SMC Corporation of America
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Remove the gauge and balance the bridge circuit (P1 = P2) by adjusting the variable orifice (S3) via the adjustment knob. By moving the work piece away from the nozzle (S4) a pressure differential (P1 P2) is created. As soon as the work piece is moved within the detection range of the AirCatch Sensor the back pressure P2 increases.

Q=226S P(P2+0.1013) Sonic flow : P1+0.10131.89(P2+0.1013) Q=113S(P1+0.1013) Q : Flow rate [ /min(ANR)] S : Effective area (mm2) P : Pressure differential (P1-P2) [MPa] P1 : Upstream pressure [MPa] P2 : Downstream pressure [MPa] When the air temperature is different, multiply the flow rate calculated with the above formula by the following coefficient for compensation. -20 1.08 -10 0 10 30

How to Find the Flow Rate (at air temperature of 20C) Subsonic flow when P1 + 0.1013 < 1.89 (P2 + 0.1013) Q = 226S P(P2 + 0.1013) Sonic flow when P1 +0.1013 1.89 (P2 + 0.1013) Q = 113S (P1 + 0.1013) Q : Air flow rate [l/min (ANR)] S : Effective area (mm) P : Pressure drop (P1 P2) [MPa] P1: Upstream pressure [MPa] P2: Downstream pressure [MPa] Correction for different air temperatures Multiply

How to Find the Flow Rate (at air temperature of 20C) Subsonic flow when P1 + 0.1013 < 1.89 (P2 + 0.1013) Q = 226S P(P2 + 0.1013) Sonic flow when P1 +0.1013 1.89 (P2 + 0.1013) Q = 113S (P1 + 0.1013) Q: Air flow rate [l/min(ANR)] S: Effective sectional area (mm) P: Differential pressure (P1-P2) [MPa] P1: Upstream pressure [MPa] P2: Downstream pressure [MPa] Correction for different air temperatures

For subsonic range Where P1 + 0.1013 = (1 to 2) (P2 + 0.1013) Formula based on Cv factor Q = 197.8Cv P (P2 + 0.1013) kg/h Formula based on effective area Q = 11.0S P (P2 + 0.1013) kg/h [650] (133) 0.2 [646] (120) 0.1 S = 2.8mm S = 5.9mm S = 9.2mm S = 11.7mm S = 6.3mm S = 9.7mm S = 14.4mm S = 10.8mm S = 15.3mm S = 24.8mm Flow rate Q kg/h VCS212 VCS213 VCS214 VCS215 VCS 13 VCS314 VCS315

How to Find the Flow Rate (at air temperature of 20C) Subsonic flow when P1 + 0.1013 < 1.89 (P2 + 0.1013) Q = 226S P(P2 + 0.1013) Sonic flow when P1 +0.1013 1.89 (P2 + 0.1013) Q = 113S (P1 + 0.1013) Q: Air flow rate [l/min(ANR)] S: Effective area (mm) P: Pressure drop (P1-P2) [MPa] P1: Upstream pressure [MPa] P2: Downstream pressure [MPa] Maintenance Correction for different air temperatures

(P2+0.1013) Calculation by Cv factor Q=1972.8.Cv.

Maximum load current: 30mA The NPN and PNP digital monitor outputs can be set to function in one of three different ways: comparator mode hysteresis mode self-diagnostic mode when P1<P2 when P1>=P2 when P1=P2=0 The output is on whenever the outlet pressure is greater than P1 but less than P2. The output comes on once the outlet pressure reaches P1.

Size: 42.5 O.D., Display Pressure: 0.2MPa, 30psi, Connection Thread: R 1/8, Clear Cover Material: Polycarbonate, Attachment: Clear Cover Removable, Wrench Tighten, Option: Both MPa and psi

Size: 42.5 O.D., Display Pressure: 0.2MPa, 30psi, Connection Thread: R 1/4, Clear Cover Material: Polycarbonate, Attachment: Clear Cover Removable, Wrench Tighten, Option: Both MPa and psi

Size: 42.5 O.D., Display Pressure: 0.2MPa, 30psi, Connection Thread: R 1/8, Clear Cover Material: Polycarbonate, Attachment: Clear Cover Removable, Hand Tighten, Option: Both MPa and psi

SMC offers a variety of pressure gauges including general purpose, oil-free/external parts copper-free with limit indicator, clean series and a pressure gauge with a pressure switch.  Pressure ranges vary from 0 to 1.5MPa, depending on the selected gauge.  Panel mounting is possible.General purpose pressure gauge w/limit indicator, Back side or vertical side thread, Pressure range: 0 to

SUP. 3 1 2 3 1 2 3 1 2 E Padlock mounting position D C SUP J 2 2 x K A T IN OUT AA 3 L 2 x P1 (Port size) B V BB U Built-in silencer (Option) M (Width across flats) 3 N P2 (Port size) Q EXH Y Bracket (Option) R S X W Dimensions (mm) Standard specifications Model P1 P2 A B C D E F G H I J K L M 1/8, 1/4 1/4, 3/8 1/8 1/4 3/8 1/2 1/2 66.4 80.3 104.9 110.4 134.3 22.3 29.4 38.5 42 53 40 53 70

P2 = 1.5 x 0.5-0.024 x 15 = 0.39 MPa Retraction r RHC The above values are for cases where the maximum payload found by the selection method is loaded. 0.2 MK(2) 0.1 100 200 300 Speed adjustment RS Q G Max. speed (mm/s) The data below illustrates the strokes controlled by the respective speed controllers. Gradually increase from a low speed to the desired speed setting.

Motor power supply (+), Common () @1 P1, P2 EtherNet/IPTM communication connector Connect Ethernet cable. 1 Connectors are included. (Refer to page 606-7.) 606-6 B JXC73/83/92/93 Series Wiring Example 1 For 4 Axes 1 pc.

Motor power supply (+), Common () @1 P1, P2 EtherNet/IPTM communication connector Connect Ethernet cable. *1 Connectors are included. (Refer to page 12.) 11 Multi-Axis Step Motor Controller JXC73/83/92/93 Series Wiring Example 1 For 4 Axes 1 pc.

)No LinkNo Activity BUS OUT (P2) LinkNo Activity BUS OUT (P2) Link Activity 7.2 LED LED LED PWR ALM MS NS EtherNet/IP EEPROM : LED EEPROM (PWR()) * () -30- 8 8.1 No.

P2, L5 RT3-3-1 S/S . P2, L5 RT3-1-3 S/S . P2, L5 RT1-3-1 S/S . P2, L5 X1 S/S . P3, L10 1 2 1 2 1/2 B Thd D A Thd C Hole Dia. Stainless Steel Threaded Parts Page & Part No. Line No. Page & Part No. Line No. D Line No.

P2 = 1.5 x 0.5-0.024 x 15 = 0.39 MPa r Retraction The above values are for cases where the maximum payload found by the selection method is loaded. 0.2 0.1 100 200 300 Speed Adjustment Max. speed (mm/s) The data below illustrates the strokes controlled by the respective speed controllers. Gradually increase from a low speed to the desired speed setting.

Fixed orifice and variable throttle are available as a throttle for adjusting the pressure increase. (1, 1.5, 2) Output Pressure (P2) vs Time Graph Output P2 P1 P2 reaches half of P1, and then the main valve of the soft start-up valve turns on.