Other way round. For any given overcurrent, a 3A BS1362 fuse has a faster operating time than a 6A BS60898 breaker.The lighting 6A breaker will trip well before a 3A fuse will blow anyway
wow, that is what they recommend to prevent overheating due to a stalled motor?The 3A fuse is actually for fire protection.
Indeed, the motor windings are far thinner than 3A fuse wire.wow, that is what they recommend to prevent overheating due to a stalled motor?
or have I mis understood?
My suspicion is that is what the insurer's say to get out of paying.My only comment on this thread is that there was a fire in a new build near me, a few years ago, that originated in the bathroom fan. Stalled motor and no 3A fuse in the feed was reported to be the cause.
Doing an EICR, would you expect to see instruction manuals for such equipment, mostly installed years previously.It depends if the fan's instruction manual asked for it in the first place. Some do, some don't.
The lighting 6A breaker will trip well before a 3A fuse will blow anyway
No, but you could take the model number and google it…..Doing an EICR, would you expect to see instruction manuals for such equipment, mostly installed years previously.
Was he the dog on Magic Roundabout?No, but you could take the model number and google it…..
How would you code it if there's no isolation switch? Don't remember a reg for that...looking for the isolation switch only…
Yes, but that’s for stuff like lathes, not a bathroom fan.Can’t remember, there used to be a reg that said something like
local isolation for mechanical maintenance should be installed for rotating machinery?
Maybe a C3 we always fit a 3/4 Pole isolation switchHow would you code it if there's no isolation switch? Don't remember a reg for that...![]()
I dont go maintaining/cleaning my fans at night time, so I (radical I know) wander over to the consumer unit and turn off the MCB for the circuit that powers the fan.Bathroom fans need regular maintenance to remove the build up of skin tissue from them, and there are live exposed terminals (often permanently live) while doing so.
I dont go maintaining/cleaning my fans at night time, so I (radical I know) wander over to the consumer unit and turn off the MCB for the circuit that powers the fan.
Most fractional HP motors like bathroom fans are wound in such a way that the winding impedance is high enough to limit the current to safe levels even if the rotor is locked. They're often marked as 'impedance protected' which means the fault current won't rise high enough to cause a temperature rise that's hazardous or likely to cause a fire. This type of motor design usually won't have a thermal fuse on the windings because the normal running temp is pretty close to the locked rotor temp...................How is the disconnection level of the fuse, say ~6A = 1.3kW, making a big difference to a fire in such a small area, and are there not thermal cutout to protect the motor, etc........................
Most fractional HP motors like bathroom fans are wound in such a way that the winding impedance is high enough to limit the current to safe levels even if the rotor is locked. They're often marked as 'impedance protected' which means the fault current won't rise high enough to cause a temperature rise that's hazardous or likely to cause a fire. This type of motor design usually won't have a thermal fuse on the windings because the normal running temp is pretty close to the locked rotor temp..
Designing a motor to be impedance protected is good practice and very effective but I'd guess that many nameless far East factories would be churning out motors of sloppy design that wouldn't perform this way in real life so I wouldn't have an issue with a local fuse for added protection. Add to this the fact that most are likely to be ClassII ⧈ with no CPC and therefore no effective RCD protection the hazard becomes increased. I do however wonder where they came up with 3 Amps as an appropriate value for a motor with an RLA/FLA of probably 0.1 - 0.2Amps .... I'd be erring on the side of caution with a 0.5 or 1 Amp fuse if it were my bathroom.