December 23, 2013 Our Ref: TR Queen East Limited c/o The Andrean Group 1013 Wilson Avenue, Suite 201 Toronto, ON M3K 1G1

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December 23, 2013 Our Ref: TR13-0022 1075 Queen East Limited c/o The Andrean Group 1013 Wilson Avenue, Suite 201 Toronto, ON M3K 1G1 Attention: Mr. Julian Battiston: Dear Mr. Battiston: Re: Letter of Reliance 1075 Queen Street East Proposed Mixed-Use Development City of Toronto On behalf of our Client, 1075 Queen East Limited, we acknowledge receipt of the City of Toronto, Development Engineering comments dated December 4, 2013 with respect to our Parking and Loading Assessment, dated October 23, 2013. A copy of which is attached in Appendix A. Moreover, this letter is submitted to confirm that our previously submitted studies 1 prepared for the proposed mixed-use development at 1075 Queen Street East in the City of Toronto are still applicable based on the revised site plan and stats. The key changes for the site plan / stats in comparison to the October 2013 submission are summarized as follows: October 2013 Submission: 50 residential rental units; 319m² of ground floor retail space; and, 23 parking spaces. December 2013 Updated: 48 residential rental units; 297m² of ground floor retail space; and, 23 parking spaces. As summarized above, the overall development scale has been reduced. 1 Traffic Impact and Parking Study, dated April 18, 2013 and Parking and Loading Assessment, dated October 23, 2013.

The Andrean Group Page 2 of 4 December 23, 2013 Parking Assessment: It is noted that the proposed unit mix and count has been revised to 19 one-bedroom units, 28 twobedroom units and 1 three-bedroom units for a total of 48 rental apartment units. Moreover, the commercial GFA has reduced from 319m² to 297m². The City of Toronto Zoning By-law No. 438-86 provision has been reviewed for the proposed development. The parking rates and calculations are summarized in Table 1.1. Table 1.1 Parking Requirements (City of Toronto By-law No. 438-86) Land Use Units / GFA Parameter Minimum Required Parking 1-Bedroom 19 0.50 Spaces / Unit 10 Spaces 2-Bedroom 28 0.75 Spaces / Unit 21 Spaces 3-Bedroom 1 0.75 Spaces / Unit 1 Spaces Visitor 48 0.06 Spaces / Unit 3 Spaces Commercial Retail 297 m 2 N/A 2 0 Spaces Total Required Parking 35 Spaces Based on the proposed development site statistics, the subject property is required to provide 35 parking spaces (32 tenant and 3 visitors) under the current City of Toronto Zoning By-law No. 438-86. For comparison purposes, the parking standards contained in the new City of Toronto Zoning By-Law No. 569-2013 have also been reviewed. Under this By-law, the site is zoned as Policy Area 4 - an area in the high capacity transit route. The proposed development would be subject to the following parking standards: 50 parking spaces (42 tenant and eight (8) visitors) for the rental apartment units. As the proposed ground retail spaces are ancillary, parking for the retail component of the development was not calculated. summarizes the parking requirements and supply based on the City of Toronto Zoning By-Law No. 569-2013. Table Error! No text of specified style in document..2 Parking Requirement (City of Toronto Zoning By-Law No. 569-2013) Land Use Units / GFA Parking Rates Parking Spaces Required 1-Bedroom 19 0.8 Spaces / Unit 15 Spaces 2-Bedroom 28 0.9 Spaces / Unit 25 Spaces 3-Bedroom 1 1.1 Spaces / Unit 1 Spaces Visitor 48 0.15 Spaces / Unit 7 Spaces Retail 297 m 2 1 Space for 100 m² 2 Spaces Total 50 Spaces As shown above, the proposed development will be required to provide 50 parking spaces (41 residential occupants, seven (7) residential visitors and two (2) commercial parking spaces). The 2 Within a mixed-use development, the City of Toronto does not require parking for the ground floor retail component of a mixed-use development.

