HSW60 Introduction. NanaWall HSW60 The Thermally Broken Aluminum Framed Single Track Sliding System

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1 HSW60 Introduction NanaWall HSW60 The Thermally Broken Aluminum Framed Single Track Sliding System and Rw values of 43 with the head track recessed and 41 with the head track exposed. The same unit with STC 32 insulated glass achieved STC and Rw values of 32 with the head track recessed and STC of 32 and Rw values of 31 with the head track exposed. Unique Features The thermally broken aluminum framed NanaWall HSW60 is an exterior, weather-resistant single track sliding system that provides the ultimate in versatility and flexibility. This is a storefront and entrance system that can easily and efficiently slide with a minimum of force completely out of-sight when desired, offering designers new possibilities for large, exterior opening glass walls. To see these operable wall concepts in action, please visit www. nanawall.com and click on the Animations link on the HSW60 page. For benefits of all NanaWall systems, see the General Introduction section. For common features and a comparison between aluminum individual panel systems, see the Aluminum Single Track Sliding Systems Introduction. Key Enhancements of the NanaWall HSW60 System Unit Heights of up to 12' (3650 mm) and panel widths of up to 5' (1525 mm) are possible. No horizontal mullion needed for unit heights of up to 10' (3050 mm). Incorporated swing panel with panel heights of up to 9'2" (2800) possible, with more choices on position of incorporated swing panels in the opening and designed for use as a commercial egress door. Sintered Bronze Carrier rollers and guided switches to the stacking bay make operation easier and smoother. Incorporated Swing Entry/Exit Panel(s) If desired, almost every sliding panel in the closed position can be converted and be used as an incorporated single acting swing panel. A pair of incorporated swing panels allows the possibility that either panel can be opened first. Swing panels can open inward or outward. The incorporated entrance doors have been engineered for "normal" commercial traffic and have been independently tested to half a million opening and closing cycles per AAMA 920. Florida Approval The HSW60 has received statewide Florida approval with Product Approval number This information with limitations can be viewed at Floor Track Optional For certain applications, sills can be eliminated completely providing seamless transition between two spaces. Locking rods in panels engage in adjustable floor sockets. Multiple Stacking Options The sliding storefront can be completely out-of-sight during business hours. The tracks can be laid out beyond the frame in a variety of configurations, and the stacking bays can be positioned anywhere along the track. The two carrier suspension system permits the use of track with right-angle turns and segmented curves, allowing multiple options for space set-up and remote storage. Multiple Space Set-up Using the same panels with additional parallel and perpendicular tracks will expand or reduce heated or air conditioned spaces with ease and convenience. Right Turns and Segmented Curved Walls With an ingenious, variable angle astragal profile, systems can be supplied with any segmented angle between 0º and 90º between panels, allowing the designer to create completely open corners or bays. Design Flexibility Custom sizes of 5' (1525 mm) are possible. Individual panels can be designed with different widths, glazing choices (double and triple insulated glass, laminated glass, etc.) and muntin layouts (horizontal mullions, SDLs, solid panels, higher bottom rails, etc.). Weather Resistant The system is engineered to provide weather resistance, high structural load performance, and resistance to dust infiltration. Superior Thermal Break Panels thermally broken with a 7/8 (22 mm) polyamide plastic reinforced with glass fibers. This thermal barrier provides increased strength, superior humidity control, improved acoustics, and energy savings with better u values. Acoustical Performance The HSW60 system has been tested by an independent acoustic lab for acoustical performance. A standard unit (no incorporated swing panel) with STC 45 special laminated glass achieved STC Single Hand Easy Operation In/Out of Stacking Bay With an intelligent guide system, most panels self-guide through the switches for easy operation and stacking. Specifications and details subject to change without notice NanaWall Systems 1

