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Mitsubishi F700 Series User Manual

Mitsubishi F700 Series
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36
Connection of stand-alone option units
(2) Connection with the MT-HC (01800 or more)
*1 Remove the jumper across terminals R and R1, S and S1 of the inverter, and connect the control circuit
power supply to the R1 and S1 terminals. Do not connect anything to the power input terminals R/L1, S/
L2, T/L3. Incorrect connection will damage the inverter. (E.OPT (option fault) will occur. (Refer to page 338.)
*2 Do not insert the MCCB between terminals P/+ and N/- (P/+ and P/+, N/- and N/-). Opposite polarity of
terminals N, P will damage the inverter.
*3 Use Pr. 178 to Pr. 189 (input terminal function selection) to assign the terminals used for the X10 (X11) signal.
(Refer to page 117.) For communication where the start command is sent only once, e.g. RS-485
communication operation, use the X11 signal when making setting to hold the mode at occurrence of an
instantaneous power failure. (Refer to page 108.)
*4 Connect the power supply to terminals R1 and S1 of the MT-HC via an isolated transformer.
*5 Be sure to connect terminal RDY of the MT-HC to the X10 signal or MRS signal assigned terminal of the
inverter, and connect terminal SE of the MT-HC to terminal SD of the inverter. Without proper connecting,
MT-HC will be damaged.
CAUTION
Use sink logic when the MT-HC is connected. The MT-HC cannot be connected when source logic (initial setting) is
selected.
The voltage phases of terminals R/L1, S/L2, T/L3 and terminals R4, S4, T4 must be matched.
When connecting the inverter to the MT-HC, do not connect the DC reactor provided to the inverter.
Parameters referred to
Pr. 30 Regenerative function selection Refer to page 108
Three-phase
AC power
supply
MCCB
MT-HCL01 MT-HCB
R1 S1
R1 S1
R1/
L11
S1/
L21
MT-HCL02 MT-HC Inverter
MT-HCTR
Isolated transformer
R
S
T
R/L1
S/L2
T/L3
U
V
W
R2
S2
T2
R2
S2
T2
R3
S3
T3
R3
S3
T3
R4
S4
T4
R4
S4
T4
R
S
T
88R
88S
88R
88S
*2
RDY
RSO
SE
X10
RES
SD
*3
*5
*1
*1
*4
Motor
IM
P
N
P/+
N/
MC

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Mitsubishi F700 Series Specifications

General IconGeneral
Humidity95% RH or less (non-condensing)
Control MethodV/F control
Protection FeaturesOvercurrent, overvoltage, undervoltage, overheat, short circuit
Communication OptionsRS-485
Operating Temperature-10°C to +50°C
Storage Temperature-20°C to +65°C
AltitudeUp to 1000m above sea level
Overload Capacity150% for 60 seconds
Cooling MethodForced air cooling
Power Range0.75 to 630 kW (1 to 845 hp)
Output Voltage3-phase 200 to 240 VAC, 380 to 500 VAC (matching input voltage)

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