The Andrean Group Page 3 of 4 December 23, 2013 proposed parking requirement of 50 spaces would result in a supply shortfall of 27 spaces under the City of Toronto Zoning By-Law No. 569-2013. As requested by City staff, in order to validate the results of the parking utilization surveys 3 contained in the October 2013 submission, we have submitted the request to purchase the unit mix information from the City Planning department for the survey locations and the request is currently being processed. When this information becomes available, it will be reviewed and we will advise City staff if there is any need to revisit our survey conclusions. In the meantime, we have contacted the property manager for 1328-1388 Queen Street East to obtain the unit mix information and it is compared with the proposed development: 1075 Queen Street East (Subject Site): 1-bedroom: 19 units 2-bedroom: 28 units 3-bedroom: 1 unit 1328-1388 Queen Street East (Proxy Site): 1-bedroom: 0 units 2-bedroom: 48 units 3-bedroom: 24 unit As summarized above, the unit mix for the proxy site at 1328-1388 Queen Street East mainly consists of larger unit types (i.e. more 2-bedroom and 3-bedroom units) in comparison to the subject site s current proposal. The survey result for 1328-1388 Queen Street East indicates a parking demand of 0.35 spaces / unit. Therefore, it is our opinion that the proposed parking supply of 0.48 spaces / unit is sufficient to accommodate the anticipated parking demand generated from the proposed residential rental development, which will have comparatively smaller units. In addition, results of an On-street Parking Utilization Surveys based on the previously submitted parking and loading study indicate availability of parking spaces at typical peak demand hours. As the proposed development is located in an area with comparable on-street parking supplies and parking demand characteristics, it can be concluded that, if required, adjacent on-street parking supply will be available for the proposed development. Stacked Parking System The owner intends to provide parking for the residential occupants of the proposed development through a stacked parking system. This system involves a hydraulic mechanism which can stack cars on top of each other. Based on discussions with the Owner, a fully automatic Klaus triple stacker parking system (Trendvario 4300) will be installed with a storage capacity of 20 parking spaces. The Trendvario-system is a parking automat in which 3 vehicles can be parked on top of one another. With Parking Automats, one vacant space on the entry level allows for horizontal and vertical shifting of all platforms. The system automatically moves the platforms in the desired position. This system can be 3 Undertaken at 1328-1388 Queen Street East, 1550 Queen Street East and 223 Woodbine Avenue.

APPENDIX A City Engineering Comments

APPENDIX B Car Stacker - Trendvario 4300

Page 1 of 6 Page 1 Section Dimensions Car data Page 2 Width dimesions Page 3 Width dimesions Approach Free spaces Page 4 Function Load plan Page 5 Electric.data Techn. data To be performed by the customer Page 6 Description 45 Standard Type 4300 25 40 Free space Grounding 3 +5 550 0 for vehicle up to 5.00 m = 16 4 long +5 (570 0 for vehicle up to 5.20 m = 17 long) 145 Upper floor (UF) Ground floor (GF) Lower floor (LF) 2% Drainage channel with sump 2% These floor areas need to be horizontal and on equal level across the full width of the pit 30 20 Compact Type 4300 Exclusive Type 4300 UF GF LF 175 (GT) Height (H) 1 UF GF LF Clear height (DH) 25 Detail X door dimensions see page 2 55 Free space see page 2 Height (H) 1 200 (GT) 230 (GT) Height (H) 1 Product Data TrendVario 4300 Standard passenger car 160 65 see table 100 CONFORMITY Type GT H DH* 4300 175 345 175 4300 175 365 195 4300 175 380 4300 200 375 180 4300 200 405 4300 230 435 * = without car Suitable for: Standard passenger car, station wagon/ Van. Height and length according to contur. car height Type GT H UF GF LF 4300 175 345 150 170 150 4300 175 365 150 190 150 4300 175 380 150 205 150 4300 200 375 175 175 175 4300 200 405 175 205 175 4300 230 435 205 205 205 width weight 4 wheel load Loadable