2 HSW60 Introduction General Description The HSW60 is a thermally broken, aluminum framed single track sliding system, designed to provide an opening glass wall or storefront with any custom panel size within the limitation of the Maximum Size Chart. Different panel widths are possible with additional tracks in the stacking bay for the different widths. Sliding panels convertible to incorporated swing entry/exit panel(s) are possible. An end panel can be a swing panel hinged to a side jamb. Swing panels are single acting but can be either inward or outward opening. Possible configurations and stacking bay options are virtually limitless (see drawings for some possibilities). Frames The nominal head jamb thickness is 2 9/16 (65 mm). Optional cover plates on both sides can be provided. The nominal side jamb thickness is 2 3/8 (60 mm) extruded aluminum thermally broken with a 7/8 (22 mm) wide polyamide plastic. All pins and screws to assemble the frame are provided. Various sill options, including a no sill option with floor sockets only, are available. The stacking bay and the upper track leading to the stacking bay are the same profile as the head jamb. Panels The stiles and rails of all panels are extruded aluminum, 2 3/8 (60 mm) thick and thermally broken with a 7/8 (22 mm) wide polyamide plastic; see crosssection drawings. Standard finishes available are 50 powder coated finishes as shown in the NanaWall Color Chart and in clear anodized. 25 of these colors are available in both glossy and semi-glossy (matte) finishes. Other various custom finishes are also available. Different finishes are also possible on and exterior sides; see Aluminum Finish Options in the General Introduction. Panels are pre-assembled and panel stiles and rails are connected by special zinc die cast alloy, thermally broken corner fittings that incorporate carriers, hinge components, and male and female locking receptacles. The finish for corner connectors is the closest powder coat match to the finish of frame and panels. Incorporated swing panel pivot side stiles utilize a special circular profile that also doubles as storage for a crank handle that is used to convert panel from sliding panel to swing panel and vice versa. Glazing Units can be supplied glazed with 15/16 clear double insulating safety, 15/16 double insulating Low-E safety, 1 ½ triple insulating glass, ¼ single tempered, other high performing safety glass such as Heat Mirror, special tint, etc. or other glass on request. See Glazing in the General Introduction for other glass thickness possible. Weatherstripping Double APTK weatherstripping is provided for vertical sealing between panels and between panels and frames; brush seals with flexible plastic web are provided for all horizontal sealing and for vertical sealing at pivot stiles of incorporated swing panels; see cross-section drawings. Sliding Hardware For sliding panels, two load-bearing unidirectional carriers are attached to the upper corners of each panel. Each carrier has one glide-roller and two-three horizontal counter-rotating wheels that roll in the track. Each wheel is made from sintered bronze (oil impregnated) that is self-lubricating and is attached to the panels with stainless steel rods. Carriers can easily negotiate square or angled corners. Swing Panel Hardware For Incorporated swing panels, the top rail consists of two parts - an upper arm with similar unidirectional carriers as on sliding panels and the actual top rail of the swing panel. This top rail can be detached from the upper arm for conversion from a sliding panel function to a swing panel function and vice versa. Conversion from a sliding panel to a swing panel and vice versa is accomplished by turning the flat handle 180 degrees and by operation with a crank handle of the Conversion box located on the upper arm. For swing panels that are attached to a side jamb, a commercial grade clear or dark bronze anodized hinges are attached. Locking Hardware and Handle Options On sliding panels and swing panels attached to a side jamb, a two point locking hardware is provided as needed, consisting of top and bottom locking rods operated by a 180º turn of a flat handle on the inside only. The top rod interlocks the male locking receptacle with the female receptacle of the adjacent panel or engages into the head track. The lower rod is thrown into a designated striker plate. The pivot side of incorporated swing panels are provided with the same locking with the lower rod engaging into a designated strike plate. For incorporated swing panels and swing panel(s) attached to the side jamb, there are the following additional hardware options: 1. Lever Handle Operation. Consisting of standard lever handles on the inside and outside, a Schlage compatible lockset, a lockable latch, deadbolt and rods at the top and bottom. After unlocking with turn of key or thumbturn, depression of handles withdraws all locking points and latch. Lifting of handles engages rods and turn of key or thumbturn engages deadbolt and locks. 2. Push/Pull Handle Operation. Consisting of push/pull handles on both sides with deadbolt(s) operated by a Schlage compatible lockset. Turn of key or thumb turn operates lock. Lockset option of having key operation on both sides. To keep the panel closed when unlocked, a door closer can be supplied. 3. Panic Hardware Operation. For panic hardware to be supplied and installed by others, outward opening swing panels can be supplied with no locking hardware. For a unit with no swing panel, an option to enable a unit to be opened from the outside is to provide on the sliding panel to be opened first : Two point locking hardware consisting of top and bottom Polyamide capped locking rods operated by a 180 º turn of a L-shaped handle on the inside and lockable with a thumbturn or a flat handle on the inside and lockable with a key. In both cases, there will be an L-shaped/flat handle on the outside that is lockable with a key. Please note that locking from the inside with a key may not meet egress requirements. Handle Finish Schemes: Standard - Stainless steel lever, flat, and L shaped handles in brushed satin or black titanium finish. Optional - Brass lever handles in oil rubbed, satin nickel or white finish, flat handles closest powdercoat match to panel aluminum finish and nylon L shaped handles in dark brown, gray or white finish. Push/pull handles are in brushed stainless steel finish or nylon in dark brown, gray, or white finish NanaWall Systems Specifications and details subject to change without notice.

