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© 2016 Sensata Technologies
Installation
2.6.2
System Bonding Jumper
The MS Series inverter does not include an internal bond between the grounded conductor (AC
neutral/DC negative) and the equipment grounding terminals. This bond [system bonding jumper
(SBJ)] is usually done in the main distribution panel for each electrical system.
CAUTION:
There should be one and only one point in each electrical system (both AC
and DC) where the grounded conductor is attached to the grounding electrode conductor.
AC Side
– The size of the system bonding jumper (SBJ) in the AC electrical system is based on
the area of the largest AC ungrounded conductor. In accordance with the NEC, use Table 2-4 to
determine the system bonding jumper size compared to the largest AC ungrounded conductor.
DC Side
– The size of the system bonding jumper (SBJ) in the DC electrical system must not be
smaller than the DC grounding electrode conductor (GEC – DC) used, which is determined from
the grounding method that will be used (see Section 2.6.1).
2.6.3
Equipment Grounding Conductor
The inverter case and all other noncurrent-carrying exposed metal surfaces in the entire electrical
system that may be accidentally energized must be grounded. The equipment-grounding conductor
must be sized to safely carry the maximum ground-fault current likely to be imposed on it from
where a ground-fault may occur. In accordance with the NEC, use Table 2-6 to size the equipment-
grounding conductors. This table requires that the equipment-grounding conductor be sized
according to the rating of the overcurrent device protecting the circuit.
CAUTION:
The connections and wiring for the equipment-grounding conductor must
be continuous to allow fault currents to properly operate overcurrent devices. Where
equipment is removed and this disconnects the bonding connection between the
grounding electrode conductor and exposed conducting surfaces, a bonding jumper must
be installed while the equipment is removed.
AC Side
– Where the AC output from the inverter is connected to an AC load center, there should
be an equipment grounding conductor connected between the inverter case and the grounding
point in the AC load center. The AC equipment grounding conductor (EGC – AC) is sized per Table
2-6 and is connected to the inverter’s AC equipment grounding terminal shown in Figure 2-10 (or
a grounding wire for the MS2000 models).
DC Side
– Since the currents on the DC side are higher than the AC side (10 times at 12 volts,
5 times at 24 volts), the equipment grounding needs are diff erent. The DC equipment grounding
conductor (EGC – DC) is sized per Table 2-6 and connected to the DC equipment grounding terminal
on the inverter as shown in Figure 1-2, Item 7.
Table 2-6, Equipment Grounding Conductor Sizing
Rating of Overcurrent
Device
Minimum Size of Copper
Ground Wire
15 amps
#14 AWG (2.1 mm
2
)
20 amps
#12 AWG (3.3 mm
2
)
30 – 60 amps
#10 AWG (5.3 mm
2
)
100 amps
#8 AWG (8.4 mm
2
)
200 amps
#6 AWG (13.3 mm
2
)
300 amps
#4 AWG (21.1 mm
2
)
400 amps
#3 AWG (26.6 mm
2
)
Summary of Contents for Magnum Energy MS Series
Page 1: ...Pure Sine Wave Inverter Charger MS Series Owner s Manual...
Page 23: ...2016 Sensata Technologies Page 13 Installation Figure 2 5 MS Dimensions MS2000...
Page 43: ...2016 Sensata Technologies Page 33 Installation Figure 2 16 AC Wiring for MS2000 Models...
Page 44: ...Page 34 2016 Sensata Technologies Installation Figure 2 17 AC Wiring for MS2000 15B 20B Models...