(Example) Mass of transferred object: 300 kg, Transfer speed: 20 m/min Friction coefficient: = 0.1 Mass of transferred object m [kg] Friction coefficient RS2H50-30 The graphs indicate the values at normal temperature. (20 to 25C) = 0.1 = 0.2 500 500 Mass of transferred object m [kg] Mass of transferred object m [kg] 50 Operating range Upper limit 400 400 Upper limit 50 Operating range
HRZ x V x C x iT it m x C x (T0 Tt) it Q = = HRZD 1 x 150 x 4.186 x 103 x 10 900 = = 6977 [J/s] 7.0 [kW] m x C x (T0 Tt) it x 860 x V x 60 x C x iT it x 860 HRW Q = = Cooling capacity = Considering a safety factor of 20%, 7.0 [kW] x 1.2 = HECR 1 x 150 x 60 x 1.0 x 103 x 10 15 x 860 8.4 [kW] = HEC Q x t: Heat capacity [kJ] Thermo-chiller Water bath 6977 [W] = 7.0 [kW] 20C HEB Cooling
[L] Cooled substance specific heat C : 1.0 x 103 [cal/(kgfC)] Cooled substance temperature when cooling begins T0 : 30 [C] Cooled substance temperature after t hour Tt : 20 [C] Cooling temperature difference iT : 10 [C] (= T0 Tt) Cooling time it : 15 [min] Conversion factor: hours to minutes : 60 [min/h] Conversion factor: kcal/h to kW : 860 [(cal/h)/W] * Refer to the following for the
Q = qm x C x (T2 T1) x qv x C X T 1 x 35 x 4.186 x 103 x 3.0 60 = = 60 qm x C x (T2 T1) 860 Q = = 7325 [J/s] 7325 [W] = 7.3 [kW] x qv x 60 x C x T = Cooling capacity = Considering a safety factor of 20%, 7.3 [kW] x 1.2 = 860 8.8 [kW] 1 x 35 x 60 x 1.0 x 103 x 3.0 860 = Thermo-chiller qv: Circulating fluid flow rate Q: Heat generation amount T2: Return temperature Users equipment 7325
C A D Model D C Model D C Mounting bolt (mm) Mounting bolt (mm) M18 x 125 l M18 x 135 l 125 135 C (D) Q2B18010DC C (D) Q2B20010DC M18 x 135 l M18 x 145 l 135 145 C (D) Q2B18020DC C (D) Q2B20020DC M18 x 145 l M18 x 155 l 145 155 C (D) Q2B18030DC C (D) Q2B20030DC M18 x 155 l M18 x 165 l 36 155 39 165 C (D) Q2B18040DC C (D) Q2B20040DC M18 x 165 l M18 x 175 l 165 175 C (D) Q2B18050DC C (D) Q2B20050DC
Conformed standard JIS C 4524, JIS C 4525, IEC 947-5-2, NECA 0402 Cable length Connector model Impact resistance 300 m/s2 S M L A B D 0.5 m 1.0 m 3.0 m M83 pin M84 pin M124 pin Enclosure IP-67 (IEC529 standard) Insulation resistance 100 M or more at 500 M VDC Note) Type D is available for the D-P5DW type only. Note) L is available for the D-P5DW type only.
Conformed standard JIS C 4524, JIS C 4525, IEC 947-5-2, NECA 0402 Cable length Connector model Impact resistance 300 m/s2 S M L A B D 0.5 m 1.0 m 3.0 m M83 pin M84 pin M124 pin Enclosure IP-67 (IEC529 standard) Insulation resistance 100 M or more at 500 M VDC Note) Type D is available for the D-P5DW type only. Note) L is available for the D-P5DW type only.
Conformed standard JIS C 4524, JIS C 4525, IEC 947-5-2, NECA 0402 Cable length Connector model Impact resistance 300 m/s2 S M L A B D 0.5 m 1.0 m 3.0 m M83 pin M84 pin M124 pin Enclosure IP-67 (IEC529 standard) Insulation resistance 100 M or more at 500 M VDC Note) Type D is available for the D-P5DW type only. Note) L is available for the D-P5DW type only.
