HDSP-5600 [AGILENT]
14.2 mm (0.56 inch) Seven Segment Displays; 14.2毫米( 0.56英寸)七段显示型号: | HDSP-5600 |
厂家: | AGILENT TECHNOLOGIES, LTD. |
描述: | 14.2 mm (0.56 inch) Seven Segment Displays |
文件: | 总8页 (文件大小:267K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
14.2 mm (0.56 inch)
Seven Segment Displays
HDSP-550x Series
HDSP-552x Series
HDSP-560x Series
HDSP-562x Series
HDSP-570x Series
HDSP-572x Series
HDSP-H15x Series
Technical Data
• Categorized for Luminous
Intensity
Yellow and Green Categorized
for Color
Use of Like Categories Yields a
Uniform Display
Features
• 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
• 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
• Excellent Appearance
Evenly Lighted Segments
Mitered Corners on Segments
Gray Package Gives Optimum
Contrast
to 7 metres (23 feet). These
devices use an industry standard
size package and pinout. Both the
numeric and ± 1 overflow devices
feature a right hand decimal
point. All devices are available as
either common anode or common
cathode.
± 50° Viewing Angle
• Sunlight Viewable AlGaAs
• Design Flexibility
Common Anode or Common
Cathode
Single and Dual Digits
Right Hand Decimal Point
± 1. Overflow Character
Description
The 14.2 mm (0.56 inch) LED
seven segment displays are
designed for viewing distances up
Devices
AlGaAs Red
HDSP-[1]
HER
Yellow
HDSP-
Green
Package
Drawing
HDSP-[1]
HDSP-
5601
5603
5607
5608
5621
5623
Description
Common Anode Right Hand Decimal
H151
H153
H157
H158
5501
5503
5507
5508
5521
5523
5701
5703
5707
5708
5721
5723
A
B
C
D
E
F
Common Cathode Right Hand Decimal
Common Anode ± 1. Overflow
Common Cathode ± 1. Overflow
Two Digit Common Anode Right Hand Decimal
Two Digit Common Cathode Right Hand Decimal
Note:
1. These displays are recommended for high ambient light operation. Please refer to the HDSP-H10X/K12X AlGaAs and HDSP-555X HER
data sheet for low current operation.
2
for portable applications. For
additional information see the
Low Current Seven Segment
Displays data sheet.
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
Package Dimensions
FUNCTION
PIN
1
A
B
C
D
E
F
CATHODE e
CATHODE d
ANODE[3]
ANODE e
ANODE d
CATHODE[4]
ANODE c
CATHODE c
ANODE c, d
CATHODE b
ANODE a, b, DP
CATHOPDE DP
CATHODE a
ANODE a, b, DP
ANODE c, d
CATHODE d
NO PIN
ANODE c
E CATHODE NO. 1
D CATHODE NO. 1
C CATHODE NO. 1
DP CATHODE NO. 1
E CATHODE NO. 1
D CATHODE NO. 2
G CATHODE NO. 2
C CATHODE NO. 2
DP CATHODE NO. 2
B CATHODE NO. 2
A CATHODE NO. 2
F CATHODE NO. 2
DIGIT NO. 2 ANODE
DIGIT NO. 1 ANODE
B CATHODE NO. 1
A CATHODE NO. 1
G CATHODE NO. 1
F CATHODE NO. 1
E ANODE NO. 1
D ANODE NO. 1
C ANODE NO. 1
DP ANODE NO. 1
E ANODE NO. 2
D ANODE NO. 2
G ANODE NO. 2
C ANODE NO. 2
DP ANODE NO. 2
B ANODE NO. 2
A ANODE NO. 2
F ANODE NO. 2
DIGIT NO. 2 CATHODE
DIGIT NO. 1 CATHODE
B ANODE NO. 1
A ANODE NO. 1
G ANODE NO. 1
F ANODE NO. 1
2
CATHODE c, d
ANODE b
3
4
CATHODE c
CATHODE a, b, DP
ANODE DE
5
CATHODE DP ANODE DP
6
CATHODE b
CATHODE a
ANODE[3]
ANODE b
ANODE a
CATHODE[4]
ANODE f
ANODE a
7
CATHODE a, b, DP
CATHODE c, d
ANODE d
8
9
CATHODE f
CATHODE g
10
11
12
13
14
15
16
17
18
ANODE g
NO PIN
NOTES:
