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- This video introduces the second generation of the METTLER TOLEDO M300 analytical transmitter, launched in 2017. Convenience at a touch The M300 transmitter for process and water measurements is.
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– pH/Redox, Dissolved Oxygen, Conductivity/Resistivity, Dissolved Ozone, single channel version – Cond/Cond dual channel version – Multiparameter dual channel. No manuals,no standard power cords, even if it appears in the photo, accessories, software etc are included unless pictured and noted description home all items about us feedback contact add Mettler Toledo thornton m300 conductifity calibrator thumbnails above to our ask a question item comes as shown.
Brand: Mettler Toledo
Category: Transmitter
Type: Operation manual for Mettler Toledo M400
Pages: 88
© 11 / 08 Mettler-Toledo AG, CH-8606 Greifensee, Switzerland Transmitter Multiparameter M400
7.4.2 Two point calibration
Place the electrode in the first buffer solution and then press the [ENTER] key.
Auto mode: The display shows the buffer that the transmitter has recognized (Point 1) and
Manual mode: Enter the buffer value and press [ENTER] to proceed.
As soon as the drift conditions have stabilized (or [ENTER] pressed in manual mode) the
display changes and prompts you to place the electrode in the second buffer solution.
As soon as the drift conditions have stabilized (or [ENTER] pressed in manual mode) the
display changes to show the slope calibration factor S and the offset calibration factor Z.
After a successful calibration, the calibration values are taken over and stored in the cal history
(Adjust), only stored in the cal history (Calibrate) or aborted.
Select Process Calibration.
Take a sample and press the [ENTER] key again to store the current measuring Value. To show
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the ongoing Calibration Process, A or B (depending on the channel) is blinking in the display.
After determining the pH Value of the Sample, press the key again to proceed with the
Enter the pH value of the sample then press the [ENTER] key to start calibration.
After a successful calibration, the calibration values are taken over and stored in the cal history
(Adjust), only stored in the cal history (Calibrate) or aborted.
Enter mV Calibration mode as described in section 7.1.
The user can now enter Point 1. The offset calibration factor is calculated as:
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Point1 + mV (measured value) and displayed on the next screen.