Kingfisher200262
Member
On vehicles with modern passenger socket installations (so, either new trains or refurbs where sockets are added), there's usually an inverter to provide "clean" 240 V ac, and it's usually sized to be able to accommodate all the sockets used at the same time, with a 100 W load (i.e. a laptop and a bit more). The wiring and the sockets themselves are rated much higher.
So, on a vehicle with say 32 sockets (randomish number), the maximum expected load will be 3.2 kW (c. 13 amps @ 240 V ac). It therefore follows that when very few sockets are in use, someone could probably plug in pretty much anything domestic and nothing bad would happen.
The worst that could ever happen is that the circuit breaker on output side of the inverter would trip, or the thermal overload on the inverter itself trips.
So, on a vehicle with say 32 sockets (randomish number), the maximum expected load will be 3.2 kW (c. 13 amps @ 240 V ac). It therefore follows that when very few sockets are in use, someone could probably plug in pretty much anything domestic and nothing bad would happen.
The worst that could ever happen is that the circuit breaker on output side of the inverter would trip, or the thermal overload on the inverter itself trips.
, but in general, there are two reasons why the laptop sockets should be fed from the batteries, through an inverter. Firstly, the 415 V ac from the power car is notoriously dirty, because it's a straight feed from the auxiliary alternator that is on the end of the engine. Secondly, feeding the sockets from the batteries, means that the sockets still work, when the power car that provides electric train supply is not running.