VLMD3100-GS08 [VISHAY]

Standard SMD LED PLCC-2; 标准的SMD LED PLCC- 2
VLMD3100-GS08
型号: VLMD3100-GS08
厂家: VISHAY    VISHAY
描述:

Standard SMD LED PLCC-2
标准的SMD LED PLCC- 2

可见光LED 光电
文件: 总8页 (文件大小:175K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
VLMD31..  
Vishay Semiconductors  
Standard SMD LED PLCC-2  
FEATURES  
• SMD LED with exceptional brightness  
• Luminous intensity categorized  
• Compatible with automatic placement  
equipment  
• EIA and ICE standard package  
e3  
• Compatible with IR reflow, vapor phase and wave  
solder processes according to CECC 00802 and  
J-STD-020C  
• Available in 8 mm tape  
• Low profile package  
94 8553  
• Non-diffused lens: excellent for coupling to light  
pipes and backlighting  
• Low power consumption  
• Component in accordance to RoHS 2002/95/EC  
and WEEE 2002/96/EC  
• Luminous intensity ratio in one packaging unit  
I
/I  
1.6  
DESCRIPTION  
This device has been designed for applications  
requiring narrow brightness and color selection.  
Vmax Vmin  
• Lead (Pb)-free device  
• Preconditioning: acc. to JEDEC level 2a  
ESD-withstand voltage: up to 2 kV according to  
JESD22-A114-B  
The package of this device is the PLCC-2.  
It consists of a lead frame which is embedded in a  
white thermoplast. The reflector inside this package is  
filled up with clear epoxy.  
APPLICATIONS  
• Automotive: backlighting in dashboards and  
switches  
• Telecommunication: indicator and backlighting in  
telephone and fax  
PRODUCT GROUP AND PACKAGE DATA  
• Product group: LED  
• Package: SMD PLCC-2  
• Product series: standard  
• Indicator and backlight for audio and video  
equipment  
• Indicator and backlight in office equipment  
• Flat backlight for LCDs, switches and symbols  
• General use  
• Angle of half intensity: 60°  
PARTS TABLE  
PART  
COLOR, LUMINOUS INTENSITY  
Red, IV > 11.2 mcd  
TECHNOLOGY  
VLMD3100-GS08  
VLMD3100-GS18  
VLMD3101-GS08  
VLMD3101-GS18  
VLMD3105-GS08  
VLMD3105-GS18  
VLMD31L2N1-GS08  
VLMD31L2N1-GS18  
VLMD31L2P1-GS08  
VLMD31L2P1-GS18  
VLMD31M2P1-GS08  
VLMD31M2P1-GS18  
GaAlAs on GaAs  
GaAlAs on GaAs  
GaAlAs on GaAs  
GaAlAs on GaAs  
GaAlAs on GaAs  
GaAlAs on GaAs  
GaAlAs on GaAs  
GaAlAs on GaAs  
GaAlAs on GaAs  
GaAlAs on GaAs  
GaAlAs on GaAs  
GaAlAs on GaAs  
Red, IV > 11.2 mcd  
Red, IV = (18 to 45) mcd  
Red, IV = (18 to 45) mcd  
Red, IV = (11.2 to 28) mcd  
Red, IV = (11.2 to 28) mcd  
Red, IV = (14 to 35.5) mcd  
Red, IV = (14 to 35.5) mcd  
Red, IV = (14 to 56) mcd  
Red, IV = (14 to 56) mcd  
Red, IV = (22.4 to 56) mcd  
Red, IV = (22.4 to 56) mcd  
Document Number 81351  
Rev. 1.3, 09-May-08  
www.vishay.com  
1
VLMD31..  
Vishay Semiconductors  
1)  
ABSOLUTE MAXIMUM RATINGS  
VLMD31..  
