SMC Corporation of America
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S Z Without lead wire: (with connector and 2 of sockets only) SY100-30-A Rated voltage R Lead wire length U 5 6 V S R 1 2 24 VDC 12 VDC 6 VDC 5 VDC 3 VDC 100 VAC 50/60 Hz 200 VAC 50/60 Hz 110 VAC 50/60 Hz [115 VAC 50/60 Hz] Nil 6 10 15 20 25 30 50 300 mm 600 mm 1000 mm 1500 mm 2000 mm 2500 mm 3000 mm 5000 mm For AC voltage valves there is no S option.

Flow Pressure characteristics Measuring method schematic 1) With High speed 2) With Energy saving 3) With Energy saving Static neutralization cartridge high-efficiency cartridge Static neutralization cartridge 600 200 1000 IZT4250 IZT4250 IZT4250 232 180 900 232 232 500 160 800 190 190 Flow rate [L/min (ANR)] Flow rate [L/min (ANR)] Flow rate [L/min (ANR)] 190 140 700 400 L/min(ANR) L/min

Actuator Controller q q w 549 Fieldbus Network CC-Link Direct Input Type Step Motor Controller LECPMJ Series Page 600 CC-Link Ver. 1.10 compliant External data import function The step data can be rewrite temporarily by feeding back external information to the PLC. 64 or more data points can be defined with the 3 types of data import modes.

Example) Obtain the air flow rate for P1 = 0.4 [MPa], P2 = 0.3 [MPa], T = 20 [C] when a solenoid valve is performed in C = 2 [dm3/(sbar)] and b = 0.3. 293 According to formula 1, the max. flow rate = 600 x 2 x (0.4 + 0.1) x = 600 [L/min (ANR)] 273 + 20 0.3 + 0.1 Pressure ratio = = 0.8 0.4 + 0.1 Based on Graph (1), it will be 0.7 if the pressure ratio is 0.8 and the flow rate ratio is b

IDFB3E IDFB4E IDFB6E IDFB8E IDFB11E IDFB15E IDFB22E IDFB37E IDFB55E IDFB75E NPT3/8 10(17) 11(19) 12(20) ZFC NPT1/2 15(25) 16(27) 17(28) 25(43) 26(45) 28(47) SF 100F (37.8C) 100psi (0.7MPa) NPT3/4 41(70) 43(74) 45(77) 59(100) 62(106) 65(110) SFD 71(120) 80(136) 86(147) NPT1 107(182) 120(205) 130(221) LLB NPT1 1/2 161(273) 173(294) 181(308) 226(384) 258(438) 297(504) NPT2 AD 300(510) 353(600

70 40 117.5 32 102 55 23 78 26.5 25 36 15 52 14 17 189 21 30 72 23 13 M12 x 1.75 11 16.5 37 25 to 750 25 to 600 80 40 131.5 41 116 56.5 25 92 35.5 30 36 15 52 14 19 198 21 31 76 25 16 M12 x 1.75 11 16.5 37 Without rod boot With rod boot W S P NN MM N Bore size (mm) f h e H ZZ ZZ 40 50 63 80 100 59 11.2 51 280.5 43 8 161.5 1/4 218.5 27 288.5 M14 x 1.5 66 304.5 52 11.2 58 3/8 235.5 0 175.5

Bore size (mm) Standard stroke (mm) Range of manufacturable stroke* Without rod boot With rod boot Without rod boot With rod boot 40 25 to 850 25 to 700 Up to 1200 Up to 950 50 25 to 800 25 to 650 Up to 1150 Up to 900 63 25 to 800 25 to 650 Up to 1150 Up to 900 80 25 to 750 25 to 600 Up to 1100 Up to 900 100 25 to 750 25 to 600 Up to 1100 Up to 850 Refer to pages 692 to 697 for cylinders

Bore size MB, CA2 series Pressure 0.5 MPa Load factor 50% Stroke 500 mm CM2 series Pressure 0.5 MPa Load factor 50% Stroke 300 mm CJ2 series Pressure 0.5 MPa Load factor 50% Stroke 60 mm Average speed (mm/s) Series 6 10 16 20 25 32 40 40 50 63 80 100 800 700 600 500 400 300 200 100 0 Perpendicular, upward actuation Horizontal actuation VQC1101 800 700 600 500 400 300 200 100 0 VQC2101 It

United States Branch Offices For a branch office near you call: 1-800-SMC-SMC1 (762-7621) GERMANY SMC Pneumatik GmbH Canadian Branch Offices SMC Corporation of America (Atlanta) 1440 Lakes Parkway, Suite 600 Lawrenceville, GA 30043 TEL: (770) 624-1940 FAX: (770) 624-1943 SMC Corporation of America (Milwaukee) 16850 W.

70 40 17 23 14 72 52 30 32 23 78 25 15 21 11 37 117.5 102 55 26.5 36 189 13 M12 x 1.75 16.5 25 to 750 25 to 600 80 40 19 25 14 76 52 31 41 25 92 30 15 21 11 37 131.5 116 56.5 35.5 36 198 16 M12 x 1.75 16.5 Without rod boot With rod boot W S P NN MM N Bore size (mm) h f e ZZ H ZZ 40 50 63 80 100 59 11.2 43 280.5 51 8 218.5 1/4 161.5 288.5 27 M14 x 1.5 66 11.2 52 304.5 58 0 235.5 3/8 175.5

Built-in magnet for auto-switches CE1 CE2 Maximum Driving Speed of Cylinders ML2B 1000 1000 900 900 C J G5-S Load factor: 10% Load factor: 50% 800 800 Cylinder speed (mm/s) Cylinder speed (mm/s) 700 700 600 600 CV 500 500 400 400 MVGQ 300 300 200 200 CC 100 100 0 0 12 16 20 25 32 40 50 63 80 100 RB SYJ3000 VZ3000 VZ5000 VF3000 Bore size (mm) J Series Variations DDetailed specifications

75, 100, 125, 150, 350, 400, 450, 500, 600, 40 200, 250, 300 Ball bushing bearing 700, 800 MGCL 350, 400, 450, 500, 600, 50 700, 800, 900, 1000 Intermediate strokes and short strokes other than the above are produced upon receipt of order.

High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the

High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the

High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the

High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the

High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the

High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the

High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the

High speed or high load cylinder applications frequently require additional speed and flow control devices to control the stopping of the load. SMC's RHC series features a longer cushion design which is capable of stopping heavy or high speed loads while maintaining the simplicity of a standard air cushion cylinder. This enhanced cushion allows the kinetic distance, which results in the