Was interested in capabilities of the 1500Volt Direct Current system. What is the maximum current through the wires? Taking a French 7200 as an example I believe it's rated at 4400kW meaning it would draw a current of around 3000A at maximum power and maybe more if train supply on? Would've thought the wires were getting quite warm at this stage especially if 2 locos are in multiple or other trains in same section?
Notice locos often depart stations with both pantographs up, one dropping after a short while; is this due to high starting currents?
The most powerful 1.5 kV locomotive ever was the French CC6500, rated at 5,900 kW - continuous power. (*) I
think it also held the record for the most powerful DC locomotive ever (**) as I am not aware of a more powerful classic 3kV locomotive in either Belgium (Series 20 - 5,200 kW) or Italy (FS E.656 - 4,800 kW).
(*) I am talking here about classical DC locomotives, not counting recent multisystem locomotives. However even the SNCB Class 18 is rated at 5,000 kW continuous power under 3 kV DC. Only PKP's EU44 (6,000 kW) and Skoda's E109 (6,400 kW) have higher ratings.
(**) not counting incredible Soviet/Russian double locomotives such as the historical ВЛ15/VL15 or current 2ЭС10/2ES10 (8,400 kW)
CC6500s had two motors, each electrically divided into two "half-engines" - actually, the inductor and armature were designed with two separate sections. The maximal permissible current was 1,400 A per half-engine. In standard circumstances, a train could be started under the series-parallel coupling. At locations with a single-wire 1500 V OHL, it was mandatory to start the train under the series coupling, with IIRC an intensity limit of 1,200 A. Even with two pants up, this meant 600 A per pantograph (not counting auxiliary power).
But of course, all above is my own experience. I have no knowledge about other countries.
There are not many countries that have 1.5 kV mainline electrification
