Description
This calibration CE4012S2T2B4 sequence causes the valve to travel to the electrical null point
of the LVDT. Null point calibration can be requested at the same time as full
calibration, in which case the movement sequence is CE4012S2T2B4 the full calibration
sequence. However, the valve stops at the null point when it is encountered.
brand | Product Name | Product model | Order No |
EMERSON | modular | CE4012S2T2B4 | nothing |
Place of Origin | Marketable land | Imported or not | defects liability period |
Europe and America | Nationwide and overseas | yes | a year |
Place of shipment | Delivery method | How to use | Applicable industries |
Xiamen | Shunfeng Express | Commissioning and installation | Power Plant Steel Plant Cement Plant Shipboard Papermaking |
Service advantages | Foreign import, goods preparation and supply | Reasonable price and reliable quality | Pictures are for reference only |
Product features | Primary source of goods, supply by model | After sales guarantee | Chen 1810693-7731 |
This calibration sequence is executed to CE4012S2T2B4 re-establish 0% position, 100%
position, and feedback gain.
When full calibration is requested the module enters local mode, requiring the
Controller to track. The module then moves the value to the 0% position. The
fifirmware checks for position feedback between the arbitrary limits of –9.7 volts
and –2.0 volts. If the voltage is less (more negative) than –9.7 volts, the fifirmware
reduces gain to make the voltage more positive than –9.7. If the voltage is more
positive than –2.0 volts, the gain is increased until the voltage is more negative
than –2.0 volts. During these two sequences, the gain is tested to insure it does
not go out of allowable range.
If the voltage is between –9.7 and –2.0, then gain is recalculated to set the
voltage to the arbitrary target voltage of –0.35 volts, and the fifirmware sequence
advances to the CE4012S2T2B4 next state, which will take the value to 100%.
At this point in the sequence, the demodulator gain has been set to a value that
is a maximum allowable value. The gain may be reduced at the other end of the
stroke, but will not be increased.
Now the valve moves to the 100% position. The feedback voltage is examined,
and if it exceeds 10.0 volts, feedback gain is reduced. Once feedback voltage is
less than +10.0 volts, it is recorded as the 100% calibration value.
The valve moves back to 0% and the voltage at 0% is recorded. Feedback gain
is not adjusted.
The last step is to write 0% position, 100% position, and feedback gain to the
EE memory.
Once the data is recorded in EE memory, the fifirmware clears a restriction flflag,
allowing the module to transfer from local mode back to normal mode. At this
point the valve is under the control of the MA station and will return to the
previous position according to the tuning of the MA.
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