Blisstool LTC64 Guía de usuario Pagina 42

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alloys: zinc, nickel, copper;
- In mode DISCRIMINATOR = I, the maximum range of discrimination is limited to small, high
conductive metal objects, mainly from the following non-ferrous metals and their
alloys: zinc, nickel, copper, lead, aluminum.
- At v5:
- In mode DISCRIMINATOR = III, the maximum range of discrimination is limited to iron,
aluminum foil and very small, low conductive metal objects, from non-ferrous metals
and alloys;
- In mode DISCRIMINATOR = II, the maximum range of discrimination is limited to medium,
high conductive metal objects, mainly from the following non-ferrous metals and
their alloys: zinc, nickel, copper, lead, aluminum.
- In mode DISCRIMINATOR = I, the maximum range of discrimination is limited to large, high
conductive metal objects, mainly from the following non-ferrous metals and their
alloys: zinc, nickel, copper, lead, aluminum, silver, gold.
Given the above available information for switch DISCRIMINATOR:
- Mode DISCRIMINATOR = III is the same for all versions (v5, v4, v3, v2i, v2 and v1);
- Mode DISCRIMINATOR = II of v5, is with about 25% larger than the largest range,
i.e. mode DISCRIMINATOR = I, of v4, v3, v2i, v2 and v1. Therefore, mode
DISCRIMINATOR = II of v5, is very similar to the mode DISCRIMINATOR = I of v4,
v3, v2i, v2 and v1;
- Mode DISCRIMINATOR = I of v5, is several times larger than the largest range, i.e.
mode DISCRIMINATOR = I, of v4, v3, v2i, v2 and v1. Therefore, v5 has extreme
extended discrimination range.
The extreme extended discrimination range and the improved distribution of the
three areas for discrimination at v5, providing possibility for effective study and
understanding of the detected metal object even before it to be excavated. For this
purpose, the user must explore intentionally, the detected metal object at various
modes of switch DISCRIMINATOR: III, II and I. This is done by easily and quickly
manual switching between them (from switch DISCRIMINATOR). Depending on what
exactly is the detected metal object, in some modes it will be detected, while in
others will be rejected. For starters, the exploration (the study) is carried out without
changing the current levels of potentiometers DISCR LEVEL and DISCR DEPTH, as only if need
additional orientation, can be applied study at higher levels of DISCR LEVEL and DISCR DEPTH.
Thanks to the above described method, at v5, with high probability, can assume what exactly
is the detected metal object even before it to be excavated: small, large, low quality, high
quality, low, medium or high conductive. Moreover, for specific terrains and conditions, which
the user is acquainted, can be assumed and from what kind of metal is the detected metal
object: zinc, nickel, copper, lead, aluminum, silver, gold; and what exactly is the detected
metal object: coin, artifact, treasure or modern pollutant. All this, provides a more effective
and more convenient selective search of metal objects.
An example for the above-described method for effective study and understanding of
the detected metal object even before it to be excavated:
Introduction: The user works with v5 on medium mineralized terrain in discrimination mode
with settings: DISCRIMINATOR = III, DISCR DEPTH = 9, DISCR LEVEL = 6. The user detects
with the metal detector (on DISCRIMINATOR = III), a clear signal from non-ferrous metal (as
at these settings the metal detector rejected iron):
- If in mode DISCRIMINATOR = II and in mode DISCRIMINATOR = I, the object is still
detected, follows that the detected metal object is probably a silver coin;
- If in mode DISCRIMINATOR = II the object is still detected, but in mode DISCRIMINATOR = I
the object is rejected, follows that the detected metal object is probably an aluminum cap;
- If in mode DISCRIMINATOR = II and in mode DISCRIMINATOR = I, the object is rejected,
follows that the detected metal object is probably a bronze coin.
The settings and the assumptions described in the example above are examples only, but for a
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