3. REDUNDANT ANODES.
1. ALL DIMENSIONS IN MILLIMETRES (INCHES).
4. REDUNDANT CATHODES.
2. ALL UNTOLERANCED DIMENSIONS ARE FOR REFERENCE ONLY.
5. FOR HDSP-5600/-5700 SERIES PRODUCT ONLY.
3
Internal Circuit Diagram
Absolute Maximum Ratings
AlGaAs Red
HDSP-H150
Series
HER
HDSP-5500
Series
Yellow
HDSP-5700
Series
Green
HDSP-5600
Series
Description
Units
mW
mA
Average Power per Segment or DP
96
105
80
105
Peak Forward Current per
Segment or DP
160[1]
90[3]
60[5]
90[7]
DC Forward Current per Segment or DP
Operating Temperature Range
40[2]
30[4]
20[6]
3018]
mA
°C
°C
V
-20 to +100[9]
-40 to +100
Storage Temperature Range
-55 to +100
Reverse Voltage per Segment or DP
3.0
Lead Solder Temperature for 3 Seconds
(1.60 mm [0.063 in.] below seating plane)
260
°C
Notes:
1. See Figure 2 to establish pulsed conditions.
2. Derate above 46°C at 0.54 mA/°C.
3. See Figure 7 to establish pulsed conditions.
4. Derate above 53°C at 0.45 mA/°C.
5. See Figure 8 to establish pulsed conditions.
6. Derate above 81°C at 0.52 mA/°C.
7. See Figure 9 to establish pulsed conditions.
8. Derate above 39°C at 0.37 mA/°C.
9. For operation below -20°C, contact your local Agilent
components sales office or an authorized distributor.
4
Electrical/Optical Characteristics at TA = 25°C
AlGaAs Red
Device
Series
HDSP-
Parameter
Symbol
Min.
Typ. Max.
Units Test Conditions
Luminous Intensity/Segment[1,2,5]
(Digit Average)
IV
9.1
16.0
mcd
IF = 20 mA
1.8
IF = 20 mA
Forward Voltage/Segment or DP
VF
V
2.0
3.0
IF = 100 mA
H15X
Peak Wavelength
λPEAK
λd
645
637
15
nm
nm
Dominant Wavelength[3]
Reverse Voltage/Segment or DP[4]
VR
3.0
V
IR = 100 µA
Temperature Coefficient of
VF/Segment or DP
∆VF/°C
-2
mV/°C
Thermal Resistance LED Junction-
to-Pin
RθJ-Pin
400
°C/W/
Seg
High Efficiency Red
Device
Series
HDSP-
Parameter
Symbol Min.
Typ. Max. Units Test Conditions
900
2800
3700
IF = 10 mA
Luminous Intensity/Segment[1,2,6]
(Digit Average)
IV
µcd
IF = 60 mA Peak:
1 of 6 df
Forward Voltage/Segment or DP
VF
2.1
2.5
V
IF = 20 mA
55XX
Peak Wavelength
λPEAK
λd
635
626
30
nm
nm
Dominant Wavelength[3]
Reverse Voltage/Segment or DP[4]
VR
3.0
V
IR = 100 µA
Temperature Coefficient of
VF/Segment or DP
∆VF/°C
-2
mV/°C
Thermal Resistance LED Junction-
to-Pin
RθJ-Pin
345
°C/W/
Seg
5
Yellow
Device
Series
HDSP-
Parameter
Symbol Min.
Typ. Max. Units Test Conditions
600
1800
2750
IF = 10 mA
Luminous Intensity/Segment[1,2]
(Digit Average)
IV
µcd
IF = 60 mA Peak:
1 of 6 df
Forward Voltage/Segment or DP
VF
2.1
2.5
V
IF = 20 mA
57XX
Peak Wavelength
λPEAK
583
nm
nm
Dominant Wavelength[3,7]
Reverse Voltage/Segment or DP[4]
λd
VR
581.5
3.0
586 592.5
40
-2
V
IR = 100 µA
Temperature Coefficient of
VF/Segment or DP
∆VF/°C
mV/°C
Thermal Resistance LED Junction-
to-Pin
RθJ-Pin
345
°C/W/
Seg
6
High Performance Green
Device
Series
HDSP-
Parameter
Symbol Min.
