<br>Keep in mind that if you wish to make changes after purchase, disassembly is required, which will void the product warranty. <br>Refer to the “Disassembly/Assembly Procedures” in the “Specific Product Precautions” section at the end of the catalog. (The VXZ series valve is not listed.) <br>The VX series catalog can be found https://www.smcpneumatics.com/Part-Builder-Links_ep_2458-1.html?https://smccatalog.partbuilder.smcpneumatics.com/support/faq/en-jp/?ca_id=fluid-process-valves&fa_id=10545
<br>Therefore, these valves cannot be used in circuits that require the pure water to retain its level of purity. <br>For such circuits, consider using a product from the LV series. <br>The LV series catalog can be found here.<br><br>
<br>For piping connection, pipe the vacuum pump to the A port side of the valve. <br>If the B port side is used as a vacuum source, the service life of the product may be shortened. <br>Note) LVA and LVC series valves cannot be used with chemical gases. <br>Also, they cannot be used for vacuum retention. <br>The LVA series catalog can be found https://www.smcpneumatics.com/Part-Builder-Links_ep_2458-1.html?https://smccatalog.partbuilder.smcpneumatics.com/support/faq/en-jp/?ca_id=high-purity&fa_id=11182
<br>When using pure water (deionized water), select option “M” (deionized water piping). <br>This specification does not use copper-based materials for the wetted parts of the circulating fluid circuit. <br>Note 1) For details on water quality standards, refer to the HRS series “Specific Product Precautions.”
<br>Note 1) The discharge pressure can be set for HRSH series thermo-chillers. <br>Note 2) The pressure cannot be displayed for HRSE series thermo-chillers.
<br>Check that there is no restriction in the piping, including the customer’s device. <br>If there is restriction, thicken the piping or relieve the circulating fluid flow rate with a bypass piping set. <br>Depending on the problem, however, consider requesting maintenance from a maintenance company. <br>We can recommend service providers if needed.
<br>Alarm code “AL28” (pump maintenance) will be activated every 20,000 hours (every 8000 hours for option “T” and the HRS050/060) of operation. <br>Consider requesting maintenance from a maintenance company. <br>We can recommend service providers if needed.
<br>Even if there is no leakage, replacement of the mechanical seal is recommended. <br>The mechanical seal can be replaced up to 2 times. If foreign matter enters the circulating fluid, leakage may occur earlier. <br>For protection of the mechanical seal pump, we recommend the installation of a particle filter.
<br>When replacing, follow the replacement procedure in the operation manual and the element replacement procedure (published on the SMC website). <br>The FGD series catalog can be found here. <br>The FQ1 series catalog can be found https://www.smcpneumatics.com/Part-Builder-Links_ep_2458-1.html?https://smccatalog.partbuilder.smcpneumatics.com/support/faq/en-jp/?ca_id=industrial-filters&fa_id=10645
<br>Note) Single-side air driving of SMC hydraulic cylinders is possible, but the increased pressure will drop if air gets inside the air-hydro booster, so be sure to drive both sides with oil whenever possible.<br><br>
<br>Refer to the following formulas for converting the displayed values. <br>sonic conductance C x 5 = effective area S[mm2]<br>Cv x 18 ≈ effective area S[mm2]<br><br>
mm/s Piston speed mm/s Piston speed mm/s (4) CY1F/m1 (5) CY1F/m2 (6) CY1F/m3 (7) CY1F/m4 30 30 30 30 20 20 20 20 CY1F25 CY1F25 CY1F25 CY1F25 10 10 10 10 CY1F15 CY1F15 CY1F15 5 5 5 5 Load mass kg Load mass kg Load mass kg Load mass kg 4 4 4 4 3 3 3 3 CY1F15 CY1F10 CY1F10 CY1F10 2 2 2 2 CY1F10 1 1 1 1 0.5 500 300 100 50 0.5 500 300 100 50 0.5 500 300 100 50 0.5 500 300 100 50 Piston speed mm
/s (4) CY1F/m1 (5) CY1F/m2 (6) CY1F/m3 (7) CY1F/m4 30 30 30 30 20 20 20 20 CY3B CY3R CY1F25 CY1F25 CY1F25 CY1F25 CY1S 10 10 10 10 CY1L CY1H CY1F15 CY1F15 CY1F15 5 5 5 5 Load mass kg Load mass kg Load mass kg Load mass kg 4 4 4 4 CY1F CY1F 3 3 3 3 CYP CY1F15 CY1F10 CY1F10 CY1F10 2 2 2 2 CY1F10 1 1 1 1 D0.5 500 300 100 50 0.5 500 300 100 50 0.5 500 300 100 50 0.5 500 300 100 50 -X Piston speed
A Graph 1 Graph 2 120 60 110 B 100 50 C P1 63 63 90 80 40 70 Regulator Circuit C Load weight (kg) Load weight (kg) P2 60 30 50 50 A 50 Regulator valve 40 20 40 40 30 B 32 32 20 10 C P1 10 0 0 0.4 0.3 0.3 0.5 0.6 0.7 Operating pressure (MPa) 0.4 0.5 0.6 0.7 Operating pressure (MPa) Selection example Confirmation of allowable kinetic energy Selection conditions: Transfer direction: Vertical
For detailed specifications, refer to page 8-30-1.
Nm Moment Nm Moment Nm 4 4 4 CX CY1F15 3 3 3 DCY1F10 2 2 2 -X CY1F15 CY1F15 20CY1F10 CY1F10 1 1 1 Data 0.5 0.5 0.5 500 100 300 50 500 100 300 50 500 100 300 50 Piston speed mm/s Piston speed mm/s Piston speed mm/s (4) CY1F/m1 (5) CY1F/m2 (6) CY1F/m3 (7) CY1F/m4 30 30 30 30 20 20 20 20 CY1F25 CY1F25 CY1F25 CY1F25 10 10 10 10 CY1F15 CY1F15 CY1F15 5 5 5 5 Load mass kg Load mass kg Load mass
Selection conditions Mounting: Horizontal Bearing type: Slide bearing Distance between plate and load center of gravity: 50 mm Maximum speed: 200 mm/s Load mass: 2 kg Stroke: 30 stroke Find the point of intersection for the load mass of 2 kg and 30 stroke on graph (17), based on horizontal mounting, slide bearing, the distance of 50 mm between the plate and load center of gravity, and the
S n Nil 2 fingers 2 Number of fingers Bore size 10 mm 16 mm 20 mm 25 mm 32 mm 40 mm Auto switch 10 16 20 25 32 40 Without auto switch (Built-in magnet) Nil Open/Close stroke (mm) Symbol Bore size 10 16 20 25 32 30 60 80 40 100 160 200 Nil 1 2 40 80 100 20 40 60 50 100 120 70 120 160 Copper, fluorine and silicone-free + Low particle generation 22 Vacuum suction type Action Port thread type