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Why are FCM modules built into digital dosing pumps?

Question 2 of 4
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How does the FCM module allow for the detection of any flow deviations in the system?

Question 3 of 4
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How does digital dosing make stroke length modification redundant?

Question 4 of 4
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At which flow rates does digital dosing perform best?

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1: Why are FCM modules built into digital dosing pumps?
To help by warning you if the pumped media is freezing
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1: Why are FCM modules built into digital dosing pumps?
To provide a more accurate and better dosing performance.
1: Why are FCM modules built into digital dosing pumps?
The Frequency Control Modulator (FCM) helps the pump compensate for vibrations
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2: How does the FCM module allow for the detection of any flow deviations in the system?
By slowing down pumped volume in case of pipe damage, to prevent spilling of chemicals
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2: How does the FCM module allow for the detection of any flow deviations in the system?
By measuring pressure waves and issuing alarms when something unexpected is seen
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2: How does the FCM module allow for the detection of any flow deviations in the system?
By sending out an alarm if pressure built-up when the flow is blocked and reacting to other failures, such as cavitation or pipe burst and switching off the system if detecting serious failures
3: How does digital dosing make stroke length modification redundant?
Because of the torque delivered by the stepper-motor
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3: How does digital dosing make stroke length modification redundant?
By very precisely measuring the position of the stepper-motor and diaphragm
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3: How does digital dosing make stroke length modification redundant?
Due to the internal stroke speed control either implemented in the digital dosing pump or stepper motor, ensuring that dosing runs at a smooth, continuous rate.
4: At which flow rates does digital dosing perform best?
4: At which flow rates does digital dosing perform best?
4: At which flow rates does digital dosing perform best?
Digital dosing performs best over the full range of flow rates.