--HcAYCG3uE/tztfnV Content-Type: text/plain; charset=us-ascii Content-Disposition: inline On Sat, Jun 24, 2006 at 08:27:44AM -0400, Olin Lathrop wrote: > Peter Todd wrote: > > I got everything right, something more like 220ohms would still give > > me sensitivity at both ends, > > Just keep in mind that this will draw up to 23mA in very bright light. Heck, looks like I was wrong, I don't need more sensitivity at all. Given that the final application is intended for light levels up to a office well light though a window, the direct sunlight that a resistor value of 220 ohms would capture is *far* brighter than what I need. I ended up using a resistor of 4.7k, which seems to work and makes nice graphs. > > 1k ends up at a zero slope long > > before the CdS saturates. > > Your circuit will be most sensitive to variations in the cell resistance at > mid range. In other words, when the cell resistance equals the pullup > resistance. The important question is what range of light you care about. > Measure the cell resistance at the two extremes, then design your circuit to > resolve that range at the required accuracy. Makes sense, the slope of the graph I generated was pretty much linear in the midrange, not at all at the extremes. If anyone is interested I attached a screenshot of the light levels graph I made today. The logging system is pretty brute force, the PIC outputs an ASCII stream of abc 123 def at 2400 baud. A cron-job on a spare Linux box picks out one entry per minute and records it to a log file, timestamped with a seconds from 1970 UNIX time. The graph is simply that file piped to xgraph, that's why the xaxis looks so odd. Works though. It's all sitting next to a west facing window on the third floor of a house. Looks like light levels get highest later in the day as the sun is in almost direct view. (the sensor itself is horizontal, and recieves it's light from bouncing off the white walls around it) The floor is unused so all variations, like the jagged sections, must be either the circuit, or the light outside. Tree brances maybe? Not really sure, the graph is fairly smooth when you zoom in. Gonna leave all this running for awhile to get data before I build my sealed light meter things that I mentioned to you guys a few months ago. -- pete@petertodd.ca http://www.petertodd.ca --HcAYCG3uE/tztfnV Content-Type: image/png Content-Disposition: attachment; filename="light_adc_graph.png" Content-Transfer-Encoding: base64 iVBORw0KGgoAAAANSUhEUgAABQAAAAQACAMAAACJTQRxAAADAFBMVEX///////////////// ///////////////////+///X//9s//+L//+v/v7f/v79/fz9/Pv8/Pv8+/r7+vn7+vn7+fn6 +fj6+Pj6+Pf6+Pf6+Pf6+Pf6+Pf6+Pf6+Pf6+Pf6+Pf59/b59/X49vX49vT49vT49vT49vT3 9vT39vT39fT39fL29fL29PH29PH29PH29PH19PL09PPz8/Py8/Py8vLz8vD08u/08u/08e70 8e7z8e7z8e7z8O7z8O3z7+zy7+zy7+3x7+3x7+3x7+zx7uvw7urv7erv7erv7erv7env7enw 7Ojw7Ojw7Ofv6+fv6+fv6+fv6+fu6uft6ufs6ufq6ujs6ebt6eXu6eXt6eTt6OTt6OPs6OPs 5+Lr5+Pr5uPo5uTm5OLo5N/o497o493o493o4t3n4dvn4dvm4dvl4Nrl39nj3tjg3Nji3Nbi 3NXi3NXh2tXe2dTa1tPg17/01nX312zy1XbZ0cHU0MvTz8rRzcnQzMfOy8jPysXNyMPMx8LL xsHKxb/Jw77Iw73Fwb6vucKGqsqBqMqAqcyAqc14qNVyoc5plsFokrlmkLZmkLVkjrVjjrZj 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