5082-761x Series
7.6 mm (0.3 inch)/10.9 mm (0.43 inch)
Seven Segment Displays
Data Sheet
5082-761x Series/-762x Series/-765x Series/-766x Series
HDSP-360x Series/-460x Series/-E15x Series
Description
The 7.6 mm (0.3 inch) and 10.9 mm (0.43 inch) LED seven
segment displays are designed for viewing distances up
to 3 metres (10 feet) and 5 metres (16 feet). These devices
use an industry standard size package and pinouts. All
devices are available as either common anode or common
cathode.
Features
x Industry standard size
x Industry standard pinout
7.62 mm (0.300 inch) DIP leads on 2.54 mm (0.100
inch) centers
x Choice of colors
AlGaAs Red, High Eciency Red, Yellow, Green
x Excellent appearance
Evenly lighted segments
±50° viewing angle
Optimum contrast given by gray top surface for
AlGaAs Red and Green devices
Red top surface for HER devices
Yellow top surface for yellow devices
Features, continued
x Design exibility
Common anode or common cathode
– Single digits
Left or right hand decimal point ±1. overow
character
x Categorized for luminous intensity
Yellow and Green categorized for color
Use of like categories yields a uniform display
x High light output
x High peak current
x Excellent for long digit string multiplexing
x Intensity and color selection available
See Intensity and Color Selected Displays Data Sheet
x Sunlight viewable AlGaAs
Devices
AlGaAs[1]
Red HDSP-
HER[1]
5082-
Yellow
5082-
Green
HDSP- Description
Package
Drawing
7610 7620 3600 7.6 mm Common Anode Left Hand Decimal A
7611 7621 3601 7.6 mm Common Anode Right Hand Decimal B
7613 7623 3603 7.6 mm Common Cathode Right Hand Decimal C
E150 7650 4600 10.9 mm Common Anode Left Hand Decimal E
E151 7651 7661 4601 10.9 mm Common Anode Right Hand Decimal F
E153 7653 7663 4603 10.9 mm Common Cathode Right Hand Decimal G
E156 7656 7666 4606 10.9 mm Universal ± 1. Overow Right Hand Decimal[2] H
Notes:
1. These displays are recommended for high ambient light operation. Please refer to the HDSP-E10X AlGaAs and HDSP-335X HER data sheet for low
current operation.
2. Universal pinout brings the anode and cathode of each segment’s LED out to separate pins. See internal diagram H.
2
Notes:
1. For codes not listed in the gure above, please refer to the respective datasheet or contact your nearest Avago representative for details.
2. Bin options refer to shippable bins for a part number. Color and Intensity Bins are typically restricted to 1 bin per tube (exceptions may apply).
Please refer to respective datasheet for specic bin limit information.
Mechanical Option [1]
00: No Mechanical Option
Color Bin Options [1, 2]
0: No Color Bin Limitation
4: Color Bin 4 Only (applicable for Green devices only)
B: Color Bins 2 and 3 (applicable for Yellow devices only)
Maximum Intensity Bin [1, 2]
0: No Maximum Intensity Bin Limitation
Minimum Intensity Bin [1, 2]
0: No Minimum Intensity Bin Limitation
Device Configuration/Color [1]
0: Common Anode
1: Common Anode
3: Common Cathode
Device Specific Configuration [1]
Refer to Respective Datasheet
Package [1]
E: 10.9 mm (0.43 inch) Single Digit Seven Segment Display
5082 X XX X – X X X X
HDSP X XX X – X X X X
Part Number
3
These displays are ideal for most displays are ideal for
portable applications. Pin for pin equiva-applications.
The high light lent displays are also available in ambient
displays are ideal for a low current or high light high light
ambients or long string ambient design. The low current
lengths. For additional informa tion see the Low Current
Seven Segment Displays, or High Light Ambient Seven
Segment Displays data sheets.
