased screws, bolts and nuts. Deviatin torques Deviatin torques are only admissible if: - special manufacturer instructions have to be followed. - Special tihtenin torques are requested in drawins or manufacturin instructions. Torques for The followin table ives a survey of the torque for hexaon head Hexaonal nuts bolts: Hexaon head bolts Screw size Property class 5.6 Property class 8.8 Nominal torques (+10%) Minimum torques for maintenance Nominal torques (+10%) Nm Nm Nm Nm < M3 0,4 0,30 0,60 0,50 M3 0,8 0,60 1,10 0,80 M3,5 1 0,80 1,70 1,50 M4 1,6 1,10 2,50 2,10 M5 3 2,30 5,00 3,80 M6 5,3 3,80 8,50 6,50 M8 12 9,20 20,00 15,00 M ,50 41,00 31,00 M ,00 70,00 54,00 Minimum torques for maintenance Unused Connection Screws Unused connection screws have to be tihtened with a torque of 0,2-0,3 Nm. pae 27 of 50

28 Torque values for self-tappin screws Torque values for self-tappin screws Where applied? Torque The torque shall be applied for all mechanical connections made with self-tappin screws size BZ 5,5 x 13mmto the enclosure structure of System Enclosures type Modula Plus. Self tappin screws BZ 5,5 x 13mm have to be tihtened with max. torque of 5Nm. Illustration pae 28 of 50

29 Screw loads for self-tappin screws Screw loads for self-tappin screws Illustration The followin illustration ives an overview of maximum loads applicable to self-tappin screws fixed directly into the structure of an enclosure type Modula Plus. Torque The maximum torque that shall be applied to self-tappin screws is 5Nm. pae 29 of 50

30 Heat dissipation values Heat dissipation values Principle Accordin to EN and IEC For common electrical applications, a temperature rise of 50K is enerally accepted. If the rise is above 50K, a larer enclosure or means of ventilation should be chosen. More volume or decrease of IP deree results in a decrease of the temperature rise. The absolute temperature in C in the enclosure is the sum of the ambient temperature in C in the enclosure and the temperature rise in K. Dependin on the enclosure dimension the temperature rise caused by power losses of electrical components installed inside varies. Calculate the maximum ambient operatin temperature of the build-in component dependin of the manufacturers specifications and the position at middle or top in the enclosure. In eneral a calculated temperature-rise of 50K is acceptable in most applications. How to use the Matrix First chose the riht matrix accordin to the position and size of enclosure. Second calculate the effective power loss in Watt (left column) of all electrical components and bus bars installed. Add 10-20% to the total effective power loss in order to compensate small wirins and connectors. Third read in the matrix the temperature rise expected due to the thermal power dissipation. Data The followin tables ive an overview of heat dissipation values of the several enclosures types Modula Plus dependin on the way they are installed. Temperature rise always is iven for the top and a location in the middle of the enclosure. Ventilation The heat dissipation values for enclosures with natural ventilation (IP30) are valid for the iven let-throuh surface at top and bottom. Please use an outlet ventilation which is minimum 10% larer than the inlet ventilations. pae 30 of 50

31 IP55 free standin Heat dissipation values H 2000 D 500 D 700 W 650 W 900 W 650 W 900 Watt Half Top Half Top Half Top Half Top pae 31 of 50

32 IP55 free standin Heat dissipation values Enclosure with separate busbar compartmens: H 2000 D 500 D 700 W W W W Watt Half Top Half Top Half Top Half Top pae 32 of 50

33 IP55 rear aainst a wall Heat dissipation values 2000 D 500 D 700 W650 W 900 W 650 W 900 Watt Half Top Half Top Half Top Half Top pae 33 of 50

34 IP55 Rear aainst a wall Heat dissipation values Enclosure with separate busbar compartmens: H 2000 D 500 D 700 W W W W Watt Half Top Half Top Half Top Half Top pae 34 of 50

35 IP55, one side free Heat dissipation values H 2000 D 500 D 700 W 650 W 900 W 650 W 900 Watt Half Top Half Top Half Top Half Top pae 35 of 50

36 Heat dissipation values IP55, one side free Enclosure with separate busbar compartmens: H 2000 D 500 D 700 W W W W Watt Half Top Half Top Half Top Half Top pae 36 of 50

37 Heat dissipation values IP55, only front free H 2000 D 500 D 700 W 650 W 900 W 650 W 900 Watt Half Top Half Top Half Top Half Top pae 37 of 50

38 Heat dissipation values IP55, only front free Enclosure with separate busbar compartmens: H 2000 D 500 D 700 W W W W Watt Half Top Half Top Half Top Half Top pae 38 of 50

39 IP30 free standin Heat dissipation values H 2000 D 500 D 700 Ventilation W 650 W 900 W 650 W 900 at thetop mm² Watt Half Top Half Top Half Top Half Top pae 39 of 50