3 HSW60 Engineering Details Specifications and details subject to change without notice NanaWall Systems 3

4 HSW60 Testing Results - Performance of the NanaWall HSW60 type of test results * Air Infiltration: ASTM E-283, cfm/ft 1.6 psf (75 Pa): 0.30 (1.5 L/s/m 2 ) #1. Standard Unit: No uncontrolled water 0 psf (0 Pa) * Water Penetration: ASTM E-547 and E-331 (with low profile saddle sill) #2. Unit wtih weepholes from middle channel: No uncontrolled water 2.92 psf (140 Pa) subject to the following adaptations of the sill in the field by others: 1. Remove the gasket covering the middle channel 2. Drill weep holes through the outer bottom wall in middle channel (1" x 1/4" weep hole per panel) 3. Drill weep holes through the lower front face of sill (1" x 1/4" weep hole per panel) #3. Unit with weep holes from inner channel: No uncontrolled water psf (290 Pa) subject to the following additional adaptations of the sill in the field by others: 1. Remove the gaskets covering the inner channel. 2. Drill weep holes through the bottom of this channel (about one 1 x 1/4 weep hole per panel.) 3. Drill weep holes through the lower front face of the sill to the inner channel bottom (about 1 x 1/4 weep hole per panel.) Please note that due to varying site requirements and conditions, these sills will not be prepared for drainage by NanaWall Systems, Inc. If this drainage system is desired, we recommend that a qualified professional construct this system on the project site that is strictly in accordance with instructions provided by NanaWall Systems, Inc. and in accordance with good waterproofing techniques. If drain connections are not made, or are not possible, unit may leak with wind driven rain. * Structural Load Deflection ASTM E-330: pass See design windload charts for other sized panels. Note that the structural test pressures were 50% higher than the design pressures shown. Design Pressure 45 psf (2160 Pa) Design Pressure 45 psf (2160 Pa) * Forced Entry Resistance: ASTM F842 Type A. Grade: 40 Pass Operation / Cycling Performance: AAMA 920 For incorporated swing panel 500,000 cycles - pass * Excerpts of results of a 6 panel unit tested by Architectural Testing, Inc., an independent testing laboratory, in October Unit was 18'0 1/2" W x 10' H with a total of 6 panels consisting of a half swing panel attached to the side jamb, 3 sliding panels and 2 incorporated swing panels. All locking was standard and sill was low profile saddle sill. Thermal Performance Rated, certified and labeled in accordance with NFRC Type of Glass (1 lite) center of glass u-factor Glass thickness unit U- Factor Standard Sill low profile saddle Sill sockets only SHGC 2010 Energy star unit U- Factor SHGC 2010 Energy Star unit U- Factor SHGC 2010 Energy Star Double IG Clear (air filled).48 15/16" Double IG Standard Low E (argon filled) Double IG Standard Low E (air filled) Double IG US Low E #2 & #4 surfaces (argon filled) Double IG US Low E #2 & #4 surfaces (air filled) Double IG Heat Mirror TC88 + Low E (argon filled) Double IG Heat Mirror TC88 + Low E (krypton filled) Triple IG Low E x 2 (argon filled).26 15/16" /16" /16" a a a.24 15/16" /2" a a a /2" a a a /16" a a a Triple IG Low E x 2 (air filled) /16" a a a 1/4" single /4" **Acoustical Performance STC 45 special laminated glass achieved STC and Rw values of 43 with head track recessed and 41 with head track exposed and with STC 32 insulated glass achieved STC of 32 with headtrack recessed or exposed. Notes ** Excerpts of results of 13'7" W x 8'8" H 4 panel unit with swing panel attached to the side jamb tested by Nusing Mobile Trennwandtechnile, Munster, Germany, an independent testing laboratory in December a 2010 Energy Star Qualification Criteria: U-Factor <.32, SHGC <.30 for doors in all climate zones. SHGC = Solar Heat Gain Coeffecient Call NanaWall for U-Factor & SHGC for other glass types NanaWall Systems Specifications and details subject to change without notice.

5 HSW60 Maximum Size Chart (with different number of panels) 12 0 (3660) 10 2 (3100) 9 10 (3000) 9 6 (2900) NOTE: English Dimensions are approximate. Dimensions in parenthesis are in millimeters The number of panels possible in a system is unlimited. Any custom panel size is possible up to the maximum size shown. : indicates maximum unit height and width of a sliding panel : indicates maximum unit height and width of a swing panel Frame Height of Unit 9 2 (2800) 8 10 (2700) 8 6 (2600) 8 2 (2500) 7 10 ((2400) 7 6 (2300) 7 2 (2200) 6 10 (2100) and less * 5'0"* (700) (800) (900) (1000) (1100) (1220) (1550) Panel Width * For panel widths wider than 4'0" (1220 mm) and less than 5'0" (1550 mm), there are the following limitations: 1. Maximum frame height possible is 10'0" (3050 mm). 2. Is only possible with extended straight parallel stacking as shown in Concept #3. 3. Floor socket option is not available. On chart indicates that for triple glazed panels a horizontal mullion is needed, located such that no glass pane height is more than 8 0 (2440 mm.) 10' (3050 mm) is also maximum height for triple glazed units. On chart indicates that for single and double glazed panels a horizontal mullion is needed, located such that no glass pane height is more than 8'0 ft (2440 mm.) The total number of panels in a unit is only restricted by structural steel consideration. The maximum size limits are based on the weight of insulated glass with a net glass thickness of 1/2 or 12 mm (each glass pane being 1/4 or 6 mm thick for double insulated and being 5/32 or 4 mm thick for triple insulated). If thicker net glass is used on a panel, this maximum size chart will not apply. Please consult with NanaWall. Each application is different so please consult with NanaWall on possibilities. The unit width is the panel width multiplied by the number of panels. Generally, the minimum width of each sliding panel is 1 11 (600 mm) and the minimum incorporated swing panel width is 2'7" (800 mm). Specifications and details subject to change without notice NanaWall Systems 5

6 HSW60 Possible Stacking and Configuration Elevation drawings and plan views of typical possible stacking concepts. Please see referenced cross-section details. As there can be many other stacking possibilities, please submit your ideas and sketches to NanaWall Systems, Inc. for evaluation. Please note that the number of panels in a system are unlimited. Incorporated swing panels can be placed almost anywhere in the opening. Only a few examples are shown below. A switch is defined as a break in the upper track at the head jamb to lead panels away from the opening to the stacking bay. Concept 1 Perpendicular stacking in opening with Swing Panel attached to the side jamb Concept 2 Parallel stacking outside the opening. 2.12/2.2/2.4/ /2.2/2.4/ /2.18/2.16/2.13 Concept 3 Parallel stacking with extended track. Unit is offset from wall opening. Concept 4 Parallel stacking outside the opening with swing panel attached to the side jamb. 2.12/2.2/2.4/ /2.2/2.4/ /2.18/2.16/ NanaWall Systems Specifications and details subject to change without notice.

