5082-4203-00000 [AVAGO]

7 SEG NUMERIC DISPLAY, YELLOW, 20mm, PLASTIC, DIP-18;
5082-4203-00000
型号: 5082-4203-00000
厂家: AVAGO TECHNOLOGIES LIMITED    AVAGO TECHNOLOGIES LIMITED
描述:

7 SEG NUMERIC DISPLAY, YELLOW, 20mm, PLASTIC, DIP-18

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文件: 总10页 (文件大小:154K)
中文:  中文翻译
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HDSP-390xSeries  
20 mm (0.8 inch) Seven Segment Displays  
DataSheet  
HDSP-390x Series  
HDSP-420x Series  
HDSP-860x Series  
HDSP-N15x Series  
Description  
Features  
The 20 mm (0.8 inch) LED seven segment displays are  
designed for viewing distances up to 10 metres (33  
feet). These devices use an industry standard size  
package and pinout. All devices are available as either  
common anode or common cathode.  
• Industry standard size  
• Industry standard pinout  
15.24 mm (0.6 in.) DIP leads on 2.54 mm (0.1 in.) centers  
Choice of Colors  
AlGaAs Red, High Efficiency Red, Yellow, Green  
Excellent appearance  
Evenly lighted segments  
Mitered corners on segments  
Gray package gives optimum contrast  
±50° viewing angle  
These displays are ideal for most applications. Pin for  
pin equivalent displays are also available in a low  
current design. The low current displays are ideal for  
portable applications. For additional information see  
the Low Current Seven Segment Displays data sheet.  
Design flexibility  
Common anode or common cathode  
Left and right hand decimal points  
±1. overflow character  
Categorized for luminous intensity  
Yellow and green categorized for color  
Use of like categories yields a uniform display  
High light output  
High peak current  
Excellent for long digit string multiplexing intensity  
and color selection option  
See Intensity and Color Selected Displays Data Sheet  
• Sunlight viewable AlGaAs  
Devices  
AlGaAs[1]  
HDSP-  
N150  
HER  
HDSP-  
3900  
3901  
3903  
3905  
3906  
Yellow  
HDSP-  
4200  
Green  
HDSP-  
8600  
Package  
Description  
Drawing  
Common Anode Left Hand Decimal  
Common Anode Right Hand Decimal  
Common Cathode Right Hand Decimal  
Common Cathode Left Hand Decimal  
Universal ±1. Overflow[2]  
A
B
C
D
E
N151  
4201  
8601  
N153  
4203  
8603  
N155  
4205  
8605  
N156  
4206  
8606  
Notes:  
1. These displays are recommended for high ambient light operation. Please refer to the HDSP-N10x AlGaAs 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 E.  
Part Numbering System  
5082 -X X X X-X X X X X  
HDSP-X X X X-X X X X X  
Mechanical Opt ions[1]  
00: No Mechanical Option  
Color Bin Opt ions[1,2]  
0: No Color Bin Limitation  
Z: Color Bins 2- and 3+ Only (applicable for Yellow devices only)  
Maximum Int ensit y Bin[1,2]  
0: No Maximum Intensity Bin Limitation  
Minimum Int ensit y Bin[1,2]  
0: No Minimum Intensity Bin Limitation  
Device Configurat ion/Color[1]  
0: Common Anode  
1: Common Anode  
3: Common Cathode  
Device Specific Configurat ion[1]  
Refer to Respective Datasheet  
Package[1]  
N: 20 mm (0.8 inch) Single Digit Seven Segment Display  
Notes:  
1. For codes not listed in the figure 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 specific bin limit information.  
