MAN6400 QT | Alldatasheet

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OPTOELECTRONICS SEVEN SEGMENT DISPLAYS NEE HIGH EFFICIENCY GREEN MAN6400 SERIES ! See Tw igh Etici i ] Va igh Efficiency Green nitrogen-doped GaAsP on GaP sci | @ Large, easy to read, digits ; & = Common anode or common cathode models = Fast switching — excellent for multiplexing ‘ a = Low power consumption ¥ 7 = Bold solid segments that are highly legible k 5 = Solid state reliability — long operation life . = Rugged plastic construction = Directly compatible with integrated circuits + = High brightness with high contrast % heal | ™ Categorized for Luminous Intensity (See Note 5) ™ Wide angle viewing...150° ; reyes = Low forward voltage The MAN6400 Series is a family of large digits which includes double and single digits. The series features the APPLICATIONS sculptured font which minimizes “gappiness” at the - - segment intersections. All models have right hand For industrial and consumer applications such as: decimal points and are available in common anode or i Digital readout displays common cathode configuration. This device has aGrey _® Instrument panels face and clear segment to enhance ON and OFF = Point of sale equipment contrast. = Digital clocks = TVand radios PART PACKAGE PIN OUT MAN6410_— High Eff. Green 2 Digit; Common Anode; Rt. Hand Decimal A A MAN6440_—-High Eff. Green 2 Digit; Common Cathode; Rt. Hand Decimal A B MAN6460 High Eff.Green Single Digit; Common Anode; Rt. Hand Decimal B c MAN6480__High Eff. Green _ Single Digit, Common Cathode; Rt. Hand Decimal B D For optimum ON and OFF contrast, one of the following filters or equivalents should be used over the display: DEVICE TYPE FILTER Panelgraphic Green 48 ; Homalite 100-1440 Green MAN6400 Series Panelgraphic Grey 10 Homalite 100-1266 Grey

QT 0.560-INCH DProececrao nits SEVEN SEGMENT DISPLAYS ST ELECTRO-OPTICAL CHARACTERISTICS (Per Diode at 25°C Free Air Temperature Unless Otherwise Specified) Luminous Intensity, digit average 510 2200 ped -=10mA (See Note 1) Peak emission wavelength 630 nm Spectral fine half width 40 nm Forward voltage Segment 25 v 1=20 mA Decimal point 25 v |,=20mA Dynamic resistance Segment 26 2 k=20mA Decimal point 26 2 l=20mA Capacitance ‘Segment 35 pF V=0 Decimal point 35 pF V=0 Reverse current Segment 100 uA Va=3.0V Decimal point 100 WA Va=3.0V Ratio |. 24 = b=10mA ABSOLUTE MAXIMUM RATINGS MAN6610 MAN6630 ‘MANGS60 MAN6675 MAN6640 MANG650 MANG680 MAN6695 Storage and operating temperature te 40°C 10 +85°C 40°C 10 485°C 40°C to +85°C-—_— 40°C to + 85°C Continuous forward current Per segment feces vee 30 mA 30 mA 30 mA 30mA Decimal point. covet ttteeeeeeneee 30 mA 30 mA 30 mA 30 mA Reverse voltage Per segment cect eettteeeetennee 6.0V 6.0V 60V 60V Decimal point veteteeeeeees 6.0V 6.0V 60V 6.0V Soldering time at 260°C (See Notes 3 and 4) coe 5 sec. 5 sec. 5 sec. 5 sec. TYPICAL THERMAL CHARACTERISTICS Wavelength temperature coefficient (case temperature). . vecneees wees AOAC Forward voltage temperature coefficient ees cee --2.0mvP°C 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 efficiency over the operating temperature range. 3. Leads of the device immersed to 1/16 inch from the body. Maximum device surface temperature is 140°C. 4. For flux removal, Freon TF, Freon TE, Isoproponal or water may be used up to their boiling points. 5. All displays are categorized for Luminous Intensity. The Intensity category is marked on each part as a suffix letter to the part number.

DPTOELECTANHICS SEVEN SEGMENT DISPLAYS — SS PACKAGE DIMENSIONS [es oo Ee i “ A ren + gn TT ay r cy cn wo [ff | ae el gfe oa fo we iret q i. tod Diet Ie hol at illo [FL FH [oct a Sh H t io {fs L fo -Hio]_ + elo “oo at = \\ owe via 3 wo esa TENSITY fim et - wg dhe | bat ie er a a a hed ELECTRICAL CONNECTIONS | oe | q Cathode E 1 Anode E 1 Cathode E Anode E

2 Cathode D1 Anode D1 Cathode D Anode D

3 Cathode C 1 Anode C 1 Common Anode ‘Common Cathode

4 Cathode D.P. 1 Anode D.P.1 Cathode C Anode C 5 Cathode E 2 Anode E 2 Cathode D.P. Anode D.P.

6 Cathode D2 Anode D 2 Cathode B Anode B

7 Cathode G 2 Anode G2 Cathode A Anode A

8 Cathode C 2 Anode C 2 Common Anode. ‘Common Cathode 9 Cathode D.P. 2 Anode D.P. 2 Cathode F Anode F

10 Cathode B2 Anode B2 Cathode G Anode G

12 Cathode F 2 Anode F 2

13 Anode Digit 2 Cathode Digit 2

14 ‘Anode Digit 1 Cathode Digit 1

15 Cathode B 1 Anode B 1

16 Cathode A1 Anode A1

17 Cathode G1 Anode G 1

18 Cathode F 1 Anode F 1

UPTOELECTHONICS SEVEN SEGMENT DISPLAYS Neon) TYPICAL CHARACTERISTIC CURVES : 5 NORMALIZED AT te on VA . oe Se v0 g t es a a ee Ca i A é a A 3 £ an : / 3 & i 1 » + 3 20 § WROTE g 3 4 a fom z Sa aE 2 «0 ~—- E19 > 3 ORONO ST 2 a f 5 i it 3 0 PuseD BeMTION | os w 2 2 29 “0 100 1000 -10,000 ol___“1_seenigs se. 0G FORWARD CURRENT — Ir ma PULSE OURATION us FORWARD VOLTAGE = VF.VOLTS! C1607 cee C1690 vs. Forward Voltage vs. DC Forward Current vs. Pulse Duration 199 NESS “ a 120] AT 256 ie, = 20mA > PONCE eat 5 5 Sma NI E 10 at 25 ma | Pe | NIT e A 00 5% 20) jo ON a) OST oe N - LUT Po ow tTTTLIN 0 mai “ss 25 0255075100 20 «50 1 #6 0c TEMPERATURE — Ta “C souty cvcie e100 e701 Fig. 4. Relative Luminous Fig. 5. Relative Efficiency Intensity vs. Temperature vs. Duty Cycle INTERNAL CONNECTIONS : : na 1 ps 2 DIGIT SECOND, Rosrerrenterten i eB Te RSP pee fee pe pep pee wansoao enor