commit
6b14f95b3e
2 changed files with 232 additions and 90 deletions
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@ -38,18 +38,26 @@
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//===========================================================================
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//===========================================================================
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//=============================Thermal Settings ============================
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//=============================Thermal Settings ============================
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//===========================================================================
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//===========================================================================
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//
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//--NORMAL IS 4.7kohm PULLUP!-- 1kohm pullup can be used on hotend sensor, using correct resistor and table
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//
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//// Temperature sensor settings:
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//// Temperature sensor settings:
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// -2 is thermocouple with MAX6675 (only for sensor 0)
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// -2 is thermocouple with MAX6675 (only for sensor 0)
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// -1 is thermocouple with AD595
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// -1 is thermocouple with AD595
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// 0 is not used
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// 0 is not used
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// 1 is 100k thermistor
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// 1 is 100k thermistor - best choice for EPCOS 100k (4.7k pullup)
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// 2 is 200k thermistor
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// 2 is 200k thermistor - ATC Semitec 204GT-2 (4.7k pullup)
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// 3 is mendel-parts thermistor
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// 3 is mendel-parts thermistor (4.7k pullup)
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// 4 is 10k thermistor !! do not use it for a hotend. It gives bad resolution at high temp. !!
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// 4 is 10k thermistor !! do not use it for a hotend. It gives bad resolution at high temp. !!
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// 5 is ParCan supplied 104GT-2 100K
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// 5 is 100K thermistor - ATC Semitec 104GT-2 (Used in ParCan) (4.7k pullup)
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// 6 is EPCOS 100k
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// 6 is 100k EPCOS - Not as accurate as table 1 (created using a fluke thermocouple) (4.7k pullup)
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// 7 is 100k Honeywell thermistor 135-104LAG-J01
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// 7 is 100k Honeywell thermistor 135-104LAG-J01 (4.7k pullup)
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//
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// 1k ohm pullup tables - This is not normal, you would have to have changed out your 4.7k for 1k
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// (but gives greater accuracy and more stable PID)
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// 51 is 100k thermistor - EPCOS (1k pullup)
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// 52 is 200k thermistor - ATC Semitec 204GT-2 (1k pullup)
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// 55 is 100k thermistor - ATC Semitec 104GT-2 (Used in ParCan) (1k pullup)
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#define TEMP_SENSOR_0 -1
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#define TEMP_SENSOR_0 -1
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#define TEMP_SENSOR_1 0
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#define TEMP_SENSOR_1 0
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@ -73,27 +73,41 @@ const short temptable_1[][2] PROGMEM = {
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#endif
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#endif
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#if (THERMISTORHEATER_0 == 2) || (THERMISTORHEATER_1 == 2) || (THERMISTORHEATER_2 == 2) || (THERMISTORBED == 2) //200k bed thermistor
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#if (THERMISTORHEATER_0 == 2) || (THERMISTORHEATER_1 == 2) || (THERMISTORHEATER_2 == 2) || (THERMISTORBED == 2) //200k bed thermistor
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const short temptable_2[][2] PROGMEM = {
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const short temptable_2[][2] PROGMEM = {
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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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// Calculated using 4.7kohm pullup, voltage divider math, and manufacturer provided temp/resistance
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{1*OVERSAMPLENR, 848},
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{1*OVERSAMPLENR, 848},
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{54*OVERSAMPLENR, 275},
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{30*OVERSAMPLENR, 300}, //top rating 300C
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{107*OVERSAMPLENR, 228},
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{34*OVERSAMPLENR, 290},
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{160*OVERSAMPLENR, 202},
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{39*OVERSAMPLENR, 280},
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{213*OVERSAMPLENR, 185},
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{46*OVERSAMPLENR, 270},
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{266*OVERSAMPLENR, 171},
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{53*OVERSAMPLENR, 260},
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{319*OVERSAMPLENR, 160},
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{63*OVERSAMPLENR, 250},
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{372*OVERSAMPLENR, 150},
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{74*OVERSAMPLENR, 240},
