- Location
- Massachusetts
OK check my work if you don't mind.
I need to run a 208Y/120 volt 800 amp' feeder, the total connected load maxes out at 690 amps. Space is limited and the equipment is not set up to accept two 500 Kcmil copper per phase. The documents indicate four conductors per phase.
3/0 CU @ 90C 225 amps
4*225=900 amps.
However I have to run this in two conduits. The neutral is not a CCC so I have a total of six CCCs in each conduit.
900*.8=720 amps {80% derate per T310.15(B)(2)(a)}
I plan on running about 10' in 3" EMT eight THHN 3/0 and 1/0 EGC per tube.
3/0 THHN = 0.2679 sq in. (Table 5)
1/0 THHN = 0.1855 sq in (Table 5)
0.2679*8+0.1855= 2.3287 sq in.
3" EMT 40% fill = 3.538 sq in. (Table 4)
It looks like it will be a hot dog in a hallway.

I need to run a 208Y/120 volt 800 amp' feeder, the total connected load maxes out at 690 amps. Space is limited and the equipment is not set up to accept two 500 Kcmil copper per phase. The documents indicate four conductors per phase.
3/0 CU @ 90C 225 amps
4*225=900 amps.
However I have to run this in two conduits. The neutral is not a CCC so I have a total of six CCCs in each conduit.
900*.8=720 amps {80% derate per T310.15(B)(2)(a)}
I plan on running about 10' in 3" EMT eight THHN 3/0 and 1/0 EGC per tube.
3/0 THHN = 0.2679 sq in. (Table 5)
1/0 THHN = 0.1855 sq in (Table 5)
0.2679*8+0.1855= 2.3287 sq in.
3" EMT 40% fill = 3.538 sq in. (Table 4)
It looks like it will be a hot dog in a hallway.