40 IP30 free standin Heat dissipation values Enclosure with separate busbar compartmens: Ventilation at thetop mm² H 2000 D 500 D 700 W W W W Watt Half Top Half Top Half Top Half Top pae 40 of 50

41 IP30 rear aainst a wall Heat dissipation values Ventilation at thetop mm² 2000 D 500 D 700 W650 W 900 W 650 W Watt Half Top Half Top Half Top Half Top pae 41 of 50

42 IP30 Rear aainst a wall Heat dissipation values Enclosure with separate busbar compartmens: Ventilation at thetop mm² H 2000 D 500 D 700 W W W W Watt Half Top Half Top Half Top Half Top pae 42 of 50

43 IP30, one side free Heat dissipation values Ventilation at thetop mm² H 2000 D 500 D 700 W 650 W 900 W 650 W Watt Half Top Half Top Half Top Half Top pae 43 of 50

44 Heat dissipation values IP30, one side free Enclosure with separate busbar compartmens: Ventilation at thetop mm² H 2000 D 500 D 700 W W W W Watt Half Top Half Top Half Top Half Top pae 44 of 50

45 Heat dissipation values IP30, only front free Ventilation at thetop mm² H 2000 D 500 D 700 W 650 W 900 W 650 W Watt Half Top Half Top Half Top Half Top pae 45 of 50

46 Heat dissipation values IP30, only front free Enclosure with separate busbar compartmens: Ventilation at thetop mm² H 2000 D 500 D 700 W W W W Watt Half Top Half Top Half Top Half Top pae 46 of 50

47 Dimensional drawins Dimensional drawins Principle The drawins show front view, side view and cross section of bottom and the middle of each enclosure. W400 W650 H W D d1 d2 d3 w3 h1 H W D d1 d2 d3 w3 h pae 47 of 50

48 Dimensional drawins Dimensional drawins Principle The drawins show front view, side view and cross section of bottom and the middle of each enclosure. W900 H W D d1 d2 d3 w1 w2 w3 h Detail Space between door and internal cover plates. pae 48 of 50

49 Texts for prescribers Texts for prescribers Principle The followin text ives a brief description of system enclosures type Modula Plus and may be added to technical documentation and enineerin specification. Specification System enclosure for Low Voltae distribution panel from 160 up to 4000A Modula Plus Conformity to standards The panels are complyin to the standard EN All typetests and individual test required by the standard have been done. Internal separation Form 1, Form 2 as option Technical characteristics The panel is desined of kit-form enclosures made from sheet steel, which can be stand alone and coupled next to each other. Each cabinet consists of a stron, welded top- and bottom frame to which the vertical uprihts are bolted. Top- and bottom frame and vertical uprihts offer a pattern of rectanular and round holes for easy fixation of functional units, depth profiles and busbars. They consist of three different compartments, all of them fully accessible from the front. The busbar compartment The main busbar is located in the top of the enclosure and is based on flat, rectanular copper provided with holes diameter 11mm for easy couplin and connection of wires and busbars in step of 25mm. Cross section from 63x5mm up to 160x5mm. Center distance 90mm. The bars are provided with a bendin at one end to allow easy connection with each other. The compartment for functional units The panels are equipped with individual functional units, consistin of mountin plates or mountin frames supportin one or more low voltae devices and covered with metal coverplates to prevent from accidential access to life parts. - functional units for DIN-rail equipment - functional units for Meters - functional units for Moulded Case Circuit Breaker from 125 up to 1250A. The devices are mounted fixed in horizontal or vertical position - functional units for Load Break Switches up to 3150A. The devices are mounted fixed in horizontal or vertical position - functional units for Air Circuit Breaker up to 4000A. The devices are mounted fixed or withdrawable. The desin of functional units allow quick and easy replacement or modification of the units. The cable compartment An interated cable compartment located at the left or riht side of the enclosure uides outoin cables or contains vertical busbar based on pae 49 of 50

50 Texts for prescribers Specification flat, rectanular copper provided with holes diameter 11mm for easy couplin and connection of wires and busbars in step of 25mm. Cross section from 63x5mm up to 160x5mm. Center distance 90mm. The bars are provided with a bendin at one end to allow easy connection with each other. For rated current up to 630A a staircase type of busbar based on flat copper from 20x5mm up to 30x10mm is used for easy interconnection between the busbar and outoin Low Voltae devices. The bars are provided with threaded holes M6 or M8 and can be covered by a protective shroud IP20 as option. Electrical characteristics Rated operational voltae 690V Rated insulation voltae 1000V Rated short circuit withstand current 70kA Rated current of the busbar system up to 4000A Deree of protection IP55, IP41, IP30 as option The panel is desined for indoor use Ambient temperature 35 Name of the product Modula Plus pae 50 of 50

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