MAN4400A QT | Alldatasheet

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OPTOELECTRONICS SEVEN SEGMENT DISPLAYS SS HIGH EFFICIENCY GREEN MAN4400A SERIES ORANGE MAN4600A SERIES RED MAN4700A SERIES *. ™ Common anode or common cathode models ™ Red, Green and Orange ™ = Fast switching—excellent for multiplexing | = Low power consumption = Bold solid segments that are highly legible = Solid state reliability—long operation lite © Impact resistant plastic construction = Directly compatible with integrated circuits = High brightness with high contrast '™ Categorized for Luminous Intensity (See Note 6) DESCRIPTION | = Standard 14 pin dual-in-line package configuration = Wide angle viewing . . . 150° The MAN4400, MAN4600, MAN4700 and MAN4800 ™ Package size and lead configuration is the same as Series provides superior brightness in a choice of color MANSOA/3600A/70A/80A Series LED displays. Standard units are available in Red, Green, and Orange. They can be mounted in arrays with 0.400- inch (10.16 mm) center-to-center spacing. The Green —— displays are constructed with Grey face and neutral segment color. Red displays have Black faces and Red ‘For industrial and consumer applications such as: segment color. Others have face and segment color = Digital readout displays corresponding to the emitted light. & Instrument panels &™ Point of sale equipment = Calculators ™ Digital clocks ® High ambient light conditions NUMBER coLor DESCRIPTION DRAWING SPECIFICATION MAN4410A Green Common Anode; Right Hand Decimal A A MAN4440A Green Common Cathode; Right Hand Decimal A c MAN4610A Orange Common Anode; Right Hand Decimal A A MAN4630A Orange Common Anode; Overflow +1; Right Hand Decimal B B MAN4640A Orange Common Cathode; Right Hand Decimal A c MAN4705A Red Universal (CA or CC) Overflow -+1; Right Hand Decimal B D MAN4710A Red Common Anode; Right Hand Decimal A A MAN4740A Red __Common Cathode; Right Hand Decimal A c

OPTOELECTRONICS SEVEN SEGMENT DISPLAYS el For optimum ON and OFF contrast, one of the following filters or equivalents should be used over the display: DEVICE TYPE FILTER DEVICE TYPE FILTER MAN44 104 Panelgraphic Green 48 MAN47058 Panelgraphic Red 60 MAN4440A, MAN4710A Heian arden MAN4740A fomalte MAN46108 Panelgraphic Scariet 65 MAN4630A Homalite 100-1670 MAN4640A NOTE: When using the Grey face MAN4480 or MAN4880 in situations of high ambient light, a neutral density fier can be used to achieve a greater contrast. The following or equivalent can be used: Panelgraphic Grey 10. (25°C Free Air Temperature Unless Otherwise Specified) MIN. ne. MAX. UNITS _TEST CONDITIONS MAN4410A/4440A Luminous intensity, digit average 750 3200 ued b=10mA (See Note 1 and 3) Peak emission wavelength 562 nm Forward voltage Segment 22 30 Vo y=20mA Decimal point 22 30 V___h=20ma Dynamic resistance Segment 2 Q — =20mA Decimal point 12 Q __h=20mA Capacitance ‘Segment 40 pF V=0 Decimal point 40 pF V=0 Reverse current Segment 100 uA Vy=5.0V Decimal point 100 uA Vy=5.0V MAN4610A/4630A/4640A Luminous Intensity, digit average 510 1800 ued =10mA (Gee Note 1 and 3) Peak emission wavelength 630 nm Forward voltage Segment 22 25 Vo ,=20mA Decimal point 22 25 V__=20ma Dynamic resistance Segment 26 2 y=20ma Decimal point 26 2 =20mA Capacitance ‘Segment 35 pF V=0 Decimal point 35 pF V=0 Reverse current Segment 400 uA Vy=5.0V Decimal point 400 uA __Vy=5.0V

(oud 0.400-INCH OPTOELECTRONICS SEVEN SEGMENT DISPLAYS ed ELECTRO-OPTICAL CHARACTERISTICS (25°C Free Air Temperature Unless Otherwise Specified) MAN4705A/4710A/4740A Luminous Intensity, digit average 125 350 ued = .=10mA (See Note 1 and 3) Peak emission wavelength 660 nm Forward voltage Segment 1.6 20 Vv =20 mA Decimal point 16 2.0 Vv k=20mA Dynamic resistance Segment 2 2 k=20mA Decimal point 2 Q _k=20mA Capacitance Segment 35 80 pF V=0 Decimal point 35 80 pF V=0 Reverse current Segment 100 vA Va=5.0V Decimal point 100 HA _Va=5.0V ABSOLUTE MAXIMUM RATINGS : : MAN4410A MANA710A MAN4440A MANA705A MANA740A Continuous forward current Reverse voltage MANAG10A PO——C#C#CWawecsoq™—MaSNCR | MAN6408 Power dissipation at 25°C ambient .... veceeeeeeeeneeees : 450 mW 600 mW Continuous forward current Total .. vevceteceeeeeeee foe cee : 180 mA 240 mA Per segment fecitetceteceteseeneeres er 30 mA 30 mA Decimal point ... veictettteeneeneee bees 30 mA 30 mA Reverse voltage Per segment .... cee ettteeteeeeee fevceeeeees 60V 60v TYPICAL THERMAL CHARACTERISTICS | é GREEN/YELLOW Thermal resistance junction to free ai Diy... eee ec ceeeeeeeeeeeeeee ceceee 160°C W RED/ORANGE Thermal resistance junction to free air ceveeeecteeeee voceteteeeeeees ceceeeeeees 160°C

