DATA SHEET PART NO. : MOA20UB018GJ REV : A / 1

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Transcription:

PARA LIGHT ELECTRONICS CO., LTD. 4F, No.1, Lane 93, Chien Yi Road, Chung Ho City, Taipei, Taiwan Tel: 886-2-2225-3733 Fax: 886-2-2225-4800 E-mail: para@para.com.tw http://www.para.com.tw DATA SHEET PART NO. : MOA20UB018GJ REV : A / 1 CUSTOMER S APPROVAL : DCC : DRAWING NO. : DS-16-14-0019G DATE : 2014-9-23 Page : 1 LD-R/RD012

PACKAGE DIMENSIONS NOTES : 1. All dimensions are in millimeters. (inches) 2. Tolerance is ±0.25(0.010") unless otherwise specified. DRAWING NO. : DS-16-14-0019G DATE : 2014-9-23 Page : 2 LD-R/RD013

TYPICAL INTERNAL EGUIVALENT CIRCUIT PIN NO FUNCTION MOA20UB018GJ PIN NO FUNCTION 1 Cathode Row 5 9 Cathode Row 1 2 Cathode Row 7 10 Anode Column 4 3 Anode Column 2 11 Anode Column 6 4 Anode Column 3 12 Cathode Row 4 5 Cathode Row 8 13 Anode Column 1 6 Anode Column 5 14 Cathode Row 2 7 Cathode Row 6 15 Anode Column 7 8 Cathode Row 3 16 Anode Column 8 DRAWING NO. : DS-16-14-0019G DATE : 2014-9-23 Page : 3 LD-R/RD014

FEATURES 20.00mm (2 ) MATRIX HEIGHT 8 x 8 ARRAY WITH X-Y SELECT LOW POWER, HIGH CONTRAST & BRIGHTNESS MATRIX ORIENTATION OF ANODE COLUMN AND CATHODE ROW STACKABLE VERTICAL AND HORIZONTAL Pb FREE PRODUCTS HIGHLIGHT<-400V THE LED CAN WITHSTAND THE MAX STATIC LEVEL WHEN ASSEMBLING OR OPERATION ROHS COMPLIANCE BLACK FACE, WHITE SEGMENTS Raw Material : GaInN/GaN ABSOLUTE MAXIMUM RATING : ( Ta = 25 ) SYMBOL PARAMETER ULTRA BLUE UNIT PD Power Dissipation Per Dot 40 mw VR Reverse Voltage Per Dot 5 V IAF Continuous Forward Current Per Dot 10 ma IPF Peak Forward Current Per Dot (1/10 Duty Cycle,0.1ms Pulse Width) 60 ma - Derating Linear From 25 Per Dot 0.4 ma/ Topr Operating Temperature -35 to 85 Tstg Storage Temperature -35 to 85 ELECTRO-OPTICAL CHARACTERISTICS : ( Ta = 25 ) SYMBOL PARAMETER TEST CONDITION MIN. TYP. MAX. UNIT VF Forward Voltage Any Dot IF = 20mA 3.5 4.0 V IR Reverse Current Any Dot VR = 5V 100 μa λp Peak Emission Wavelength IF = 20mA 462 nm λd Dominant Wavelength IF = 20mA 470 nm Δλ Spectral Line Half-Width IF = 20mA 30 nm IV Luminous Intensity Per Dot IF = 10mA 16.8 42.0 mcd BIN CODE ( IF = 10mA ) Dice Bin K L M N O P IV(mcd) 16.8-26.73 26.74-36.15 36.16-45.56 45.57-70.66 70.67-95.22 95.33-105 DRAWING NO. : DS-16-14-0019G DATE : 2014-9-23 Page : 4

DRAWING NO. : DS-16-14-0019G DATE : 2014-9-23 Page : 5

SOLDERING METHOD SOLDERING CONDITIONS REMARK DIP SOLDERING SOLDERING IRON Bath temperature: 260 max Immersion time: with 5 sec Soldering iron: 30W or smaller Temperature at tip of iron: 360 or lower Soldering time: within 3 sec. Solder no closer than 2mm from the base of the package Using soldering flux, RESIN FLUX is recommended. During soldering, take care not to press the tip of iron against the PIN. (To prevent heat from being transferred directly to the PIN.) 1) When soldering the PIN of Display in a jig that the package is fixed with a panel (See fig.1), be careful not to stress the PIN with iron tip. When soldering Display in a condition that the package is fixed with a panel, be careful not to cling and stress the surface of Display on the panel to avoid damaging the Display. Fig.1 Regarding solution in the tinning oven for product-tinning, compound sub-solution made of tin & copper and silver is proposed with the temperature of Celsius 260. The proportion of the alloyed solution is tin 95.5: copper 3.5: silver 0.5 by percentage. The time of tinning is constantly 3 seconds. DRAWING NO. : DS-16-14-0019G DATE : 2014-9-23 Page : 6