7 HSW60 Possible Stacking and Configurations Concept 5 Angled stacking outside the opening. Concept 6 Perpendicular stacking outside the opening. 2.12/2.2/2.4/ /2.18/2.16/ /2.2/2.4/2.02 Concept 8 In tandem stacking of panels along adjacent wall. Concept 9 Stacking outside the opening at an angle. 2.12/2.2/2.4/ /2.2/2.4/2.02 Concept 10 Parallel stacking within the opening with swing panel attached to the side jamb. 2.12/2.2/2.4/2.02 Specifications and details subject to change without notice NanaWall Systems 7

8 HSW60 Possible Stacking and Configurations Concept 11 Perpendicular stacking within the opening with 90º switch for first panel only. Concept 12 Parallel stacking outside the opening. 2.12/2.2/2.4/ /2.18/2.16/ /2.2/2.4/2.02 MIN: VARIES Concept 14 Parallel stacking outside the opening on both sides. Swing panels attached to the side jambs Concept 15 Perpendicular stacking away from opening with Swing Panel attached to the side jamb / / /2.2/2.4/ /2.18/2.16/ NanaWall Systems Specifications and details subject to change without notice.

9 HSW60 Possible Stacking and Configurations Single Track Sliding Door / Window Combination in One Unit - Without Fixed Post (NanaWall Kitchen Transition) The Single Track Sliding Door / Window combination opens wide, seamlessly turning a kitchen into an indoor / outdoor space. It can also be used in other types of applications. Please note that below are examples with just three of the HSW stacking concepts. Door / Window combinations are also possible with other stacking concepts. Please note some limitations as follows: 1. Is only possible with certain configurations and sills. 2. Lower corner where window meets door will not be as weather resistant as compared to a unit with all panels equal in height. 3. Handle heights of the door unit and window unit may be different. Elevations looking from Inside. Concept 2DW Door / Window Combination Unit with parallel stacking outside the opening. Concept 10DW Door / Window Combination Unit with parallel stacking within the opening with swing panel attached to the side jamb. Concept 11DW Door / Window Combination Unit with perpendicular stacking within the opening with 90º switch for first panel only. Specifications and details subject to change without notice NanaWall Systems 9

10 HSW60 Vertical Sections for Sliding Panel or Swing Panel Attached to a Side Jamb All Cross Sectional Views Are Half Size Detail 1.2 Head Jamb Detail 2.2 No sill-adjustable floor socket (No rating against wind driven rain) FFH Frame Height Detail 2.4 Flush Sill (No rating against wind driven rain) Detail 2.12 Low Profile Saddle Sill (for resistance against wind driven rain, drain connection by others necessary.) FFH FFH NanaWall Systems Specifications and details subject to change without notice.

11 All Cross Sectional Views Are Half Size HSW60 Vertical Sections for Sliding Panel with Incorporated Swing Panel Detail 1.6 Head Jamb of Incorporated Swing Panel Detail 22.0 Low Profile Saddle Sill of Incorporated Swing Panel (for resistance against wind driven rain, drain connections by others necessary) FFH Detail 2.3 Surface Mounted Interior Sill of Sliding Panel FFH Specifications and details subject to change without notice NanaWall Systems 11

12 HSW60 Vertical and Horizontal Sections All Cross Sectional Views Are Half Size Vertical Sections for Sliding Panel with Incorporated Swing Panel Detail 2.16 No Sill - adjustable Floor Socket (No rating against wind driven rain) Detail 2.18 Flush Sill (No rating against wind driven rain) FFH FFH Detail 2.13 Surface Mounted Interior Sill Detail 6.3 Adjacent wall Seal between sliding unit & perimeter supplied by others, installed by others. Maximum gap to be 3/8 Maximum [10 mm] gap to be 3/8" (10 mm) FFH NanaWall Systems Specifications and details subject to change without notice.

13 All Cross Sectional Views Are Half Size HSW60 Horizontal Sections Detail 11.2 Sliding Panel meeting with hinged side of incorporated swing panel Detail 11.6 Strike side of swing panel meeting sliding panel or strike sides of a pair of swing panels meeting 5 3/16" [132] Detail 35.0 Two Sliding Panels meet at segmented angle (90 to /8" [92] 7/16" [10] Specifications and details subject to change without notice NanaWall Systems 13

14 HSW60 Horizontal Sections All Cross Sectional Views Are Half Size Detail 6.6 Hinge side of incorporated swing panel meeting side jamb 555/8" 5/8' [142] Detail 35.8 Sliding Panel meeting strike side of incorporated swing panel at segmented angle (90 to 180 ) 4" [102] 7/16" [10] 6 3/8" [161] Detail 35.4 Sliding Panel meeting hinge side of incorporated swing panel at segmented angle (90 to 180 ) 3/4" [19] 2 7/8" [73] 1 1/8" [29] NanaWall Systems Specifications and details subject to change without notice.