PARAMETER  
Reverse voltage 2)  
TEST CONDITION  
SYMBOL  
VALUE  
UNIT  
V
VR  
6
30  
Tamb 60 °C  
tp 10 µs  
IF  
IFSM  
PV  
DC Forward current  
mA  
A
Surge forward current  
Power dissipation  
0.5  
100  
mW  
°C  
Tj  
Junction temperature  
100  
Tamb  
Tstg  
Tsd  
Operating temperature range  
Storage temperature range  
Soldering temperature  
Thermal resistance junction/ambient  
- 40 to + 100  
- 40 to + 100  
260  
°C  
°C  
t 5 s  
°C  
mounted on PC board (pad size > 16 mm2)  
RthJA  
400  
K/W  
Note:  
1)  
T
= 25 °C, unless otherwise specified  
amb  
2) Driving LED in reverse direction is suitable for short term application  
1)  
OPTICAL AND ELECTRICAL CHARACTERISTICS  
VLMD31.., RED  
PARAMETER  
TEST CONDITION  
PART  
SYMBOL  
MIN.  
11.2  
18  
TYP.  
MAX.  
UNIT  
IV  
VLMD3100  
mcd  
mcd  
mcd  
mcd  
mcd  
mcd  
nm  
IV  
IV  
IV  
IV  
IV  
λd  
λp  
VLMD3101  
45  
28  
VLMD3105  
11.2  
14  
Luminous intensity 2)  
IF = 10 mA  
VLMD31L2N1  
VLMD31L2P1  
VLMD31M2P1  
35.5  
56  
14  
22.4  
56  
IF = 10 mA  
IF = 10 mA  
IF = 10 mA  
IF = 20 mA  
Dominant wavelength  
Peak wavelength  
648  
650  
60  
nm  
Angle of half intensity  
Forward voltage  
ϕ
VF  
deg  
V
1.8  
2.2  
I
R = 10 µA  
VR  
Reverse voltage  
6
V
VR = 0, f = 1 MHz  
IF = 20 mA  
Cj  
Junction capacitance  
Temperature coefficient of VF  
Temperature coefficient of λd  
7
pF  
TCVF  
TCλd  
- 1.8  
0.05  
mV/K  
nm/K  
IF = 10 mA  
Note:  
1)  
T
= 25 °C, unless otherwise specified  
amb  
2) In one packing unit IVmax/IVmin 1.6  
Note:  
LUMINOUS INTENSITY CLASSIFICATION  
Luminous intensity is tested at a current pulse duration of 25 ms and  
an accuracy of 11 ꢀ.  
GROUP  
LIGHT INTENSITY (mcd)  
The above Type Numbers represent the order groups which include  
only a few brightness groups. Only one group will be shipped on  
each reel (there will be no mixing of two groups on each reel).  
In order to ensure availability, single brightness groups will not be  
orderable.  
In a similar manner for colors where wavelength groups are  
measured and binned, single wavelength groups will be shipped on  
any one reel.  
STANDARD  
OPTIONAL  
MIN.  
4.5  
5.6  
7.1  
9
MAX.  
5.6  
7.1  
9
1
2
1
2
1
2
1
2
1
2
1
J
K
L
11.2  
14  
11.2  
14  
18  
In order to ensure availability, single wavelength groups will not be  
orderable.  
18  
22.4  
28  
M
22.4  
28  
35.5  
45  
CROSSING TABLE  
N
P
35.5  
45  
VISHAY  
OSRAM  
56  
VLMD31L2N1  
VLMD31L2P1  
VLMD31M2P1  
LHT674-L2N1  
LHT674-L2P1  
LHT674-M2P1  
www.vishay.com  
2
Document Number 81351  
Rev. 1.3, 09-May-08  
VLMD31..  
Vishay Semiconductors  
TYPICAL CHARACTERISTICS  
T
= 25 °C, unless otherwise specified  
amb  
1.2  
1.0  
60  
50  
red  
0.8  
0.6  
0.4  
40  
30  
20  
10  
0
0.2  
0
600  
620  
640  
660  
680  
700  
0
20  
40  
60  
80  
100  
95 10018  
- Wavelength (nm)  
95 10905  
Tamb - Ambient Temperature (°C)  
Figure 1. Max. Permissible Forward Current vs.  
