AlbertHall
- Joined Jun 4, 2014
- 12,640
But it's not an LED it's a normal diode!but a LED, if actually blinking
But it's not an LED it's a normal diode!but a LED, if actually blinking
So, this obsolete telephone answering machine broke and you have been trying to fix it for a while.In the past years, i've been trying to fix this really old (and very hard to find) phone
By your own admission...its not the multimeter that makes the diode flash, it's connecting the power supply that does, first time I tried it was with the correct polarity (negative on bottom pad and positive to top pad, the one closer to the edge of the board)
and the diode started flashing, then I tried reversing the polarity, and it still blinks, I realize I may of have done more damage
It was broken before you started, a diode (but not an LED) is lighting up in a fun sparky sort of a way and you have also reversed the polarity of the power input.i dont really have any experience in electronics or repair
I can, I just use a nice resistor code calculator on the Internet and just look 'em up by ohm rating on eBayCan you read numbers on the resistirs?
Likely a proprietary chip. You are not going to be able to buy it.Oh by the way, does anyone know if I can still buy this IC online somewhere?
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This IC handles the phone's keypad, but some keys do not work, I checked to make sure that the wiring signal makes it to the IC pins and it does, but some keys just don't work, so the IC must be half-dead? It was working but the ribbon cable snapped because it was glued instead of being soldered even though there were pads, good job GE, anyway that sorted a bunch of wires together in the keypad, if im correct doesn't that simulate alot of keys being pressed at once? Can ICs even 'half-die'?
I removed the bad cable and rewired every single thing back manually, I made sure that wires do not touch each other and that its wired exactly as it was before with the correct orientation, and again, some keys work as they are supposed to but some others dont.
Whatever the case, it seems I can find it by looking up 'OKI M6263-01' and they do come up in certain stores but the bottom number '6112Z09' is the only number that does not match, would it still be okay to use? and uh, im not sure how to say this, would the IC pins be the same as the one I have now? Or would I have to figure out wiring to match the new IC?
Likely denoting week 12 from year 1961. Many companies used/use that system. The rest could be a code to denote the factory where it was actually encapsulated.but the bottom number '6112Z09'
Are you saying that reverse polarity has killed my ICs? If so thats when im really helpless, is there a way to test them somehow? I always manage to throw reverse polarity at ICs somehow (because im an idiot XD) and they always survive it, well that said I know not every IC can survive it, since the board is old there may not be as much protection, also you can tell they are old ICs just by how thick they areThere are a few IC's (integrated circuits) on the board. They do not respond to reversed polarity with alacrity. That is, a very short period will likely destroy them.
Yes, I meant it likely killed the IC's, as there was no protective circuitry.Are you saying that reverse polarity has killed my ICs? If so thats when im really helpless, is there a way to test them somehow?
Apparently you need more practice.I always manage to throw reverse polarity at ICs somehow (because im an idiot XD) and they always survive it,...
Yep you are probably right, ive only actually done it 4 or 5 times, most was on a EPROM IC for my PC (the bios chip) which I inserted in with the wrong orientation and it got REALLY hot, in fact it burned my finger! but it still survived somehowYes, I meant it likely killed the IC's, as there was no protective circuitry.
Apparently you need more practice.
So then, I can definately replace it! I found this, which is a similar one, it says KEC KIA 7805PI but the bottom writing is 4E instead of 6K, does that matter?7805 is a standard 5 volt regulator.