Package Dimensions
4
Internal Circuit Diagram
Absolute Maximum Ratings
Description
AlGaAs Red
HDSP-E150
Series
HER
5082-7610/
7650 Series
Yellow
5082-7620/
7660 Series
Green
HDSP-3600/
4600 Series Units
Average Power per Segment or DP 96 105 80 105 mW
Peak Forward Current per Segment or DP 160[1] 90[3] 60[5] 90[7] mA
DC Forward Current per Segment or DP 40[2] 30[4] 20[6] 30[8] mA
Operating Temperature Range -20 to +100[9] -40 to +100 °C
Storage Temperature Range -55 to +100°C °C
Reverse Voltage per Segment or DP 3.0 V V
Wave Soldering Temperature for 3 Seconds
(1.59 mm [0.063 in.] below Body)
250 °C
Notes:
1. See Figure 1 to establish pulsed conditions.
2. Derate above 46°C at 0.54 mA/°C.
3. See Figure 6 to establish pulsed conditions.
4. Derate above 53°C at 0.45 mA/°C.
5. See Figure 7 to establish pulsed conditions.
6. Derate above 81°C at 0.52 mA/°C.
7. See Figure 8 to establish pulsed conditions.
8. Derate above 39°C at 0.37 mA/°C.
9. For operation below -20°C, contact your local Avago components sales oce or an authorized distributor.
5
Electrical/Optical Characteristics at TA = 25°C
AlGaAs Red
Device Series Parameter Symbol Min. Typ. Max. Units Test Conditions
HDSP-E15x
Luminous Intensity/Segment[1,2,5]
(Digit Average)
IV8.5 15.0 mcd IF = 20 mA
Forward Voltage/Segment or DP VF1.8 V IF = 20 mA
2.0 3.0 V IF = 100 mA
Peak Wavelength OPEAK 645 nm
Dominant Wavelength[3] Od637 nm
Reverse Voltage/Segment or DP[4] VR3.0 15 V IR = 100 PA
Temperature Coecient of VF/
Segment or DP
'VF/°C -2 mV/°C
Thermal Resistance LED Junction-to-Pin RTJ-PIN 340 °C/W/Seg
High Eciency Red
Device Series Parameter Symbol Min. Typ. Max. Units Test Conditions
5082-761x Luminous Intensity/Segment[1,2,6]
(Digit Average)
IV 340 800 Pcd IF = 5 mA
5082-765x 340 1115
Pcd IF = 5 mA
All
Forward Voltage/Segment or DP VF2.1 2.5 V IF = 20 mA
Peak Wavelength OPEAK 635 nm
Dominant Wavelength[3] Od 626 nm
Reverse Voltage/Segment or DP[4] VR 3.0 30 V IR = 100 PA
Temperature Coecient of VF/
Segment or DP
'VF/°C -2 mV/°C
Thermal Resistance LED Junction-to-Pin RTJ-PIN 280 °C/W
Yellow
Device Series Parameter Symbol Min. Typ. Max. Units Test Conditions
5082-762x Luminous Intensity/Segment[1,2]
(Digit Average)
IV 205 620 Pcd IF = 5 mA
5082-766x 290 835
Pcd IF = 5 mA
All
Forward Voltage/Segment or DP VF2.2 2.5 V IF = 20 mA
Peak Wavelength OPEAK 583 nm
Dominant Wavelength[3,7] Od 581.5 586 592.5 nm
Reverse Voltage/Segment or DP[4] VR 3.0 40 V IR = 100 PA
Temperature Coecient of VF/
Segment or DP
'VF/°C -2 mV/°C
Thermal Resistance LED Junction-to-Pin RTJ-PIN 280 °C/W/Seg
6
High Performance Green
Device Series Parameter Symbol Min. Typ. Max. Units Test Conditions
HDSP-360x Luminous Intensity/Segment[1,2]
(Digit Average)
IV 860 2700 Pcd IF = 10 mA
HDSP-460x 1030 4000
Pcd IF = 10 mA
All
Forward Voltage/Segment or DP VF2.1 2.5 V IF = 10 mA
Peak Wavelength OPEAK 566 nm
Dominant Wavelength[3,7] Od 571 577 nm
Reverse Voltage/Segment or DP[4] VR 3.0 50 V IR = 100 PA
Temperature Coecient of VF/
Segment or DP
'VF/°C -2 mV/°C
Thermal Resistance LED Junction-to-Pin RTJ-PIN 280 °C/W/Seg
Notes:
1. Device case temperature is 25°C prior to the intensity measurement.
2. The digits are categorized for luminous intensity. The intensity category is designated by a letter on the side of the package.