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{425*OVERSAMPLENR, 141},
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{87*OVERSAMPLENR, 230},
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{478*OVERSAMPLENR, 133},
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{104*OVERSAMPLENR, 220},
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{531*OVERSAMPLENR, 125},
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{124*OVERSAMPLENR, 210},
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{584*OVERSAMPLENR, 118},
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{148*OVERSAMPLENR, 200},
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{637*OVERSAMPLENR, 110},
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{176*OVERSAMPLENR, 190},
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{690*OVERSAMPLENR, 103},
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{211*OVERSAMPLENR, 180},
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{743*OVERSAMPLENR, 95},
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{252*OVERSAMPLENR, 170},
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{796*OVERSAMPLENR, 86},
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{301*OVERSAMPLENR, 160},
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{849*OVERSAMPLENR, 77},
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{357*OVERSAMPLENR, 150},
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{902*OVERSAMPLENR, 65},
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{420*OVERSAMPLENR, 140},
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{955*OVERSAMPLENR, 49},
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{489*OVERSAMPLENR, 130},
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{1008*OVERSAMPLENR, 17},
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{562*OVERSAMPLENR, 120},
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{1020*OVERSAMPLENR, 0} //safety
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{636*OVERSAMPLENR, 110},
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{708*OVERSAMPLENR, 100},
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{775*OVERSAMPLENR, 90},
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{835*OVERSAMPLENR, 80},
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{884*OVERSAMPLENR, 70},
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{924*OVERSAMPLENR, 60},
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{955*OVERSAMPLENR, 50},
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{977*OVERSAMPLENR, 40},
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{993*OVERSAMPLENR, 30},
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{1004*OVERSAMPLENR, 20},
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{1012*OVERSAMPLENR, 10},
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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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@ -157,73 +171,48 @@ const short temptable_4[][2] PROGMEM = {
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#if (THERMISTORHEATER_0 == 5) || (THERMISTORHEATER_1 == 5) || (THERMISTORHEATER_2 == 5) || (THERMISTORBED == 5) //100k ParCan thermistor (104GT-2)
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#if (THERMISTORHEATER_0 == 5) || (THERMISTORHEATER_1 == 5) || (THERMISTORHEATER_2 == 5) || (THERMISTORBED == 5) //100k ParCan thermistor (104GT-2)
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const short temptable_5[][2] PROGMEM = {
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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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// 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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{1*OVERSAMPLENR, 713},
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{1*OVERSAMPLENR, 713},
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{18*OVERSAMPLENR, 316},
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{17*OVERSAMPLENR, 300}, //top rating 300C
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{35*OVERSAMPLENR, 266},
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{20*OVERSAMPLENR, 290},
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{52*OVERSAMPLENR, 239},
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{23*OVERSAMPLENR, 280},
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{69*OVERSAMPLENR, 221},
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{27*OVERSAMPLENR, 270},
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{86*OVERSAMPLENR, 208},
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{31*OVERSAMPLENR, 260},
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{103*OVERSAMPLENR, 197},
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{37*OVERSAMPLENR, 250},
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{120*OVERSAMPLENR, 188},
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{43*OVERSAMPLENR, 240},
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{137*OVERSAMPLENR, 181},
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{51*OVERSAMPLENR, 230},
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{154*OVERSAMPLENR, 174},
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{61*OVERSAMPLENR, 220},
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{171*OVERSAMPLENR, 169},
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{73*OVERSAMPLENR, 210},
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{188*OVERSAMPLENR, 163},
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{87*OVERSAMPLENR, 200},
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{205*OVERSAMPLENR, 159},
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{106*OVERSAMPLENR, 190},
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{222*OVERSAMPLENR, 154},
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{128*OVERSAMPLENR, 180},
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{239*OVERSAMPLENR, 150},
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{155*OVERSAMPLENR, 170},
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{256*OVERSAMPLENR, 147},
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{189*OVERSAMPLENR, 160},
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{273*OVERSAMPLENR, 143},
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{230*OVERSAMPLENR, 150},
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{290*OVERSAMPLENR, 140},
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{278*OVERSAMPLENR, 140},
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{307*OVERSAMPLENR, 136},