15 All Cross Sectional Views Are Half Size HSW60 Section Details Detail 11.0 Two Sliding Panels Detail 11.4 Meeting of a 2 panels with locking on both panels Detail 6.2 Side jamb meeting panel. Detail 6.4 Swing Panel hinged to a side jamb. Specifications and details subject to change without notice NanaWall Systems 15

16 HSW60 Section Details All Cross Sectional Views Are Half Size Typical Kickplate Typical Mullion Profile Detail 6.2 Typical Panel Profile with Single Glazing FFH Typical Simulated Divided Lites Muntins with Spacer Between Insulated Glass (SDL) Detail 6.2 Typical Panel Profile with Triple Insulated Glazing NanaWall Systems Specifications and details subject to change without notice.

17 All Cross Sectional Views Are Half Size Detail A22 Head Jamb Detail A24 Head Jamb (This detail is not recommended for larger openings or larger panels in which case the adjustable bolts in Details A22 and A23 make adjustments easier) HSW60 Suggested Typical Installation Detail A23 Head Jamb Panel Hinged at Right Side Jamb (Inward Opening) Specifications and details subject to change without notice NanaWall Systems 17

18 HSW60 Suggested Typical Installation All Cross Sectional Views Are Half Size Detail A25 Head jamb recessed Detail A26 Head jamb recessed on one side See Installation Notes on Next Page NanaWall Systems Specifications and details subject to change without notice.

19 All Cross Sectional Views Are Half Size HSW60 Suggested Typical Installation Detail 20 Flush Sill Detail 21 Adjustable Floor Socket Detail 22 Low Profile Saddle Sill* Installation Notes Suggested Typical Installation drawings shown are very general and may not be suitable for any particular installation. Product placement, fasteners, flashing, waterproofing, sealant, trim and other details for specific surrounding conditions must be properly designed and provided by others. FINISH FLOOR Installation Considerations The approximate weight of a panel with single glazing is 4.5 lbs/ sq ft² and double-glazing is 5.5 lbs - 8 lbs/sq ft² respectively. The maximum vertical structural deflection of the header should be the lesser of L/720 of the span and 1/4 under full live and dead loads. The structural support for lateral loads must also be provided. An adjustable anchorage system (see Detail A23) is highly recommended at the head jamb. See Pre-Installation Preparation and Installation Guidelines in the General Introduction. An owner s manual with installation instructions is available upon request. NOTE: Overhead structural steel support must be provided for the entire length of the track and stacking bays. Detail 23 Surface Mounted Interior Sill It is recommended that all building dead loads be applied to the header prior to installing the NanaWall. If so and if a reasonable amount of time has been allowed for the effect of this dead load on the header, then only the building's live load can be used to meet the above requirements of L/720 or 1/4. If not, both the dead and live loads need to be considered. *Low Profile Saddle Sill for Inward or Outward Opening For resistance against wind driven rain, the following is recommended by others: 1. Remove the gasket covering the inner channel. 2. Provide necessary weepholes at the bottom of channels and on the outside face of the sill. 3. Make necessary drain connections. Ask NanaWall for a detailed drawing. FFH Specifications and details subject to change without notice NanaWall Systems 19

20 HSW60 Design Windload Chart Design Windload Chart (Derived From Comparative Analysis) Test Panel Size: 37" W x 113" H Please note that some jurisdictions may limit the use of these charts or may not accept them at all. Design pressures and/or sizes may be restricted to what was tested. Please also note that chart is only applicable for units with referenced Nana Wall supplied locking. Both positive and negative design pressures. Allowable Design Wind Loading - PSF Panel Width Panel Height See Maximum Frame Size Chart for Possible Sizes NanaWall Systems Specifications and details subject to change without notice.

21 Guide Specifications - Section HSW60 NanaWall HSW60 - Thermally Broken Aluminum Framed Single Track Sliding System Part 1 - General 1.01 Summary A. Section Includes: Individual panel aluminum and glass door system, including aluminum frame, tracks, threshold, sliding panels, swing panels, sliding panels with incorporated swing panels, stacking bays, sliding/swinging and locking hardware, weather stripping, glass and glazing; designed to provide an opening glass wall or storefront, with sizes and configurations as shown on drawings and specified herein, with the NanaWall HSW60, the Thermally Broken Aluminum Framed Single Track Sliding System as supplied by NanaWall Systems, Inc References A. American Architectural Manufacturers Association (AAMA): 1. AAMA 611, Voluntary Specification for Anodized Architectural Aluminum. 2. AAMA 2604, Voluntary Specifications, Performance Requirements and Test Procedures for Pigmented Organic Coatings on Aluminum Extrusions and Panels. 3. AAMA , Voluntary Specifications for Forced Entry Resistant Aluminum Sliding Glass Doors. 4. AAMA 920, Operation / Cycling Performance B. American National Standards Institute (ANSI): 1. ANSI Z97.1, Safety Performance Specifications and Methods of Test for Safety Glazing Material Used In Buildings. C. American Society for Testing and Materials (ASTM): 1. ASTM E 283, Test Method for Rate of Air Leakage through Windows, Curtain Walls, and Doors by Uniform Static Air Pressure Difference. 2. ASTM E 330, Test Method for Structural Performance of Windows, Curtain Walls, and Doors by Uniform Static Air Pressure Difference. 3. ASTM E 547, Test Method for Water Penetration of Windows, Curtain Walls, and Doors by Cyclic Static Air Pressure Differential. D. Consumer Product Safety Commission (CPSC): 1. CPSC 16CFR-1201, Safety Standard for Architectural Glazing Materials. E. National Fenestration Rating Council (NFRC): 1. NFRC 100, Procedure for Determining Fenestration Product Thermal Materials. 2. NFRC 200, Procedure for Determining Solar Heat Gain Coefficient Submittals A. Product Drawings: Indicate dimensioning, configuration, swing panels, stacking bay layout, typical head jamb, side jambs and sill details, type of glazing material and handle height. B. Product Data: Manufacturer s literature including independently tested data listing performance criteria and Owner s Manual with installation instructions. C. Contract Closeout Submittal: Submit Owner s Manual from manufacturer. Identify with project name, location and completion date, and type and size of unit installed Quality Assurance A. Manufacturer: Provide complete, precision built, engineered, pre-fitted unit by a single source manufacturer with at least 25 years experience in the sale of folding/sliding door systems for large openings in the North American market. 1. The manufacturer must have a quality management system registration to the ISO 9001: 2008 standard. 2. The manufacturer must have an environmental management system registration to the ISO 14001: 2005 standard. B. Performance Requirements: Provide from manufacturer that has independently tested typical units with the following minimum results: Specifications and details subject to change without notice NanaWall Systems 21

