TLMT3100 [VISHAY]

Low Current SMD LED; 低电流SMD LED
TLMT3100
型号: TLMT3100
厂家: VISHAY    VISHAY
描述:

Low Current SMD LED
低电流SMD LED

可见光LED 光电
文件: 总6页 (文件大小:81K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
TLMT3100  
Vishay Telefunken  
Low Current SMD LED  
Color  
Type  
TLMT3100  
Technology  
Angle of Half Intensity  
±
60  
High efficiency red  
GaAsP on GaP  
Description  
These new devices have been designed to meet the  
increasing demand for low current SMD LEDs.  
The package of the TLMT3100 is the P–LCC–2  
(equivalent to a size B tantalum capacitor).  
It consists of a lead frame which is surrounded with a  
white thermoplast. The reflector inside this package is  
filled up with clear epoxy.  
Features  
SMD LED with exceptional brightness  
Compatible with automatic placement equipment  
EIA and ICE standard package  
94 8553  
Compatible with infrared, vapor phase and wave  
solder processes according to CECC  
Available in 8 mm tape  
Low profile package  
Non-diffused lens: excellent for coupling to light  
pipes and backlighting  
Very low power consumption  
Luminous intensity ratio in one packaging unit  
I
/I  
2.0  
Vmax Vmin  
Applications  
Automotive: backlighting in dashboards and switches  
Telecommunication: indicator and backlighting in telephone and fax  
Indicator and backlight for audio and video equipment  
Indicator and backlight for battery driven equipment  
Small indicator for outdoor applications  
Indicator and backlight in office equipment  
Flat backlight for LCDs, switches and symbols  
General use  
www.vishay.de FaxBack +1-408-970-5600  
Document Number 83041  
Rev. A1, 04-Feb-99  
1 (6)  
TLMT3100  
Vishay Telefunken  
Absolute Maximum Ratings  
T
amb  
= 25 C, unless otherwise specified  
TLMT3100  
Parameter  
Reverse voltage  
Test Conditions  
Symbol  
Value  
6
Unit  
V
V
R
DC forward current  
Surge forward current  
Power dissipation  
I
7
0.5  
20  
mA  
A
mW  
C
F
t 10 s  
I
FSM  
P
T
p
T
90 C  
amb  
V
Junction temperature  
100  
j
Operating temperature range  
Storage temperature range  
Soldering temperature  
Thermal resistance junction/ambient  
T
T
T
–40 to +100  
–55 to +100  
260  
C
C
C
K/W  
amb  
stg  
t 5 s  
mounted on PC board  
(pad size > 16 mm )  
sd  
R
thJA  
500  
2
Optical and Electrical Characteristics  
T
amb  
= 25 C, unless otherwise specified  
High efficiency red (TLMT3100 )  
Parameter  
Test Conditions  
I = 2 mA  
Type  
Symbol Min  
Typ  
2.5  
Max  
Unit  
Luminous intensity  
Dominant wavelength  
Peak wavelength  
Angle of half intensity  
Forward voltage  
I
0.25  
612  
mcd  
nm  
nm  
deg  
V
F
V
d
p
I = 2 mA  
625  
2.9  
F
I = 2 mA  
635  
±60  
2.2  
15  
F
I = 2 mA  
ϕ
F
I = 2 mA  
V
F
F
Reverse voltage  
I = 10 A  
R
V
R
6
V
Junction capacitance  
V = 0, f = 1 MHz  
R
C
j
50  
pF  
Typical Characteristics (Tamb = 25 C, unless otherwise specified)  
25  
20  
15  
10  
8
6
10  
5
4
2
0
0
100  
100  
0
20  
40  
60  
80  
0
20  
40  
60  
80  
95 10841  
T
amb  
– Ambient Temperature ( °C )  
95 10842  
T
amb  
– Ambient Temperature ( °C )  
Figure 1 Power Dissipation vs. Ambient Temperature  
Figure 2 Forward Current vs. Ambient Temperature  
www.vishay.de FaxBack +1-408-970-5600  
2 (6)  
Document Number 83041  
Rev. A1, 04-Feb-99  
TLMT3100  
Vishay Telefunken  
0°  
10  
°
20  
°
2.4  
2.0  
1.6  
1.2  
0.8  
0.4  
0
30°  
40°  
High Efficiency Red  
1.0  
0.9  
50°  
60°  
0.8  
0.7  
70°  
80°  
0.6  
I (mA)  
0.6  
0.4  
0.2  
0
0.2  
0.4  
10  
1
20  
50  
100 200  
0.05  
500  
F
95 10319  
95 10321  
t /T  
p
0.5  
0.2 0.1  
0.02  
Figure 3 Rel. Luminous Intensity vs.  
Angular Displacement  
Figure 6 Rel. Lumin. Intensity vs.  
Forw. Current/Duty Cycle  
100  
10  
1
100  
10  
High Efficiency Red  
High Efficiency Red  
1
0.1  
0.01  
t /T=0.001  
t =10 s  
p
p
0.1  
5
100  
0
1
2
3
4
0.1  
1
10  
I – Forward Current ( mA )  
F
95 10050  
V
– Forward Voltage ( V )  
95 10061  
F
Figure 4 Forward Current vs. Forward Voltage  
Figure 7 Relative Luminous Intensity vs. Forward Current  
2.0  
1.2  
High Efficiency Red  
1.0  
High Efficiency Red  
1.6  
1.2  
0.8  
0.6  
0.4  
0.2  
0
0.8  
0.4  
I =2mA  
F
0
100  
690  
0
20  
40  
60  
80  
590  
610  
630  
650  
670  
95 10051  
T
amb  
– Ambient Temperature ( °C )  
95 10040  
– Wavelength ( nm )  
Figure 5 Rel. Luminous Intensity vs.  
Ambient Temperature  
Figure 8 Relative Luminous Intensity vs. Wavelength  
www.vishay.de FaxBack +1-408-970-5600  
Document Number 83041  
Rev. A1, 04-Feb-99  
3 (6)  
TLMT3100  
Vishay Telefunken  
Dimensions in mm  
95 11314  
www.vishay.de FaxBack +1-408-970-5600  
4 (6)  
Document Number 83041  
Rev. A1, 04-Feb-99  
TLMT3100  
Vishay Telefunken  
PCB Layout in mm  
95 10966  
www.vishay.de FaxBack +1-408-970-5600  
Document Number 83041  
Rev. A1, 04-Feb-99  
5 (6)  
TLMT3100  
Vishay Telefunken  
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-Telefunken products for any unintended or unauthorized application, the  
buyer shall indemnify Vishay-Telefunken 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  
Telephone: 49 (0)7131 67 2831, Fax number: 49 (0)7131 67 2423  
www.vishay.de FaxBack +1-408-970-5600  
6 (6)  
Document Number 83041  
Rev. A1, 04-Feb-99  

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