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{336*OVERSAMPLENR, 130},
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{324*OVERSAMPLENR, 133},
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{402*OVERSAMPLENR, 120},
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{341*OVERSAMPLENR, 130},
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{476*OVERSAMPLENR, 110},
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{358*OVERSAMPLENR, 128},
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{554*OVERSAMPLENR, 100},
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{375*OVERSAMPLENR, 125},
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{635*OVERSAMPLENR, 90},
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{392*OVERSAMPLENR, 122},
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{713*OVERSAMPLENR, 80},
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{409*OVERSAMPLENR, 120},
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{784*OVERSAMPLENR, 70},
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{426*OVERSAMPLENR, 117},
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{846*OVERSAMPLENR, 60},
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{443*OVERSAMPLENR, 115},
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{897*OVERSAMPLENR, 50},
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{460*OVERSAMPLENR, 112},
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{937*OVERSAMPLENR, 40},
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{477*OVERSAMPLENR, 110},
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{966*OVERSAMPLENR, 30},
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{494*OVERSAMPLENR, 108},
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{986*OVERSAMPLENR, 20},
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{511*OVERSAMPLENR, 106},
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{1000*OVERSAMPLENR, 10},
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{528*OVERSAMPLENR, 103},
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{1010*OVERSAMPLENR, 0}
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{545*OVERSAMPLENR, 101},
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{562*OVERSAMPLENR, 99},
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{579*OVERSAMPLENR, 97},
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{596*OVERSAMPLENR, 95},
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{613*OVERSAMPLENR, 92},
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{630*OVERSAMPLENR, 90},
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{647*OVERSAMPLENR, 88},
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{664*OVERSAMPLENR, 86},
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{681*OVERSAMPLENR, 84},
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{698*OVERSAMPLENR, 81},
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{715*OVERSAMPLENR, 79},
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{732*OVERSAMPLENR, 77},
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{749*OVERSAMPLENR, 75},
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{766*OVERSAMPLENR, 72},
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{783*OVERSAMPLENR, 70},
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{800*OVERSAMPLENR, 67},
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{817*OVERSAMPLENR, 64},
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{834*OVERSAMPLENR, 61},
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{851*OVERSAMPLENR, 58},
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{868*OVERSAMPLENR, 55},
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{885*OVERSAMPLENR, 52},
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{902*OVERSAMPLENR, 48},
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{919*OVERSAMPLENR, 44},
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{936*OVERSAMPLENR, 40},
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{953*OVERSAMPLENR, 34},
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{970*OVERSAMPLENR, 28},
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{987*OVERSAMPLENR, 20},
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{1004*OVERSAMPLENR, 8},
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{1021*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 == 6) || (THERMISTORHEATER_1 == 6) || (THERMISTORHEATER_2 == 6) || (THERMISTORBED == 6) // 100k Epcos thermistor
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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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const short temptable_6[][2] PROGMEM = {
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{28*OVERSAMPLENR, 250},
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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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{31*OVERSAMPLENR, 245},
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{35*OVERSAMPLENR, 240},
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{35*OVERSAMPLENR, 240},
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{39*OVERSAMPLENR, 235},
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{39*OVERSAMPLENR, 235},
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@ -264,7 +253,8 @@ 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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#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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const short temptable_7[][2] PROGMEM = {
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{46*OVERSAMPLENR, 270},
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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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{50*OVERSAMPLENR, 265},
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{54*OVERSAMPLENR, 260},
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{54*OVERSAMPLENR, 260},
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{58*OVERSAMPLENR, 255},
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{58*OVERSAMPLENR, 255},
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@ -321,6 +311,150 @@ const short temptable_7[][2] PROGMEM = {
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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 == 51) || (THERMISTORHEATER_1 == 51) || (THERMISTORHEATER_2 == 51) || (THERMISTORBED == 51)
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// 100k EPCOS (WITH 1kohm RESISTOR FOR PULLUP, R9 ON SANGUINOLOLU! NOT FOR 4.7kohm PULLUP! THIS IS NOT NORMAL!)
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// Verified by linagee.