22 HSW60 Guide Specifications - Section Air infiltration: Provide system with maximum air leakage of 0.30 cfm/sq ft when tested according to ASTM E283 at a static air pressure difference of 1.6 psf (75 Pa). 2. Water Penetration under Static Pressure: a. Provide system with a saddle sill that does not evidence water penetration when tested accord ing to ASTM E331 and ASTM E547 at a static air pressure difference of 0 psf (0 Pa). b. Provide system with a saddle sill with typical field installed weep holes and drainage by others from the outer channel in the sill (see drainage instructions from NanaWall) that do not evidence water penetration when tested according to ASTM E331 and ASTM E547 at a static air pressure difference of 2.92 psf (140 Pa). c. Provide system with a saddle sill with typical field installed weep holes and drainage by others from both the inner and the outer channel in the sill (see drainage instructions from NanaWall) that do not evidence water penetration when tested according to ASTM E331 and ASTM E547 at a static air pressure difference of 6 psf (290 Pa). 3. Structural Test Performance: Provide system that when tested according to ASTM E330 at 150% of positive and negative design pressures with panel sizes of 3'1" wide and 9'5" high achieved a DP rating of +/- 45 psf (+/- 2,160 Pa). 4. Forced Entry Resistance: Provide system that when tested according to ASTM F842 Grade 40, there was no entry. 5. Operation / Cycling Performance of incorporated Swing Panel: Provide system that when tested according to AAMA 920, there was no failure after 500,000 cycles (requirement for AW Performance Class). SPECIFIER NOTE: Water penetration testing results can only be applicable if the unit matches the test units in the type of sill used. Structural load testing results are only applicable for the test unit size and type of locking used on the test unit (Comparative analysis charts by manufacturer shows which panel sizes (if any) would meet the structural loading design pressures specifically required for the project. Check for limitations on the use of these charts in the jurisdiction of the project). Forced entry testing results are only applicable for the test unit type of locking. See manufacturer s latest published data. C. Thermal Performance U value: Unit to be rated, certified and labeled in accordance with NFRC 100, with values shown in manufacturer s latest published data for the glazing and sill specified. D. Solar Heat Gain Coefficient: Unit to be rated, certified and labeled in accordance with NFRC 200, with values shown in manufacturer s latest published data for the glazing and sill specified. E. Installer Qualifications: Installer experienced in the installation of manufacturer s products or other similar products for large openings. Installer to provide reference list of at least 3 projects of similar scale and complexity successfully completed in the last 3 years Warranty A. Provide manufacturer s standard warranty against defects in materials and workmanship. B. Warranty Period: Ten years for roller and for seal failure of insulated glass supplied. For all other components, one year (two years if unit is installed by manufacturers certified trained installer) from date of delivery by manufacturer Site Conditions, Delivery, Storage and Handling A. In addition to general delivery, storage and handling requirements specified in Section 01600, comply with the following: 1. Deliver materials to job site in sealed, unopened cartons or crates. Protect units from damage. Store material under cover, protected from weather and construction activities. Part 2 - Products 2.01 Supplier a. NANA WALL SYSTEMS, INC. - HSW Meadow Creek Drive, Corte Madera, CA toll Free (800) NanaWall Systems Specifications and details subject to change without notice.

