60 3.5 2.8 2.3 1.9 1.6 1.4 1.3 70 4.4 3.8 3.2 2.8 2.3 2 1.8 80 6.5 5.2 4.2 3.6 3.1 2.7 2.4 90 8.5 6.8 5.5 4.7 4 3.5 3.1 100 11.4 8.6 7 5.8 5 4.4 3.9 110 14.2 11.2 8.8 7.2 6.2 5.4 4.9 1" ID 30 0.2 0.2 0.1 0.1 0.1 0.1 0.1 40 0.3 0.3 0.2 0.2 0.2 0.2 0.2 50 0.5 0.4 0.4 0.3 0.3 0.2 0.2 60 0.8 0.6 0.5 0.5 0.4 0.4 0.3 70 1.1 0.8 0.7 0.7 0.6 0.5 0.4 80 1.5 1.2 1 0.8 0.7 0.6 0.5 90 2 1 1.3 1.1 0.9
YES Hysteresis mode OFF n_1 n_2 Large pressure and vacuum pressure [n] H (Fix hysteresis) = 3 digits H H ON Window comparator mode NO OFF n_1 n_2 Large pressure and vacuum pressure 16-2-30 7 Series ZSE50F/ISE50 High Precision, Digital Pressure Switch for General Fluids Example of Internal Circuit and Wiring ZSE F/ISE --22(L)-(M) 50 60 50 60 ZSE F/ISE --30(L)-(M) 50 60 50 60 With analog
ZZ StrO ke ~ 131 71 339 65 12.5 80 ~ 148 72 358 65 14.0 81 367 P PG PH PL PW S W X V oLD LH LS LT LX LV r 40 7/16 20 27 50 30 63 % 16 31 80 37 81 51 244 43 11.2 59 F 90 58 266 52 11.2 66 ~ 'f, 106 58 290 52 11 .2 66 'I, 42 11 20 45 153 8 27 13 9 40 207 3.2 42 70 'I, 46 10 21 50 168 0 27 13 9 45 222 3.2 50 80 'I, 48.5 13 23 60 182 0 34 16 11.5 50 250 3.2 59 93 \I, 55 15 23 70 208 0 44 16
Same side Different sides Different sides Same side D-C7 D-A7/A80 D-A73C/A80C D-A7H D-A80H D-A79W 90 55 50 15 10 5 10 35 D-C80 D-C73C D-C80C D-H7C D-H7 D-H7W D-H7BAL D-H7NF 5 10 45 105 65 65 15 10 10 15 40 D-F7 D-J79 5 5 45 105 60 60 15 10 D-F7V 5 5 30 D-J79C D-F7W D-J79W 10 15 55 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588
Example; it takes approximately 8.8 seconds when the ullimate vacuum pressure is -89.kPa (25.9 in-Hg) -60 (23.21 6 -zo tzo et ,9 -oo 1rz r; 9.
Example; it takes approximately 8.8 seconds when the ullimate vacuum pressure is -89.kPa (25.9 in-Hg). -60 (23.21 6 -zo tzo et ,9 -oo 1rz r; 9.
per minute 1 60 = x x Reference life cycles Cycles per minute 1 8 (daily operating time) Service life 1 60 = 1 8 50,000,000 50 x x 2083 days = 27 Process Pump Common Precautions 5 Be sure to read before handling.
80 Load (N) 20 40 60 80 Load (N) 20 40 60 100 Load (N) 12 12 12 L = 100 mm L = 100 mm L = 100 mm MXP12-15 MXP12-25 MXP12-15 MXP12-25 0.05 Table displacement amount (mm) Table displacement amount (mm) Table displacement amount (mm) 0.04 0.08 MXP12-15 MXP12-25 MXP12-15 MXP12-25 MXP12-15 MXP12-25 MXP12-15 MXP12-25 0.04 0.03 0.06 0.03 0.04 0.02 0.02 0.01 0.02 0.01 0 50 100 150 Load (N) 0 50
Length 18 19 20.5 23 Applicable tube model TUS0425 TUS0604 TUS0805 TUS1065 TUS1208 Tube drawing strenght N Without inner sleeve With inner sleeve (Using One-touch fitting) TJ-0425 TJ-0604 TJ-0805 TJ-1065 15 60 60 85 110 80 230 250 300 480 Note1) Not clear but opaque due to material.
It is already built-in to the rectifier circuit. 2 200 VAC 50/60 Hz 110 VAC 50/60 Hz [115 VAC 50/60 Hz] 3 Electrical entry 4 220 VAC 50/60 Hz [230 VAC 50/60 Hz] D With connector DIN terminal DO Without connector DC specifications of type D and DO is only available with 12 and 24 VDC. Power saving circuit is not available in the case of D or DO type.
