F15069 LEDIL | Alldatasheet
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Product Number F15069_FLORENCE-O Family Florence Type Lens array Color clear Diameter 61 x 286 mm Height 8,45 mm Style rectang Optic Material PMMA Holder Material Fastening screw Status production ready ROHS Compliant Yes Date Updated 7/07/2016 OPTICAL PROPERTIES Viewing Light Effi- LED Angle Beam ciency cd/lm Connector TRIDINO R3 8x0 1100 1ft HV 94+45 deg Oval 88 % 0.660 - LG 6030 sim: 84+35 Oval sim: 89 %sim: 0.820 - LG 5630 sim: 90+37 Oval sim: 89 %sim: 0.760 - LG 7030 88+47 deg Oval 94 % 0.700 - NVSxE21A sim: 93+28 Oval sim: 92 %sim: 0.940 - Duris E5 sim: 89+37 Oval - sim: 0.810 - Duris S8 sim: 88+50 Oval sim: 90 %sim: 0.620 - Fortimo LED Line 1ft 1100lm xx0 3R xV2/xV3sim: 84+35 Oval sim: 89 %sim: 0.820 - Fortimo LED Line 1ft 650lm 8x0 3R xV2/xV3sim: 90+37 Oval sim: 89 %sim: 0.760 - LM561B Plus sim: 90+37 Oval sim: 91 %sim: 0.770 - LM302B sim: 90+33 Oval sim: 92 %sim: 0.920 - LM28xB Series sim: 91+33 Oval sim: 92 %sim: 0.910 - SEOUL 5630C sim: 87+38 Oval sim: 87 %sim: 0.740 - SEOUL 5630D sim: 87+37 Oval sim: 89 %sim: 0.770 - January 24th 2018 2:16 Copyright Ledil Oy - Subject to change without prior notice - Page 1/1 Ledil Oy Salorankatu 10
24240 SALO, Finland
http://www.ledil.com email: ledil@ledil.com FAX: +358-2-733 8001
D E C F B G A H Tolerances if not otherwise shown According to DIN ISO 2768-1 Linear measures: up to 30mm class M, otherwise class C According to DIN ISO 2768-2 Form and position: class L SCALE 1:1 WEIGHT g SHEET 1/1 SIZE DRAWING TITLE Datasheet_F15069_FLORENCE-O PART NUMBER MechanicalModel Ledil Oy Salorankatu 10 FIN 24240 SALO Finland THIRD ANGLE PROJECTION: This drawing is the property of LEDiL Oy. It may not be reproduced, copied or communicated without a written agreement with LEDiL Oy. 124.85 85.25 10.49 13.1 281 286 182 10.5 8.14 36.43 Bottom view LED position 2 pcs M4 screws Ø 4.9mm 200.75 A A B 3.47 Section view A-A Scale: 1:1 6.3 1.31.3 Detail B Scale: 2:1 8.45 Front view Isometric view Scale 1:3 Top view Scale 1:3 Beam direction
NOTE: The typical divergence will be changed by different color, chip size and chip position tolerance. The typical total divergence is the full angle measured where the luminous intensity is half of the peak value.