Length 3 3 x 1 6 600 mm 10 1000 mm 3A 1/8" x 1/16" 4 4 x 2 4A 5/32" x 1/32" 6 6 x 4 6A 1/4" x 1/8" 100 mm Specifications Model LPV21 LPV22 Valve type N.C. N.O.
[mm] Weight [g] With a rib X Y Nylon Urethane M L1 Rib 3.2 1/8 KQ2L23-01mS1 10 7.1 6.7 9.5 10 14.5 16.7 17.2 13.3 3 2.5 2.5 4.6 1/4 KQ2L23-02mS1 14 7.1 6.7 9.5 10 14.5 21.2 20.1 13.3 3 2.5 2.5 14.1 D1 4 1/8 KQ2L04-01mS1 10 8.2 7.7 10 10 14.8 16.2 17.2 13.3 4.6 3.3 3 4.8 V 1/4 KQ2L04-02mS1 14 8.2 7.7 10 10 14.8 21.7 21.1 13.3 4.6 3.3 3 14.3 V D2 A L2 6 1/8 KQ2L06-01mS1 10 10.4 9.7 12 10
-06-06-08 ZH13DS-08-10-10 ZH13DL-08-10-10 ZH15DS-10-12-12 ZH15DL-10-12-12 12.8 6 24 21 7.8 6 17 24 12.8 6 24 21 6 17 24 12.8 6 24 22 6 17 24 12.8 6 24 22 6 17 24 13.7 6 26 24.5 8 20 28 13.7 6 26 24.5 8 20 28 15.3 10 28 27 10 22 30 15.3 10 28 27 10 22 30 Applicable tubing diameter J 7.8 7.8 7.8 9.6 9.6 10.7 10.7 ZH ZU Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco,
V] 10 [V] 10 [pulse] 10 [pulse] 0 0 10 [pulse] 10 [pulse] -10 [V] -10 [V] CW direction CW direction App. 20 APPENDIX Setting value Output item Description Setting value Output item Description 0A Feedback position (Note 1, 2, 3) (10 V/1 Mpulse) 0B Feedback position (Note 1, 2, 3) (10 V/10 Mpulse) CCW direction CCW direction 10 [V] 10 [V] 1 [Mpulse] 10 [Mpulse] 0 0 1 [Mpulse] 10 [Mpulse] -
) 10 [V] 10 [V] 10 [pulse] 10 [pulse] 0 0 10 [pulse] 10 [pulse] -10 [V] -10 [V] CW CW 21 CCW CCW 0A (123) (10V/1Mpulses) 0B (123) (10V/10Mpulses) 10 [V] 10 [V] 1 [Mpulse] 10 [Mpulse] 0 0 1 [Mpulse] 10 [Mpulse] -10 [V] -10 [V] CW CW CCW 0C (123) (10V/100Mpulses) 0D 8[V] 10 [V] 100 [Mpulse] 0 400[V] 0 100 [Mpulse] -10 [V] CW CCW CCW 0E 2(3) 15 (345) (10V/10 pulses) 8 [V] 10
CRQ2X MSQX MRQ Size: 10 to 200 B A Magnet Operating range at proper mounting position (Lm/2) Most sensitive position Operating range of single auto switch Lm Reed auto switch Solid state auto switch D-M9(V), D-M9W(V) D-A9, D-A9V Size Rotation Hysteresis angle Hysteresis angle Operating angle m 10 10 10 10 10 10 10 Operating angle m 10 10 10 10 10 10 10 A B A B 90 80 65 50 45 40 35 55 45
[mm] *1 D1 Weight [g] With a rib X (X) Y Nylon Urethane Applicable tubing M L1 Oval type Round type 4 1/8 KQ2L04-01GS1 10 8.2 7.7 10 10 14.8 16.2 17.2 13.3 4.6 3.3 3 4.8 1/4 KQ2L04-02GS1 14 8.2 7.7 10 10 14.8 21.7 21.1 13.3 4.6 3.3 3 14.3 Rib 4, 6 8 to 16 6 1/8 KQ2L06-01GS1 10 10.4 9.7 12 10 15.5 17.3 19.4 13.3 11.4 9 4.5 5.2 1/4 KQ2L06-02GS1 14 10.4 9.7 12 10 15.5 22.8 23.3 13.3 11.4
set unit Note 1) Accumulated pulse flow rate exchange value (Pulse width: 50 ms) Note 1) 0.1 l/pulse 0.5 l/pulse 1 l/pulse 2 l/pulse 5 l/pulse l/min, CFM x 10-2 l, ft3 x 10-2 l/min, CFM x 10-1 l, ft3 x 10-1 Display units Real-time flow rate Accumulated flow Note 1, 2) 0 to 9 l, 0 to 9 ft3 x 10-2 0 to 9 l, 0 to 9 ft3 x 10-1 Accumulated flow range Note 1) Power supply voltage Current consumption
535 1 5 10 20 50 1 5 10 20 50 16-11-13 10 For details about certified products conforming to international standards, visit us at www.smcworld.com.
