MAN8600 QT | Alldatasheet

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OPTOELECTRONICS SEVEN SEGMENT DISPLAYS SS HIGH EFFICIENCY RED (ORANGE) MAN8600 SERIES Oe . £ = High performance nitrogen-doped GaAsP on GaP 7 ; = Large, easy to read, digits y , ™ Common anode or common cathode models ' 2 ; = Fast switching — excellent for multiplexing a = Low power consumption / ® Bold solid segments that are highly legible = Solid state reliability — long operation lite : = Rugged plastic construction 4 ™ Directly compatible with integrated circuits Se = High brightness with high contrast = Categorized for Luminous Intensity (See Note 6) = Wide angle viewing...150° DESCRIPTION = Low forward voltage = Grey face for use in high ambient light conditions The MAN8600 Series is a family of large digits 0.8-inches in height. This series combines high brightness, large APPLICATIONS size, good aesthetics and is designed to be used where acourate readable displays need to be viewed over a For industrial and consumer applications such as: distance. All models use right hand decimal points. Units pigital readout displays are constructed with Grey face and neutral segment «= Instrument panels color. = Point of sale equipment = Digital clocks = TVand radios a PART NUMBER COLOR DESCRIPTION DRAWING MAN8610 High Efficiency Red Common Anode; Right Hand Decimal 1 (Orange) MAN8640 High Efficiency Red Common Cathode; Right Hand Decimal 1 (Orange) RECOMMENDED FILTERS For optimum ON and OFF contrast, one of the following __In situations of high ambient light, contrast with the filters or equivalents should be used over the display: Grey face can be enhanced by using a neutral density Panelgraphic Scarlet 65 filter. The following or an equivalent can be used: Homalite 100-1670 Panelgraphic Grey 10

OPTOELECTRONICS SEVEN SEGMENT DISPLAYS TS ELECTRO-OPTICAL CHARACTERISTICS (25°C Free Air Temperature Uniess Otherwise Specified) MIN. re. MAX. UNITS TEST CONDITIONS Luminous Intensity, digit average 600 2200 ped k=10mA (See Note 1) Peak emission wavelength 630 nm Spectral line half width 40 nm Forward voltage ‘Segment 25 v 1=20 mA Decimal point 25 v 1=20 mA Dynamic resistance ‘Segment 26 a I-=20mA Decimal point 26 a b=20mA Capacitance ‘Segment 35 pF V=0 Decimal point 35 pF V=0 Reverse current Segment 100 WA Vn=3.0V Decimal point 100 HA Vn=3.0V Luminous Intensity Ratio |, 24 = b=10mA (segment-to-segment) ABSOLUTE MAXIMUM RATINGS ue Continuous forward current Decimal point... e cit eteeereeeneee ceeeees : veces 30 mA Reverse voltage Per segment feeb e ec teeeveeeentestneeereeereeersa seve 6.0V Decimal point fee ceboceecceeecettetseeetietesersenserenseeece se 6.0V Soldering time at 260°C (See Note 4)... eee eee eee vivvtttnetees Piece ree 5 806. Peak forward current per segment (Ina) (See Figure 4)... ee eee a ‘Thermal resistance junction to free air Py... fevceeeveeeeteeteeeeeeees sess 160°CW Wavelength temperature coefficient (case temperature). . cectetteeteeeeees =1.0A/°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.

OPTOELECTRONICS SEVEN SEGMENT DISPLAYS el PACKAGE DIMENSIONS 735 I Fl b ml : 988) (2m a f c “| [ [Uo D L = — Pin #10 100" D1 he | oem ||? (1Bt mS Ahg PART NO, intensity OW DATE CODE CATEGORY 050 eg pee 300 => 160" vsaemief Ft ef TYYYY OTE een #018" ie PIN Arnone 020") *015" 010" #10 (254mm) Sh mm oor" ooo oor c1s70 ELECTRICAL CONNECTIONS a | SS Common Cathode [Pine | Package Dimensions Package Dimensions

1 No Connection No Connection

2 ACathode AAnode

3 F Cathode F Anode

4 ‘Common Anode ‘Common Cathode

5 E Cathode E Anode

6 “ —

7 E Cathode E Anode

8 = —

9 D Cathode ‘Common Cathode

10 DP Cathode DP Anode

" D Cathode D Anode 12 ‘Common Anode ‘Common Cathode

13 C Cathode C Anode

14 G Cathode G Anode

16 _ _ 17 ‘Common Anode ‘Common Cathode 18 = —

Irritant SEVEN SEGMENT DISPLAYS CO TYPICAL CHARACTERISTIC CURVES co 179 HHH a 1000 — ae * ‘0 7 TTT Try * sof | FREQUENCY = 200 pps "TTT Tee 2 ols | No wes Peo ee Re NR ce ae ee es a « l ‘0 : of tT Ty TT sf. | TS] NEI Ho EES CTTTEN 0 “70 29 7 of |_| COTY FT ee es O46 12 16 20 20 20 a7 3000 “02 OT Te Fonwanovorage vous scar ortescine can puvevcess Fonward Voltage Temperature (See Note 2) Duty Cycle AOE ‘See 5 | somuaizen ari -roma J | Becerra 5 0) 4 . N Pee : 7 i LN Pssss===. == iy a 3 . eS ¢ °C TP TNTY ay Fp a so a | 3 | EB om YT 3 see eee 3 4 é PtH SESH, PANT Eas Se a a a | 3 {| 3 See eee g IN PS a a

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oe © ae we wee 0¢ FORWARD CURRENT — ir ma sVCLE C1194 ~ Ta AMBIENT TEMPERATURE. "C C137) 1702 Duty Cycle vs. Temperature Forward Current INTERNAL CONNECTIONS eee pepe te sb be ln anaes