Typ. Max. Units Test Conditions
900
2500
3100
IF = 10 mA
Luminous Intensity/Segment[1,2]
(Digit Average)`
IV
µcd
IF = 60 mA Peak:
1 of 6 df
Forward Voltage/Segment or DP
VF
2.1
2.5
V
IF = 10 mA
56XX
Peak Wavelength
λPEAK
λd
566
571
50
nm
nm
Dominant Wavelength[3,7]
Reverse Voltage/Segment or DP[4]
577
VR
3.0
V
IR = 100 µA
Temperature Coefficient of
VF/Segment or DP
∆VF/°C
-2
mV/°C
Thermal Resistance LED Junction-
to-Pin
RθJ-Pin
345
°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, 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 HDSP-H10X series displays are recommended. They are tested at 1 mA dc/segment and are
pin for pin compatible with the HDSP-H15X series.
6. For low current operation, the HER HDSP-555X series displays are recommended. They are tested at 2 mA dc/segment and are pin
for pin compatible with the HDSP-550X series.
7. The Yellow (HDSP-5700) and Green (HDSP-5600) displays are categorized for dominant wavelength. The category is designated by
a number adjacent to the luminous intensity category letter.
AlGaAs Red
Figure 1. Maximum Tolerable Peak Current vs.
Pulse Duration – Red.
Figure 2. Maximum Tolerable Peak Current
vs. Pulse Duration – AlGaAs Red.
7
50
45
160
Rθ
= 770°C/W
J-A
140
120
100
80
AlGaAs RED
40
35
30
AlGaAs RED
25
20
15
10
5
60
40
20
0
0
0
0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0
– FORWARD VOLTAGE – V
20 30 40 50 60 70 80 90 100 110 120
T
– AMBIENT TEMPERATURE – °C
V
F
A
Figure 3. Maximum Allowable DC Current vs.
Ambient Temperature.
Figure 4. Forward Current vs.
Forward Voltage.
1.4
1.2
1.0
2.00
1.75
1.50
1.25
1.00
AlGaAs RED
0.75
AlGaAs RED
0.8
0.50
0.25
0
0.6
0.5
0
F
5
10
15
20
25
30
35
40
5.0
50.0 150.0
I
– PEAK FORWARD CURRENT
PER SEGMENT – mA
I
– FORWARD CURRENT PER SEGMENT – mA
PEAK
Figure 5. Relative Luminous Intensity
vs. DC Forward Current.
Figure 6. Relative Efficiency (Luminous Intensity per
Unit Current) vs. Peak Current.
HER, Yellow, Green
Figure 7. Maximum Tolerable Peak
Current vs. Pulse Duration – HER.
Figure 8. Maximum Tolerable Peak Current
vs. Pulse Duration – Yellow.
50
45
40
35
30
25
20
15
10
R
= 770°C/W
θ
J-A
HER, ORANGE
GREEN
YELLOW
5
0
20 30 40 50 60 70
80 90 100 110 120
T
– AMBIENT TEMPERATURE – °C
A
Figure 9. Maximum Tolerable Peak
Current vs. Pulse Duration – Green.
Figure 10. Maximum Allowable DC Current vs.
Ambient Temperature.
1.6
90
80
4.0
3.5
3.0
2.5
2.0
1.5
YELLOW SERIES
1.5
HER, YELLOW, GREEN
1.4
1.3
70
60
HER SERIES
GREEN SERIES
HER SERIES
YELLOW SERIES
GREEN SERIES
1.2
1.1
1.0
0.9
0.8
50
40
30
20
1.0
0.5
0
10
0
0.7
0.6
0
10 20 30 40 50 60 70 80 90 100
1.0
2.0
3.0
4.0
5.0
0
5
10
15 20
25 30
35
40
I
– PEAK FORWARD CURRENT
PER SEGMENT – mA
PEAK
V
– FORWARD VOLTAGE – V
I
– FORWARD CURRENT PER SEGMENT – mA
F
F
Figure 11. Forward Current vs.
Forward Voltage.
Figure 12. Relative Luminous
Intensity vs. DC Forward Current.
Figure 13. Relative Efficiency
(Luminous Intensity per Unit
Current) vs. Peak Current.
Electrical/Optical
For more information on
electrical/optical characteristics,
please see Application Note 1005.
(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.
Contrast Enhancement
For information on contrast
enhancement please see
Application Note 1015.
For information on soldering
LEDs please refer to Application
Note 1027.
Soldering/Cleaning
www.semiconductor.agilent.com
Data subject to change.
Cleaning agents from the ketone
family (acetone, methyl ethyl
ketone, etc.) and from the
Copyright © 2000 Agilent Technologies
Obsoletes 5963-7388E (11/99)
5968-9410E (1/00)
chlorinated hydrocarbon family
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AVAGO
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