AAMA THERMAL PERFORMANCE TEST REPORT. Rendered to: GAMCO CORPORATION. SERIES/MODEL: Curtain Wall TYPE: Glazed Wall Systems (Site-built)

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AAMA 1503-09 THERMAL PERFORMANCE TEST REPORT Rendered to: GAMCO CORPORATION SERIES/MODEL: Curtain Wall TYPE: Glazed Wall Systems (Site-built) Summary of Results Thermal Transmittance (U-Factor) 0.47 Condensation Resistance Factor - Frame (CRF f ) Condensation Resistance Factor - Glass (CRF g ) 66 Unit Size: 78-3/4" x 78-3/4" Layer 1: Gap 1: 1/4" 0.50" Clear A1-D: Aluminum Spacer 90% Argon* Layer 2: 1/4" PPG Solarban 60 (e=0.035*, #3) Reference must be made to Report No. E5512.01-116-46.

AAMA 1503-09 THERMAL PERFORMANCE TEST REPORT Rendered to: GAMCO CORPORATION 131-10 Maple Avenue Flushing, New York 11355 Test Sample Identification: Series/Model: Curtain Wall Type: Glazed Wall Systems (Site-built) Test Sample Submitted by: Client Test Procedure: The condensation resistance factor (CRF) and thermal transmittance (U) were determined in accordance with AAMA 1503-09, Voluntary Test Method for Thermal Transmittance and Condensation Resistance of Windows, Doors and Glazed Wall Sections 1. Average warm side ambient temperature 2. Average cold side ambient temperature 3. 15 mph dynamic wind applied to test specimen exterior. 4. 0.0" +0.04" static pressure drop across specimen. Test Results Summary: 69.80-0.41 F F 1. Condensation resistance factor - Frame (CRF f ) Condensation resistance factor - Glass (CRF g ) 66 2. Thermal transmittance due to conduction (U) 0.47 (U-factors expressed in Btu/hr ft 2 F)

Page 2 of 9 Test Sample Description: Frame: Material: AU (0.15"): Aluminum with Thermal Improvement - All Members Size: 78-3/4" x 78-3/4" Daylight Opening: 35-3/4" x 73-3/4" (x2) Glazing Method: Exterior* Exterior Color: Clear Exterior Finish: Anodized Interior Color: Clear Interior Finish: Anodized Corner Joinery: Square Cut / Screws / Unsealed *Exterior pressure plate was screwed 6" O.C. Glazing Information: Layer 1: 1/4" Clear Gap 1: 0.50" A1-D: Aluminum Spacer Layer 2: 1/4" PPG Solarban 60 (e=0.035*, #3) Gas Fill Method: Single-Probe Method* Desiccant: Yes 90% Argon* *Stated per Client/Manufacturer N/A Non-Applicable

Page 3 of 9 Test Sample Description: (Continued) Weatherstripping: Description EPDM glazing gasket Quantity 1 row Location Interior glazing perimeter EPDM glazing gasket 1 row Exterior glazing perimeter Thermal isolator EPDM gasket 1 row 1 row Frame at pressure plate center Head, sill and jambs Hardware: Description Quantity Aluminum pressure plate 7 Aluminum face cover 7 Location Four exterior horizontals, three exterior verticals Four exterior horizontals, three exterior verticals Drainage: Drainage Method Size Quantity Location No visible weeps

Page 4 of 9 Test Duration: 1. The environmental systems were started at 07:05 hours, 04/14/15. 2. The thermal performance test results were derived from 02:06 hours, 04/15/15 to 06:06 hours, 04/15/15. Condensation Resistance Factor (CRF): The following information, condensed from the test data, was used to determine the condensation resistance factor: T h T c FT p FT r W FT GT CRF g CRF f = Warm side ambient air temperature 69.80 F = Cold side ambient air temperature -0.41 F = Average of pre-specified frame temperatures (14) 45.81 F = Average of roving thermocouples (4) 40.13 F = = [(FT p - FT r ) / (FT p - (T c + 10))] x 0.40 FT p (1-W) + W (FT r ) = Frame Temperature 0.063 45.46 F = Glass Temperature 46.21 F = Condensation resistance factor Glass CRF g = (GT - T c ) / (T h - T c ) x 100 66 = Condensation resistance factor Frame CRF f = (FT - T c ) / (T h - T c ) x 100 The CRF number was determined to be (on the size as reported). When reviewing this test data, it should be noted that the frame temperature (FT) was colder than the glass temperature (GT) therefore controlling the CRF number. Refer to the 'CRF Report' page and the 'Thermocouple Location Diagram' page of this report.

