Mr onetwo
I am looking for a little advise from industrial/machinery electricians here. I am installing a Nussbaum lift in my garage that is rated 14.1FLA @ 240V 1 ph. I am putting a 30 amp fusible disconnect on it with Bussmann FRN-N-** time delay fuses. I am thinking 20 amp fuses, but is this over or under rating them.17 amp and 22.5 amp are available thru special order....any thoughts on the subject? I am also doing a 3 phase/VFD setup on my drill press. Drive rated at 9.7 amps @ 240v 1 ph. input.....motor is rated at 3.0 FLA @ 230v 3ph. Really not sure what size for this situation? Drive documentation is very confusing.
The breaker is to protect the line. A fusible disconnect is for motor protection. In my experience in the HVAC field motors are always protected by fuses. Just not sure on sizing TD fuses properly.
Neither motor has any overload protection.
MTW
Fuses can be used for overload protection provided they are sized correctly. See NEC 430.31-32.
Basic intent of the rules when using fuses as overload protection.
It’s somewhat difficult to size the fuses to protect the motor accurately and still provide enough starting capacity for the motor, it’s usually load type dependent.
The basic rule 430.32 says to use up to 125% for 1.15 SF (service factor) motors and 115% for all others. 430.32C states that if the values of the previous section do not allow the motor to start, you may be allowed to go as high as 140% for 1.15SF or 130% for all others.
From the practical aspect, size the circuit on the large size to limit voltage drop and improve starting performance (start time surge). Then use as small of a overload setting, to get the best protection for the motor windings. But it still needs to allow the motor to start and not nuisance trip.
Calculations.
Circuit Short circuit protection.
14.1 x 1.25 = 17.62 min circuit amps. 14.1 x 1.75 = 24.67 max circuit amps. 14.1 x 1.5 = 21.5 preferred circuit amps. So 20A fuses would be good and cheaply available if used for circuit protection.
Overload protection.
Protect at nameplate value if it will start and run (FRN-15).
Otherwise,
SF 1.15 motors, 14.1 x 1.25 = 17.62 A first try setting (FRN-17), 14.1 x 1.4 = 19.74 maximum setting . (FRN-20)
SF 1.0 Motors, 14.1 x 1.15 = 16.21 A first try setting (FRN-17), 14.1 x 1.3 = 18.33 maximum setting. (FRN-20)
This is why a motor starter with separate overload relay is normally used to get accurate protection. I would tell you to check your motor nameplate carefully, if it says TP (thermally protected) all this discussion is a moot point. It has internal protection and doesn’t require external protection. As with a lot of equipment motors, it reduces control cost for the vendor.
For the VFD drive. Size the circuit at the drive input rating x 1.25 as shown above. The VFD should have the required overload limit setting, and current limiting, in it’s programming parameters. Ω