2
Package Dimensions  
Internal Circuit Diagram  
A
B
C
E
D
3
Absolute Maximum Ratings  
AlGaAs Red  
HDSP-N150  
Series  
HER  
HDSP-3900  
Series  
Yellow  
HDSP-4200  
Series  
Green  
HDSP-8600  
Series  
Description  
Units  
mW  
mA  
Average Power per Segment or DP  
96  
105  
105  
105  
Peak Forward Current per  
Segment or DP  
160[1]  
135[3]  
135[3]  
90[5]  
DC Forward Current per  
Segment or DP  
40[2]  
40[4]  
40[4]  
30[6]  
mA  
Operating Temperature Range  
Storage Temperature Range  
–20 to +100[7]  
–40 to +100  
–40 to +100  
°C  
°C  
V
–55 to +100  
3.0  
Reverse Voltage per Segment or DP  
Wave Soldering Temperature for  
3 Seconds (1.60 mm [0.063 in.]  
below body)  
250  
°C  
Notes:  
1. See Figure 2 to establish pulsed conditions.  
2. Derate above 55°C at 0.8 mA/ °C.  
3. See Figure 7 to establish pulsed conditions.  
4. Derate above 50°C at 0.73 mA/ °C.  
5. See Figure 8 to establish pulsed conditions.  
6. Derate above 50°C at 0.54 mA/ °C.  
7. For operation below –20°C, contact your local Avago components sales office or an authorized distributor.  
4
Electrical/ Optical Characteristics at TA = 25°C  
AlGaAs Red  
Device  
Series  
Parameter  
Symbol  
Min.  
Typ. Max.  
Units  
Test Conditions  
Luminous Intensity/ Segment[1,2,5]  
(Digit Average)  
IV  
6.0  
14.0  
mcd  
IF = 20 mA  
1.8  
V
V
IF = 20 mA  
Forward Voltage/ Segment or DP  
V
F
2.0  
3.0  
IF = 100 mA  
HDSP-  
N15x  
Peak Wavelength  
λPEAK  
λd  
645  
637  
15  
nm  
nm  
Dominant Wavelength[3]  
Reverse Voltage/ Segment or DP[4]  
Temperature Coefficient of  
V
R
3.0  
V
IR = 100 µA  
V / °C  
-2  
mV/ °C  
F
V / Segment or DP  
F
Thermal Resistance LED Junction-  
to-Pin  
RθJ-PIN  
430  
°C/ W/  
Seg  
High Efficiency Red  
Device  
Series  
Parameter  
Symbol  
Min.  
Typ. Max.  
Units  
Test Conditions  
3350  
7000  
µcd  
IF = 100 mA Peak:  
1 of 5 df  
Luminous Intensity/ Segment[1,2]  
(Digit Average)  
IV  
4800  
µcd  
IF = 20 mA  
Forward Voltage/ Segment or DP  
V
F
2.6  
3.5  
V
IF = 100 mA  
HDSP-  
390x  
Peak Wavelength  
λPEAK  
λd  
635  
626  
25  
nm  
nm  
Dominant Wavelength[3]  
Reverse Voltage/ Segment or DP[4]  
Temperature Coefficient of  
V
R
3.0  
V
IR = 100 µA  
V / °C  
-2  
mV/ °C  
F
V / Segment or DP  
F
Thermal Resistance LED Junction-  
to-Pin  
RθJ-PIN  
375  
°C/ W/  
Seg  
5
Yellow  
Device  
Series  
Parameter  
Symbol  
Min.  
Typ. Max.  
Units  
Test Conditions  
2200  
7000  
µcd  
IF = 100 mA Peak:  
1 of 5 df  
Luminous Intensity/ Segment[1,2]  
(Digit Average)  
IV  
3400  
µcd  
IF = 20 mA  
Forward Voltage/ Segment or DP  
V
F
2.6  
3.5  
V
IF = 100 mA  
HDSP-  
420x  
Peak Wavelength  
λPEAK  
λd  
583  
586  
nm  
nm  
Dominant Wavelength[3,6]  
581.5  
3.0  
592.5  
Reverse Voltage/ Segment or DP[4]  
V
R
25.0  
-2  
V
IR = 100 µA  
Temperature Coefficient of  
V / °C  
mV/ °C  
F
V / Segment or DP  
F
Thermal Resistance LED Junction-  
to-Pin  
RθJ-PIN  
375  
°C/ W/  
Seg  
Green  
Device  
Series  
Parameter  
Symbol  
Min.  
Typ. Max.  
