HLMP-1321-VT000 概述
T-1 (3 mm) High Intensity LED Lamps T-1 ( 3毫米),高强度LED灯
HLMP-1321-VT000 数据手册
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PDF下载T-1 (3 mm) High Intensity
LED Lamps
Technical Data
HLMP-132x Series
HLMP-142x Series
HLMP-152x Series
Features
• High Intensity
• General Purpose Leads
• Reliable and Rugged
• Choice of 3 Bright Colors
High Efficiency Red
Yellow
• Available on Tape and Reel
• For more information,
please refer to Tape and
Reel Option Data Sheet
High Performance Green
• Popular T-1 Diameter
Package
• Selected Minimum
Intensities
Description
This family of T-1 lamps is
specially designed for applica-
tions requiring higher on-axis
intensity than is achievable with a
standard lamp. The light
• Narrow Viewing Angle
generated is focused to a narrow
beam to achieve this effect.
Package Dimensions
Selection Guide
Luminous Intensity
Iv (mcd) @ 10 mA
Part
Package
Number
Description
Color
Min.
8.6
8.6
8.6
8.6
13.8
9.2
9.2
9.2
9.2
9.2
6.7
6.7
6.7
6.7
6.7
Max.
–
HLMP-1320-G00xx
HLMP-1320 GH0xx
HLMP-1321
Untinted,
Nondiffused
27.6
–
High
Efficiency
Red
Tinted,
Nondiffused
HLMP-1321-G00xx
HLMP-1321-HI0xx
HLMP-1420
–
44.0
–
Microtinted,
Nondiffused
HLMP-1420-F00xx
HLMP-1421
–
–
–
29.4
–
Yellow
Green
Tinted,
Nondiffused
HLMP-1421-F00xx
HLMP-1421-FG0xx
HLMP-1520
Microtinted,
Nondiffused
HLMP-1520-E00xx
HLMP-1521
–
–
Tinted,
Nondiffused
HLMP-1521-E00xx
HLMP-1521-EF0xx
–
21.2
2
Part Numbering System
HLMP - 1 x xx - x x x xx
Mechanical Option
00: Bulk
01: Tape & Reel, Crimped Leads
02: Tape & Reel, Straight Leads
A1: Right Angle Housing, Uneven Leads
A2: Right Angle Housing, Even Leads
Color Bin Options
0: Full Color Bin Distribution
Maximum Iv Bin Options
0: Open (no max. limit)
Others: Please refer to the Iv Bin Table
Minimum Iv Bin Options
Please refer to the Iv Bin Table
Lens Options
20: Untinted or Microtinted, Non-diffused
21: Tinted, Non-diffused
Color Options
3: GaP HER
4: GaP Yellow
5: GaP Green
Package Options
1: T-1 (3 mm)
Absolute Maximum Ratings at TA = 25°C
Parameter
Peak Forward Current
Average Forward Current[1]
DC Current[2]
Red
90
Yellow
60
Green
90
Units
mA
mA
mA
mW
V
25
20
25
30
20
30
Power Dissipation[3]
135
5
85
135
5
Reverse Voltage (IR = 100 µA)
5
Transient Forward Current[4]
500
500
500
mA
(10 µsec Pulse)
LED Junction Temperature
110
110
110
°C
°C
Operating Temperature Range
-55 to +100
-55 to +100
-20 to +100
Storage Temperature Range
-55 to +100
Lead Soldering Temperature
260°C for 5 seconds
[1.6 mm (0.063 in.) from body]
Notes:
1. See Figure 5 (Red), 10 (Yellow), or 15 (Green) to establish pulsed operating conditions.
2. For Red and Green series derate linearly from 50°C at 0.5 mA/°C. For Yellow series derate linearly from 50°C at 0.2 mA/°C.
3. For Red and Green series derate power linearly from 25°C at 1.8 mW/°C. For Yellow series derate power linearly from 50°C at
1.6 mW/°C.
4. The transient peak current is the maximum non-recurring peak current that can be applied to the device without damaging the LED
die and wirebond. It is not recommended that the device be operated at peak currents beyond the peak forward current listed in the
Absolute Maximum Ratings.
3
Electrical Characteristics at TA = 25°C
Device
HLMP-
Test
Conditions
Symbol
Description
Min.
Typ.
Max. Units
IV
Luminous Intensity
1320
1321
8.6
8.6
30
30
mcd
IF = 10 mA
(Figure 3)
1420
1421
9.2
9.2
15
15
mcd
mcd
Deg.
IF = 10 mA
(Figure 8)
1520
1521
6.7
6.7
22
22
IF = 10 mA
(Figure 3)
2θ1/2
Including Angle Between
Half Luminous Intensity
Points
All
45
IF = 10 mA
See Note 1
(Figures 6, 11, 16, 21)
λPEAK
Peak Wavelength
132x
635
nm
Measurement
at Peak (Figure 1)
142X
152X
583
565
∆λ1/2
Spectral Line Halfwidth
Dominant Wavelength
Speed of Response
Capacitance
132x
40
nm
nm
ns
142X
152X
36
28
λd
132x
626
See Note 2 (Figure 1)
142X
152X
585
569
τs
132x
90
142X
152X
90
500
C
132x
11
pF
VF = 0; f = 1 MHz
142X
152X
15
18
RθJ-PIN Thermal Resistance
All
290
°C/W
Junction to
Cathode Lead
VF
Forward Voltage
132x
1.9
2.4
V
IF = 10 mA
142X
152X
2.0
2.1
2.4
2.7
VR
Reverse Breakdown
Voltage
All
5.0
V
IR = 100 µA
ηV
Luminous Efficacy
132x
145
lumens See Note 3
Watt
142X
152X
500
595
Notes:
1. θ1/2 is the off-axis angle at which the luminous intensity is half the axial luminous intensity.
