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HLCP-G100-00B00 데이터 시트보기 (PDF) - Avago Technologies

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HLCP-G100-00B00
AVAGO
Avago Technologies AVAGO
HLCP-G100-00B00 Datasheet PDF : 16 Pages
First Prev 11 12 13 14 15 16
The time average luminous
intensity may be adjusted for
operating ambient temperature by
the following exponential
equation:
Iv (TA) = IV (25°C)e[K (TA –25°C)]
Color
AlGaAs Red
HER
Yellow
K
–0.0095/°C
–0.0131/°C
–0.0112/°C
Mechanical
These light bar devices may be
operated in ambient temperatures
above +60°C without derating
when installed in a PC board
configuration that provides a
thermal resistance pin to ambient
value less than 280°C/W/LED. See
Figure 2 or 7 to determine the
maximum allowed thermal
resistance for the PC board,
RθPC-A, which will permit
nonderated operation in a given
ambient temperature.
Green
–0.0104/°C
Example:
Iv (80°C) = (25 mcd)e[-0.0112 (80-25)]
= 14 mcd.
To optimize device optical
performance, specially developed
plastics are used which restrict
the solvents that may be used for
cleaning. It is recommended that
only mixtures of Freon (F113)
and alcohol be used for vapor
cleaning processes, with an
immersion time in the vapors of
less than two (2) minutes
maximum. Some suggested vapor
cleaning solvents are Freon TE,
Genesolv DES, Arklone A or K. A
60°C (140°F) water cleaning
process may also be used, which
includes a neutralizer rinse (3%
ammonia solution or equivalent),
a surfactant rinse (1% detergent
solution or equivalent), a hot
water rinse and a thorough air
dry. Room temperature cleaning
may be accomplished with Freon
T-E35 or T-P35, Ethanol,
Isopropanol or water with a mild
detergent.
For further information on
soldering LEDs please refer to
Application Note 1027.
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 5988-2221EN
AV01-0692EN December 9, 2006

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