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@ -211,7 +211,7 @@ const short temptable_5[][2] PROGMEM = {
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#if (THERMISTORHEATER_0 == 6) || (THERMISTORHEATER_1 == 6) || (THERMISTORHEATER_2 == 6) || (THERMISTORBED == 6) // 100k Epcos thermistor
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const short temptable_6[][2] PROGMEM = {
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{1*OVERSAMPLENR, 350}
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{1*OVERSAMPLENR, 350},
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{28*OVERSAMPLENR, 250}, //top rating 250C
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{31*OVERSAMPLENR, 245},
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{35*OVERSAMPLENR, 240},
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@ -253,7 +253,7 @@ const short temptable_6[][2] PROGMEM = {
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#if (THERMISTORHEATER_0 == 7) || (THERMISTORHEATER_1 == 7) || (THERMISTORHEATER_2 == 7) || (THERMISTORBED == 7) // 100k Honeywell 135-104LAG-J01
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const short temptable_7[][2] PROGMEM = {
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{1*OVERSAMPLENR, 500}
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{1*OVERSAMPLENR, 500},
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{46*OVERSAMPLENR, 270}, //top rating 300C
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{50*OVERSAMPLENR, 265},
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{54*OVERSAMPLENR, 260},
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@ -317,7 +317,7 @@ const short temptable_7[][2] PROGMEM = {
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// Calculated using 1kohm pullup, voltage divider math, and manufacturer provided temp/resistance
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// Advantage: Twice the resolution and better linearity from 150C to 200C
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const short temptable_51[][2] PROGMEM = {
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{1*OVERSAMPLENR, 350}
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{1*OVERSAMPLENR, 350},
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{190*OVERSAMPLENR, 250}, //top rating 250C
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{203*OVERSAMPLENR, 245},
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{217*OVERSAMPLENR, 240},
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@ -379,7 +379,7 @@ const short temptable_51[][2] PROGMEM = {
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// Calculated using 1kohm pullup, voltage divider math, and manufacturer provided temp/resistance
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// Advantage: More resolution and better linearity from 150C to 200C
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const short temptable_52[][2] PROGMEM = {
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{1*OVERSAMPLENR, 500}
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{1*OVERSAMPLENR, 500},
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{125*OVERSAMPLENR, 300}, //top rating 300C
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{142*OVERSAMPLENR, 290},
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{162*OVERSAMPLENR, 280},
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