SMC Corporation of America
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: Without lead wire H: 600mm lead wire LN: Without lead wire MN: Without connector MN: Without connector LN and MN types are with 2 sockets. 1.2-10 Series SYJ3000 Construction (B) 2 (A) 4 (B) 2 (A) 4 2 position single 2 position double 5 (R) 3 (R) 1 (P) 5 (R) 3 (R) 1 (P) e t q r w w q t r A B A B SY SYJ u u R P R R P R SX y VK 3 position closed center/exhaust center/pressure center VZ 3

M3 1 3 mn x g M1E mn x g mn x g M3E M3E x FE x Y FE FE Note) Regardless of the mounting orientation, dynamic moment is calculated using the formulas above.

Note) R1, R2 port: 1/4 compliant DC AC CELN, MN type: With 2 sockets. Refer to page 371 for the lead wire length of L and M plug connectors. Refer to page 374 for the connector assembly with cover for L and M plug connectors. DIN terminal type Y which conforms to EN-175301-803C (former DIN43650C) is also available. For details, refer to page 373.

LN, MN type: With 2 sockets. Refer to page 642 for the lead wire length of L and M plug connectors. Refer to page 645 for the connector assembly with cover for L and M plug connectors. 616 3 Port Pilot Solenoid Valve 10-SYJ500 Construction r w t q y e r w t q y e N.C. N.O.

LN, MN type: with 2 sockets. For connector cable of M8 connector, refer to page 4-4-60. Note) When placing an order for body ported solenoid valve as a single unit, mounting bolt for manifold and gasket are not attached. Order them separately, if necessary.

(For details, refer to page 1-518 on catalog.) + LN, MN type: with 2 sockets.

M3 1 3 mn x g M1E mn x g mn x g M3E M3E x FE x Y FE FE Note) Regardless of the mounting orientation, dynamic moment is calculated using the formulas above.

H: 600mm lead wire LN: Without lead wire LO: Without connector MO: Without connector 2.2-21 LN and MN types are with 2 sockets. Series SYJ500 Construction N.C. N.O.

Grommet L plug connector Manifold block Nil MN With manifold block None M plug connector Vacuum switch Note) For types LN and MN, the single solenoid has 2 sockets and the double solenoid has 3 sockets.

ME M 1 3 mn x g ME mn x g ME x FE x Y ME FE FE Note) Regardless of the mounting orientation, dynamic moment is calculated using the formulas above.

Wn Weight mn X-axis Xn Y-axis Yn Z-axis Zn Z X Wa 0.88kg 65mm 0mm 5mm 111 Wb 4.35kg 150mm 0mm 42.5mm Y 210 Y Wc 0.795kg 150mm 111mm 42.5mm Wd 1.5kg 150mm 210mm 42.5mm n = a, b, c, d 3 Composite center of gravity calculation m3 = mn = 0.88 + 4.35 + 0.795 + 1.5 = 7.525kg 1 m3 X = x (mn x xn) 1 7.525 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 1.5 x 150) = 140.1mm 1 m3 Y = x (mn x yn) 1 7.525

Composite Center of Gravity Calculation m3 = mn = 0.88 + 4.35 + 0.795 + 1.5 = 7.525 kg 1 m3 X = x (mn x xn) 1 7.525 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 1.5 x 150) = 140.1 mm 1 m3 Y = x (mn x yn) 1 7.525 = (0.88 x 0 + 4.35 x 0 + 0.795 x 111 + 1.5 x 210) = 53.6 mm 1 m3 Z = x (mn x zn) 1 7.525 = (0.88 x 5 + 4.35 x 42.5 + 0.795 x 42.5 + 1.5 x 42.5) = 38.1 mm 4.

(Wn) Weight (mn) Y-axis Yn Z-axis Zn X-axis Xn Z X Wa 5 mm 0.88 kg 0 mm 65 mm 111 Wb 42.5 mm 4.35 kg 0 mm 150 mm Y 210 Y Wc 42.5 mm 0.795 kg 111 mm 150 mm Wd 42.5 mm 1.0 kg 210 mm 150 mm n = a, b, c, d 3 Calculation of composite center of gravity m3 = mn = 0.88 + 4.35 + 0.795 + 1.0 = 7.025 kg 1 m3 X = x (mn x xn) 1 7.025 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 1.0 x 150) = 139.4 mm 1

Wn Mass mn X-axis Xn Y-axis Yn Z-axis Zn Z X Wa 0.88kg 65mm 0mm 5mm 111 Wb 4.35kg 150mm 0mm 42.5mm Y 210 Y Wc 0.795kg 150mm 111mm 42.5mm Wd 0.5kg 150mm 210mm 42.5mm n = a, b, c, d 3 Calculation of composite center of gravity m = mn = 0.88 + 4.35 + 0.795 + 0.5 = 6.525kg 1 m X = x (mn x xn) 1 6.525 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 0.5 x 150) = 138.5mm 1 m Y = x (mn x yn) 1 6.525

Wn Mass mn X-axis Xn Y-axis Yn Z-axis Zn Z X Wa 0.88kg 65mm 0mm 5mm 111 Wb 4.35kg 150mm 0mm 42.5mm Y 210 Y Wc 0.795kg 150mm 111mm 42.5mm Wd 1.5kg 150mm 210mm 42.5mm n = a, b, c, d 3 Composite center of gravity calculation m = mn = 0.88 + 4.35 + 0.795 + 1.5 = 7.525kg 1 m X = x (mn x xn) 1 7.525 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 1.5 x 150) = 140.1mm 1 m Y = x (mn x yn) 1 7.525

M3 1 3 mn x g M1E mn x g M3E x FE x Y M3E FE FE Note) Regardless of the mounting orientation, dynamic moment is calculated using the formulas above.

MO: Without connector DO: Without connector Option LN, MN type: With 2 sockets. 4-6-13 14 Series VZ300 Specifications Low power consumption: 1.8 W DC Applicable for vacuum use 100 kPa VZ300R: External pilot type Exhausting equipment for pilot valve not required.

Width across flats MG MB series MN (mm) Bore size (mm) MG 17 19 24 24 27 32 MH 44 48 53 53 72 75 MI 23 32 38 38 45 55 MK 9 10 13 13 14 17 ML 20 22 24 24 32 35 MN M8 x 1.25 M10 x 1.25 M14 x 1.5 M14 x 1.5 M16 x 1.5 M20 x 1.5 ZZ 175 183 205 205 258 261 32 40 50 63 80 100 MI MK 4 H1 ML + Adjustment Stroke MH + Stroke + Adjustment ZZ + 2 x Stroke + Adjustment (A: 25 mm, B: 50 mm) Width across

VJ100M1.7 x 15 VJ300M1.7 x 22 Note) In the case of ZX1VJ114, M, MN and MO cannot be used. 13-2-7 7 Series ZX Ejector Unit Specifications 1 2 ZX1-W07 1 2 ZX1-W10 1 2 Unit no. ZX1-W05 0.5 5 13 Nozzle dia.