up to 0 kg Single parking spaces can also be upgraded to handle heavier loads at a later date! Number of parking spaces: min. 5 to max. 29 vehicles Dimensions: 2 All space requirements are minimum finished dimensions. Tolerances for space requirements. Dimensions in cm. +3 0 190 cm max. 2000/0 kg max. 500/650 kg 145 15 13 6 95 125 500 (520) Standard station wagon/van/suv** 160 30 92 140 Notes 1 2 3 4 If height H is larger, vehicles with the maximum height as applicable for the GF can be parked on the UF, otherwise there will be free space available on the ceiling. In order to meet the minimum finished dimensions the tolerances according to VOB, part C (DIN 18330 and 18331) as well as the DIN 18202 must be observed. Potential equalization from foundation grounding connection to system (provided by the customer). Maximum load of 0 kg for extra charge. General notes If sprinklers are required make sure to provide the necessary free spaces during the planning stage. see table 105 15 100 500 (520) Klaus Multiparking GmbH Hermann-Krum-Straße 2 D-88319 Aitrach Phone +49-7565-508-0 Fax +49-7565-508-88 E-Mail info@multiparking.com Internet www.multiparking.com 6 125 13 95 Standard passenger car, station waggon/ Van/ SUV are vehicles without any sports options such as spoilers, low-profile tyres etc. ** = Make sure to observe the weights and dimensions! TrendVario 4300 Code number 585.29.-005 Version 07.2011

Page 1 Section Dimensions Car data Page 2 Width dimesions TrendVario 4300 Code number 585.29.200-005 Version 07.2011 Page 2 of 6 Widths Detail X for garages with sliding doors (Standard) Sliding door behind columns Sliding door between columns Sliding door in front of columns 25 1 1 25 1 25 Page 3 Width dimesions Approach Free spaces 30 H1 H2 2 H1 H2 Page 4 Function Load plan pit length 550 (570) pit length 550 (570) pit length 550 (570) Page 5 Electric.data Techn. data To be performed by the customer Page 6 Description Type GT 4300 175 4300 175 4300 175 4300 200 4300 200 H 345 365 380 375 405 DH 175 195 180 H1 220 220 4300 230 435 220 Type GT 4300 175 4300 175 4300 175 4300 200 4300 200 Columns per each grid unit Columns per each grid unit Columns per each grid unit H 345 365 380 375 405 DH 175 195 180 H2 220 220 230 220 230 4300 230 435 230 Type GT 4300 175 4300 175 4300 175 4300 200 4300 200 H 345 365 380 375 405 DH 175 195 180 H1 220 220 4300 230 435 220 H2 220 220 230 220 230 230 RB RB RB 10 Not available! 10 RB RB RB 1 (25) (B 2) 20 B 1 B 2 no. of grids x RB + 20 Carriageway in accordance with local regulations usable platform width grid unit width RB** B1 B2 230 * 250 250 230 240 250 270 280 270 280 240 250 270 290 290 270 (B 6) 20 B 5 B 6 no. of grids x RB + 20 Carriageway in accordance with local regulations usable platform width grid unit width RB** B5 B6 230 * 250 250 230 240 250 270 280 270 280 240 250 270 290 290 270 Columns every second grid unit Columns every second grid unit Columns every second grid unit RB RB RB 10 RB (B 2) 20 B 1 B 2 no. of grids x RB + 20 Carriageway in accordance with local regulations usable platform width grid unit width RB** B1 B2 230 * 250 500 480 240 250 270 280 520 540 560 500 520 540 270 290 580 560 RB RB RB RB 10 10 (B 4) 20 B 3 B 4 no. of grids x RB + 20 Carriageway in accordance with local regulations usable platform width grid unit width RB** B3 B4 230 * 250 500 480 240 250 270 280 520 540 560 500 520 540 270 290 580 560 RB RB RB RB usable platform width grid unit width RB** B5 B6 230 * 250 500 480 240 250 270 280 520 540 560 500 520 540 270 290 580 560 1 (25) (B 6) 20 B 5 B 6 no. of grids x RB + 20 Carriageway in accordance with local regulations 1 = Only applies to manually operated doors. The electrically driven doors must have 35 cm. * = Standard width (parking space width 230cm) ** = Grid unit width must strictly conform to dimensions quoted End parking spaces are generally more difficult to drive into. Therefore we recommended for end parking spaces our wider platforms. Parking on standard width platforms with larger vehicles may make getting into and out of the vehicle difficult. This depends on type of vehicle, approach and above all on the individual driver s skill.

