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The detector has three operating modes: Motion, Non-motion and Dual mode. For
a detailed description of these modes, see page 17.
Each operating mode can be modified to your own requirements, just enter the menu and
change the settings shown. Modifications are stored after the power is switched off (however
not when the battery pack is removed while the detector is on, which is inappropriate). If the
changes are not what you expected, then they can be reset using the factory settings.
NOTE: The factory settings for each operating mode are optimised for ease of use. When
beginning to use the detector we strongly recommend trying the detector with these factory
programs without changing settings in the menu. This will help you to learn quicker how the
detector operates.
Turning the required operating mode on is done by pressing the button in the
detector’s operating mode. The operation mode selection screen will appear:
The buttons are used to select the operating mode you would like, then press
the trigger to enter the program. After changing the operating mode a ground balance needs to
be done, and the detector will guide you through this process.
If you want to reset a given operating mode to the factory specifications, bring up the
operation mode selection screen (by pressing the button) and use the button to go down
to the « Reset » option, then use the button to choose « Yes ». Use the trigger to leave the
operating mode selection screen, the reset confirmation screen will then appear (« Really? »).
Use the button to select « Yes ». Use the trigger to complete, the settings for the chosen
operating mode will then be reset. Resetting the chosen mode of operation to the factory
settings does not result in resetting the main settings or the sound programs.
Argo NE is a detector which has a built-in metal object identification circuit. The detector
has 180 identification points which can be set within the range -90 to +90. It analyses the signal
from a metal object several hundred times per second, after each identification process, the
internal memory of the device saves a specific digital value. The values stored in the memory
are used to calculate an average identification value and an identification graph is shown. The
average value depends on the characteristics of the object that is below the search coil.
There is a common misconception among searchers about identification. Unfortunately,
the dependency between object type and the value of the identification is complex. The basis for
understanding these dependencies and extracting valid conclusions is the following: "If the
magnetic properties of an object are greater than the conductive, then the identification number
will be negative, otherwise the identification number will be positive."
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Argo NE
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