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Electronics Repair (sci.electronics.repair) Discussion of repairing electronic equipment. Topics include requests for assistance, where to obtain servicing information and parts, techniques for diagnosis and repair, and annecdotes about success, failures and problems. |
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On 3/21/2019 9:47 AM, J.B. Wood wrote:
On 3/21/19 9:33 AM, Adrian Caspersz wrote: After a quick google, I found this paper. Â*Â*Design and Construction of 1kVA Inverter Â*Â*http://www.ijeert.org/pdf/v2-i3/29.pdf and also Â*Â*250W PWM inverter circuit SG3524 Â*Â*http://www.circuitstoday.com/pwm-inverter-circuit Hello, and thanks for the above link and the others! Looks like those designs depend on R-C time constants rather than crystals.Â* And crystals, like resistors and capacitors can age with time.Â* Whether or not those designs you referenced are employed in inverter generators is TBD.Â* It's not so much an issue which time-base (oscillator frequency) works better when new at room temp but how it behaves in the outdoor operating environment of temperature, humidity, vibration, rough-handling, etc, including component aging.Â* Mea culpa for posting design questions to a repair ng.Â* Sincerely, Youa culpa because you posted a vague question and expected a precise/exact answer. How much accuracy do you need? Call up a few vendors and ask if they can meet that spec over all your environmental conditions and time. Good luck with that. If you need PRECISE frequency, you'll probably also be unimpressed with the phase noise, or high frequency components of the digital approxmiation to a sine wave. The reason to have an inverter is reduced fuel consumption under light load. I don't have any specific info, but expect that there are inverter generators that do not have accurate sine wave output. Your problem is likely much more complex than you think. People can't help solve your problem if you can't disclose it. Feel free to continue to waste your (and other's) time. |
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