2) Similarly, when a jig is used to solder the Display to PC board, take care as much as possible to avoid steering the PIN (See Fig.2). Fig.2 3) Repositioning after soldering should be avoided as much as possible. If inevitable, be sure to preserve the soldering conditions with irons stated above: select a best-suited method that assures the least stress to the Display. 4) PIN cutting after soldering should be performed only after the Display temperature has returned to normal temperature. LED MOUNTING METHOD 1) When mounting the Display by using a case, as shown Fig.3, ensure that the mounting holds on the PC board match the pitch of the PIN correctly-tolerance of dimensions of the respective components including the Display should be taken into account especially when designing the case, PC board, etc. to prevent pitch misalignment between the PIN and board holes, the diameter of the board holes should be slightly larger than the size of the PIN. Alternatively, the shape of the holes should be made oval. (See Fig.3) DRAWING NO. : DS-16-14-0019G DATE : 2014-9-23 Page : 7 Fig.3

2) Use Display with holder made of resin (Fig.4) to position the PIN. Fig.4 FORMED LEAD 1) The PIN should be bent at a point located at least 2mm away from the package. Bending should be performed with base fixed means of a jig or pliers (Fig.5) Fig.5 2) Forming PIN should be carried our prior to soldering and never during or after soldering. 3) Form the PIN to ensure alignment between the PIN and the hole on board, so that stress against the Display is prevented. (Fig.6) Fig.6 DRAWING NO. : DS-16-14-0019G DATE : 2014-9-23 Page : 8

LEAD STRENGTH 1) Bend strength Do not bend the PIN more than twice. (Fig.7) 2 8x8 DOT MATRIX DISPLAY Fig.7 2) Tensile strength (@Room Temperature) If the force is 1kg or less, there will be no problem. (Fig.8) ok! Fig.8 HANDLING PRECAUTIONS Although rigid against vibration, the Display may damaged or scratched if dropped. So take care when handling. CHEMICAL RESISTANCE 1) Avoid exposure to chemicals as it may attack the Display surface and cause discoloration. 2) When washing is required, refer to the following table for the proper chemical to be sued. SOLVENT Freon TE Chlorothene Isopropyl Alcohol Thinner Acetone Trichloroethylene --Usable 1Kg ADAPTABILITY --Do not use. DRAWING NO. : DS-16-14-0019G DATE : 2014-9-23 Page : 9

STORAGE 1) The Display should be stored at 30 or less and 70% RH or less after being shipped from PARA and the storage life limits are 3 months. 2) PARA Display lead frames are comprised of a stannum plated iron alloy. The silver surface may be affected by environments which contain corrosive gases and so on. Please avoid conditions which may cause the Display to corrode, tarnish or discolor. This corrosion or discoloration may cause difficulty during soldering operations. It is recommended that the Display be used as soon as possible. 3) Please avoid rapid transitions in ambient temperature, especially, in high humidity environments where condensation can occur. HEAT GENERATION 1) Thermal design of the end product is of paramount importance. Please consider the heat generation of the Display when making the system design. The coefficient of temperature increase per input electric power is affected by the thermal resistance of the circuit board and density of Display placement on the board, as well as other components. It is necessary to avoid intense heat generation and operate within the maximum ratings given in this specification. 2) The operating current should be decided after considering the ambient maximum temperature of Display. OTHERS 1) Care must be taken to ensure that the reverse voltage will not exceed the absolute maximum rating when using the Display with matrix drive. 2) Flashing lights have been known to cause discomfort in people; you can prevent this by taking precautions during use. Also, people should be cautious when using equipment that has had Display incorporated into it. 3) The Display described in this brochure are intended to be used for ordinary electronic equipment (such as office equipment, communications equipment, measurement instruments and household appliances). Consult PARA s sales staff in advance for information on the applications in which exceptional quality and reliability are required, particularly when the failure or malfunction of the Display may directly jeopardize life or health (such as for airplanes, aerospace, submersible repeaters, nuclear reactor control systems, automobiles, traffic control equipment, life support systems and safety devices). DRAWING NO. : DS-16-14-0019G DATE : 2014-9-23 Page : 10

4) User shall not reverse engineer by disassembling or analysis of the Display without having prior written consent from PARA. When defective Display are found, the User shall inform PARA directly before disassembling or analysis. 5) The formal specifications must be exchanged and signed by both parties before large volume purchase begins. 6) The appearance and specifications of the product may be modified for improvement without notice. STATIC ELECTRICITY 1) Static electricity or surge voltage damages the Display. It is recommended that a wrist band or an anti-electrostatic glove be used when handling the Display. 2) All devices, equipment and machinery must be properly grounded. It is recommended that measures be taken against surge voltage to the equipment that mounts the Display. 3) When inspecting the final products in which Display were assembled, it is recommended to check whether the assembled Display are damaged by static electricity or not. It is easy to find static-damaged Display by a light-on test or a VF test at a lower current (below 1mA is recommended). 4) Damaged Display will show some unusual characteristics such as the leak current remarkably increases, the forward voltage becomes lower, or the Display do not light at the low current. Criteria : ( VF>2.0V at IF=0.5mA ) DRAWING NO. : DS-16-14-0019G DATE : 2014-9-23 Page : 11