MAN3900A QT | Alldatasheet
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OPTOELECTRONICS SEVEN SEGMENT DISPLAYS SS HIGH EFFICIENCY RED MAN3900A SERIES “, = Common anode or common cathode models ® High Efficiency Red ™ . = Fast switching—excellent for multiplexing = Low power consumption = Bold solid segments that are highly legible ™ Solid state reliability—tong operation life = Impact resistant plastic construction = Directly compatible with integrated circuits = High brightness with high contrast ™ Categorized for Luminous Intensity (See Note 6) — — = Standard dual-in-line package configuration - DESCRIPTION. = Wide angle viewing . . . 150° = m= These devices have a Red face and Red segments The MAN39O0A Series is a High Efficiency Red LED Orange and Yellow, with common anode right hand decimal, common anode left hand decimal, and common or industrial and consumer applications such as cathode right hand decimal. They can be mounted in = Digital readout displays arrays with 0.400-inch (10.16 mm) center-to-center 1 Instrument panels spacing. Units are constructed with Red face and = Point of sale equipment segment color. ® Calculators ™ Digital clocks _MODELNUMBERS) ines PART NUMBER COLOR PACKAGE DESCRIPTION SPECIFICATION MAN3910A High Efficiency Red A Common Anode; Right Hand Decimal A MAN3920A High Efficiency Red B Common Anode; Left Hand Decimal B MAN3940A High Efficiency Red C Common Cathode; Right Hand Decimal c MAN3980A High Efficiency Red D___ Common Cathode; Right Hand Decimal D For optimum ON and OFF contrast, one of the following filters or equivalents should be used over the display: DEVICE TYPE ALTER MAN3910A MAN3920A Panelgraphic Scarlet 65 MAN3940A Homalite 100-1670 MAN3980A
QT 0.300-INCH BPrOcLECTAOHICS SEVEN SEGMENT DISPLAYS SS ELECTRO-OPTICAL CHARACTERISTICS (25°C Free Air Temperature Unless Otherwise Specified) MIN. TP. MAX. UNITS TEST CONDITONS: MAN3910A, 3920A, 3940A, 3980A Luminous Intensity, digit average 450 1900 wed = -=10mA (See Note 1 and 3) Peak emission wavelength 635 nm Spectral line half width 40 nm Forward voltage Segment 25 v 1=20mA Decimal point 25 v =20mA Dynamic resistance ‘Segment 26 2 1.=20mA Decimal point 26 2 1=20mA Capacitance ‘Segment 35 pF V=0 Decimal point 35 pF V=0 Reverse current ‘Segment 100 A Vp=5.0V Decimal point 100 HA Va=5.0V ABSOLUTE MAXIMUM RATINGS MAN3910A, MAN3920A, MAN3940A, MAN3980A_ Continuous forward current Per segment ... biceeecteeee bos eetbetetteeeteteneeeeneee 30 mA Decimal point : te Feb ete tte tteeeteetetenteneee 30 mA Reverse voltage Decimal point... sees fee feveeees veces seeeeesees 60V TYPICAL THERMAL CHARACTERISTICS HIGH EFFICIENCY RED Wavelength temperature coefficient (case temperature) weet eee cece eee eeeeeeneeereee 1.0A°C Forward voltage temperature coefficient eS peereereeeeeeereeerereeerereerrette) =2.0 mVeC
DPTDELECTRONICS SEVEN SEGMENT DISPLAYS PACKAGE DIMENSIONS sean] 406m FUehe ater a ATE 1 a os 4 eff “fi i | : rr - ina 1] ‘fe c reps in creat heal “yo || fale esrb Hg pa opt ve “oe Of rote ne bd Ft | peo ae | oto tp { fo. ees of. ED: lel ‘Lk 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°C 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 140°C. 5. For flux removal, Freon TF, Freon TE, lsoproponal or water may be used to their boiling points. 6. All displays are categorized for Luminous Intensity. The Intensity category is marked on each part as a suffix letter to the part number.
QT 0.300-INCH DPTOELECTRONICS SEVEN SEGMENT DISPLAYS ———— Ee es ee ee eee
1 Cathode A Cathode A Anode F ‘Common Cathode
2 Cathode F Cathode F Anode G Anode F
3 Common Anode ‘Common Anode No Pin Anode G
4 No Pin No Pin Common Cathode Anode E
5 No Pin No Pin No Pin Anode D
6 No Connection Cathode D.P. Anode E Common Cathode 7 Cathode E Cathode E Anode D Anode D.P.
8 Cathode D Cathode D Anode C Anode C
9 Cathode D.P. No Connection Anode D.P. Anode B 10 Cathode C Cathode C No Pin Anode A. W Cathode G Cathode G No Pin
12 No Pin No Pin Common Cathode
13, Cathode B Cathode B Anode B
14 Common Anode Common Anode Anode A
TYPICAL CHARACTERISTIC CURVES on we “TE oe EN LT TTT ryt ee a 70 2 120) Pe a pe NT eo er a 33 oOo ce a a POC so, | NT | = of | | 7 NV ot LT TT Fe a a ott TT TT io CoO Tr i a Forward Voltage Temperature son , CesT A [TT TTT) Fed “Thee | CEH EE ttt gNeeoo ELE TT 7 tet IAAT sce Eo Po BE TNT é a | CITES) ° ERERSS acer » N *~LELLL LAL tomers Le TT, va 3 sew 20 w soem Fiver “ \\rFORWARD CURRENT-ma Duty Cycle Duty Cycle Forward Current