Cosmetic changes and small fix for thermistortables.h
・Adjust spacing ・Standardize comments position ・Remove ',' at the tail of array
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@ -29,7 +29,6 @@
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#define OVERSAMPLENR 16
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#define OVERSAMPLENR 16
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#if (THERMISTORHEATER_0 == 1) || (THERMISTORHEATER_1 == 1) || (THERMISTORHEATER_2 == 1) || (THERMISTORHEATER_3 == 1) || (THERMISTORBED == 1) //100k bed thermistor
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#if (THERMISTORHEATER_0 == 1) || (THERMISTORHEATER_1 == 1) || (THERMISTORHEATER_2 == 1) || (THERMISTORHEATER_3 == 1) || (THERMISTORBED == 1) //100k bed thermistor
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const short temptable_1[][2] PROGMEM = {
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const short temptable_1[][2] PROGMEM = {
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{ 23 * OVERSAMPLENR, 300 },
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{ 23 * OVERSAMPLENR, 300 },
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{ 25 * OVERSAMPLENR, 295 },
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{ 25 * OVERSAMPLENR, 295 },
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@ -94,11 +93,12 @@ const short temptable_1[][2] PROGMEM = {
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{ 1008 * OVERSAMPLENR, 0 } // safety
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{ 1008 * OVERSAMPLENR, 0 } // safety
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};
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};
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#endif
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#endif
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#if (THERMISTORHEATER_0 == 2) || (THERMISTORHEATER_1 == 2) || (THERMISTORHEATER_2 == 2) || (THERMISTORHEATER_3 == 2) || (THERMISTORBED == 2) //200k bed thermistor
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#if (THERMISTORHEATER_0 == 2) || (THERMISTORHEATER_1 == 2) || (THERMISTORHEATER_2 == 2) || (THERMISTORHEATER_3 == 2) || (THERMISTORBED == 2) //200k bed thermistor
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const short temptable_2[][2] PROGMEM = {
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// 200k ATC Semitec 204GT-2
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// 200k ATC Semitec 204GT-2
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// Verified by linagee. Source: http://shop.arcol.hu/static/datasheets/thermistors.pdf
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// Verified by linagee. Source: http://shop.arcol.hu/static/datasheets/thermistors.pdf
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// Calculated using 4.7kohm pullup, voltage divider math, and manufacturer provided temp/resistance
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// Calculated using 4.7kohm pullup, voltage divider math, and manufacturer provided temp/resistance
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const short temptable_2[][2] PROGMEM = {
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{ 1 * OVERSAMPLENR, 848 },
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{ 1 * OVERSAMPLENR, 848 },
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{ 30 * OVERSAMPLENR, 300 }, // top rating 300C
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{ 30 * OVERSAMPLENR, 300 }, // top rating 300C
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{ 34 * OVERSAMPLENR, 290 },
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{ 34 * OVERSAMPLENR, 290 },
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@ -130,10 +130,10 @@ const short temptable_2[][2] PROGMEM = {
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{ 993 * OVERSAMPLENR, 30 },
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{ 993 * OVERSAMPLENR, 30 },
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{ 1004 * OVERSAMPLENR, 20 },
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{ 1004 * OVERSAMPLENR, 20 },
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{ 1012 * OVERSAMPLENR, 10 },
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{ 1012 * OVERSAMPLENR, 10 },
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{1016 * OVERSAMPLENR, 0},
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{ 1016 * OVERSAMPLENR, 0 }
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};
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};
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#endif
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#endif
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#if (THERMISTORHEATER_0 == 3) || (THERMISTORHEATER_1 == 3) || (THERMISTORHEATER_2 == 3) || (THERMISTORHEATER_3 == 3) || (THERMISTORBED == 3) //mendel-parts
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#if (THERMISTORHEATER_0 == 3) || (THERMISTORHEATER_1 == 3) || (THERMISTORHEATER_2 == 3) || (THERMISTORHEATER_3 == 3) || (THERMISTORBED == 3) //mendel-parts
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const short temptable_3[][2] PROGMEM = {
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const short temptable_3[][2] PROGMEM = {
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{ 1 * OVERSAMPLENR, 864 },
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{ 1 * OVERSAMPLENR, 864 },
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@ -165,8 +165,8 @@ const short temptable_3[][2] PROGMEM = {
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{ 1008 * OVERSAMPLENR, 0 },
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{ 1008 * OVERSAMPLENR, 0 },
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{ 1018 * OVERSAMPLENR, -20 }
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{ 1018 * OVERSAMPLENR, -20 }
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};
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};
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#endif
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#endif
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#if (THERMISTORHEATER_0 == 4) || (THERMISTORHEATER_1 == 4) || (THERMISTORHEATER_2 == 4) || (THERMISTORHEATER_3 == 4) || (THERMISTORBED == 4) //10k thermistor
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#if (THERMISTORHEATER_0 == 4) || (THERMISTORHEATER_1 == 4) || (THERMISTORHEATER_2 == 4) || (THERMISTORHEATER_3 == 4) || (THERMISTORBED == 4) //10k thermistor