Conformed standard JIS C 4524, JIS C 4525, IEC 947-5-2, NECA 0402 Cable length Connector model Impact resistance 300 m/s2 S M L A B D 0.5 m 1.0 m 3.0 m M83 pin M84 pin M124 pin Enclosure IP-67 (IEC529 standard) Insulation resistance 100 M or more at 500 M VDC Note) Type D is available for the D-P5DW type only. Note) L is available for the D-P5DW type only.
Conformed standard JIS C 4524, JIS C 4525, IEC 947-5-2, NECA 0402 Cable length Connector model MHW Impact resistance 300 m/s2 S M L A B D 0.5 m 1.0 m 3.0 m M83 pin M84 pin M124 pin Enclosure IP-67 (IEC529 standard) MRHQ Insulation resistance 100 M or more at 500 M VDC Note) Type D is available for the D-P5DW type only. Note) L is available for the D-P5DW type only. Misc.
Conformed standard JIS C 4524, JIS C 4525, IEC 947-5-2, NECA 0402 Cable length Connector model MHW Impact resistance 300 m/s2 S M L A B D 0.5 m 1.0 m 3.0 m M83 pin M84 pin M124 pin Enclosure IP-67 (IEC529 standard) MRHQ Insulation resistance 100 M or more at 500 M VDC Note) Type D is available for the D-P5DW type only. Note) L is available for the D-P5DW type only. Misc.
Mep Mep = 1/3 We x 9.8 (L3 + C) Examine Mep.
VDC Mega) between external terminal and case 10 to 500 Hz with a 1.5 mm amplitude or 98 m/s2 acceleration, whichever is smaller.
Specifications/Models IDU3D IDU4D IDU6D IDU8D Model Specification Air flow rate Note 2) 50Hz 60Hz 300 350 430 500 640 750 850 1000 Electrical Specifications Operating Ranges Rated Conditions l/min (ANR) Operating pressure (MPa) Inlet air temperature (C) Ambient temperature (C) Pressure dew point (C) Working fluid Inlet air temperature (C) Inlet air pressure (MPa) Ambient temperature (C)
Nil C Thread type Nil N F Rc NPT G The cable and connector are shipped unassembled. Lead wire (Refer to page 322.)
consumption (W) Max. operating frequency (Hz) A 80 1200 B 40 1000 C 10 550 D 4 350 E Note) Two mounting screws (M3 x 0.5) and a gasket are included.
Indication Item Setting and selection Setting range [High] Set the temperature range of the circulating fluid SP. +0.1 C to +10.0 C +1.0 C Upper/lower temperature limit (1) High/ Low [Low] Set the temperature range of the circulating fluid SP. -0.1 C to -10.0 C -1.0 C TEMP READY signal is output when the set time has passed after the circulating fluid temperature rises/drops within the
A A a B B s j C f g t C0.5 C0.2 C0.2 b d e 45 45 Section A-A p k C0.5 45 C n h i l (d) C0.5 q m O Section B-B r (l) View C (mm) +0.2 0 l i o j k m n p q r s t b e g a c d f h Model 0 0.2 0.05 0.15 + 0.1 0 +0.2 0 3.5 +0.013 +0.001 CXS 6 2.75 M2.5 x 0.45 4.5 3.5 4.75 C0.5 2.8 0.5 4 3.5 3 3.5 16 0.1 M3 x 0.5 4 1 5.5 6 +0.2 0 0.05 0.15 0 0.2 + 0.1 0 +0.2 0 5 +0.016 +0.001 CXS10 4 M3 x 0.5 8 5
100, 200, 300, 400, 500, 600 200, 300, 400, 500, 600, 700, 800 Specifications Operating pressure 0 to 0.7MPa Proof pressure 1.05MPa Ambient and fluid temperature 5 to 50C Fluid Turbine oil (40 to 100cSt) Converter standard effective oil level stroke/effective volume (cm3) Nominal size (mm) Limited flow* (l/min) Standard effective oil level stroke (mm) 100 200 300 400 500 600 700 800 50 63