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@ -964,24 +964,34 @@
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//
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//
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/**
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/**
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* Z Probe to nozzle (X,Y) offset, relative to (0, 0).
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* Nozzle-to-Probe offsets { X, Y, Z }
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*
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*
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* In the following example the X and Y offsets are both positive:
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* - Use a caliper or ruler to measure the distance from the tip of
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* the Nozzle to the center-point of the Probe in the X and Y axes.
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* - For the Z offset use your best known value and adjust at runtime.
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* - Probe Offsets can be tuned at runtime with 'M851', LCD menus, babystepping, etc.
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*
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*
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* #define NOZZLE_TO_PROBE_OFFSET { 10, 10, 0 }
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* Assuming the typical work area orientation:
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* - Probe to RIGHT of the Nozzle has a Positive X offset
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* - Probe to LEFT of the Nozzle has a Negative X offset
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* - Probe in BACK of the Nozzle has a Positive Y offset
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* - Probe in FRONT of the Nozzle has a Negative Y offset
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*
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* Some examples:
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* #define NOZZLE_TO_PROBE_OFFSET { 10, 10, -1 } // Example "1"
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* #define NOZZLE_TO_PROBE_OFFSET {-10, 5, -1 } // Example "2"
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* #define NOZZLE_TO_PROBE_OFFSET { 5, -5, -1 } // Example "3"
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* #define NOZZLE_TO_PROBE_OFFSET {-15,-10, -1 } // Example "4"
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*
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*
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* +-- BACK ---+
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* +-- BACK ---+
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* | |
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* | [+] |
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* L | (+) P | R <-- probe (20,20)
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* L | 1 | R <-- Example "1" (right+, back+)
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* E | | I
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* E | 2 | I <-- Example "2" ( left-, back+)
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* F | (-) N (+) | G <-- nozzle (10,10)
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* F |[-] N [+]| G <-- Nozzle
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* T | | H
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* T | 3 | H <-- Example "3" (right+, front-)
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* | (-) | T
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* | 4 | T <-- Example "4" ( left-, front-)
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* | |
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* | [-] |
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* O-- FRONT --+
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* O-- FRONT --+
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* (0,0)
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*
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* Specify a Probe position as { X, Y, Z }
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*/
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*/
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#define NOZZLE_TO_PROBE_OFFSET { 10, 10, 0 }
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#define NOZZLE_TO_PROBE_OFFSET { 10, 10, 0 }
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