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const short temptable_4[][2] PROGMEM = {
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const short temptable_4[][2] PROGMEM = {
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{ 1 * OVERSAMPLENR, 430 },
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{ 1 * OVERSAMPLENR, 430 },
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@ -193,10 +193,10 @@ const short temptable_4[][2] PROGMEM = {
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#endif
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#endif
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#if (THERMISTORHEATER_0 == 5) || (THERMISTORHEATER_1 == 5) || (THERMISTORHEATER_2 == 5) || (THERMISTORHEATER_3 == 5) || (THERMISTORBED == 5) //100k ParCan thermistor (104GT-2)
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#if (THERMISTORHEATER_0 == 5) || (THERMISTORHEATER_1 == 5) || (THERMISTORHEATER_2 == 5) || (THERMISTORHEATER_3 == 5) || (THERMISTORBED == 5) //100k ParCan thermistor (104GT-2)
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const short temptable_5[][2] PROGMEM = {
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// ATC Semitec 104GT-2 (Used in ParCan)
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// ATC Semitec 104GT-2 (Used in ParCan)
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// Verified by linagee. Source: http://shop.arcol.hu/static/datasheets/thermistors.pdf
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// Verified by linagee. Source: http://shop.arcol.hu/static/datasheets/thermistors.pdf
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// Calculated using 4.7kohm pullup, voltage divider math, and manufacturer provided temp/resistance
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// Calculated using 4.7kohm pullup, voltage divider math, and manufacturer provided temp/resistance
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const short temptable_5[][2] PROGMEM = {
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{ 1 * OVERSAMPLENR, 713 },
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{ 1 * OVERSAMPLENR, 713 },
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{ 17 * OVERSAMPLENR, 300 }, // top rating 300C
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{ 17 * OVERSAMPLENR, 300 }, // top rating 300C
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{ 20 * OVERSAMPLENR, 290 },
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{ 20 * OVERSAMPLENR, 290 },
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@ -485,7 +485,7 @@ const short temptable_71[][2] PROGMEM = {
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{ 995 * OVERSAMPLENR, 15 },
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{ 995 * OVERSAMPLENR, 15 },
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{ 1001 * OVERSAMPLENR, 10 },
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{ 1001 * OVERSAMPLENR, 10 },
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{ 1006 * OVERSAMPLENR, 5 },
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{ 1006 * OVERSAMPLENR, 5 },
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{1010 * OVERSAMPLENR, 0},
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{ 1010 * OVERSAMPLENR, 0 }
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};
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};
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#endif
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#endif
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@ -514,6 +514,7 @@ const short temptable_8[][2] PROGMEM = {
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{ 1008 * OVERSAMPLENR, 0 }
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{ 1008 * OVERSAMPLENR, 0 }
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};
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};
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#endif
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#endif
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#if (THERMISTORHEATER_0 == 9) || (THERMISTORHEATER_1 == 9) || (THERMISTORHEATER_2 == 9) || (THERMISTORHEATER_3 == 9) || (THERMISTORBED == 9)
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#if (THERMISTORHEATER_0 == 9) || (THERMISTORHEATER_1 == 9) || (THERMISTORHEATER_2 == 9) || (THERMISTORHEATER_3 == 9) || (THERMISTORBED == 9)
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// 100k GE Sensing AL03006-58.2K-97-G1 (4.7k pullup)
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// 100k GE Sensing AL03006-58.2K-97-G1 (4.7k pullup)
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const short temptable_9[][2] PROGMEM = {
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const short temptable_9[][2] PROGMEM = {
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@ -550,6 +551,7 @@ const short temptable_9[][2] PROGMEM = {
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{ 1016 * OVERSAMPLENR, 0 }
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{ 1016 * OVERSAMPLENR, 0 }
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};
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};
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#endif
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#endif
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#if (THERMISTORHEATER_0 == 10) || (THERMISTORHEATER_1 == 10) || (THERMISTORHEATER_2 == 10) || (THERMISTORHEATER_3 == 10) || (THERMISTORBED == 10)
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#if (THERMISTORHEATER_0 == 10) || (THERMISTORHEATER_1 == 10) || (THERMISTORHEATER_2 == 10) || (THERMISTORHEATER_3 == 10) || (THERMISTORBED == 10)
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// 100k RS thermistor 198-961 (4.7k pullup)
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// 100k RS thermistor 198-961 (4.7k pullup)
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const short temptable_10[][2] PROGMEM = {
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const short temptable_10[][2] PROGMEM = {
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@ -589,7 +591,6 @@ const short temptable_10[][2] PROGMEM = {
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#if (THERMISTORHEATER_0 == 11) || (THERMISTORHEATER_1 == 11) || (THERMISTORHEATER_2 == 11) || (THERMISTORHEATER_3 == 11) || (THERMISTORBED == 11)
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#if (THERMISTORHEATER_0 == 11) || (THERMISTORHEATER_1 == 11) || (THERMISTORHEATER_2 == 11) || (THERMISTORHEATER_3 == 11) || (THERMISTORBED == 11)
