--_003_CACZQxzNkF41CUkyRdaVb5ZEdMvUBo84EE0dLsetYNVdD6sDgmailgm_ Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable > Hello, I am trying to design a simple battery charger. It is supposed to > charge 4x AA (2000mAh) rechargeable batteries off of a 5 volt supply. It's good to have a diagram - but old tired eyees, and probably many younger ones as well would prefer a monochrome one which is not so hard to view. (See attached). The batteries will never charge fully. If only 5V was available you will get either only relatively uncharged cells or you will need to charge portions of the pack separately in some manner. At under about 1.35v x 4 =3D 5.4V you probably don't need charge termination as the cells will trickle to a full stop without being fully charged. A fully charged NimH cell has a voltage under charge of about 1.45V. Slightly less is bearable but much less will result in incomplete charge. This is not necessarily bad as it can substantially increase cycle lifetime. 5V/4 =3D 1.25V cell =3D very low 4.76V/4 =3D 1.19V =3D very very low. 4 x 1.45V =3D 5.8 V 4 x 1.4 =3D 5.6 V 4 x 1.35V =3D 5.4V This is not a recommended way of charging NimH, but is sometimes the best available. The two main methods are to charge at about C/1 rate and either look for a negative delta V or to look for a rise in delta temperature rate or an absolute temperature limit. These methods are not viable at charge rate substantially below C. Russell McMahon --_003_CACZQxzNkF41CUkyRdaVb5ZEdMvUBo84EE0dLsetYNVdD6sDgmailgm_ Content-Type: image/jpeg; name="charger.jpg" Content-Description: charger.jpg Content-Disposition: attachment; filename="charger.jpg"; size=26873; creation-date="Mon, 17 Oct 2011 18:50:43 GMT"; modification-date="Mon, 17 Oct 2011 18:50:43 GMT" Content-Transfer-Encoding: base64 /9j/4AAQSkZJRgABAQEASABIAAD/2wBDAAMCAgMCAgMDAwMEAwMEBQgFBQQEBQoHBwYIDAoMDAsK CwsNDhIQDQ4RDgsLEBYQERMUFRUVDA8XGBYUGBIUFRT/wAALCAGjAqIBAREA/8QAHQABAQEBAQEB AQEBAAAAAAAAAAYHBQgEAwIBCf/EAE8QAAAGAQMABAsFBQYEBAQHAAABAgMEBQYHERIIExQhFhci MVRWdZOW09QVIzY3tTJBV3azCRhRldLVMziUtCQmQmEoNYGkJTRTVXGXpf/aAAgBAQAAPwD/AKOg AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA8a9ITLdWNZKzU7TfGdP MngyZ+PUhx4UywqI6YxPT5pTHHXmpqlG2+wx1RJSa/8AhLJSEkvdfdk6OVWoOL6k6aQtNsa0hzyv Yrb2rt8RcZOMt/k+qulokojMvIU3IjSm1kbJKSg1cFGTvdwqrUiV0z7zTPDJVY9W1tM0nJNRq51k 20Nzor647FU4g1OFxXMYeeUw+RKUyw2ojI9yHsoAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA 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