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![]() "Terry K" wrote After noting a single cycle of start, run, stop, you then have the onerous task of sitting beside the fridge all day with a beer or two, counting, averaging the cycles per hour. From a warm case of beer start, to keep score, or for all day, opening the door for 20 seconds, closing it every hour, to work up a "typical" duty cycle. Alternatively, charge the battery check the specific gravity, let it run for say 12 hours, then measure the sg of the battery, and interpolate the number of amp hours from your battery specs. How critical is all of this? It's not too critical - Just want to decide whether or not additional (difficult to add) insulation is warranted. I don't really need a typical duty cycle - just let the unit run with box closed for say 12-24 hours, then add temporary insulation and let it run again. If the external temperature changes this could upset the results. So need to do test when weather is stable for a few days. I could measure temperatures, acid SG and battery voltage at intervals. I think this may give me an idea of whether or not to add the extra insulation. Thanks for suggestions! GBM Your time is say, 10 bucks an hour. The test equipment to do this properly starts out ridiculously expensive, then proceeds toward the incredulous, depending on the degree of accuracy desired. A laptop data port, some software, an interface, or multimeter with data output would do for centibucks what you could accomplish by rule of thumb for a little effort. Actually, I wonder if a digital audio recorder like windat might record DC voltages across a current shunt in the DC supply. You would need to test and calibrate the data. Terry K |
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