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Can't make anything of the markings, but can you work out what it does from the pcb?
eg is it connected to a bridge or bi-phase rectifier? What DC voltage is required?
Are the two terminals on same side the mains input? Do the three terminals connect when resistance measured? Is there any connection to the one terminal on its own?
Doesn't leave you much wiser! Is the bit to the right the pcb track? If it is then it's just a simple single secondary, Can you deduce anything more from the circuit board, voltage, etc ?
Rather than butcher it, just buy a small autotransformer so you can feed it with 110V?
It will depend on the current being drawn and the amount of power it has to dissipate as heat, - and of course the heat sinking arrangement. If the input voltage is too high it will get hot and bothered. If the input is too low it won't be able to maintain the set output voltage on load.Wondering tbh if the LM317T will in fact be that fussy.
It will depend on the current being drawn and the amount of power it has to dissipate as heat, - and of course the heat sinking arrangement. If the input voltage is too high it will get hot and bothered. If the input is too low it won't be able to maintain the set output voltage on load.
The tab of the device IS the heat sink when so used. That indicates that the designer isn't expecting much power dissipation.
It will depend on the current being drawn and the amount of power it has to dissipate as heat, - and of course the heat sinking arrangement. If the input voltage is too high it will get hot and bothered. If the input is too low it won't be able to maintain the set output voltage on load.
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