Page 1 Section Dimensions Car data Page 2 Width dimesions TrendVario 4300 Code number 585.29.200-005 Version 07.2011 Widths Detail X for garages with roll doors Roll door behind columns Columns per each grid unit 15 70 35 RB RB RB 10 Page 3 of 6 Page 3 Width dimesions Approach Free spaces Page 4 Function Load plan Page 5 Electric.data Techn. data To be performed by the customer Page 6 Description DH 30 pit length 550 (570) Type GT 4300 175 4300 175 4300 175 4300 200 4300 200 35 H 345 365 380 375 405 DH 175 195 180 H1 H1 220 220 4300 230 435 220 roll door height 263 263 300 263 300 300 * = Standard width (parking space width 230cm) ** = Grid unit width must strictly conform to dimensions quoted 20 20 20 20 DF DF no. of grids x RB + 20 Carriageway in accordance with local regulations usable platform width grid unit width RB** door entrance width DF 230 * 250 230 240 250 270 280 240 250 270 290 270 End parking spaces are generally more difficult to drive into. Therefore we recommended for end parking spaces our wider platforms. Parking on standard width platforms with larger vehicles may make getting into and out of the vehicle difficult. This depends on type of vehicle, approach and above all on the individual driver s skill. Approach maximum descending slope 3 % maximum ascending slope 5 % The illustrated maximum approach angles must not be exceeded. Incorrect approach angles will cause serious maneouvring & positioning problems on the parking system for which the local agency of Klaus accepts no responsibility. Longitudinal free space; Standard parking space numbers; Denomination 10 RB 20 Longitudinal free space Moving direction 45 1 3 6 9 Upper floor Descending to entrance level Empty space 4 7 10 Entrance level Ground floor Transverse repositioning 2 5 8 11 Lower floor Raising to entrance level Initial position: upper floor platform No. 1 at entrance level (covering of pit; safety regulation)

Page 1 Section Dimensions Car data TrendVario 4300 Code number 585.29.200-005 Version 07.2011 Function e.g. for parking space No. 8: Check first that all doors are closed, then select No. 8 on operating panel. Page 4 of 6 Page 2 Width dimesions 1 3 6 1 3 6 1 3 6 Page 3 Width dimesions Approach Free spaces 4 7 2 5 8 4 7 2 5 8 4 7 2 5 8 Page 4 Function Load plan For driving the vehicle off platform No. 8 the ground floor parking platforms are shifted to the left. The empty space is now below the vehicle which shall be driven off the platform. The platform No. 8 will be lowered. The vehicle on platform No. 8 can now be driven off the platform. Page 5 Electric.data Techn. data To be performed by the customer Page 6 Description Load plan Compact Type Standard Type Exclusive Type F1 F1 185 DH 25 DH + 85 F1 F6 F1 185 DH 25 DH + 85 F1 F6 F1 F1 F2 F1 F2 F1 F2 F7 F7 185 DH 25 DH + 85 F6 F7 165 140 175 190 F3 F4 F5 F8 F9 F3 F4 F5 F8 F9 F3 F4 F5 F8 F9 6 6 550 (570) 6 6 550 (570) 6 6 550 (570) 165 200 220 195 230 DH: see page 1 The dimensions for the points of support are rounded values. If the exact position is required, please contact Klaus Multiparking. Load plan top view RB2 RB RB RB RB F3 F4 F5 F4 F5 F4 F5 F4 F5 F4 F3 F2 F1 F2 F1 F2 F1 F2 F1 F2 F1 F2 F6 F7 F6 F7 F6 F7 F6 F7 F6 F7 F6 F7 F8 F9 F9 F9 F9 F8 RB1 RB RB RB RB1 usable platform width RB RB1 230 * 240 250 250 270 280 270 280 290 270 290 300 RB2 135 140 145 150 155 platform load 2000 kg 0 kg Forces in kn F1 ±5 ±5 F2 ±2,5 ±2,5 F3 ±14,5 ±14,5 F4 +70 +80 F5 ±29 ±29 F6 ±0,2 ±0,2 F7 ±2,5 ±2,5 F8 +25 +35 F9 +50 +70 The system is dowelled to floor and walls. The drilling depth in the floor is approx. 15 cm. The drilling depth in the walls is approx. 12 cm. Floor and walls are to be made of concrete (grade of concrete min. C20/25)!

