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ZXLD1356 датащи(PDF) 24 Page - Diodes Incorporated

номер детали ZXLD1356
подробное описание детали  60V 550mA LED DRIVER with AEC-Q100
PDF  29 Pages
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производитель  DIODES [Diodes Incorporated]
домашняя страница  http://www.diodes.com
Logo DIODES - Diodes Incorporated

ZXLD1356 датащи(HTML) 24 Page - Diodes Incorporated

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ZXLD1356
ZXLD1356
Document number: DS33470 Rev. 3 - 2
24 of 29
www.diodes.com
December 2010
© Diodes Incorporated
A Product Line of
Diodes Incorporated
Application Information (Continued)
Thermal considerations
When operating the device at high ambient temperatures, or when driving maximum load current, care must be taken to avoid
exceeding the package power dissipation limits. The graph below gives details for power derating. This assumes the device to be
mounted on a (25mm)
2 PCB with 1oz copper standing in still air.
Note that the device power dissipation will most often be a maximum at minimum supply voltage. It will also increase if the
efficiency of the circuit is low. This may result from the use of unsuitable coils, or excessive parasitic output capacitance on the
switch output.
Thermal compensation of output current
High luminance LEDs often need to be supplied with a temperature compensated current in order to maintain stable and reliable
operation at all drive levels. The LEDs are usually mounted remotely from the device so, for this reason, the temperature
coefficients of the internal circuits for the ZXLD1356 have been optimized to minimize the change in output current when no
compensation is employed. If output current compensation is required, it is possible to use an external temperature sensing
network - normally using Negative Temperature Coefficient (NTC) thermistors and/or diodes, mounted very close to the LED(s).
The output of the sensing network can be used to drive the ADJ pin in order to reduce output current with increasing
temperature.
TSOT23-5
DFN3030-6
0
0.2
0.4
0.6
0.8
1
1.2
1.4
1.6
1.8
2
-40
-25
-10
5
20
35
50
65
80
95
110
125
Ambient Temperature (°C)
140
Maximum Power Dissipation



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