PACKAGE DIMENSIONS. .050" (1.27 mm).200" (5.08 mm) ±.010" .020" (0.51 mm) +.004" -.000".010" (0.25 mm) +.007" -.000" PIN " (7.62 mm) ±.
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1 PKGE IMENSIONS.200" (5.08 mm).010" PIN #1." (2.54 mm).160" (4.06 mm) +.015" 0.300" (7.62 mm) ±.015".0" (1.27 mm).200" (5.08 mm) ±.010".020" (0.51 mm) +.004" -.000".010" (0.25 mm) +.007" -.000" PIN 8.010" (0.25 mm) MNXXXX YXX Z.160" (4.06 mm) ±.015".020" (0.51 mm) +.004" -.000" PRT No. OE MNXXXX = PRT No. YXX - TE OE Z = LIGHT INTENSITY T No. 10 PIN # " (4.78 mm) " (4.78 mm).010x " (4.78 mm) 0.370" (9.40 mm).738" (18.75 mm).300" (7.62 mm) 0.370" 2 (9.40 mm) 3.738" (18.75 mm) " 11 (7.62 mm) " (18.75 mm) 0.370" 2 (9.40 mm) " (7.62 mm) F G.386" (9.80 mm) F." (2.54 mm) TYP. G " (9.80 mm) 9 8 F." (2.54 mm) TYP. G " (9.80 mm) 9 8 E P E P E P escription The MN3900 Series is a High Efficiency Red LE display. Standard units are also available in Red, Green, Orange and Yellow, with common anode right hand decimal, common anode left hand decimal and common cathode right hand decimal. They can be mounted in arrays with inch (10.16 mm) center-to-center spacing. Units are constructed with Red face and segment color. Features ommon anode or common cathode models High Efficiency Red Fast switching excellent for multiplexing Low power consumption old solid segments that are highly legible Solid state reliability long operation life Impact resistant plastic construction irectly compatible with integrated circuits High brightness with high contrast ategorized for Luminous Intensity (See Note 6) Standard dual-in-line package configuration Wide angle viewing...1 These devices have a Red face and Red segments pplications For industrial and consumer applications such as: igital readout displays Instrument panels Point of sale equipment alculators igital clocks Page 1 of 6
2 MOEL NUMERS Part Number olor Package escription Pin Out Specification MN3910 High Efficiency Red ommon node; Right Hand ecimal MN3920 High Efficiency Red ommon node; Left Hand ecimal MN3940 High Efficiency Red ommon athode; Right Hand ecimal MN3980 High Efficiency Red ommon athode; Left Hand ecimal REOMMENE OPTIL FILTERS For optimum ON and OFF contrast, one of the following filters or equivalents should be used over the display: evice Type MN3910 MN3920 MN3940 MN3980 Filter Panelgraphic Scarlet 65 Homalite ELETRO-OPTIL HRTERISTIS (25 Free ir Temperature Unless Otherwise Specified) MN3910, MN3920, MN3940, MN3980 Min. Typ. Max. Units Test onditions Luminous Intensity, digit average (See Note 1 and 3) µcd I F = 10 m Peak emission wavelength 635 nm Spectral line half width 40 nm Forward voltage ynamic resistance apacitance Reverse current V V Ω Ω pf pf µ µ I F = 20 m I F = 20 m I F = 20 m I F = 20 m V = 0 V = 0 V R = 5.0V V R = 5.0V Page 2 of 6
3 SOLUTE MXIMUM RTINGS MN3910, MN3920, MN3940, MN3980 Power dissipation at 25 ambient erate linearly from Storage and operating temperature ontinuous forward current Total Per segment Reverse voltage Per segment Soldering time at 260 (See Notes 4 and 5) 600mW -8.6mW/ -40 to m 30 m 30 m 6.0 V 6.0 V 5 sec. TYPIL THERML HRTERISTIS HIGH EFFIIENY RE Thermal resistance junction to free air φ J Wavelength temperature coefficient (case temperature) Forward voltage temperature coefficient 160 /W 1.0Å/ -2.0 mv/ Notes: 1. The digit average Luminous Intensity is obtained by summing the Luminous Intensity of each segment and dividing by the total number of segments. Intensity will not vary more than ±33.3% between all segments within a digit. 2. The curve in Figure 3 is normalized to the brightness at 25 to indicate the relative Luminous Intensity over the operating temperature range. 3. The decimal point is designed to have the same surface brightness as the segments, therefore, the Luminous Intensity of the decimal point is.3 times the Luminous Intensity of the segments, since the area of the decimal point is.3 times the area of the average segment. 4. Leads of the device immersed to 1/16 inch from the body. Maximum device surface temperature is For flux removal, Freon TF, Freon TE, Isoproponal or water may be used to their boiling points. 6. ll displays are categorized for Luminous Intensity. The Intensity category is marked on each part as a suffix letter to the part number. Page 3 of 6
4 ELETRIL ONNETIONS Pin No. MN3910 ELETRIL ONNETIONS MN3920 MN3940 MN athode athode node F ommon athode 2 athode F athode F node G node F 3 ommon node ommon node No Pin node G 4 No Pin No Pin ommon athode node E 5 No Pin No Pin No Pin node 6 No onnection athode. P. node E ommon athode 7 athode E athode E node node.p. 8 athode athode node node 9 athode.p. No onnection node.p. node 10 athode athode No Pin node 11 athode G athode G No Pin 12 No Pin No Pin ommon athode 13 athode athode node 14 ommon node ommon node node Page 4 of 6
5 TYPIL HRTERISTI URVES (IF) m 90 MN3900 Series Forward Voltage (V F ) Volts Fig. 1 Forward urrent vs. Forward Voltage Relative rightness % MN3900 Series mbient Temperature Fig. 2 Relative Luminous Intensity vs. Temperature Peak IF - m MN3900 Series 0 Frequency = 200 pps uty ycle % Fig. 3 Max Peak urrent vs. uty ycle Relative Intensity uty ycle % I F Per Seg 10 ma verage Fig. 4 Luminous Intensity vs. uty ycle Relative Intensity, % I F Forward urrent m Fig 5. Relative Luminous Intensity vs. Forward urrent Page 5 of 6
6 ISLIMER FIRHIL SEMIONUTOR RESERVES THE RIGHT TO MKE HNGES WITHOUT FURTHER NOTIE TO NY PROUTS HEREIN TO IMPROVE RELIILITY, FUNTION OR ESIGN. FIRHIL OES NOT SSUME NY LIILITY RISING OUT OF THE PPLITION OR USE OF NY PROUT OR IRUIT ESRIE HEREIN; NEITHER OES IT ONVEY NY LIENSE UNER ITS PTENT RIGHTS, NOR THE RIGHTS OF OTHERS. LIFE SUPPORT POLIY FIRHIL S PROUTS RE NOT UTHORIZE FOR USE S RITIL OMPONENTS IN LIFE SUPPORT EVIES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN PPROVL OF THE PRESIENT OF FIRHIL SEMIONUTOR ORPORTION. s used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the user. 2. critical component in any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. Page 6 of 6
YELLOW MAN5350/5360 RED MAN5750/5760 GREEN MAN5450/5460 HER MAN5950/5960
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