23 Guide Specifications - Section HSW60 telephone: (415) fax: (415) website: info@nanawall.com B. Other suppliers equal to the specified product must submit substitution request two weeks before bid for prior approval Materials A. Frames and Panels: From manufacturer s standard profiles, provide head tracks, stacking bays, side jambs, sliding panels, swing panels attached to side jamb, and sliding panels with incorporated swing panels with dimensions shown on drawings. 1. Provide clear anodized aluminum head track [OR aluminum head track with aluminum covers on both sides] 2. Provide panels with: Standard one lite [OR with horizontal mullion(s) at specified height(s) from the bottom of the panel] [OR with simulated divided lites in pattern as shown on drawings]. 3. Provide standard bottom rail [OR manufacturer s standard kickplate with height specified]. 4. Aluminum Extrusion: Extrusions with nominal thickness of.078 (2.0 mm). Alloy specified as AIMgSi0.5 with strength rated as 6063-T5 or F-22 (European standard). Anodized conforming to AAMA 611, powder coated conforming to AAMA Panels thermally broken with 7/8 (22 mm) Polyamide plastic reinforced with glass fibers. Standard aluminum head jamb [OR standard aluminum head jamb with cover plates on both sides]. Polyamide plastic less than 7/8" (22 mm) wide or pour and de-bridge thermal break will not be accepted. 6. Aluminum Finish: Select from NanaWall Powder Coating Finish Chart of 50 standard colors [OR clear anodized] [OR select from range of RAL high gloss powder coated finishes available from manufacturer] [OR select from range of RAL matte powder coated finishes available from manufacturer] [OR custom finish] Same [OR different] finishes on inside and outside B. Glass: 1. All glass to comply with safety glazing requirements of ANSI Z97.1 and CPSC 16CFR Provide manufacturer s standard glass with dry glazing with glass stops on the inside only: Double insulating clear safety glass with either total thickness of 15/16" (24 mm) with each pane being 5/32" (4 mm) thick or total thickness of 1 1/8" (28 mm) with each pane being 1/4" (6 mm) thick depending on panel size. [OR Double insulating Low-E argon fill safety glass with either total thickness of 15/16" (24 mm) with each pane being 5/32" (4 mm) thick or total thickness of 1 1/8" (28 mm) with each pane being 1/4" (6 mm) thick depending on panel size] [OR 1/4 (6 mm) tempered] [OR 1 7/16 (36 mm) triple insulating Low E argon fill safety glass composed of 3 panes of 5/32 (4 mm) glass] [OR 1 1/2 (38 mm) double insulating safety with Heat Mirror foil composed of 2 panes of ¼ (6 mm) glass] [OR other glass available from manufacturer, including glass with other total thickness] 2. Provide manufacturer s standard silver gray finish [OR dark bronze] glass spacers. Provide without capillary Specifications and details subject to change without notice NanaWall Systems 23

24 HSW60 Guide Specifications - Section tubes [OR with capillary tubes]. C. Locking Hardware and Handles: 1. Main entry panel: on the main entry panel(s) for models with swing panel(s), provide manufacturer s standard lever handles on the inside and outside and a Schlage compatible lock set with a lockable latch and multi-point locking with a dead bolt and rods at the top and bottom. Rods to be concealed and not edge mounted. After turn of key or thumbturn, depression of handles withdraws latch. Lifting of handles engages rods and turn of key or thumb turn engages deadbolt and operates lock. If there are inactive swing panels, provide matching dummy lever handles on both sides and concealed flush bolts that operates the rods at the top and the bottom. Stainless steel lever handles in a titanium black finish [OR stainless steel lever handles in a brushed satin finish] [OR oil rubbed bronze solid brass lever handles] [OR satin nickel solid brass lever handles] [OR white solid brass lever handles] [OR other compatible handles] [OR on the main entry panel(s) for models with swing panel, provide manufacturer s push/ pull handles with separate lock set and dead bolt] Push-pull handles in a brown nylon finish [OR push-pull handles in a gray nylon finish] [OR push-pull handles in a white nylon finish] [OR push-pull handles in brushed stainless steel finish] [OR other compatible handles SPECIFIER S NOTE: This option is recommended with a door closer.] [OR on the main entry panel(s) for models with a swing panel(s), no hardware or locking to be provided by the manufacturer, but with field installed panic device by others.] [OR on the sliding panel to be opened first for models without a swing panel, provide manufac turer s standard L-shaped handle on the inside, flat handle on the outside and lock set with profile cylinder. Operation of lock set is by turn of key from the outside and with a thumbturn from the inside with a two point locking hardware operated by 180º turn of the handle.] Stainless steel L shaped handles in a titanium black finish [OR stainless steel L shaped handles in a brushed satin finish] [OR L shaped handles in a brown nylon finish] [OR L shaped handles in a gray nylon finish] [OR L shaped handles in a white nylon finish] [OR other compatible handles] [OR on the sliding panel to be opened first for models without a swing panel, provide manufactur er s standard flat handle on the inside and on the outside and a lock set with a profile cylinder. Operation of lock set is by turn of key from the outside and from the inside with a two point locking hardware operated by 180º turn of the handle. SPECIFIER S NOTE: Key operation from the inside may not meet egress requirements.] [OR on main entry panel, provide manufacturer s standard flat handle on inside only with concealed two point locking hardware operated by 180º turn of handle. SPECIFIER S NOTE: Note that with this option, the main entry panel is operable from inside only and that NanaWall Systems Specifications and details subject to change without notice.