2. The dominant wavelength, λd, is derived from the CIE chromaticity diagram and represents the single wavelength which defines the
color of the device.
3. Radiant intensity, Ie, in watts/steradian, may be found from the equation Ie = lv/ηv, where lv is the luminous intensity in candelas
and ηv is the luminous efficacy in lumens/watt.
4
Figure 1. Relative Intensity vs. Wavelength.
T-1 High Efficiency Red Non-Diffused
Figure 2. Forward Current vs.
Forward Voltage Characteristics.
Figure 3. Relative Luminous Intensity
vs. DC Forward Current.
Figure 4. Relative Efficiency
(Luminous Intensity per Unit
Current) vs. Peak LED Current.
Figure 5. Maximum Tolerable Peak
Current vs. Pulse Duration. (IDC MAX
as per MAX Ratings).
Figure 6. Relative Luminous Intensity vs. Angular Displacement.
5
T-1 Yellow Non-Diffused
Figure 7. Forward Current vs.
Forward Voltage Characteristics.
Figure 8. Relative Luminous Intensity
vs. Forward Current.
Figure 9. Relative Efficiency
(Luminous Intensity per Unit
Current) vs. Peak Current.
Figure 10. Maximum Tolerable Peak
Current vs. Pulse Duration. (IDCMAX
as per MAX Ratings).
Figure 11. Relative Luminous Intensity vs. Angular Displacement.
6
T-1 Green Non-Diffused
Figure 12. Forward Current vs.
Forward Voltage Characteristics.
Figure 13. Relative Luminous
Intensity vs. Forward Current.
Figure 14. Relative Efficiency
(Luminous Intensity per Unit
Current) vs. Peak LED Current.
Figure 15. Maximum Tolerable Peak
Current vs. Pulse Duration. (IDCMAX
as per MAX Ratings).
Figure 16. Relative Luminous Intensity vs. Angular Displacement.
7
Intensity Bin Limits
Intensity Bin Limits, continued
Intensity Range (mcd)
Intensity Range (mcd)
Color
Bin
G
H
I
J
K
L
M
N
O
P
Q
R
S
Min.
9.7
15.5
24.8
39.6
63.4
Max.
15.5
24.8
39.6
63.4
101.5
162.4
234.6
Color
Bin
E
F
G
H
I
J
K
L
M
N
O
P
Q
R
S
T
U
V
Min.
7.6
12.0
19.1
30.7
49.1
78.5
125.7
201.1
289.0
417.0
680.0
1100.0
1800.0
2700.0
4300.0
6800.0
10800.0
16000.0
25000.0
Max.
12.0
19.1
30.7
49.1
78.5
125.7
201.1
289.0
417.0
680.0
1100.0
1800.0
2700.0
4300.0
6800.0
10800.0
16000.0
25000.0
40000.0
101.5
162.4
234.6
340.0
540.0
850.0
1200.0
1700.0
2400.0
3400.0
4900.0
7100.0
10200.0
14800.0
21400.0
10.3
340.0
540.0
850.0
Green
Red
1200.0
1700.0
2400.0
3400.0
4900.0
7100.0
10200.0
14800.0
21400.0
30900.0
16.6
T
U
V
W
X
Y
W
Z
F
Maximum tolerance for each bin limit is ± 18%.
G
H
I
16.6
26.5
42.3
26.5
42.3
67.7
J
67.7
108.2
K
L
M
N
O
P
Q
R
S
108.2
173.2
250.0
360.0
510.0
800.0
1250.0
1800.0
2900.0
4700.0
7200.0
11700.0
18000.0
173.2
250.0
360.0
510.0
Yellow
800.0
1250.0
1800.0
2900.0
4700.0
7200.0
11700.0
18000.0
27000.0
T
U
V
W
Color Categories
Lambda (nm)
Min.
Color
Category #
Max.
564.5
567.5
570.5
573.5
576.5
584.5
587.0
589.5
592.0
593.0
6
5
4
3
2
1
3
2
4
5
561.5
564.5
567.5
570.5
573.5
582.0
584.5
587.0
589.5
592.0
Green
Yellow
Maximum tolerance for each bin limit is ± 0.5 nm.
Mechanical Option Matrix
Mechanical Option Code
Definition
00
01
02
A1
A2
Bulk Packaging, minimum increment 500 pcs/bag
Tape & Reel, crimped leads, minimum increment 1800 pcs/bag
Tape & Reel, straight leads, minimum increment 1800 pcs/bag
Right Angle Housing, uneven leads, minimum increment 500 pcs/bag
Right Angle Housing, even leads, minimum increment 500 pcs/bag
Note:
All categories are established for classification of products. Products may not be available in all categories. Please contact your local Agilent
representative for further clarification/information.
www.semiconductor.agilent.com
Data subject to change.
Copyright © 2001 Agilent Technologies, Inc.
June 11, 2001
Obsoletes 5968-4163E (11/99)
5988-0931EN
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