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// QU-BD silicone bed QWG-104F-3950 thermistor
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// QU-BD silicone bed QWG-104F-3950 thermistor
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const short temptable_11[][2] PROGMEM = {
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const short temptable_11[][2] PROGMEM = {
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{ 1 * OVERSAMPLENR, 938 },
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{ 1 * OVERSAMPLENR, 938 },
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{ 31 * OVERSAMPLENR, 314 },
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{ 31 * OVERSAMPLENR, 314 },
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@ -646,7 +647,6 @@ const short temptable_11[][2] PROGMEM = {
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#if (THERMISTORHEATER_0 == 13) || (THERMISTORHEATER_1 == 13) || (THERMISTORHEATER_2 == 13) || (THERMISTORHEATER_3 == 13) || (THERMISTORBED == 13)
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#if (THERMISTORHEATER_0 == 13) || (THERMISTORHEATER_1 == 13) || (THERMISTORHEATER_2 == 13) || (THERMISTORHEATER_3 == 13) || (THERMISTORBED == 13)
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// Hisens thermistor B25/50 =3950 +/-1%
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// Hisens thermistor B25/50 =3950 +/-1%
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const short temptable_13[][2] PROGMEM = {
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const short temptable_13[][2] PROGMEM = {
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{ 20.04 * OVERSAMPLENR, 300 },
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{ 20.04 * OVERSAMPLENR, 300 },
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{ 23.19 * OVERSAMPLENR, 290 },
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{ 23.19 * OVERSAMPLENR, 290 },
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@ -676,8 +676,8 @@ const short temptable_13[][2] PROGMEM = {
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#endif
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#endif
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#if (THERMISTORHEATER_0 == 20) || (THERMISTORHEATER_1 == 20) || (THERMISTORHEATER_2 == 20) || (THERMISTORBED == 20) // PT100 with INA826 amp on Ultimaker v2.0 electronics
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#if (THERMISTORHEATER_0 == 20) || (THERMISTORHEATER_1 == 20) || (THERMISTORHEATER_2 == 20) || (THERMISTORBED == 20) // PT100 with INA826 amp on Ultimaker v2.0 electronics
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/* The PT100 in the Ultimaker v2.0 electronics has a high sample value for a high temperature.
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// The PT100 in the Ultimaker v2.0 electronics has a high sample value for a high temperature.
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This does not match the normal thermistor behaviour so we need to set the following defines */
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// This does not match the normal thermistor behaviour so we need to set the following defines
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#if (THERMISTORHEATER_0 == 20)
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#if (THERMISTORHEATER_0 == 20)
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#define HEATER_0_RAW_HI_TEMP 16383
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#define HEATER_0_RAW_HI_TEMP 16383
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#define HEATER_0_RAW_LO_TEMP 0
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#define HEATER_0_RAW_LO_TEMP 0
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@ -976,9 +976,10 @@ const short temptable_60[][2] PROGMEM = {
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{ 981 * OVERSAMPLENR, 23 },
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{ 981 * OVERSAMPLENR, 23 },
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{ 991 * OVERSAMPLENR, 17 },
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{ 991 * OVERSAMPLENR, 17 },
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{ 1001 * OVERSAMPLENR, 9 },
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{ 1001 * OVERSAMPLENR, 9 },
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{1008 * OVERSAMPLENR, 0},
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{ 1008 * OVERSAMPLENR, 0 }
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};
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};
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#endif
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#endif
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#if (THERMISTORHEATER_0 == 12) || (THERMISTORHEATER_1 == 12) || (THERMISTORHEATER_2 == 12) || (THERMISTORHEATER_3 == 12) || (THERMISTORBED == 12)
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#if (THERMISTORHEATER_0 == 12) || (THERMISTORHEATER_1 == 12) || (THERMISTORHEATER_2 == 12) || (THERMISTORHEATER_3 == 12) || (THERMISTORBED == 12)
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// 100k 0603 SMD Vishay NTCS0603E3104FXT (4.7k pullup) (calibrated for Makibox hot bed)
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// 100k 0603 SMD Vishay NTCS0603E3104FXT (4.7k pullup) (calibrated for Makibox hot bed)
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const short temptable_12[][2] PROGMEM = {
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const short temptable_12[][2] PROGMEM = {
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@ -1011,7 +1012,7 @@ const short temptable_12[][2] PROGMEM = {
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{ 995 * OVERSAMPLENR, 15 },
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{ 995 * OVERSAMPLENR, 15 },
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{ 1001 * OVERSAMPLENR, 10 },
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{ 1001 * OVERSAMPLENR, 10 },
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{ 1010 * OVERSAMPLENR, 0 },
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{ 1010 * OVERSAMPLENR, 0 },
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{1023 * OVERSAMPLENR, -40},
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{ 1023 * OVERSAMPLENR, -40 }
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};
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};
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#endif
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#endif
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