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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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{190*OVERSAMPLENR, 250}, //top rating 250C
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{203*OVERSAMPLENR, 245},
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{217*OVERSAMPLENR, 240},
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{232*OVERSAMPLENR, 235},
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{248*OVERSAMPLENR, 230},
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{265*OVERSAMPLENR, 225},
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{283*OVERSAMPLENR, 220},
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{302*OVERSAMPLENR, 215},
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{322*OVERSAMPLENR, 210},
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{344*OVERSAMPLENR, 205},
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{366*OVERSAMPLENR, 200},
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{390*OVERSAMPLENR, 195},
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{415*OVERSAMPLENR, 190},
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{440*OVERSAMPLENR, 185},
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{467*OVERSAMPLENR, 180},
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{494*OVERSAMPLENR, 175},
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{522*OVERSAMPLENR, 170},
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{551*OVERSAMPLENR, 165},
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{580*OVERSAMPLENR, 160},
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{609*OVERSAMPLENR, 155},
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{638*OVERSAMPLENR, 150},
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{666*OVERSAMPLENR, 145},
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{695*OVERSAMPLENR, 140},
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{722*OVERSAMPLENR, 135},
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{749*OVERSAMPLENR, 130},
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{775*OVERSAMPLENR, 125},
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{800*OVERSAMPLENR, 120},
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{823*OVERSAMPLENR, 115},
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{845*OVERSAMPLENR, 110},
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{865*OVERSAMPLENR, 105},
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{884*OVERSAMPLENR, 100},
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{901*OVERSAMPLENR, 95},
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{917*OVERSAMPLENR, 90},
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{932*OVERSAMPLENR, 85},
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{944*OVERSAMPLENR, 80},
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{956*OVERSAMPLENR, 75},
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{966*OVERSAMPLENR, 70},
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{975*OVERSAMPLENR, 65},
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{982*OVERSAMPLENR, 60},
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{989*OVERSAMPLENR, 55},
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{995*OVERSAMPLENR, 50},
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{1000*OVERSAMPLENR, 45},
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{1004*OVERSAMPLENR, 40},
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{1007*OVERSAMPLENR, 35},
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{1010*OVERSAMPLENR, 30},
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{1013*OVERSAMPLENR, 25},
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{1015*OVERSAMPLENR, 20},
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{1017*OVERSAMPLENR, 15},
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{1018*OVERSAMPLENR, 10},
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{1019*OVERSAMPLENR, 5},
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{1020*OVERSAMPLENR, 0},
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{1021*OVERSAMPLENR, -5}
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};
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#endif
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#if (THERMISTORHEATER_0 == 52) || (THERMISTORHEATER_1 == 52) || (THERMISTORHEATER_2 == 52) || (THERMISTORBED == 52)
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// 200k ATC Semitec 204GT-2 (WITH 1kohm RESISTOR FOR PULLUP, R9 ON SANGUINOLOLU! NOT FOR 4.7kohm PULLUP! THIS IS NOT NORMAL!)