TrendVario 4300 Code number 585.29.200-005 Version 07.2011 Page 5 of 6 Page 1 Section Dimensions Car data Page 2 Width dimesions Page 3 Width dimesions Approach Free spaces Page 4 Function Load plan Page 5 Electric.data Techn. data To be performed by the customer Page 6 Description Electrical data Control box The control box must be accessible at all times from outside! Dimensions approx. 100 x 100 x 30 cm. Cutting through of wall from control box to parking system (contact the local agency of Klaus Multiparking for clarification) Technical data Cutting through Parking system fully visible from control box Range of application Generally, this parking system is not suited for short-time parkers (temporary parkers). Please do not hesitate to contact your local KLAUS agency for further assistance. Available documents wall recess plans maintenance offer/contract declaration of conformity test sheet on airborne and slid-borne sound Corrosion protection See separate sheet regarding corrosion protection. Environmental conditions Environmental conditions for the area of multiparking systems: Temperature range 10 to +40 C. Relative humidity 50 % at a maximum outside temperature of +40 C. If lifting or lowering times are specified, they refer to an environmental temperature of +10 C and with the system set up directly next to the hydraulic unit. At lower temperatures or with longer hydraulic lines, these times increase. Electrically driven doors In accordance with ZH 1/494 commercially used power-driven doors must be subjected to annual inspections. We urgently recommend concluding a maintenance agreement that includes this service for the entire system. Numbering The standard numbering of the parking spaces is to be taken from page 3. Different numbering is only possible at extra cost. Please take note of the following specifications: In general, the empty space must be arranged to the left. The numbers must be provided 8 10 weeks before the delivery date. Electrical supply to the control box / Foundation earth connector Suitable electrical supply 5 x 2.5 mm 2 (3 PH+N+PE) to control box with mains fuse 3 x 16 A slow or over-current cut-out 3 x 16 A trigger characteristic K or C. Suitable electrical supply to the control box must be provided by the customer during installation. The functionality can be monitored on site by our fitters together with the electrician. If this cannot be done during installation for some reason for which the customer is responsible, the customer must commission an electrician at their own expense and risk. In accordance with DIN EN 60204 (Safety of Machinery. Electrical Equipment), grounding of the steel structure is necessary, provided by the customer (distance between grounding max. 10 m). Operating device Easy-to-survey positioning (e.g. on column). Protection against unauthorized use. May also be recessed in wall if required. Sound insulation According to DIN 4109 (Sound insulation in buildings), para. 4, annotation 4, Klaus Multiparkers are part of the building services (garage systems). Normal sound insulation: DIN 4109, para. 4, Sound insulation against noises from building services. Table 4 in para. 4.1 contains the permissible sound level values emitted from building services for personal living and working areas. According to line 2 the maximum sound level in personal living and working areas must not exceed 30 db (A). Noises created by users are not subject to the requirements (see table 4, DIN 4109). The following measures are to be taken to comply with this value: Sound protection package according to offer/order (Klaus Multiparking GmbH) Minimum sound insulation of building R w = 57 db (to be provided by customer) Increased sound insulation (special agreement): DIN 4109, Amendment 2, Information on planning and execution, proposals for increased sound insulation. Agreement: Maximum sound level in personal living and working areas 25 db (A). Noises created by users are not subject to the requirements (see table 4, DIN 4109). The following measures are to be taken to comply with this value: Sound protection package according to offer/order (Klaus Multiparking GmbH) Minimum sound insulation of building R w = 62 db (to be provided by customer) Note: User noises are noises created by individual