OPTOELECTRONICS SEVEN SEGMENT DISPLAYS PACKAGE DIMENSIONS I} i a r pel? 02 if . loor oF pin ri sa 306" =" 910 B my poke] -P mf A | | 0 i t LEADS ARE TIN-LEAD ity L Sotoen oreo aw |) t ore i 00") TOLERANCE 015" 383mm) 118 7 « Uso} —t i aN oss; 018 IK 04 walle cre 7 ]| d ait 160 -| NYE Te a0 - i {0 250m T | | I PART NO CODE * 00 — ee oe MANXXXX > PART NO. ooo" 1, ‘one Yan bate CODE [__ s00_ | 11 22mm 12 ee amy (OBI 27 LIGHT INTENSITY Teamat! on eae earno ors oo 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 Figures 3, 6, 9, and 12 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, isoproponal or water ‘may be used up 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.

MPTUCLECTAOHIES SEVEN SEGMENT DISPLAYS eS ELECTRICAL CONNECTIONS ELECTRICAL CONNECTIONS A Cc |_manesrontoronsrion | wantosoa | waneesoncsonerson | mantiosa —_|

1 Cathode A Anode C, D Anode F Anode D1

2 Cathode F No Pin Anode G No Pin

3 Common Anode Anode C, D No Pin Cathode D1

4 No Pin No Pin Common Cathode Cathode C

5 No Pin No Pin No Pin Cathode D2

6 No Pin No Connection Anode E Anode D2

7 Cathode E Cathode D Anode D Anode C

8 Cathode D Cathode C Anode C Anode D.P. 10 Cathode C Cathode B No Pin Cathode D.P. "1 Cathode G Cathode A No Connection Cathode B

12 No Pin No Pin ‘Common Cathode Cathode A

13 Cathode B No Pin Anode B Anode A

14 Common Anode Anode A, B, & D.P. Anode A Anode B 5) is 3 12 ” 4 aw 7 YZ S| \\/o¥ : C. MAN4705A MAN4630A

OPTOELECTRONICS SEVEN SEGMENT DISPLAYS Seen ccc emmy TYPICAL CHARACTERISTIC CURVES 109 40, a y Errored i: i 5% 3 2 50 tof Zed 4 3 ao - 3 2 a0 f- ¥ ro Fa at DOTTED LINE 5 Paanna 2 of Purse OPERATION —| pal | Sez Ras 39 os os ww 10 2030S 06 FORWARO CURRENT — ma FORWARD VOLTAGE = Ve VOLTS; "C1697 cima Forward Voltage Forward Current NE) Besos o ange a) col _paraeoasenes | [TT | 5 whan somes | weLL TTT TTT 3” TTI SCOT £ wo SET TTT i 2 CCC <* + wt ig til NI “SoS | N ee area rae CITT yt Try) Temperature Forward Voltage a o—|__T ‘sof_—_]- wanesoos senses |] eof —_[tonaroon seme | + ft TT vop__| | TT) Fe cs a ee es ee | Fe as SS Pls ee a a SS <9] Ee a a > fT tt Pee SS i a PS a ee ee Ye po CS re en ee ae Temperature Forward Voltage

MPrOeLecTaNNits SEVEN SEGMENT DISPLAYS OE TYPICAL CHARACTERISTIC CURVES (Conc) Fe SS a | = ool UM TT 2 sof} S| fT & NW Ni al Fatt S/T 2 CEES === Sai ail ai es ee ee | - H A ‘°° mow nom es eee naccouecn pa AMBIENT TEMPERATURE - C CAZB ad Temperature Duty Cycle 9 on ‘Romo TT] arora ((|| SHAR DP ett gu wast EPI CINE » PXeeerran a au anil ot | Nifeiost anep § CNecooo4 BUT EM COPPA] ESS gy HI Det HHA 2“ CCesccroy LN SSB ESC “COMPS HHH = EEE ws Di: SCOTT L oS 20° 50 0 2 0 0c 1 8 95 80 2 1 som 100 DUTY CYCLE Duty Cycle Duty Cycle Duty Cycle Ee] °C eros] TY soca eee a HES a HESS EE : . PTTTON TT Fy a i LTT” fo) a ee Hl

2 SEEN § Geert eT AT TT

LIU TTTN * RR oe » PPS : a eL LLU ETT ess IAT TTT, 1203 5 8 0 2 50 soa WO ° # « aa 5 10 6 2 2 Duty Cycle Duty Cycle Forward Current