Units  
Test Conditions  
680  
1500  
µcd  
IF = 10 mA  
Luminous Intensity/ Segment[1,2]  
(Digit Average)`  
IV  
1960  
µcd  
IF = 50 mA Peak:  
1 of 5 df  
Forward Voltage/ Segment or DP  
Peak Wavelength  
V
2.1  
2.5  
V
IF = 10 mA  
F
HDSP-  
860x  
λPEAK  
λd  
566  
nm  
Dominant Wavelength[3,6]  
571  
50.0  
-2  
577  
nm  
V
Reverse Voltage/ Segment or DP[4]  
V
R
3.0  
IR = 100 µA  
Temperature Coefficient of  
V / °C  
mV/ °C  
F
V / Segment or DP  
F
Thermal Resistance LED Junction-  
to-Pin  
RθJ-PIN  
375  
°C/ W/  
Seg  
Notes:  
1. Case temperature of the device immediately prior to the intensity measurement is 25°C.  
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, λd, is derived from the CIE chromaticity diagram and is that single wavelength which defines the color of the device.  
4. Typical specification for reference only. Do not exceed absolute maximum ratings.  
5. For low current operation, the AlGaAs Red HDSP-N100 series displays are recommended. They are tested at 1 mA dc/ segment and are pin for pin  
compatible with the HDSP-N150 series.  
6. The Yellow (HDSP-4200) and Green (HDSP-8600) displays are categorized for dominant wavelength. The category is designated by a number  
adjacent to the luminous intensity category letter.  
6
AlGaAs Red  
100  
OPERATION IN  
THIS REGION  
REQUIRES  
TEMPERATURE  
DERATING  
10  
OF I  
MAX.  
DC  
10 kHZ  
100 HZ  
300 HZ  
3 kHZ  
1 kHZ  
DC OPERATION  
1
0.1  
1
10  
100  
1000  
10,000  
t P – PULSE DURATION – µs  
Figure 1. Maximum allowed peak current vs. pulse duration – AlGaAs Red.  
50  
45  
40  
35  
200  
180  
160  
140  
120  
100  
80  
AlGaAs RED  
AlGaAs RED  
30  
25  
20  
Rθ  
= 525°C/W  
J-A  
15  
10  
5
60  
40  
20  
0
0
10 20 30 40 50 60 70 80 90  
0
0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0  
100 110  
4.5 5.0  
T
– AMBIENT TEMPERATURE – °C  
V
– FORWARD CURRENT – V  
A
F
Figure 2. Maximum allowable DC current vs. ambient  
temperature.  
Figure 3. Forward current vs. forward voltage.  
2.50  
2.25  
2.00  
1.75  
1.50  
1.25  
1.2  
1.1  
1.0  
AlGaAs RED  
0.9  
AlGaAs RED  
1.00  
0.8  
0.7  
0.6  
0.75  
0.50  
0.25  
0
0
F
5
10 15 20 25 30 35 40  
45 50  
2
3
4 5  
10  
20 30 40 50 100  
200  
I
– FORWARD CURRENT PER SEGMENT – mA  
I
– PEAK FORWARD CURRENT PER SEGMENT  
PEAK  
Figure 4. Relative luminous intensity vs. DC forward  
current.  
Figure 5. Relative efficiency (luminous intensity per unit  
current) vs. peak current.  
7
HER, Yellow, Green  
100  
100  
10  
1
OPERATION IN  
THIS REGION  
REQUIRES  
TEMPERATURE  
DERATING  
OPERATION IN  
THIS REGION  
REQUIRES  
100 HZ  
10  
10 kHZ  
1 kHZ  
TEMPERATURE  
DERATING  
10 kHZ  
1 kHZ  
100 HZ  
300 HZ  
3 kHZ  
OF I  
MAX.  
DC  
OF I  
MAX.  
DC  
DC OPERATION  
DC OPERATION  
1
0.1  
1
10  
100  
1000  
10,000  
1
10  
100  
1000  
10,000  
t P – PULSE DURATION – µS  
t P – PULSE DURATION – µS  
Figure 6. Maximum allowed peak current vs. pulse duration –  
HER, Yellow.  