users in our Multiparking systems. These can be noises from accessing the platforms, slamming of vehicle doors, motor and brake noises. To be performed by the customer Safety fences Any constraints that may be necessary according to DIN EN ISO 13857 in order to provide protection for the park pits for pathways directly in front, next to or behind the unit. This is also valid during construction. Numbering of parking spaces Consecutive numbering of parking spaces. Building services Any required lighting, ventilation, fire extinguishing and fire alarm systems as well as clarification and compliance with the relevant regulatory requirements. Drainage For the middle area of the pit we recommend a drainage channel, which you connect to a floor drain system or sump (50 x 50 x 20 cm). The drainage channel may be inclined to the side, however not the pit floor itself (longitudinal incline is available). In the interests of environmental protection we recommend painting the pit floor. Oil and petrol separators must be provided according to the statutory provisions when connecting to the public sewage system! Wall cuttings Any necessary wall cuttings. Strip footings If due to structural conditions strip footings must be effected, the customer shall provide an accessible platform reaching to the top of the said strip footings to enable and facilitate themounting work. Electrical supply to the control box / Foundation earth connector Suitable electrical supply to the control box must be provided by the customer during installation. The functionality can be monitored on site by our fitters together with the electrician. If this cannot be done during installation for some reason for which the customer is responsible, the customer must commission an electrician at their own expense and risk. In accordance with DIN EN 60204 (Safety of Machinery. Electrical Equipment), grounding of the steel structure is necessary, provided by the customer (distance between grounding max. 10 m). Door shields Door shields that may be necessary. If desired, they can be ordered from Klaus Multiparking for an additional charge. If the following are not included in the quotation, they will also have to be provided / paid for by the customer: Costs for final technical approval by an authorized body

TrendVario 4300 Code number 585.29.200-005 Version 07.2011 Page 6 of 6 Page 1 Section Dimensions Car data Page 2 Width dimesions Page 3 Width dimesions Approach Free spaces Page 4 Function Load plan Page 5 Electric.data Techn. data To be performed by the customer Page 6 Description Description General description Multiparking system providing independent parking spaces for cars, one on top of the other and side by side. Dimensions are in accordance with the underlying dimensions of parking pit, height and width The parking bays are accessed horinzotally (installation deviation ± 1 %). Along the complete width of the parking automat an approach lane (driving lane in accordance with local regulations) must be available. Parking spaces are arranged on three different levels, one level on top of the other The platforms of both the lower floor (LF) and upper floor (UF) are moved vertically, the platforms of the ground floor (GF) horizontally. At approach level (GF) there is always one parking space less available. This vacant space is used for shifting the ground floor (GF) parking spaces sideways, thus enabling an upper floor (UF) parking space or lower floor (LF) parking space to be lowered or lifted to approach level. Consequently, a unit of five parking spaces (2 on the upper floor, 1 on the ground floor, 2 on the lower floor) is the smallest unit available for this parking system. The TrendVario 4300 allows parking of passenger cars and station wagons. For safety reasons the platforms can only be moved behind electromagnetically locked doors. All necessary safety devices are installed. This consists mainly of a chain monitoring system, locking lever for the upper and lower platforms and electromagnetic door locks. The doors can only be opened if the selected parking space has reached the park position and all openings are secured. A steel framework mounted inside the pit, consisting of Seriated supports Steel pillars with sliding platform supports Cross and longitudinal