Ambient Temperature  
Figure 4. Relative Luminous Intensity vs. Wavelength  
10000  
100  
red  
Tamb < 60 °C  
t p /T = 0.005  
0.01  
1000  
0.02  
0.05  
100  
0.2  
10  
0.5  
DC  
0.1  
10  
1
1
3
1
1.5  
2
2.5  
100  
0.01  
0.1  
1
10  
tp - Pulse Length (ms)  
VF - Forward Voltage (V)  
95 9985  
95 10014  
Figure 2. Permissible Pulse Forward Current vs. Pulse Length  
Figure 5. Forward Current vs. Forward Voltage  
0°  
10°  
20°  
10  
30°  
40°  
super red  
1
1.0  
0.9  
50°  
60°  
0.1  
0.8  
70°  
0.7  
80°  
0.01  
1
10  
100  
0.6 0.4 0.2  
0
95 10319  
IF - Forward Current (mA)  
16638  
Figure 3. Rel. Luminous Intensity vs. Angular Displacement  
Figure 6. Relative Luminous Intensity vs. Forward Current  
Document Number 81351  
Rev. 1.3, 09-May-08  
www.vishay.com  
3
VLMD31..  
Vishay Semiconductors  
200  
150  
2.0  
super red  
100  
1.6  
50  
0
1.2  
0.8  
0.4  
0.0  
- 50  
- 100  
- 150  
- 200  
- 250  
- 300  
0
20  
40  
60  
80  
100  
0
20  
40  
60  
80  
100  
16636  
T
amb  
- Ambient Temperature (°C)  
T
amb - Ambient Temperature (°C)  
16635  
Figure 7. Rel. Luminous Intensity vs. Ambient Temperature  
Figure 9. Change of Forward Voltage vs. Ambient Temperature  
5
4
3
2
1
0
- 1  
- 2  
- 3  
0
20  
40  
60  
80  
100  
T
amb  
- Ambient Temperature (°C)  
16637  
Figure 8. Change of Dominant Wavelength vs.  
Ambient Temperature  
PACKAGE DIMENSIONS in millimeters  
Mounting Pad Layout  
1.2  
area covered with  
solder resist  
4
1.6 (1.9)  
20415  
www.vishay.com  
4
Document Number 81351  
Rev. 1.3, 09-May-08  
VLMD31..  
Vishay Semiconductors  
METHOD OF TAPING/POLARITY AND TAPE  
AND REEL  
SMD LED (VLM.3-SERIES)  
REEL PACKAGE DIMENSION IN MM FOR  
SMD LEDS, TAPE OPTION GS18  
(= 8000 PCS.) PREFERRED  
Vishay’s LEDs in SMD packages are available in an  
antistatic 8 mm blister tape (in accordance with  
DIN IEC 40 (CO) 564) for automatic component  
insertion. The blister tape is a plastic strip with  
impressed component cavities, covered by a top tape.  
10.4  
8.4  
120°  
4.5  
3.5  
13.00  
12.75  
2.5  
1.5  
62.5  
60.0  
Identification  
Label:  
Vishay  
Type  
Adhesive tape  
Group  
Tape Code  
Production  
Code  
14.4 max.  
321  
329  
Blister tape  
Quantity  
18857  
Figure 12. Reel Dimensions - GS18  
SOLDERING PROFILE  
IR Reflow Soldering Profile for Lead (Pb)-free Soldering  
Preconditioning acc. to JEDEC Level 2a  
94 8670  
Component cavity  
300  
250  
200  
150  
100  
50  
TAPING OF VLMD31..  
