Ultraviolet Emitter. Notes: [1] All dimensions in millimeters [inches] [2] Drawings not to scale [3] All dimensions are for reference only

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Preliminary Ultraviolet Emitter Product No: MTSM310UV-F1120 Peak Emission Wavelength: 310nm The MTSM310UV-F1120 is a deep ultraviolet light emitting diode with peak emmission wavelengths from 305nm to 315nm. The LED is sealed in a ceramic package with UV stable encapsulation. It incorporates state of the art surface mount device (SMD) design and low thermal resistance. FEATURES > Deep ultraviolet LED > Low thermal resistance > SMT solderable APPLICATIONS > Horticulture > Biochemical sensing > UV curing Absolute Maximum Ratings (Ta=25ºC) ITEMS SYMBOL RATINGS UNIT Forward Current If 30 ma Power Dissipation Pd 210 mw Reverse Voltage Vr 6 V Storage Temperature Tstg 100 ºC Electrical & Optical Characteristics (Ta = 25ºC) ITEMS SYMBOL CONDITION MINIMUM MAXIMUM UNIT Peak Wavelength [1] λp IF=20mA 305 315 nm Power Output [2] Po [3] IF=20mA 1.0 2.0 mw Forward Voltage [4] Vf IF=20mA 5.0 7.0 V FWHM λ IF=20mA 10.0 15.0 nm Viewing Angle 2Ө 1/2 IF=20mA 120 deg Thermal Resistance (Tj-Tsp) Rth -- 60 ºC/W _ Ta=25 ºC, with external heat sink Rth (sp-a) [5]<20 ºC/W, Forward Current=20mA, 20% RH 70%-range Notes: [1] Peak wavelength measurement tolerance is ± 2 nm [2] Optcal power output measurement tolerance is ± 10% [3] Popt is the Output Optcal Power as measured with a radiometer with an integrated sphere [4] Forward voltage measurement tolerance is ± 2% [5] Rth(sp-a) defned as thermal resistance from solder point to ambient [6] The exposure to the absolute maximum rated conditons may afect device reliability 1

Ultraviolet Emitter Product No: MTSM310UV-F1120 Notes: [1] All dimensions in millimeters [inches] [2] Drawings not to scale [3] All dimensions are for reference only 2

Ultraviolet Emitter Product No: MTSM310UV-1120 Tₐ =25 C, RH=30% 1. Relative Spectral Power Distribution 2. Forward Current vs. Forward Voltage 3. Relative Radiant Flux vs. Forward Current 4. Peak Wavelength vs. Forward Current Global Headquarters, 3 Northway Lane North, Latham, NY 12110, USA TOLL FREE: 1-800-984-5337 PHONE: 518-956-2980 FAX: www.marktechopto.com 518-785-4725 EMAIL: info@marktechopto.com 3

Ultraviolet Emitter Product No: MTSM310UV-1120 If =20mA 5. Relative Radiant Flux vs. Ambient Temperature 7. Forward Voltage vs. Ambient Temperature 6. Peak Wavelength vs. Ambient Temperature 8. Typical Radiant Diagram Global Headquarters, 3 Northway Lane North, Latham, NY 12110, USA TOLL FREE: 1-800-984-5337 PHONE: 518-956-2980 FAX: www.marktechopto.com 518-785-4725 EMAIL: info@marktechopto.com 4

Ultraviolet Emitter Product No: MTSM310UV-1120 The information contained herein is subject to change without notice. 5

UVTOP SMD Soldering Conditions and Handling Ultraviolet Emitter Product No: MTSM310UV-1120 UVTOP SMD LEDs reflow characteristics are compatible with JEDEC J-STD-020C. It is generally recommended to follow the solder profile provided by the manufacturer of the solder paste used. These profiles are suggested as a guideline and may require adjustment depending on the users application. It is recommended to verify the solder process through reflow of several test PCBs and subsequent X-ray or shear testing of the devices. The solder should show minimum indication of voids or solder grains. Profile Parameters Lead-based Solder Lead-free Solder Average Ramp-Up Rate (Tsmax to Tp) 3 C/second max. 3 C/second max. Preheat: Temperature Min (Tsmin) 100 C 150 C Preheat: Temperature Max (Tsmax) 150 C 200 C Preheat: Time (tsmin to tsmax) 60-120 seconds 60-180 seconds Time Maintained Above: Temperature (TL) 183 C 217 C Time Maintained Above: Time (tl) 60-90 seconds 60-90 seconds Peak/Classification Temperature (Tp) 215 C 228 C Time Within 5 C of Actual Peak Temperature (tp) 10-30 seconds 20-40 seconds Ramp-Down Rate 6 C/second max. 6 C/second max. Time 25 C to Peak Temperature 6 minutes max. 8 minutes max. A no clean solder paste is recommended so that cleaning is not required after the solder reflow. The choice of application method will determine 28 the specific amount of solder, but for consistent 28 results a solder stencil printer or automated dispense system is suggested. If cleaning after reflow is required, isopropyl alcohol or water is recommended. Do not use ultrasonic cleaning. Do not wave solder or hand solder UVTOP SMD LEDs. The information contained herein is subject to change without notice. 6

Ultraviolet Emitter Product No: MTSM310UV-1120 UV Light Precaution for Use These devices are ultraviolet LEDs. During operation, the LED emits high intensity ultraviolet (UV) light, which is harmful to skin and eyes. UV light is hazardous to skin and may cause cancer. Avoid exposure to UV light when LED is operational. Precautions must be taken to avoid looking directly at the UV light without the use of UV light protective glasses. Do not look directly at the front of the LED or at the LED s lens when LED is operational. Static Electricity These products are ESD (electrostatic discharge) sensitive; static electricity and surge voltages seriously damage UV LEDs and can result in complete failure of the device. Precautions must be taken against ESD when handling or operating these devices. Operating Conditions In order to ensure the correct functioning of these LEDs, compliance to the maximum electrical specifications is paramount. These LEDs are particularly sensitive to any current value that exceeds the absolute maximum rating of the product. Any applied current in excess of the maximum specification will cause damage and possible complete failure of the product. The current flowing in a LED is an exponential function of the voltage across it. A small change in voltage can produce a very large change in current and lead to complete failure of the LED. The use of current regulated drive circuits are recommended for these products. Any attempt to drive these UV LEDs with a voltage source instead of a current source will cause damage and possible complete failure of the product. These LEDs are susceptible to heat generation. Use care to design end product with adequate thermal management to ensure that LEDs do not exceed maximum recommended temperatures. Operating LEDs at temperatures in excess of specification will result in damage and possible complete failure of the product. Attach the following warning labels on products/systems that use UV LEDs. 7

Ultraviolet Emitter Product No: MTSM310UV-1120 Reel Packaging 8