MrAl
Flashlight Enthusiast
Hello there,
Here's the new constant current LDO LED driver circuit i
promised. You can adjust the output current by
changing R3. The dropout voltage is very low, always
less then 0.1 volt.
The efficiency is very high for three batteries in
series (4.5v max).
When driving from higher voltages you will have to
pay attention to power dissipation in the transistor.
When driving the 5watt LS at 700ma you should also
pay close attention to the power dissipation in the
transistor.
The turn on transient overshoot is about 500ma for 10us
max with a 6v input which should be ok for the LS.
The circuit supplies a constant current to the LS
over a range of voltages. The lowest voltage to
maintain perfect regulation is less then 0.1 volt
above the LS's normal voltage drop. This means if
your LS drops 3.2 volts at 350ma then you will still
observe full output current even at a voltage as low
as 3.3 volts.
Here's the schematic:
http://hometown.aol.com/xaxo/page2.html
Good luck with your LED circuits,
Al
Here's the new constant current LDO LED driver circuit i
promised. You can adjust the output current by
changing R3. The dropout voltage is very low, always
less then 0.1 volt.
The efficiency is very high for three batteries in
series (4.5v max).
When driving from higher voltages you will have to
pay attention to power dissipation in the transistor.
When driving the 5watt LS at 700ma you should also
pay close attention to the power dissipation in the
transistor.
The turn on transient overshoot is about 500ma for 10us
max with a 6v input which should be ok for the LS.
The circuit supplies a constant current to the LS
over a range of voltages. The lowest voltage to
maintain perfect regulation is less then 0.1 volt
above the LS's normal voltage drop. This means if
your LS drops 3.2 volts at 350ma then you will still
observe full output current even at a voltage as low
as 3.3 volts.
Here's the schematic:
http://hometown.aol.com/xaxo/page2.html
Good luck with your LED circuits,
Al