25 Guide Specifications - Section HSW60 there is no latch.] 2. On all other secondary panels, provide manufacturer s standard flat handles [OR removable custodial handles] and concealed two point locking hardware operated by 180º turn of handle. Face applied flush bolt locking will not be allowed. 3. Flat handle finish: Stainless steel in a titanium black finish [OR stainless steel in a brushed satin finish] [OR closest powder coat match to aluminum profile finish] 4. Provide handle height centered at 41 3/8 [OR as specified] from bottom of panel. 5. Aluminum locking rods with standard fiber glass reinforced polyamide end caps at top and bottom. Rods to have a stroke of 15/16 (24 mm). 6. If there are more than one profile cylinder on the units for a project, keyed alike [OR keyed differently]. 7. For any incorporated swing panel, provide crank handle stored in flap on panel stile to convert sliding panel to a swing panel and vice versa. Conversion Box located on upper arm of top rail to be polyamide in silver gray finish. If swing door to frame fixing hardware for operation of the incorporated door is above 7'0" provide with an integrated pole for single person operation. Operation above 7'0" should be easy to complete and not require additional mean to reach the fixing/locking mechanism other than the provided pole. 8. To ensure ease of operation and rigid security, only geared positive attachment to affix the swing door to the frame for incorporated swing doors will be accepted. 9. For pinch resistance, only rounded extrusions on the pivot side of incorporated swing panels are allowed. D. Sliding & Swinging Hardware: Provide manufacturer s standard hardware. 1. For each sliding panel, provide 2 two-three wheeled, sintered bronze (oil impregnated) unidirectional sliding panel carriers with a one wheeled, Polymide guide roller that are attached to the panels with stainless steel rods. Maximum carrying capacity of two carriers on a panel to be 330 lbs (150 kgs). 2. Provide on all four corners of sliding panels and incorporated swing panels, thermally broken, die cast zinc multifunctional corner fittings with carrier connectors, male and female locking receptacles, hinges and hinge pins as required. Finish: Powder coated, closest match to finish of frame and panels. SPECIFIER S NOTE: Note that as corner connectors are only available in powder coated finishes, if anodized panel and frame finishes are selected, there may be aesthetic issues. 3. Provide on the pivot side corner of the upper arm of the top rail of the incorporated swing panel a circular cover in polyamide with a silver gray finish. 4. Adjustment: Provide system capable of specified amount of adjustments without removing panels from tracks. E. Other Components: 1. Threshold: Provide thermally broken aluminum Clear anodized flush sill [OR bronze anodized flush sill] [OR clear anodized Low Profile Saddle Sill] [OR bronze anodized Low Profile Saddle Sill] [OR clear anodized Surface Mounted Interior Sill (not thermally broken)] [OR bronze anodized Surface Mounted Interior Sill (not thermally broken)] [OR no sill but with adjustable clear anodized floor sockets]. 2. Weather stripping: Provide manufacturer s standard double layer APTK at both the inner and outer edge of door panels or on frame for vertical sealing between panels and between panels and frame. Provide brush seals with flexible plastic web for all horizontal sealing. Single layer weather stripping will not be allowed. 3. Provide machine screws for connecting frame components. Specifications and details subject to change without notice NanaWall Systems 25

26 HSW60 Guide Specifications - Section Fabrication A. Use extruded aluminum frame and panel profiles, corner connectors and hinges, sliding hardware, locking hardware and handles, glass and glazing and weather stripping as specified herein to make a sliding glass wall. Factory pre-assemble as is standard for manufacturer and ship with all components and installation instructions. B. Sizes and Configurations: See drawings for selected number and size of panels, location of swing panels, and location of tracks and stacking bays Accessories (Edit for project requirements.) A. Provide other side lites, transoms, corner posts, or single or double doors as per drawings provided. B. Provide the NanaScreen, a series of vertical, collapsible, pleated screen panels. Provide pleated screen material with floor tracking chain with 1/4 (5 mm) floor track. See drawings for selected number of panels and configuration. Provide aluminum top track, side jambs, and vertical struts: White powder coated [OR clear anodized] [OR dark bronze anodized] [OR select from range of RAL powder coated finishes available from manufacturer] NanaScreen installation within opening [OR extended beyond opening] Part 3 - Execution 3.01 Erection A. Because of the large dimensions involved and the weight and movement of the panels, verify the structural integrity of the header such that the maximum deflection with live and loads is limited to be the lesser of l/720 of the span and 1/4 (6 mm). Similar structural support is needed for the stacking bay(s) and any upper track leading to it. Structural support for lateral loads such as wind load must be provided. It is recommended that all building dead loads be applied to the header prior to installing the NanaWall. If so and if a reasonable amount of time has been allowed for the effect of this dead load on the header, then only the building's live load can be used to meet the above requirements of L/720 or 1/4 (6 mm). If not, both the dead and live loads need to be considered. B. Examine surfaces of openings and verify dimensions; verify rough openings are level, plumb, and square, with no unevenness, bowing, or bumps on floor. C. Installation of units constitutes acceptance of existing conditions Installation A. Install frame in accordance with manufacturer s recommendations and installation Instructions. Properly flash and waterproof around the perimeter of the opening. B. Installer to provide anchorage devices and to securely and rigidly fit frame in place, absolutely level, straight, plumb and square. Install frame in proper elevation, plane and location, and in proper alignment with other work. C. If necessary, provide drain connections from lower track. D. Install panels, handles and lock set in accordance with manufacturer s recommendations and installation instructions. E. If necessary, adjust hardware for proper operation. END OF SECTION DISCLAIMER: Nana Wall Systems, Inc. takes no responsibility for product selection or application, including, but not limited to, compliance with building codes, safety codes, laws, or fitness for a particular purpose. The guide specifications is not intended to be verbatim as a project specification without appropriate modifications for the specific use intended and the particular requirements of a specific construction project NanaWall Systems Specifications and details subject to change without notice.

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