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||||||
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// Verified by linagee. Source: http://shop.arcol.hu/static/datasheets/thermistors.pdf
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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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{125*OVERSAMPLENR, 300}, //top rating 300C
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{142*OVERSAMPLENR, 290},
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{162*OVERSAMPLENR, 280},
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{185*OVERSAMPLENR, 270},
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{211*OVERSAMPLENR, 260},
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{240*OVERSAMPLENR, 250},
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{274*OVERSAMPLENR, 240},
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{312*OVERSAMPLENR, 230},
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{355*OVERSAMPLENR, 220},
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{401*OVERSAMPLENR, 210},
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{452*OVERSAMPLENR, 200},
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{506*OVERSAMPLENR, 190},
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{563*OVERSAMPLENR, 180},
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{620*OVERSAMPLENR, 170},
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{677*OVERSAMPLENR, 160},
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{732*OVERSAMPLENR, 150},
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{783*OVERSAMPLENR, 140},
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{830*OVERSAMPLENR, 130},
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{871*OVERSAMPLENR, 120},
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{906*OVERSAMPLENR, 110},
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{935*OVERSAMPLENR, 100},
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||||||
|
{958*OVERSAMPLENR, 90},
|
||||||
|
{976*OVERSAMPLENR, 80},
|
||||||
|
{990*OVERSAMPLENR, 70},
|
||||||
|
{1000*OVERSAMPLENR, 60},
|
||||||
|
{1008*OVERSAMPLENR, 50},
|
||||||
|
{1013*OVERSAMPLENR, 40},
|
||||||
|
{1017*OVERSAMPLENR, 30},
|
||||||
|
{1019*OVERSAMPLENR, 20},
|
||||||
|
{1021*OVERSAMPLENR, 10},
|
||||||
|
{1022*OVERSAMPLENR, 0}
|
||||||
|
};
|
||||||
|
#endif
|
||||||
|
|
||||||
|
#if (THERMISTORHEATER_0 == 55) || (THERMISTORHEATER_1 == 55) || (THERMISTORHEATER_2 == 55) || (THERMISTORBED == 55)
|
||||||
|
// 100k ATC Semitec 104GT-2 (Used on ParCan) (WITH 1kohm RESISTOR FOR PULLUP, R9 ON SANGUINOLOLU! NOT FOR 4.7kohm PULLUP! THIS IS NOT NORMAL!)
|
||||||
|
// Verified by linagee. Source: http://shop.arcol.hu/static/datasheets/thermistors.pdf
|
||||||
|
// Calculated using 1kohm pullup, voltage divider math, and manufacturer provided temp/resistance
|
||||||
|
// Advantage: More resolution and better linearity from 150C to 200C
|
||||||
|
const short temptable_52[][2] PROGMEM = {
|
||||||
|
{1*OVERSAMPLENR, 500},
|
||||||
|
{76*OVERSAMPLENR, 300},
|
||||||
|
{87*OVERSAMPLENR, 290},
|
||||||
|
{100*OVERSAMPLENR, 280},
|
||||||
|
{114*OVERSAMPLENR, 270},
|
||||||
|
{131*OVERSAMPLENR, 260},
|
||||||
|
{152*OVERSAMPLENR, 250},
|
||||||
|
{175*OVERSAMPLENR, 240},
|
||||||
|
{202*OVERSAMPLENR, 230},
|
||||||
|
{234*OVERSAMPLENR, 220},
|
||||||
|
{271*OVERSAMPLENR, 210},
|
||||||
|
{312*OVERSAMPLENR, 200},
|
||||||
|
{359*OVERSAMPLENR, 190},
|
||||||
|
{411*OVERSAMPLENR, 180},
|
||||||
|
{467*OVERSAMPLENR, 170},
|
||||||
|
{527*OVERSAMPLENR, 160},
|
||||||
|
{590*OVERSAMPLENR, 150},
|
||||||
|
{652*OVERSAMPLENR, 140},
|
||||||
|
{713*OVERSAMPLENR, 130},
|
||||||
|
{770*OVERSAMPLENR, 120},
|
||||||
|
{822*OVERSAMPLENR, 110},
|
||||||
|
{867*OVERSAMPLENR, 100},
|
||||||
|
{905*OVERSAMPLENR, 90},
|
||||||
|
{936*OVERSAMPLENR, 80},
|
||||||
|
{961*OVERSAMPLENR, 70},
|
||||||
|
{979*OVERSAMPLENR, 60},
|
||||||
|
{993*OVERSAMPLENR, 50},
|
||||||
|
{1003*OVERSAMPLENR, 40},
|
||||||
|
{1010*OVERSAMPLENR, 30},
|
||||||
|
{1015*OVERSAMPLENR, 20},
|
||||||
|
{1018*OVERSAMPLENR, 10},
|
||||||
|
{1020*OVERSAMPLENR, 0}
|
||||||
|
};
|
||||||
|
#endif
|
||||||
|
|
||||||
#define _TT_NAME(_N) temptable_ ## _N
|
#define _TT_NAME(_N) temptable_ ## _N
|
||||||
#define TT_NAME(_N) _TT_NAME(_N)
|
#define TT_NAME(_N) _TT_NAME(_N)
|
||||||
|
|
||||||
|
|
Reference in a new issue