LH 0.2 C B W W D E d d D E LY MM MM 4-LD Width across flats G Width across flats G LT LT NA NA Y X Y X LX B S + Stroke LS + Stroke ZZ + 2 strokes (mm) Bore size (mm) LD LH LS LT LX LY A a B B C d E F G GA J K M MA MM NA D H 0 -0.062 0 -0.062 0 -0.074 0 -0.074 0 -0.074 0 -0.074 0 -0.087 0 -0.018 0 -0.021 0 -0.021 0 -0.021 0 -0.025 0 -0.025 0 -0.025 40 9 47 168 8 44 77 23 10 60 60 44 18 45
) 54.5 40 55.0 50 Set point 60 55.5 70 56.0 80 56.5 90 100 0 20 40 60 80 100 120 57.0 100 95 90 85 80 75 70 65 60 Flow rate (l/min (ANR)) VAC side pressure (kPa) IRV3000 IRV3000 0 53.0 10 53.5 20 54.0 SET side pressure (kPa) 30 Set pressure (kPa) 54.5 40 55.0 50 Set point 60 55.5 70 56.0 80 56.5 90 57.0 100 95 90 85 80 75 70 65 60 100 0 20 40 60 80 100 120 140 160 VAC side pressure (kPa)
Refer to page 16-11-10. 16-11-28 25 Series PF2W Digital Flow Switch, High Temperature Fluid Type For Water Dimensions: Integrated Display Type for Water Internal circuit and wiring example to are terminal numbers. 74 120 Brown 1.6 23 60 Load 1 OUT1 Main circuit 4 Load Black OUT2 2 ZSE ISE 12 to 24 VDC FLOW SWITCH + U P White 3 SET 60 50 34 Blue PSE OUT2 OUT1 PF2W7T--27(-M) DOWN FOR WATER
Use 2 port valve VNH33. 4.2-33 VNH Dimensions Dimensions (mm) Model Main port 2 port 3 port Pilot port H I A C B D E F G 3 8 3 8 Rc(PT) 1 8 2-Rc(PT) 2-Rc 3-Rc(PT) 3-Rc 50 60 79 90 77 95.5 111 119 60 80 100 115 235.5 265 300 319.5 60 77 96 113 46 60 76 85 34 40 50 60 24 36 41 50 135 164.5 200 219 VNH1 -10A VNH2 -15A VNH3 -20A VNH4 -25A A B A B A B A B 1 2 3-Rc 3 4 3-Rc1 Rc1 4 Rc1 4 Rc1 8 1
Q = (V x 60) /T1 + QL = (0.0031 x 60) /0.3 + 0 = 0.62 L From the formula on the front matter 8, the maximum suction flow rate Qmax is Qmax = (2 to 3) x Q = (2 to 3) x 0.62 = 1.24 to 1.86 L/min (ANR) According to the maximum suction flow rate of the vacuum ejector, a nozzle with a 0.5 diameter can be used.
Accel 1 to 60 Set the acceleration required to reach the travel speed (unit: mm/s2). (Acceleration) The acceleration setting is enabled when [Speed Entry Method] has been selected in the Basic Parameter Set up window in the Step Data Input Method section. Decel 1 to 60 Set the deceleration required to reach the travel speed (unit: mm/s2).
Mounting bolt C D Mounting Bolt Size for NCDQ8B056 to 250(With Auto Switch) (Inch) Model C D Bolt size Model C D Bolt size NCDQ8B056-025 037 050 062 075 087 100 125 150 175 200 250 300 350 400 NCDQ8B075-025 037 050 062 075 087 100 125 150 175 200 250 300 350 400 NCDQ8B106-025 037 050 062 075 087 100 125 150 175 200 250 300 350 400 NCDQ8B150-025 037 050 062 075 087 100 125 150 175 200 250
Martensitic stainless steel used for the body and guide block. 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 150 160 170 180 190 Stroke adjuster 10 Three types available: Rubber stopper, Metal stopper and Shock absorber. 20 Shown with shock absorber 30 40 50 60 70 80 90 Highly flexible piping methods 100 Auto switch capable Two types can be selected, side and axial.
.: 120C [248F]) Uniform baking temperature Excellent thermal conductivity results in a uniform temperature for the entire valve body and a marked decrease in the condensation of gases inside the valve. 3, 4, 5 3 120 120 Comparison with KF25 flange 100 100 Body 1 4 Temperature (C) Body 2 80 5 2 Temperature (C) Body 3 1 1, 2 Bellows 60 30 0 60 30 0 Time (minutes) Time (minutes) Valve F=(1.8xC
.: 120C [248F]) Uniform baking temperature Excellent thermal conductivity results in a uniform temperature for the entire valve body and a marked decrease in the condensation of gases inside the valve. 3, 4, 5 3 120 120 Comparison with KF25 flange 100 100 Body 1 4 Temperature (C) Body 2 80 5 2 Temperature (C) Body 3 1 1, 2 Bellows 60 30 0 60 30 0 Time (minutes) Time (minutes) Valve F=(1.8xC