3. The dominant wavelength, Od, is derived from the CIE chromaticity diagram and is that single wavelength which denes the color of the device.
4. Typical specication for reference only. Do not exceed absolute maximum ratings.
5. For low current operation, the AlGaAs HDSP-E10X series displays are recommended. They are tested at 1 mA dc/segment and are pin for pin
compatible with the HDSP-E15X series.
6. For low current operation, the HER HDSP-335X series displays are recommended. They are tested at 2 mA dc/segment and are pin for pin compatible
with the 5082-7650 series.
7. The Yellow (5082-7620/7660) and Green (HDSP-3600/4600) displays are categorized for dominant wavelength. The category is designated by a
number adjacent to the luminous intensity category letter.
7
Figure 1. Maximum Allowed Peak Current vs. Pulse Duration – AlGaAs Red. Figure 2. Maximum Allowable DC Current vs. Ambient Temperature.
Figure 3. Forward Current vs. Forward Voltage. Figure 4. Relative Luminous Intensity vs. DC Forward Current.
Figure 5. Relative Eciency (Luminous Intensity per Unit Current) vs.
Peak Current.
AlGaAs Red
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8
Figure 8. Allowable Peak Current vs. Pulse Duration – Green Series. Figure 9. Maximum Allowable DC Current vs. Ambient Temperature.
HER, Yellow, Green
Figure 6. Maximum Tolerable Peak Current vs. Pulse Duration – HER Series. Figure 7. Maximum Tolerable Peak Current vs. Pulse Duration – Yellow Series.
Figure 10. Forward Current vs. Forward Voltage. Figure 11. Relative Luminous Intensity vs.
DC Forward Current.
Figure 12. Relative Luminous Eciency
(Luminous Intensity per Unit Current) vs.
Peak Current.
9
Intensity Bin Limits (mcd)
AlGaAs Red
HDSP-E15x
IV Bin Category Min. Max.
L 8.67 15.90
M 13.00 23.80
N 19.50 35.80
O 29.30 53.60
P 43.90 80.50
Yellow
5082-762x
IV Bin Category Min. Max.
B 0.229 0.387
C 0.317 0.582
D 0.476 0.872
E 0.714 1.311
F 1.073 1.967
G 1.609 2.950
H 2.413 4.425
HER
5082-761x
IV Bin Category Min. Max.
B 0.369 0.630
C 0.516 0.946
D 0.774 1.418
E 1.160 2.127
F 1.740 3.190
G 2.610 4.785
H 3.915 7.177
5082-766x
IV Bin Category Min. Max.
C 0.297 0.543
D 0.445 0.817
E 0.669 1.225
F 1.003 1.838
G 1.504 2.758
H 2.256 4.137
Green
HDSP-360x
IV Bin Category Min. Max.
H 0.86 1.58
I 1.29 2.37
J 1.94 3.55
K 2.90 5.33
L 4.37 8.01
5082-765x
IV Bin Category Min. Max.
B 0.347 0.593
C 0.485 0.890
D 0.728 1.333
E 1.091 2.000
F 1.636 3.000
G 2.454 4.500
H 3.682 6.751
HDSP-460x
IV Bin Category Min. Max.
G 1.03 1.88
H 1.54 2.82
I 2.31 4.23
J 3.46 6.34
K 5.18 9.50
L 7.78 14.26
For product information and a complete list of distributors, please go to our web site: www.avagotech.com
Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries.
Data subject to change. Copyright © 2005-2011 Avago Technologies. All rights reserved. Obsoletes 5988-3325EN
AV02-2550EN - January 27, 2011
Color Categories
Color Bin
Dominant Wavelength (nm)
Min. Max.
Yellow 1 581.50 585.00
3 584.00 587.50
2 586.50 590.00
4 589.00 592.50
Green 2 573.00 577.00
3 570.00 574.00
4 567.00 571.00
5 564.00 568.00
Note:
All categories are established for classication of products. Products
may not be available in all categories. Please contact your Avago
representatives for further clarication/information.
Contrast Enhancement
For information on contrast enhancement, please see
Application Note 1015.
Soldering/Cleaning
For information on soldering LEDs, please refer to Appli-
cation Note 1027.