OSRAM DURIS® E 5, GW JDSTS2.CM

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品目

Introducing the new Generation-2 DURIS® E 5 which combines higher efficacy and higher flux in a compact industry-compatible form factor (5.6 mm x 3.0 mm). Fully compatible with our Generation-1 device for ease of replacement and upgrade. Perfectly suitable for various homogeneous illumination applications such as tubes and other indoor applications such as downlights and office recessed fixtures.

詳細

パラメーター

発光色
White
CRI
90
電力
0.18 W
Mid
輝度
ΦV 典型
27.8 lm
IV 典型
9.38 cd
ΦE 典型
93.7 mW
IE 典型
31.7 mW/sr
ビーム角
典型
120 °
動作温度
Top 最小
-40 °C
Top 最大
100 °C
寸法
l 典型
5.6 mm
w 典型
3.0 mm
h 典型
0.6 mm

アプリケーション分野

注文コード

製品タイプ 品目 注文番号 在庫状況
GW JDSTS2.CM-H1H4-XX56-1-2 ΦV = 28.5 ... 34.5 lm, 3500 K (IF = 65 mA) Q65112A8971
GW JDSTS2.CM-H2H5-XX51-1-2 ΦV = 30.0 ... 36.0 lm, 6500 K (IF = 65 mA) Q65112A8983
GW JDSTS2.CM-H2H5-XX53-1-2 ΦV = 30.0 ... 36.0 lm, 5000 K (IF = 65 mA) Q65112A8973
GW JDSTS2.CM-H2H5-A131-1-2 ΦV = 30.0 ... 36.0 lm, 6500 K (IF = 65 mA) Q65112A8883
GW JDSTS2.CM-GWH3-XX57-1-2 ΦV = 27.0 ... 33.0 lm, 3000 K (IF = 65 mA) Q65112A8982
GW JDSTS2.CM-GWH3-A737-1-2 ΦV = 27.0 ... 33.0 lm, 3000 K (IF = 65 mA) Q65112A8859
GW JDSTS2.CM-H2H5-A232-1-2 ΦV = 30.0 ... 36.0 lm, 5700 K (IF = 65 mA) Q65112A8882
GW JDSTS2.CM-H1H4-A535-1-2 ΦV = 28.5 ... 34.5 lm, 4000 K (IF = 65 mA) Q65112A8861
GW JDSTS2.CM-H1H4-A636-1-2 ΦV = 28.5 ... 34.5 lm, 3500 K (IF = 65 mA) Q65112A8860
GW JDSTS2.CM-H2H5-A333-1-2 ΦV = 30.0 ... 36.0 lm, 5000 K (IF = 65 mA) Q65112A8862
GW JDSTS2.CM-H2H5-XX52-1-2 ΦV = 30.0 ... 36.0 lm, 5700 K (IF = 65 mA) Q65112A8974
GW JDSTS2.CM-H1H4-XX55-1-2 ΦV = 28.5 ... 34.5 lm, 4000 K (IF = 65 mA) Q65112A8986
GW JDSTS2.CM-GVH2-A838-1-2 ΦV = 25.5 ... 31.5 lm, 2700 K (IF = 65 mA) Q65112A8884
GW JDSTS2.CM-GVH2-XX58-1-2 ΦV = 25.5 ... 31.5 lm, 2700 K (IF = 65 mA) Q65112A8981

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データシート

Datasheet

アプリケーションノート

ツール

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.