OSRAM DURIS™ S 5, GW PSLR32.PM

Discontinued
×
Discontinued

Description

The compact, mid-power DURIS S 5 LED addresses three different luminous flux levels, using just one package and solder pad. With high efficacies, color quality and long lifetimes it is the ideal choice for all indoor General Lighting applications

Details

Parameters

Color of emission
White
CRI
70
Electrical power
0.95 W
High
Beam angle
120 °
Operating temperature
Top min.
-40 °C
Top max.
100 °C
Dimension
l
3.0 mm
w
3.0 mm
h
0.6 mm

Ordering information

Product Type Description Ordering code Availability
GW PSLR32.PM-LWLZ-A131-1 ΦV = 135.0 ... 155.0 lm, 6500 K (IF = 150 mA) Q65112A5610 Discontinued
GW PSLR32.PM-LWLZ-A737-1 ΦV = 135.0 ... 155.0 lm, 3000 K (IF = 150 mA) Q65112A7117 Discontinued
GW PSLR32.PM-LWLZ-XX51-1 ΦV = 135.0 ... 155.0 lm, 6500 K (IF = 150 mA) Q65112A5612 Discontinued
GW PSLR32.PM-LWLZ-XX57-1 ΦV = 135.0 ... 155.0 lm, 3000 K (IF = 150 mA) Q65112A7116 Discontinued
GW PSLR32.PM-LXL1-A131-1 ΦV = 140.0 ... 160.0 lm, 6500 K (IF = 150 mA) Q65112A7115 Discontinued
GW PSLR32.PM-LXL1-A232-1 ΦV = 140.0 ... 160.0 lm, 5700 K (IF = 150 mA) Q65112A7114 Discontinued
GW PSLR32.PM-LXL1-A333-1 ΦV = 140.0 ... 160.0 lm, 5000 K (IF = 150 mA) Q65112A5614 Discontinued
GW PSLR32.PM-LXL1-XX51-1 ΦV = 140.0 ... 160.0 lm, 6500 K (IF = 150 mA) Q65112A7113 Discontinued
GW PSLR32.PM-LXL1-XX52-1 ΦV = 140.0 ... 160.0 lm, 5700 K (IF = 150 mA) Q65112A7112 Discontinued
GW PSLR32.PM-LXL1-XX53-1 ΦV = 140.0 ... 160.0 lm, 5000 K (IF = 150 mA) Q65112A5616 Discontinued
GW PSLR32.PM-LYL2-A333-1 ΦV = 145.0 ... 165.0 lm, 5000 K (IF = 150 mA) Q65112A7111 Discontinued
GW PSLR32.PM-LYL2-A535-1 ΦV = 145.0 ... 165.0 lm, 4000 K (IF = 150 mA) Q65112A7110 Discontinued
GW PSLR32.PM-LYL2-XX53-1 ΦV = 145.0 ... 165.0 lm, 5000 K (IF = 150 mA) Q65112A7109 Discontinued
GW PSLR32.PM-LYL2-XX55-1 ΦV = 145.0 ... 165.0 lm, 4000 K (IF = 150 mA) Q65112A7108 Discontinued

Downloads

Tools

Horticulture

Calculation of different horticulture lighting scenarios with variations of LED configurations and ratios to realize the desired photon flux from the fixture and estimate the resulting photon flux density on the plants for a defined system setup.