members running rails for the transversely movable ground floor (GF) platforms Platforms consisting of: Side members Cross members Platform base sections 1 wheel stop (on the right per parking space) Screws, small parts, etc. Lifting device for upper floor (UF) and lower floor (LF) platforms: Hydraulic cylinder with solenoid valve Chain wheels Chains Limit switches The platforms are suspended on four points and guided along the supports using plastic sliding bearings. Drive unit of transversely movable platforms on the ground floor (GF): Gear motor with chain wheel Chains Running and guide rollers (low-noise) Power supply via cable chain Hydraulic unit consisting of: Hydraulic power unit (low-noise, installed onto a console with a rubber-bonded-to-metal mounting) Hydraulic oil reservoir Oil filling Internal geared wheel pump Pump holder Clutch 3-phase-AC-motor (3.0 kw, 230/400 V, 50 Hz) Motor circuit breaker Test manometer Pressure relief valve Hydraulic hoses (which reduce noise transmission onto the hydraulic pipe Control system: Central control panel (operating device) used to select the desired parking space With series installation, the doors are opened manually. If desired, this can also be done using electric motors Electric wiring is made from the electric cabinet by the manufacturer Laterally movable doors Size Sliding door, dimensions: approx. 2500 mm x 2000 mm (width x height). Frame Frame construction with vertical centre stay bar made from extruded aluminium profiles (anodized, layer thickness approx. 20 µm) To open the doors a recessed grip is integrated in the aluminium profile. A rubber lip is used for the finishing of the closing edge to the building. Standard door panel Perforated steel plate Thickness 1 mm, RV 5/8, galvanized, layer thickness: approx. 20 µm Ventilation cross-section of the panel approx. 40 % Not suitable for outdoor garages Alternative door panel Perforated aluminium plate Thickness 2 mm, RV 5/8 E6/EV1, anodized, layer thickness: approx. 20 µm Ventilation cross-section of the panel approx. 40 % Beaded steel plate Thickness 1 mm, galvanized, layer thickness: approx. 20 µm. additional power coating, layer thickness: approx. 25 µm on the outside and approx. 12 µm on the inside Colour options for the outside (building view): RAL 1015 (light ivory), RAL 3003 (ruby), RAL 5014 (pigeon blue), RAL 6005 (moss green), RAL 7016 (charcoal grey), RAL 7035 (light grey), RAL 7040 (window grey), RAL 8014 (sepia), RAL 9006 (white aluminium), RAL 9016 (traffic white) Inside of the gates in light grey Plain aluminium sheet Thickness 2 mm, E6/EV1, anodized, layer thickness: approx. 20 µm Wooden panelling Nordic spruce in grade A vertical tongue and groove boards preimpregnated colourless Laminated safety glass Laminated safety glass made from single pane safety glass 8/4 mm Running rails The running gear of each doors consists of 2 twin-pair rolling gadgets, adjustable in height The running rails of the doors are fixed to brackets or the concrete lintel, or on a building-specific door suspension using ceiling fittings The guide consists of 2 plastic rollers mounted to a base plate, which is dowelled to the floor Running rails, ceiling fittings and guide roller base plate are hot-dip galvanized Door actuation Standard: Manually, i.e. the door is opened and closed by hand Alternatively: Electric drive via electric motor mounted to the rail system at the turning point of the sliding doors. The drive pinion engages into the chain mounted to the door. For safety reasons the movement of the platforms is always made behind locked doors. Position sensing, i.e. door open and door closed is effected by electric signalers. Separation (if necessary): Upon request Please note: Door panels (on the side, cover for running rails, etc.) and door suspensions are not included in the standard version but can be delivered against surcharge as special equipment. We reserve the right to change this specification without further notice The Klaus company reserves the right in the course of technical progress to use newer or other technologies, systems, processes, procedures or standards in the fulfillment of their obligations other than those originally offered provided the customer derives no disadvantage from their so doing.