Page 5 of 9 Thermal Transmittance (U c ): T h = Average warm side ambient temperature 69.80 F T c = Average cold side ambient temperature -0.41 F P = Static pressure difference across test specimen 0.00 psf 15 mph dynamic perpendicular wind at exterior Nominal sample area 43.07 ft 2 Total measured input to calorimeter 1481.48 Btu/hr Calorimeter correction 73.42 Btu/hr Net specimen heat loss 1408.07 Btu/hr U = Thermal Transmittance 0.47 Btu/hr ft 2 F Glazing Deflection: Edge Gap Width Estimated center gap width upon receipt of specimen in laboratory (after stabilization) Center gap width at laboratory ambient conditions on day of testing Center gap width at test conditions Left Glazing 0.50" 0.59" 0.59" 0.50" Right Glazing 0.50" 0.59" 0.59" 0.50" The sample was inspected for the formation of frost or condensation, which may influence the surface temperature measurements. The sample showed no evidence of condensation/frost at the conclusion of the test. Prior to testing the specimen was sealed with silicone on the interior side and checked for air infiltration per Section 9.3.4. Required annual calibrations for the Architectural Testing Inc. 'thermal test chamber' (ICN 000001) in York, Pennsylvania were last conducted in May 2014 in accordance with Architectural Testing Inc. calibration procedure. A CTS Calibration verification was performed December 2014. A Metering Box Wall Transducer and Surround Panel Flanking Loss Characterization was performed December 2014.

Page 6 of 9 CRF Report Time: 04:06 04:36 05:06 05:36 06:06 AVERAGE Pre-specified Thermocouples - Frame 1 42.92 42.90 42.88 42.90 42.95 42.91 2 43.86 43.84 43.83 43.85 43.82 43.84 3 43.21 43.22 43.23 43.21 43.24 43.22 4 48.54 48.52 48.48 48.55 48.50 48.52 5 48.22 48.22 48.22 48.25 48.23 48.23 6 7 49.71 46.57 49.70 46.57 49.72 46.58 49.71 46.58 49.70 46.54 49.71 46.57 8 49.07 49.06 49.06 49.08 49.06 49.07 9 42.88 42.88 42.86 42.89 42.88 42.88 10 46.54 46.53 46.54 46.52 46.54 46.53 11 40.78 40.77 40.79 40.74 40.77 40.77 12 43.91 43.91 43.94 43.95 43.93 43.93 13 49.72 49.70 49.73 49.72 49.71 49.72 14 45.51 45.50 45.51 45.52 45.51 45.51 FT P 45.82 45.81 45.81 45.82 45.81 45.81 Pre-specified Thermocouples - Glass 15 36.85 36.87 36.87 36.83 36.84 36.85 16 55.72 55.66 55.70 55.73 55.75 55.71 17 42.10 42.08 42.10 42.10 42.10 42.10 18 42.22 42.21 42.21 42.15 42.17 42.19 19 58.20 58.21 58.24 58.23 58.23 58.22 20 42.16 42.21 42.19 42.23 42.21 42.20 GT 46.21 46.21 46.22 46.21 46.22 46.21 Cold Point (Roving) Thermocouples 21 37.70 37.70 37.70 37.70 37.70 37.70 22 40.10 40.10 40.10 40.10 40.10 40.10 23 40.80 40.80 40.80 40.80 40.80 40.80 24 41.90 41.90 41.90 41.90 41.90 41.90 FT R 40.13 40.13 40.13 40.13 40.13 40.13 W 0.06 0.06 0.06 0.06 0.06 0.06 FT 45.46 45.45 45.46 45.46 45.46 45.46 Warm Side - Room Ambient Air Temperature 69.79 69.80 69.78 69.80 69.81 69.80 Cold Side - Room Ambient Air Temperature -0.43-0.42-0.43-0.43-0.39-0.42 CRF f CRF g 66 66 66 66 66 66

Page 7 of 9 Thermocouple Location Diagram SELECT DRAWING, DRAG HERE, AND IDENTIFY COLD POINTS 22 23 24 21 Cold Point Locations 21 21. 37.70 22 22. 40.10 23 23. 40.80 24 24. 41.90

Page 8 of 9 Architectural Testing, Inc. will service this report for the entire test record retention period. Test records that are retained such as detailed drawings, datasheets, representative samples of test specimens, or other pertinent project documentation will be retained by Architectural Testing, Inc. for the entire test record retention period. The test record retention end date for this report is April 15, 2019. This report does not constitute certification of this product nor an opinion or endorsement by this laboratory. It is the exclusive property of the client so named herein and relates only to the specimen tested. This report may not be reproduced, except in full, without the written approval of Architectural Testing, Inc. For ARCHITECTURAL TESTING, INC. Ryan P. Moser Senior Technician Shon W. Einsig Senior Technician Individual-In-Responsible-Charge RPM:klb E5512.01-116-46 Attachments (pages): This report is complete only when all attachments listed are included. Appendix-A: Drawings (6) Architectural Testing, Inc. is accredited by the International Accreditation Service (IAS) under the specific test methods listed under lab code TL-144, in accordance with the recognized International Standard ISO/IEC 17025:2005. The laboratory s accreditation or test report in no way constitutes or implies product certification, approval, or endorsement by IAS.

Page 9 of 9 Revision Log Rev. # Date Page(s) Revision(s).01R0 04/20/15 All Original Report Issue. Work requested by Howard Nguyen of Gamco Corporation This report produced from controlled document template ATI 00025(c), revised 03/14/2013.