MA7200 PLUS Operating Manual
TECO – Westinghouse Motor Company (Sn-33–Sn-34) Multi-Function Output
Cont
. - Sn-38 Parameter Details
Table 9.2.3.7 Multi-Function Analog Output Monitor Selection
Cont.
Sn-33 & Sn-34
Setting
Monitored Items
Description
Input
Output
09
PID Output1
0 - Max frequency
0 -10V
10
PID Output2
0 - Max frequency
11
Comm. Control
0 - 100%
*1
12
External PID Input
?
13
External PID Output
?
14
External PID Output 2
?
*1: When the setting of Sn-33, 34 = 11, the multi-function output terminals AO1, AO2 are controlled through
the RS-485 port either by MODBUS or PROFIBUS protocol. Refer to the “RS-485 MODBUS/PROFIBUS
Application Manual”
The output gain (Bn-14 and Bn-15) will determine the actual output voltage at the multi-function analog output
terminals AO1, AO2. The specified multiple of 10V will correspond to the 100% output monitored value.
Sn-35
Pulse Output Multiplication-Gain Selection (0 – 4)
If the multi-function output terminal (DO1) is set as pulse output (when Sn-31 or Sn-32 = 14), the final
output pulse frequency is a multiple (set by Sn-35) of the inverter output frequency. Refer to Fig. 6.2.36
for the pulse signal output.
Example: When Sn-35= 0 and the inverter output frequency is 60Hz, the output pulse frequency
is 60 Hz (50% duty cycle).
The following Table 9.2.3.8 shows the pulse output frequency for various Sn-35 settings.
Table 9.2.3.8
Sn-35 Setting
Pulse Output Frequency
Applicable Freq. Range
0
1 × Inverter output frequency
3.83 -400.0Hz
1
6 × Inverter output frequency
2.56 - 360.0Hz
2
10 ×Inverter output frequency
1.54 - 210.0Hz
3
12 × Inverter output frequency
1.28 - 180.0Hz
4
36 × Inverter output frequency
0.5 - 60.0Hz
Sn-36
Inverter Station Address (0 – 31)
This parameter sets the address of the inverter when networking.
Sn-37
RS485 Communication Baud Rate Setting (0 – 4)
0: 1200, 1: 2400, 2: 4800, 3: 9600, 4: 19200
Sn-38
RS485 Parity Setting (0 – 2)
0: Reserved, 1: Even, 2: Odd
Cont.