--_003_BANLkTikwtLoSJYoXY3qkias7qmCPtW6bQmailgmailcom_ Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Ok, so I've come up with a circuit that I like. (Attached) Would I be able to use this as a constant current battery charger by simply replacing R3 at the top with a NiMH battery (for example), and setting the appropriate current? Also, how would the selection of the voltage source V2 affect charging? How would a 2V source vs a 10V source, for example, affect the charge? (Since it's constant current)? I'm guessing that a 10V source would cause the transistor to go higher impedance than at a 2V source to maintain the current and the voltage drop across the battery would be the same in either case, but the transistor would be burning more energy from the higher voltage in the case of a 10V source. Is that correct? --_003_BANLkTikwtLoSJYoXY3qkias7qmCPtW6bQmailgmailcom_ Content-Type: image/png; name="Capture.PNG" Content-Description: Capture.PNG Content-Disposition: attachment; filename="Capture.PNG"; size=21309; creation-date="Fri, 22 Apr 2011 00:49:17 GMT"; modification-date="Fri, 22 Apr 2011 00:49:17 GMT" Content-Transfer-Encoding: base64 iVBORw0KGgoAAAANSUhEUgAAAywAAAG/CAYAAAC641NZAAAAAXNSR0IArs4c6QAAAARnQU1BAACx jwv8YQUAAAAJcEhZcwAADsMAAA7DAcdvqGQAAFKSSURBVHhe7d3bdatMF6Ztx6PDjkMRdAoO4j11 IA5kdY/u0X9W+i1bSAiBKKCK2nAdeHzfegUFzHnPzVPF5uPfv38Xf2yAAQxgAAMYwAAGMIABDJTI wEeJJ+WcBAsGMIABDGAAAxjAAAYwcGWAYLHCZIUNAxjAAAYwgAEMYAADxTJAsICzWDjNqphVwQAG MIABDGAAAxggWAgWggUDGMAABjCAAQxgAAPFMkCwgLNYOM2omFHBAAYwgAEMYAADGCBYCBaCBQMY wAAGMIABDGAAA8UyQLCAs1g4zaiYUcEABjCAAQxgAAMYIFgIFoIFAxjAAAYwgAEMYAADxTJAsICz WDjNqJhRwQAGMIABDGAAAxggWAgWggUDGMAABjCAAQxgAAPFMkCwgLNYOM2omFHBAAYwgAEMYAAD GCBYCBaCBQMYwAAGMIABDGAAA8UyQLCAs1g4zaiYUcEABjCAAQxgAAMYIFgIFoIFAxjAAAYwgAEM 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