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The kinetic energy of load can be found using the following formula. 20 10 5 V M M 2 V 2 100 300 1000 2000 500 Ek = Ek: Kinetic energy (J) M: Weight of load (kg) V: Piston speed (m/s) Maximum drive speed (mm/s) Example) Load limit at rod end when air cylinder 63 is actuated with max. actuating speed 500 mm/s. at a maximum drive speed of 500 mm/s.

The kinetic energy of a load can be found using the following formula. 20 10 5 M 100 300 1000 2000 500 M 2 2 Ek = Maximum drive speed (mm/s) Ek: Kinetic energy (J) M: Weight of load (kg) : Piston speed (m/s) Example) Find the rod end load limit when a 63 air cylinder is operated at a maximum drive speed of 500mm/s.

Lead wire length symbols: 0.5 m Nil (Example) C73C 3 m L (Example) C73CL 5 m Z (Example) C73CZ None N (Example) C73CN Since there are other applicable auto switches than listed above, refer to page 6-4-24 for details.

3/min) <> [F 0] [F 0][rEF] [rEF][] (SI) () [Uni][] [F 0] -26No.PF-OMP0001CN-F [ Ft] PFMB7501 PFMB7102 PFMB7202 0.217.7 cfm 0.435.3 cfm 0.870.6 cfm 0.437.1 cfm 0.874.2 cfm 0.437.1 cfm 3 0999,999,999 ft 0.1 cfm 3 1 ft 3/pulse 1 ft 3/pulse 0.1 ft -0.918.6 cfm -1.837.1 cfm -3.674.2 cfm (-0.20.2 [ 0]) (-0.40.4 [ 0]) (-0.80.8 [ 0]) 3 0999,999,999 ft 0.1 cfm 3 1 ft -27No.PF-OMP0001CN-F

MM R (max.) d d W W D E E D FY B C MA a a FT MA B F NA NA F K A A K H + Stroke S + Stroke FX H ZZ + 2 strokes FZ (mm) Bore size (mm) A a B B C d E F FD G GA J K M MA MM NA P D FT FX FY FZ H 0 -0.062 0 -0.062 0 -0.074 0 -0.074 0 -0.074 0 -0.074 0 -0.087 0 -0.018 0 -0.021 0 -0.021 0 -0.021 0 -0.025 0 -0.025 0 -0.025 40 23 10 60 60 44 18 45 25 9 14 17.5 M8 x 1.25 18 16 20 M14 x 1.5 30 1/4 17

Suffix of how to order (@) U2: M-5AU-2,U4: M-5AU-4-X83 U6: M-5AU-6-X83,02: KJH02-M5 ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3A-T2-A5 ZP3A-T2-B5 ZP3A-T2-A10-B5 ZP3A-T2-A10-04 Note 1) ; in the table indicates the pad material. Note 2) @ in the table indicates the vacuum inlet.

Suffix of how to order (@) U2: M-5AU-2,U4: M-5AU-4-X83 U6: M-5AU-6-X83,02: KJH02-M5 ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3A-T2-A5 ZP3A-T2-B5 ZP3A-T2-A10-B5 ZP3A-T2-A10-04 Note 1) ; in the table indicates the pad material. Note 2) @ in the table indicates the vacuum inlet.

Suffix of how to order (@) U2: M-5AU-2,U4: M-5AU-4-X83 U6: M-5AU-6-X83,02: KJH02-M5 ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3(04/06/08) UM: ZP3(04/06/08) B: ZP3A-T2-A5 ZP3A-T2-B5 ZP3A-T2-A10-B5 ZP3A-T2-A10-04 Note 1) ; in the table indicates the pad material. Note 2) @ in the table indicates the vacuum inlet.

75, 100 Rear flange type: CLQG/CDLQG FV M Rear flange type (mm) 4-FD Without auto switch With auto switch Bore size (mm) FZ FX A + Stroke L FT B + Stroke G Stroke range FD FT FV FX FZ G L L1 M A A B B 36 91 10 to 50 63 101 46 9 9 80 92 108 38 8 33.5 60 46 101 75, 100 43.5 107.5 10 to 50 80 117.5 53.5 11 11 99 116 134 43 10 43.5 77 53.5 117.5 75, 100 53 126 10 to 50 Rod end nut L1 100 136

CE1 CE2 Stroke Stroke Speed ML2B Space-saving has been realized by simple circuit Comparison to Shockless Transfer Systems C J G5-S Time Time Stroke CV P = 0.5 MPa, M = 100 N P = 0.3 MPa, M = 100 N M = 100 N M = 300 N V = 300 mm/s V = 100 mm/s Sine Cylinder Cushioning keep up with depth of orifice as sine function which change depend on stroke.

