Cat# LED Linear High Bay 100W

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Cat# 71724 LED Linear High Bay 100W QPL ID # PRNKSMPK OVERALL LAMP PARAMETERS LED DRIVER LIFESPAN & ENVIRONMENT OTHERS Model: Input Voltage Input Current Input Power Power Factor Luminance Luminous Efficiency CRI Beam Angle Main Structure Surface Lens Output Voltage Output Current Driver Efficiency LED Manufacturer LED Efficacy Color Temperature Lifespan Warranty Operating Temperature Diamension Net Weight(Kg) Gross Weight(Kg) Box Size Carton Size(mm) Q'ty / Carton 71724 100-277VAC.79A 100 W PF 0.99 15103 LM 158 LM/W 81 120 Heavy Gauge Steel Housing White Powder Coat Finish Clear Polycarbonate 40-66V 1150mA 92% 160 lm/w 5000K 50,000 Hrs. 5 Years -22 F +104 F Pls refer to attached dimension drawing 4.3 6 -- 68.5*50*10 1 www.morrisproducts.com

Dimension: 71724 www.morrisproducts.com

Report No.:EED35I000622-2 Page 1 of 9 Customer Address : Morris Products Inc. : 53 Carey Rd, Queensbury, NY 12804 Description of the submitted sample(s): Sample Name : LED Luminaire Model/Type : 71724 Brand : MORRIS Sample No. : 35I0622-02 Ratings : 120-277 V AC, 50/60 Hz, 100 W, 5000 K Test Item : Total Luminous Flux, Luminous Efficacy, Zonal Lumen Density, Luminous Intensity Distribution, Correlated Color Temperature, Color Rendering Index, Chromaticity Coordinate and Electrical Parameters State of Sample(s) : Normal Sample Quantity : 1 pc Manufacturer : Morris Products Inc. Sample Received Date : Nov. 08, 2016 Sample Tested Date : Nov. 09, 2016 to Nov. 10, 2016 Test Requested : All test items were measured according to IES LM-79-08 Approved Method for the Electrical and Photometric Measurements of Solid-State Lighting Products Laboratory Note: The laboratory that conducted the testing items in this report has been accredited by the National Voluntary Laboratory Accreditation Program (NVLAP LAB CODE: 200889-0), for IES LM-79 testing of SSL products. And the report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the Federal Government. Compiled by Reviewed by Approved by Date Dec. 01, 2016 Engineer Check No.: 2457570188 CENTRE TESTING INTERNATIONAL CORPORATION NO.1996, Xin jin qiao Road, Pudong New District, Shanghai, 201206, China

Report No.:EED35I000622-2 Page 2 of 9 Equipment list: Test Equipment Equipment Model Equipment No. Calibration Date Calibration Due Date Goniophotometer GO-R5000 ATTEELSH00105 --- --- Standard Lamp D908 ATTEELSH00106 Jul. 06, 2016 Jul. 05, 2017 Digital Power Meter WT210 BTTEELSZ10093 Jun. 17, 2016 Jun. 16, 2017 Spectroradiometer HAAS-2000 TTF20120376 --- --- Integrating Sphere 2.0m ATTEELSH00007 --- --- Standard Lamp D204 TTE20141711 Jul. 06, 2016 Jul. 05, 2017 Digital Power Meter PF2010 ATTEELSH00011 Jun. 17, 2016 Jun. 16, 2017 1 Test Condition Ambient Condition : 25.1 Photometric Method Colorimetric Method Tested Stabilization Time Total Operation Time including Stabilization : Goniophotometer : Sphere-spectroradiometer : 120 V AC, 60 Hz : 75 minutes : 125 minutes 2 Test Method 2.1 Requirements of Ambient Condition The ambient temperature in which measurements are being taken shall be maintained at 25 ± 1, measured at a point not more than 1 m from the SSL product and at the same height as the SSL product. Air flow around the SSL product being tested should be such that normal convective air flow induced by device under test is not affected. 2.2 Seasoning of SSL Product For the purpose of rating new SSL products, SSL products shall be tested with no seasoning. Therefore, no seasoning was performed.

Report No.:EED35I000622-2 Page 3 of 9 2.3 Stabilization of SSL Product Before measurements are taken, the SSL product under test shall be operated long enough to reach stabilization and temperature equilibrium. The time required for stabilization depends on the type of SSL products under test. The stabilization time typically ranges from 30 minutes to 2 or more hours for SSL product. It can be judged that stability is reached when the variation (maximum minimum) of at least 3 readings of the light output and electrical power over a period of 30 minutes, taken 15 minutes apart, is less than 0.5%. 2.4 Photometric and Electrical Measurements Sphere-spectroradiometer Method A spectroradiometer and an integrating sphere were used to measure correlated color temperature, color rendering index, and chromaticity coordinates. The 4 geometry, shown as following, chart (a), is used for measurement. Ambient temperature was measured at a position inside the integrating sphere. Electrical measurements including voltage, current, and power were measured using the digital power meter. The calibration of the sphere-spectroradiometer system is traceable to the National Institute of Standards and Technology. 2.5 Photometric and Electrical Measurements - Goniophotometer Method A type C goniophotometer was used to measure total luminous flux and intensity at each angle of distribution. The photometric distance is 2.1m for near-field measurement or 26m for far-field measurement. Ambient temperature was measured at the same height of the sample mounted on the goniophotometer equipment. Electrical measurements including voltage, current, and power were measured using the digital power meter. Some graphics were created with Photometric Plus software. (a)

Report No.:EED35I000622-2 Page 4 of 9 3 Test Results 3.1 Photometric and Electrical Measurements Input Voltage (V AC) Input Current (A) Input Power (W) Power Factor THD of Current (%) 120.0 0.8140 97.09 0.9949 7.19 Total Luminous Flux (lm) Luminous Efficacy (lm/w) Correlated Color Temperature (K) Color Rendering Index/R a Color Rendering Index/R 9 14923 153.70 5033 82.6 7 Chromaticity Chromaticity Chromaticity Chromaticity Coordinate Coordinate Coordinate Coordinate Duv x y u' v 0.3446 0.3565 0.2092 0.4870 0.0026 Note: According to CIE 1976 (u', v') diagram, u' = u = 4x/(-2x+12y+3), v' = 3v/2 = 9y/(-2x+12y+3).

Report No.:EED35I000622-2 Page 5 of 9 3.2 Zonal Lumen Density

Report No.:EED35I000622-2 Page 6 of 9 3.3 Luminous Intensity Distribution

Report No.:EED35I000622-2 Page 7 of 9 3.4 Luminous Intensity Distribution Data

Report No.:EED35I000622-2 Page 8 of 9

Report No.:EED35I000622-2 Page 9 of 9 Photos of the Sample Fig.1- Overall view Fig.2- Back view *** End of Report *** This test report is effective only with both signature and specialized stamp. The result(s) shown in this report refer only to the sample(s) tested. Without written approval of CTI, this report can t be reproduced except in full.