THERMO CON, RACK MOUNT, OTHERS, HEC THERMO CONTROLLER, 1X, HEC OTHER SIZE(MISC./OTHER)
THERMO CON, RACK MOUNT, THERMO CONTROLLER, PELTIER TYPE
RACK MOUNTED PELTIER CHILLER, THERMO CONTROLLER, PELTIER TYPE, 701, 33 lb
THERMO CONTROLLER, PELTIER TYPE. RACK MOUNTED PELTIER CHILLER. 33.00000 lb. 701.
A C B Applicable model Dimensions [mm] A B C HECR002-A5-E 14 230 35 HECR004-A5-E 45 HECR006-A5-E HECR008-A5-E 44 HECR010-A2-E HECR008-W5-E 46 HECR012-W2-E 310 13 400 15 Option symbol F With Flow Switch F HECR Applicable model HECR002-A5-F HECR004-A5-F HECR006-A5-F HECR008-A5-F HECR010-A2-F HECR008-W5-F HECR012-W2-F With flow switch This is an ON/OFF switch detecting low levels of the circulating
Radiating method Pipe thread A Air-cooled Nil Rc N NPT thread Power supply 2 200 to 240 VAC HECR010 5 100 to 240 VAC HECR002, 004, 006, 008 Specications Model HECR002-A HECR004-A HECR006-A HECR008-A HECR010-A Cooling method Thermoelectric device (Thermo-module) Radiating method Forced air cooling Control method Cooling/Heating automatic shift PID control Ambient temperature/humidity 10 to
A1 A1 A2 A1 A2 A1 A2 A3 A1 A2 A3 A1 A2 AC10A-A AC20A-A 41.6 43.2 41.6 41.6 43.2 41.6 57 41.6 43.2 43.2 41.6 57 43.2 41.6 57 AC30A-A 55.1 57.2 55.1 55.1 57.2 55.1 74 55.1 57.2 57.2 55.1 74 57.2 55.1 74 AC40A-A 72.6 75.2 72.6 72.6 75.2 72.6 95 72.6 75.2 75.2 72.6 95 75.2 72.6 95 AC40A-06-A 77.6 77.6 80.2 77.6 102 Attachment Model S T V V1 SV SV1 TV TV1 A1 A1 A1 A2 A1 A2 A1 A2 A1 A2 A1 A2
A1 A2 B1 B2 Not required. Not required. Not required.
Please consult SMC when considering the necessity of the regeneration option. 0 6 4 2 Transfer load m (kg) 200 100 Maximum load Half load a=3000 a a=2000 Regeneration option model Regeneration option model Driver type Driver type L3 a=1000 Mey LEC-MR-RB-032 LEC-MR-RB-032 LEC-MR-RB-032 LEC-MR-RB-032 A1 A2 B1 B2 A1 A2 B1 B2 Not required. Not required. Not required.
74 95 A2 61 76 76 99 A3 43.2 57.2 57.2 75.2 A4 43.2 57.2 57.2 75.2 A1 41.6 55.1 55.1 72.6 A1 41.6 55.1 55.1 72.6 A2 43.2 57.2 57.2 75.2 A3 43.2 57.2 57.2 75.2 A2 61 76 76 99 A1 41.6 55.1 55.1 72.6 A1 41.6 55.1 55.1 72.6 77.6 A2 43.2 57.2 57.2 75.2 80.2 A1 41.6 55.1 55.1 72.6 A2 43.2 57.2 57.2 75.2 A3 57 74 74 95 A2 61 76 76 99 104 A1 41.6 55.1 55.1 72.6 77.6 A2 43.2 57.2 57.2
IN OUT IN OUT Bracket A1 A3 A2 A1 A4 K S T V KS KT KV KST A3 43 57 57 75 80 96 Attachment Model A1 41.5 55 55 72.5 77.5 93 A2 43 57 57 75 A3 43 57 57 75 A1 41.5 55 55 72.5 A1 41.5 55 55 72.5 A2 43 57 57 75 A1 41.5 55 55 72.5 A2 48 61 76 76 99 104 124 124 129 A2 43 57 57 75 80 96 A2 61 76 76 99 A2 61 76 76 99 A3 57 74 74 95 A2 43 57 57 75 A3 57 74 74 95 A3 43 57 57 75
KS KT KV KST A1 A2 A3 A1 A2 A1 A2 A1 A2 A3 A1 A2 A3 A1 A2 A3 A1 A2 A3 A4 A1 A2 A3 AC10-A 28 48.2 AC20-B 41.6 43.2 43.2 41.6 43.2 41.6 61 41.6 43.2 43.2 41.6 43.2 57 41.6 61 43.2 41.6 43.2 43.2 43.2 41.6 61 57 AC25-B 55.1 57.2 57.2 55.1 57.2 55.1 76 55.1 57.2 57.2 55.1 57.2 74 55.1 76 57.2 55.1 57.2 57.2 57.2 55.1 76 74 AC30-B 55.1 57.2 57.2 55.1 57.2 55.1 76 55.1 57.2 57.2 55.1 57.2 74 55.1
L5 A1 A2 D1 D1 T T Metric Size L4 L5 A1 A2 M Max.
L Speed: V [mm/s] a1 a2 T1 = V/a1 = 300/3000 = 0.1 [s], T3 = V/a2 = 300/3000 = 0.1 [s] Time [s] T = T1 + T2 + T3 + T4 [s] L 0.5 V (T1 + T3) V T1: Acceleration time and T3: Deceleration time can be obtained by the following equation.
. 1 2 3 Circuit Cable color U V W Red White Black Connector A2 terminal no.
. 1 2 3 Circuit Cable color U V W Red White Black Connector A2 terminal no.
L : Stroke [mm] V : Speed [mm/s] a1: Acceleration [mm/s2] a2: Deceleration [mm/s2] T1 and T3 can be obtained by the following equation. T1 = V/a1 [s] T3 = V/a2 [s] T1 = V/a1 = 300/3000 = 0.1 [s], The acceleration and deceleration values have upper limits depending on the workpiece mass and the duty ratio.
LEFS LEFB LEY LEYG LESYH LES LESH LEHF LER JXC51/61 JXC 1 a1 a a1 a2 b a2 a I = m1 + m2 3 a12 3 a22 I = m 12 a2 I = m 12 a2 I = m1 12 4a12 + b2 12 4a22 + b2 + m2 5. Thin rectangular plate (cuboid) Position of the rotation shaft: Passes through the center of gravity of the plate and perpendicular to the plate. (The same applies to thicker cuboids.) 6.
L5 A1 A2 D1 D1 T T Metric Size L4 L5 A1 A2 M Max.
T1 = V/a1 = 300/3000 = 0.1 [s], a1 a2 T3 = V/a2 = 300/3000 = 0.1 [s] T = T1 + T2 + T3 + T4 [s] Time [s] T2 = L 0.5V(T1 + T3) V T1: Acceleration time and T3: Deceleration time can be obtained by the following equation.