max. 260 °C  
255 °C  
245 °C  
240 °C  
217 °C  
3.5  
2.2  
3.1  
2.0  
Anode  
max. 30 s  
max. 100 s  
max. 120 s  
4.0  
3.6  
5.75  
5.25  
8.3  
7.7  
3.6  
3.4  
max. ramp down 6 °C/s  
max. ramp up 3 °C/s  
0
1.85  
1.65  
0
50  
100  
150  
200  
250  
300  
Time (s)  
4.1  
3.9  
4.1  
3.9  
0.25  
1.6  
1.4  
max. 2 cycles allowed  
19885  
2.05  
1.95  
16 025  
Figure 13. Vishay Lead (Pb)-free Reflow Soldering Profile  
(acc. to J-STD-020C)  
Figure 10. Tape Dimensions in mm for PLCC-2  
948626-1  
lead temperature  
TTW Soldering (acc. to CECC00802)  
300  
250  
5 s  
REEL PACKAGE DIMENSION IN MM FOR  
SMD LEDS, TAPE OPTION GS08  
(= 1500 PCS.)  
second  
235 °C to 260 °C  
full line: typical  
dotted line: process limits  
wave  
first wave  
200  
150  
100  
ca. 2 K/s  
ca. 200 K/s  
10.0  
9.0  
120°  
100 °C to 130 °C  
4.5  
ca. 5 K/s  
3.5  
2 K/s  
forced cooling  
13.00  
12.75  
50  
0
2.5  
1.5  
63.5  
60.5  
0
100  
Time (s)  
250  
50  
150  
Identification  
200  
Label:  
Vishay  
Type  
Group  
Figure 14. Double Wave Soldering of Opto Devices (all Packages)  
Tape Code  
Production  
Code  
14.4 max.  
180  
178  
Quantity  
94 8665  
Figure 11. Reel Dimensions - GS08  
Document Number 81351  
Rev. 1.3, 09-May-08  
www.vishay.com  
5
VLMD31..  
Vishay Semiconductors  
BAR CODE PRODUCT LABEL  
RECOMMENDED METHOD OF STORAGE  
Dry box storage is recommended as soon as the  
aluminum bag has been opened to prevent moisture  
absorption. The following conditions should be  
observed, if dry boxes are not available:  
106  
A
H
VISHAY  
• Storage temperature 10 °C to 30 °C  
• Storage humidity 60 ꢀ RH max.  
37  
After more than 672 h under these conditions moisture  
content will be too high for reflow soldering.  
20162  
B
C
D
E
F
G
In case of moisture absorption, the devices will recover  
to the former condition by drying under the following  
condition:  
192 h at 40 °C + 5 °C/- 0 °C and < 5 ꢀ RH  
(dry air/nitrogen) or  
A) Type of component  
B) Manufacturing plant  
C) SEL - selection code (bin):  
e.g.: L2 = code for luminous intensity group  
D) Date code year/week  
E) Day code (e.g. 3: Wednesday)  
F) Batch no.  
96 h at 60 °C + 5 °C and < 5 ꢀ RH for all device  
containers or  
24 h at 100 °C + 5 °C not suitable for reel or tubes.  
An EIA JEDEC standard JESD22-A112 level 2a label  
is included on all dry bags.  
G) Total quantity  
H) Company code  
DRY PACKING  
L
E V E L  
CAUTION  
This bag contains  
The reel is packed in an anti-humidity bag to protect  
the devices from absorbing moisture during  
transportation and storage.  
MOISTURE SENSITIVE DEVICES  
2a  
1. Shelf life in sealed bag 12 months at <40°C and < 90% relative humidity (RH)  
2. After this bag is opened devices that will be subjected to infrared reflow,  
vapor-phase reflow, or equivalent processing (peak package body temp.  
260°C) must be:  
a) Mounted within 672 hours at factory condition of < 30°C/60%RH or  
b) Stored at <10% RH.  
Aluminum bag  
3. Devices require baking before mounting if:  
Label  
a)  
b)  
Humidity Indicator Card is >10% when read at 23°C + 5°C or  
2a or 2b is not met.  