50 100 200 500 10 50 100 200 500 1.1 5.4 11 21 54 10.7 53.5 107 214 535 1.1 5.4 11 21 54 10.7 53.5 107 214 535 1 5 10 20 50 1 5 10 20 50 8 For Air Digital Flow Switch/High Flow Rate Type Series PF2A Refer to www.smcworld.com for details of products compatible with overseas standards.
P.5-10 It indicates the set temperature. (10) Circulating fluid set temperature P.5-10 CH2 Press the numeric section to change the set temperature. (11) Circulating fluid discharge pressure It indicates the discharge pressure.
Outlet: 60 Hz Outlet: 60 Hz 20 20 0.1 0.1 10 10 Outlet: 50 Hz Outlet: 50 Hz Return port Allowable operating range Return port Allowable operating range 0 0 0 5 10 15 20 25 30 0 5 10 15 20 25 30 Circulating fluid flow rate [L/min] Circulating fluid flow rate [L/min] 202 Thermo-chiller Basic Type HRSE Series Dimensions HRSE012/018/024-A-10/20/23 Ventilation air outlet Ventilation air inlet
Model/Valve Specifications Av x 10-6m2 Cv converted C [dm 3/(sbar)] b Cv Water, Oil, Steam Air Flow characteristics Maximum operating pressure differential (MPa) Min. operating pressure differential (MPa) 10 10 15 10 15 20 Connection Orifice Max. system pressure (MPa) Weight (g) Model Water AC DC AC DC AC DC AC Air Oil Steam size (mm) Thread VXP2130-02 0.7 0.7 1.0 0.7 1.0 1.0 1 4 740 500
Model/Valve Specifications Av x 10-6m2 Cv converted C [dm 3/(sbar)] b Cv Water, Oil, Steam Air Flow characteristics Maximum operating pressure differential (MPa) Min. operating pressure differential (MPa) 10 10 15 10 15 20 Connection Orifice Max. system pressure (MPa) Weight (g) Model Water AC DC AC DC AC DC AC Air Oil Steam size (mm) Thread VXP2130-02 0.7 0.7 1.0 0.7 1.0 1.0 1 4 740 500
-m-m PFA750-m-m Dry air, N2 Heater type 1 to 10l/min (0.04 to 0.35SCFM) 0.1l/min (0.004SCFM) 5 to 50l/min (0.18 to 1.77SCFM) 0.5l/min (0.02SCFM) l/min, CFM x 10-2 Instantaneous flow rate Cumulative flow rate Display units l, ft3 x 10-1 0 to 0.5MPa (0 to 72psi) 1.0MPa (145psi) 3kPa (50l/min) [0.44psi (1.77SCFM)] 0 to 9l (0 to 35,300 ft3) 0 to 50C (32 to 122F) with no condensation 5% F.S.
The allowable voltage fluctuation rate is 10% of the rated voltage value for both AC and DC.
(packaged together) 50 80 650 F 40 550 G 10 300 H 4 200 J Filter (IN port) Nil Without filter F With filter Note) 100 Note) Flow reduction rate 50 L/min: 5% or less 100 L/min: 5 to 10% 150 L/min: 10 to 15% 80 600 K 40 500 L 10 250 M 4 150 150 Specifications Flow rate (L/min) [at 0.25 MPa] 50 100 150 Power consumption (W) 80 40 10 4 80 40 10 4 80 40 10 4 Type of actuation 2-position 2 port
15 30 35 10 18 21 35 35 35 10 22 35 35 1.2 1.9 2.1 2.1 1.8 2.1 2.1 2.1 0.5 0.8 1.8 2.1 0.5 1.0 1.2 1.9 1.9 2.1 0.5 1.3 1.8 2.1 0.4 0.4 0.5 0.5 0.5 0.5 0.5 0.5 0.4 0.4 0.5 0.5 0.4 0.4 0.4 0.4 0.4 0.5 0.4 0.5 0.5 0.5 R1/8 R1/4 R3/8 R1/2 Rc1/8 Rc1/4 Rc3/8 Rc1/2 6 (1/4") 8 (1/4") 10 (3/8") 12 (1/2") 5/8 6/9 6.5/10 8/12 8.5/12.5 11/16 6 8 10 12 4.2 7.0 7.0 7.0 6.0 7.0 7.0 7.0 2.0 3.0 6.0 7.0
The allowable voltage fluctuation rate is 10% of the rated voltage value for both AC and DC. When the ambient temperature is 20C 5C and rated voltage is applied. Changing coils from AC to DC and vice versa is impossible, because of different core shapes.