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47
V
Expand
offset
10
)
Sens
rce)
Signal(sou
(
=
Output
2. When source is <θ>, <θh1>, <θh2>
V
10
180
rce)
Signal(sou
=
Output
3. When source is <E1> to <E4> (Equation), there are other options as below:
a) AUX_IN1~AUX_IN4: the output voltage is equal to the input voltage.
b) Constant coefficient: directly correspond. Such as 10 corresponds to 10V, -5 corresponds to -5V.
c) : frequency:
Every stage of the frequency is from 5V to 10V. For example,
1000Hz = 5 V
1200Hz = 6 V
1600Hz = 8 V
1800Hz = 9 V
1990Hz = 9.95 V
2000Hz = 5 V (next stage)
The frequency is divided as the following stages:
62.5 Hz – 125 Hz
125 Hz – 200 Hz
250 Hz – 500 Hz
500 Hz – 1000 Hz
1 kHz – 2 kHz
4 kHz – 8 kHz
8 kHz – 16 kHz
…
When the Equation calculates, the parameter needs conversion according to the above equations. Then calculate
according to the Equation itself and get the result. The range of result is from -10 V to +10 V.
3.6.1 < Output Source >: Setting Output Source Channel