SML-020MLTT86PN Rohm Semiconductor, SML-020MLTT86PN Datasheet
SML-020MLTT86PN
Specifications of SML-020MLTT86PN
Related parts for SML-020MLTT86PN
SML-020MLTT86PN Summary of contents
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... Light Emitting Diodes Two-color chip LEDs with reflectors SML-020 Series The SML-020 series are two-color, high luminance chip LEDs with reflectors. Two-color chips are built into a single package. These LEDs are compact and leadless to allow a high mounting density Features 1) Reflectors are used to achieve a high luminance. ...
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... Pure Green 2 Directional pattern ANGLE (˚ Green Other 30 Color 100 50 0 RELATIVE LUMINOUS INTENSITY Fig. 1 Directional pattern ( Electrical characteristics1 (SML-020MVT) 50 Ta=25˚C 20 Green Red 10 5.0 2.0 1.0 0.5 0.2 0.1 1.5 2.0 2.5 3.0 (V) FORWARD VOLTAGE : V F Fig. 3 Forward current Fig ...
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... Light Emitting Diodes 2 (µs) PULSE DURATION : Tw Fig. 6 Maximum tolerable peak current vs. pulse duration ! ! ! ! Electrical characteristics2 (SML-020MLT) 50 Ta=25˚C 20 Red Green 10 5.0 2.0 1.0 0.5 0.2 0.1 1.5 2.0 2.5 3.0 (V) FORWARD VOLTAGE : V F Fig. 9 Forward current Fig. 3 vs. forward voltage GREEN ...
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... DC 2.0 1.5 DF=50% 1.0 20% 0 (mA) PEAK FORWARD CURRENT : I F peak Fig. 15 Luminous intensity vs. peak forward current ! ! ! ! Electrical characteristics3 (SML-020MDT) 50 Ta=25°C 20 Orange Green 10 5.0 2.0 1.0 0.5 0.2 0.1 1.5 2.0 2.5 3.0 (V) FORWARD VOLTAGE : V F Fig. 17 Forward current Fig ...
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... Light Emitting Diodes ! ! ! ! Electrical characteristics4 (SML-020MYT) 50 Ta=25°C 20 Yellow 10 5.0 2.0 Green 1.0 0.5 0.2 0.1 1.5 2.0 2.5 3.0 (V) FORWARD VOLTAGE : V F Fig. 23 Forward current Fig. 3 vs. forward voltage 2 (µs) PULSE DURATION : Tw Fig. 26 Maximum tolerable peak current vs. pulse duration ! ! ! ! Electrical characteristics5 (SML-020PDT) 50 Ta=25° ...
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... Orange, Pure Green 3.0 f=1kHz 2.5 2.0 DF=50% 1.5 1.0 20% 0 PEAK FORWARD CURRENT : I F peak Fig. 33 Luminous intensity vs. peak forward current SML-020 Series 30 DC Orange, Rure Green 20 10 15% 10 AMBIENT TEMPERATURE : Ta (mA) Fig. 34 Maximum forward current vs. ambient temperature (˚ ...
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