4. If baking is required, devices may be baked for:  
192 hours at 40°C + 5°C/-0°C and <5%RH (dry air/nitrogen)  
or  
or  
96 hours at 60 5oCand <5%RH  
24 hours at 100 5°C  
For all device containers  
Not suitable for reels or tubes  
Reel  
Bag Seal Date: ______________________________  
(If blank, see bar code label)  
15973  
Note: LEVEL defined by EIA JEDEC Standard JESD22-A113  
19786  
Example of JESD22-A112 level 2a label  
FINAL PACKING  
ESD PRECAUTION  
The sealed reel is packed into a cardboard box. A  
secondary cardboard box is used for shipping  
purposes.  
Proper storage and handling procedures should be  
followed to prevent ESD damage to the devices  
especially when they are removed from the antistatic  
shielding bag. Electro-static sensitive devices warning  
labels are on the packaging.  
VISHAY SEMICONDUCTORS STANDARD  
BAR CODE LABELS  
The Vishay Semiconductors standard bar code labels  
are printed at final packing areas. The labels are on  
each packing unit and contain Vishay Semiconductors  
specific data.  
www.vishay.com  
6
Document Number 81351  
Rev. 1.3, 09-May-08  
VLMD31..  
Vishay Semiconductors  
Ozone Depleting Substances Policy Statement  
It is the policy of Vishay Semiconductor GmbH to  
1. Meet all present and future national and international statutory requirements.  
2. Regularly and continuously improve the performance of our products, processes, distribution and operating  
systems with respect to their impact on the health and safety of our employees and the public, as well as their  
impact on the environment.  
It is particular concern to control or eliminate releases of those substances into the atmosphere which are known as  
ozone depleting substances (ODSs).  
The Montreal Protocol (1987) and its London Amendments (1990) intend to severely restrict the use of ODSs and  
forbid their use within the next ten years. Various national and international initiatives are pressing for an earlier ban  
on these substances.  
Vishay Semiconductor GmbH has been able to use its policy of continuous improvements to eliminate the use of  
ODSs listed in the following documents.  
1. Annex A, B and list of transitional substances of the Montreal Protocol and the London Amendments respectively.  
2. Class I and II ozone depleting substances in the Clean Air Act Amendments of 1990 by the Environmental  
Protection Agency (EPA) in the USA.  
3. Council Decision 88/540/EEC and 91/690/EEC Annex A, B and C (transitional substances) respectively.  
Vishay Semiconductor GmbH can certify that our semiconductors are not manufactured with ozone depleting  
substances and do not contain such substances.  
We reserve the right to make changes to improve technical design  
and may do so without further notice.  
Parameters can vary in different applications. All operating parameters must be validated for each customer  
application by the customer. Should the buyer use Vishay Semiconductors products for any unintended or  
unauthorized application, the buyer shall indemnify Vishay Semiconductors against all claims, costs, damages, and  
expenses, arising out of, directly or indirectly, any claim of personal damage, injury or death associated with such  
unintended or unauthorized use.  
Vishay Semiconductor GmbH, P.O.B. 3535, D-74025 Heilbronn, Germany  
Document Number 81351  
Rev. 1.3, 09-May-08  
www.vishay.com  
7
Legal Disclaimer Notice  
Vishay  
Disclaimer  
All product specifications and data are subject to change without notice.  
Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf  
(collectively, “Vishay”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained herein  
or in any other disclosure relating to any product.  
Vishay disclaims any and all liability arising out of the use or application of any product described herein or of any  
information provided herein to the maximum extent permitted by law. The product specifications do not expand or  
otherwise modify Vishay’s terms and conditions of purchase, including but not limited to the warranty expressed  
therein, which apply to these products.  
No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this  
document or by any conduct of Vishay.  
The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications unless  
otherwise expressly indicated. Customers using or selling Vishay products not expressly indicated for use in such  
applications do so entirely at their own risk and agree to fully indemnify Vishay for any damages arising or resulting  
from such use or sale. Please contact authorized Vishay personnel to obtain written terms and conditions regarding  
products designed for such applications.  
Product names and markings noted herein may be trademarks of their respective owners.  
Document Number: 91000  
Revision: 18-Jul-08  
www.vishay.com  
1

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