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LED Lighting experiment

Today I bought an LED bulb from a local shop that starts with T and ends in O  it's one of there own brand  according to its packaging it should consume 9 watts and give the same light as a real 60 watt bulb. Anyhow I took it to my shack a to test how much RFI it made I was pleasantly surprised that it only seemed to give a little rectifier noise on the higher bands name 15 and 10 meters. The noise disappeared completely when I connected my digital multimeter on AC volts between the metal lamp base and earth just to see how much leakage voltage was on the metal base it was around 11 volts one way and around 8 volts the other way polarity reversed by swapping the supply wires. Next I thought ide try the lamp on DC  not expecting it to work but surprise surprise it worked fine  fed with around 230 VDC  from a full wave rectifier it worked fine pulling around 27 mA adding a capacitor for a bit of smoothing gave 330 VDC  and the lamp remained lit for a couple of seconds while the cap ran down. Final test was running it on AC of 240 volts it took 70mA from the mains I will re check the figures tomorrow as I don't get why there would be the difference in current. Finally after running the lamp for around 40 minutes the plastic base of the lamp was too hot to touch  other than that it seemed fine
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  • Hi all I've done. Some more tests on my LED lamp firstly the current taken from the AC mains is 70 or 73 mA  depending on which meter I look at. Secondly at 240 volts it consumes 9.6 watts this remains constant until under 100 volts  current consumption gradually rises  to 113 mA as volts are decreases down to around 95 volts when it drops back to around 70 mA then rises again down at 70 volts the lamp flickers  then goes out. It's brightness is virtually constant from 100 to 250 volts there is a slight dimming below 130 volts but it's very slight it is rated for 220 240 volts but is ok over a much bigger range
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  • Hi all I've done. Some more tests on my LED lamp firstly the current taken from the AC mains is 70 or 73 mA  depending on which meter I look at. Secondly at 240 volts it consumes 9.6 watts this remains constant until under 100 volts  current consumption gradually rises  to 113 mA as volts are decreases down to around 95 volts when it drops back to around 70 mA then rises again down at 70 volts the lamp flickers  then goes out. It's brightness is virtually constant from 100 to 250 volts there is a slight dimming below 130 volts but it's very slight it is rated for 220 240 volts but is ok over a much bigger range
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