& SUBMINIATURE T-3/4 OPTOELECTRONICS RESISTOR LAMPS RED MR5000/5010/5020 YELLOW MR5310 GREEN MR5410 CKAGE DIMENSIONS These T-3/4 LED lamps contain an integral resistor which is in series with the emitter chip. This construction allows for operation in circuits with 5 volt supply voltage; without the use of an external current limiting resistor. Color tinted, diffused epoxy packages are used for all lamps in this group. Applications include circuit board status indication; especially in TTL circuits. They allow for savings in 1 = 038 (097) p BS component/assembly costs. The lamps are compatible with vapor phase reflow surface mount and conventional solder assembly. O42 1278 @ Integral Current Limiting Resistor (No external resistor required) m Operates with 5 Volt Supply ee # All Colors DIT (028) QT903 MR5000/501 0/5020 Red Diffused MR5310 Yellow Diffused NOTES: MR5410 Green Diffused 1. ALL DIMENSIONS IN INCHES @ Subminiature Package (mm) = Solid-State Reliability 2. TOLERANCES = .010 INCH UNLESS SPECIFIED + TYPE SOURCE LENS COLOR COLOR MR5000 Red Red Diffused MR5010 Red Red Diffused MR5020 Red Red Diffused MR5310 Yellow Yellow Diffused MR5410 Green Green Diffused OPTOELECTRONICS SUBMINIATURE T-3/4 RESISTOR LAMPS FORWARD CURRENT - mA Red MR5000/5010/5020 Forward Current vs. Forward Voltage MR5020 = o _~ MR5010 > MR5000 Green MR5410 Yellow MR5310 Forward Current vs. Forward Voltage mA 7 6 QT903-21 . V, 600 620 640 660 680 WAVELENGTH - % (nm) 700 QT903-24 FORWARD VOLTAGE - VOLTS QT903-20 Relative Luminous Intensity Relative Luminous Intensity vs. Forward Voltage vs. Forward Vottage 1 25 Ee 4 a 2.0 -_ cs Zz = @ 8s ' Eo 's f ir) Sy 38 ' oN = 52 =a oS 1.0 au za N = ea 52 0.5 Sr 0: Be MR5000 Green MR5410 Yellow MR5310 Forward Current vs. Forward Voltage mA 7 6 QT903-21 . V, 600 620 640 660 680 WAVELENGTH - % (nm) 700 QT903-24 FORWARD VOLTAGE - VOLTS QT903-20 Relative Luminous Intensity Relative Luminous Intensity vs. Forward Voltage vs. Forward Vottage 1 25 Ee 4 a 2.0 -_ cs Zz = @ 8s ' Eo 's f ir) Sy 38 ' oN = 52 =a oS 1.0 au za N = ea 52 0.5 Sr 0: Be