Figure 7. Maximum allowed peak current vs. pulse duration – Green.  
140  
120  
50  
45  
40  
100  
35  
YELLOW  
HER / YELLOW  
HER  
30  
80  
25  
GREEN  
60  
40  
20  
15  
R
= 525° C/W  
θJ-A  
GREEN  
10  
5
20  
0
0
10 20 30 40 50 60 70 80 90  
0
0.5  
1.0  
1.5  
2.0  
2.5  
3.0  
3.5  
100 110  
T
– AMBIENT TEMPERATURE – °C  
V
F
– FORWARD VOLTAGE – V  
A
Figure 8. Maximum allowable DC current vs. ambient  
temperature.  
Figure 9. Forward current vs. forward voltage.  
1.5  
1.4  
1.3  
1.2  
4.0  
3.5  
3.0  
GREEN  
1.1  
2.5  
GREEN  
1.0  
HER  
0.9  
2.0  
1.5  
0.8  
0.7  
YELLOW  
0.6  
HER AND  
YELLOW  
1.0  
0.5  
0.4  
0.5  
0
0.3  
0
F
5
10  
15  
25  
30  
35 40  
10 20 30 40 50 60 70 80 90 100 110120 130  
20  
I
– FORWARD CURRENT PER SEGMENT – mA  
I
– PEAK FORWARD CURRENT  
PER SEGMENT – mA  
PEAK  
Figure 10. Relative luminous intensity vs. DC forward  
current.  
Figure 11. Relative efficiency (luminous intensity per unit current)  
vs. peak current.  
8
Intensity Bin Limits (mcd)  
AlGaAs Red  
Color Categories  
HDSP-N15x  
Dominant Wavelength (nm)  
IV Bin Category  
Min.  
6.14  
Max.  
11.20  
16.90  
25.30  
38.00  
56.90  
85.40  
Color  
Bin  
Min.  
Max.  
J
Yellow  
1
3
2
4
2
3
4
5
581.50  
584.00  
586.50  
589.00  
573.00  
570.00  
567.00  
564.00  
585.00  
587.50  
590.00  
592.50  
577.00  
574.00  
571.00  
568.00  
K
L
9.20  
13.80  
20.70  
31.10  
46.60  
M
N
O
Green  
Yellow  
Note:  
HDSP-420x  
All categories are established for classification of products. Products may not  
be available in all categories. Please contact your Avago representatives for  
further clarification/ information.  
IV Bin Category  
Min.  
2.23  
Max.  
4.09  
C
D
E
F
3.35  
6.14  
5.02  
9.21  
Contrast Enhancement  
7.53  
13.82  
20.72  
31.08  
46.62  
For information on contrast enhancement, please see  
Application Note 1015.  
G
H
I
11.30  
16.95  
25.43  
Soldering/ Cleaning  
Cleaning agents from the ketone family (acetone,  
methyl ethyl ketone, etc.) and from the chlorinated  
hydrocarbon family (methylene chloride, trichloro-  
ethylene, carbon tetrachloride, etc.) are not  
recommended for cleaning LED parts. All of these  
various solvents attack or dissolve the encapsulating  
epoxies used to form the package of plastic LED parts.  
Green  
HDSP-860x  
IV Bin Category  
Min.  
1.03  
1.54  
2.31  
3.47  
5.21  
Max.  
1.88  
2.82  
4.25  
6.37  
9.55  
D
E
F
For information on soldering LEDs, please refer to  
Application Note 1027.  
G
H
HER  
HDSP-390x  
IV Bin Category  
Min.  
3.35  
Max.  
6.14  
D
E
F
G
H
I
5.02  
9.21  
7.53  
13.82  
20.72  
31.08  
46.62  
11.30  
16.95  
25.43  
9
For product information and a complete list of distributors, please go to our website: www.avagotech.com  
Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies Limited in the United States and other countries.  
Data subject to change. Copyright © 2006 Avago Technologies Limited. All rights reserved. Obsoletes 5964-6426EN  
5988-1737EN May 3, 2006  

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