L1 Rod end nut 135 63 75, 100 MLU Head Side flange style: CLQG/CDLQG ML1C DFV M -X Head Side Flange Style 4-FD Without auto switch With auto switch Bore size (mm) FZ FX A + Stroke L FT B + Stroke G Stroke range 20FD FT FV FX FZ G L L1 M B A A B 91 36 10 to 50 63 46 101 9 9 80 92 108 38 8 33.5 60 Data 101 46 75, 100 107.5 43.5 10 to 50 80 53.5 117.5 11 11 99 116 134 43 10 43.5 77 117.5 53.5

l m m m L L t t t t B1 H1 Dd9 Applicable bore size (mm) L L Dd9 d l l d m t Applicable bore size (mm) Part no.

l m m m L L t t t t B1 H1 (mm) (mm) (mm) Dd9 Applicable bore size (mm) L L Dd9 d l l d m t Snap ring Snap ring t m Part No.

75, 100 Rear flange type: CLQG/CDLQG FV M Rear flange type (mm) 4-FD Without auto switch With auto switch Bore size (mm) FZ FX A + Stroke L FT B + Stroke G Stroke range FD FT FV FX FZ G L L1 M A A B B 36 91 10 to 50 63 101 46 9 9 80 92 108 38 8 33.5 60 46 101 75, 100 43.5 107.5 10 to 50 80 117.5 53.5 11 11 99 116 134 43 10 43.5 77 53.5 117.5 75, 100 53 126 10 to 50 Rod end nut L1 100 136

l m m m L L t t t t B1 H1 (mm) (mm) (mm) Dd9 Applicable bore size (mm) L L Dd9 d l l d m t Snap ring Snap ring t m Part No.

However, please contact SMC for water-resistant products of 20 and 25. 2 1 m type lead wire is only applicable to D-A93. Lead wire length symbols: 0.5 m Nil (Example) M9NW 1 m M (Example) M9NWM 3 m L (Example) M9NWL 5 m Z (Example) M9NWZ None N (Example) H7CN Solid state auto switches marked with are produced upon receipt of order.

Speed Stroke Stroke Time Time Stroke P=0.5MPa,M=10kg P=0.3MPa,M=10kg M=10kg M=30kg V=300mm/s V=100mm/s Variations Max. stroke (mm) Bore size (mm) Standerd stroke (mm) Applicable auto switch Mounting 20 Reed switch: D-C7, C8 D-B5, B6 Solid state switch: D-H7, D-G5, D-G3, K3 Double clevis: D Front trunnion: U Rear trunnion: T Basic: B Axial foot: L Front flange: F Rear flange: G Single clevis

3 Y a 3.5 4 5 6 A 4.5 5 6 7 b 7 B 8 C Y Model 04 06 04 06 04 06 04 06 Model 04 06 04 06 04 06 04 06 ZP2-T4020WK ZP2-T5020WK ZP2-T6020WK ZP2-T8020WK ZP2-T3507WK ZP2-T4010WK ZP2-T5010WK ZP2-T6010WK 2 x 1.5 0.5 0.5 10 11 2.5 0.8 04 06 ZP2-T 30 WK H Width across flat J (Hexagon) (G) (F) Width across flat 8 (Hexagon) M5 x 0.8 Width across flat 14 (Hexagon) E 13 3 3 M10 x 1 D M5 x 0.8 6 8 Y A

D1 M M A L1 D1 D2 L2 H Connection threads Male Branch: KPQU, KPGU (M5) Effective area mm D Model L TPH TPS A H (width across flats) (M5) 2-Applicable tubing Note1) Connection threads R Applicable tubing O.D. mm Weight g P M P M5 1/8 1/4 M5 1/8 1/4 1/8 1/4 1/4 3/8 3/8 1/2 KPGU04-M5 KPGU04-01 KPGU04-02 KPGU06-M5 KPGU06-01 KPGU06-02 KPGU08-01 KPGU08-02 KPGU10-02 KPGU10-03 KPGU12-03 KPGU12-04