This is a multi-part message in MIME format. ------=_NextPart_000_0001_01C53C28.C7E32E00 Content-Type: text/plain; charset="us-ascii" Content-Transfer-Encoding: 7bit Mike, Thank you for your replay you are right d2 makes no sense because of another resister was missing see attachment2 again. Andre -----Original Message----- From: piclist-bounces@mit.edu [mailto:piclist-bounces@mit.edu] On Behalf Of Michael Rigby-Jones Sent: Friday, April 08, 2005 1:52 AM To: Microcontroller discussion list - Public. Subject: RE: [EE] Constant current schematic any recommendation? >-----Original Message----- >From: piclist-bounces@mit.edu [mailto:piclist-bounces@mit.edu] >Sent: 08 April 2005 06:53 >To: 'Microcontroller discussion list - Public.' >Subject: [EE] Constant current schematic any recommendation? > > >Hi to all engineers, > >I am looking for constant current schematic to drive power led >any circuit recommendation? I came up op amp based circuit but >I am not sure if this is the best way to go see attachment. >Any ideas? > >Thank you > >Andre What is the intended function of D2? The circuit would not work well, if at all with D2 as it stands. The voltage on pin 2 of the opamp will not be well defined so the diode may be forwards or reverse biased. If you added a resistor from pin 2 of the opamp to the +ve rail to ensure the diode was forwards biased, then it has the function of adding a ~0.6volt error term into the feedback path, reducing the LED current. However, the diode forward voltage will vary with both temperature and any supply voltage changes, making this not such a good idea. If you need to reduce the current in the LED, then either choose a larger current sense resistor (R1) or pot down the reference voltage with a couple of resistors. Apart from that, it's a classic voltage controlled current source. With a good reference you should get a stable current that moves very little with temperature etc. You could use a simple transistor based current source if your accuracy and stability requirements are not great, but they are quite temperature sensitive. Regards Mike ======================================================================= This e-mail is intended for the person it is addressed to only. The information contained in it may be confidential and/or protected by law. If you are not the intended recipient of this message, you must not make any use of this information, or copy or show it to any person. Please contact us immediately to tell us that you have received this e-mail, and return the original to us. Any use, forwarding, printing or copying of this message is strictly prohibited. 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