SMC Corporation of America
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Search Results "ZSE20AF-T-P-M5-A1"

Snap ring m 1.5 1.25 1.25 1.75 t 0.9 1.15 1.15 1.15 Part No.

L5 L5 A1 A2 D1 D1 A2 T T Metric L4 L5 A1 A2 M MAX.

across flats 4) MXY8 M4 x 0.7 29 40 30 10 70 3.5 20.9 4 25 2.5 25 5 14 MXY12 M5 x 0.8 31 52 40 15 86 8.5 30.9 5 3 36 32 6 18 PH TB Z T WR RL QW R RH WE WD Q W PR P PL TH Model MXY6 5.1 2.9 88 4 12 60 5 7 30 11 13 3(depth 3) 3(depth 3) 2.5 9 20 25.5 MXY8 6.1 98 3.4 4 15 70 6.5 7 38 19 13 3(depth 3) 3(depth 3) 3 10 25 32 MXY12 7.8 114 4.5 21 5 8.5 90 7 50 29 18 4(depth 4) 4(depth 4) 4 13 33

Single Knuckle Joint Double Knuckle Joint Sphere R(R1) (mm) (mm) NDH10 A1 E1 L1 MM A1 E1 L1 MM Part no. Size Size Part no.

Digital pressure switch ZSE20-*-*-M5-A1 Supply valve Circuit diagram -31No. TQ1230001-OM104-C 5.1.2. In case of ZXP712 Release valve V114(N.C.) Pilot valve for supply V114(N.C.) Digital pressure switch ZSE20-*-*-M5-A1 Supply valve Circuit diagram -32No. TQ1230001-OM104-C 5.2. Center of gravity 5.2.1.

21.5 4 2 M6 x 1 (Width across flats 3) M8 x 1 (Width across flats 4) MXY8 30 70 10 40 29 M4 x 0.7 25 20.9 3.5 25 4 14 5 2.5 MXY12 40 M5 x 0.8 8.5 86 15 52 31 18 36 30.9 32 5 6 3 PH R RH RL T TB P PL PR Q QW TH W WD WE WR Z Model MXY6 4 2.9 5.1 13 7 9 11 60 12 3(depth 3) 3(depth 3) 2.5 30 5 88 25.5 20 MXY8 4 3.4 6.1 19 7 10 13 70 15 3(depth 3) 3(depth 3) 3 38 6.5 98 32 25 MXY12 5 4.5 7.8

Dimensions Basic style: RECB 2 x P (Rc, NPT, G) 2 x NN Width across flats B2 G H2 G Width across flats B1 H1 Plugged (M5 x 0.8) I 2 x Eh8 NA D MM AL K A 1.5 1.5 Effective thread length 2 x FL Width across flats KA NA F N N ZZ + Stroke S + Stroke F H (mm) A AL B1 B2 D E F FL G H H1 H2 I K KA N NA NN P S ZZ MM Bore (mm) 0 -0.033 0 -0.033 0 -0.033 0 -0.039 20 M8 x 1.25 M20 x 1.5 18 15.5 13 26

Dimensions Basic style: RECB 2 x P (Rc, NPT, G) 2 x NN Width across flats B2 G H2 G Width across flats B1 H1 Plugged (M5 x 0.8) I 2 x Eh8 NA D MM AL K A 1.5 1.5 Effective thread length 2 x FL Width across flats KA NA F N N ZZ + Stroke S + Stroke F H (mm) A AL B1 B2 D E F FL G H H1 H2 I K KA N NA NN P S ZZ MM Bore (mm) 0 -0.033 0 -0.033 0 -0.033 0 -0.039 20 M8 x 1.25 M20 x 1.5 18 15.5 13 26

Dimensions Basic style: RECB 2 x P (Rc, NPT, G) 2 x NN Width across flats B2 G H2 G Width across flats B1 H1 Plugged (M5 x 0.8) I 2 x Eh8 NA D MM AL K A 1.5 1.5 Effective thread length 2 x FL Width across flats KA NA F N N ZZ + Stroke S + Stroke F H (mm) A AL B1 B2 D E F FL G H H1 H2 I K KA N NA NN P S ZZ MM Bore (mm) 0 -0.033 0 -0.033 0 -0.033 0 -0.039 20 M8 x 1.25 M20 x 1.5 18 15.5 13 26

T6 T = T1 + T2 + T3 + T4 [s] Calculation example) T1 to T4 can be calculated as follows. L : Stroke [mm] V : Speed [mm/s] a1: Acceleration [mm/s2] a2: Deceleration [mm/s2] T1 and T3 can be obtained by the following equation.

x 8 M5 x 0.8 P M MXS-AS6 (L)-X11 15 26.5 C A 5 16.5 MXS-AS8 (L) MXS8 (L) 7 21.5 8 3 14.6 7 10 M3 x 10 11 M3 x 12 15 26.5 MXS-AS8 (L)-X11 M6 x 1 MXS-AS8 (L)-X12 25 5 36.5 B 20 MXS-AS12 (L) E MXS12 (L) 9.5 12 4 18.5 10 13 M4 x 12 16 M4 x 15 31 M8 x 1 15 30 MXS-AS12 (L)-X11 MXS-AS12 (L)-X12 25 40 D F MXS-AS16 (L) 5 24.5 MXS16 (L) 11 14 5 12 16.5 M5 x 18 19 M5 x 18 37 21 MXS-AS16 (L)-X11 15

Cycle time: T can be found from the following equation. Calculation example) T1 to T4 can be calculated as follows. L Speed: V [mm/s] a1 a2 T1 = V/a1 = 300/3000 = 0.1 [s], T3 = V/a2 = 300/3000 = 0.1 [s] Time T = T1 + T2 + T3 + T4 [s] [s] L 0.5 V (T1 + T3) V T1: Acceleration time and T3: Deceleration time can be found by the following equation.

Note 1) ( ): Long stroke Note 2) Refer to p.1.6-11 for pivot bracket.

Steel Cylinder Series CJ5-S Accessory Dimensions Single Knuckle Joint Clevis Pin Knuckle Pin MM L ND hole H10 L l t t l t t m m R1 m m d Dd9 d Dd9 12 + 0.2 0 0.1 0.3 NX A1 U1 L1 7 12 Material: Stainless steel 304 Material: Pin and retaining ring both stainless steel 304 Material: Pin and retaining ring both stainless steel 304 Part no.

Rubber stopper (P. 8-5-40) Metal stopper (P. 8-5-43) Basic style 2-M5 x 0.8 thread depth 8 Operating port 2-M5 x 0.8 3 11 Max. 12 (Retraction end adjuster) 12 I J 5.5 11 5.5 11 Adjuster at extension end N-M5 x 0.8 thread depth 6 36.5 (Adjuster at extension end) 11 5.5 5H9 depth 5 +0.030 0 Retraction end adjuster 6 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA

(mm) a = Internal cross section of piping [mm] T 0425 T 0604 TU 0805 T 0806 1/8B T 1075 TU 1208 T 1209 1/4B TS 1612 3/8B T 1613 1/2B 3/4B 1B 4 2.5 4.9 QC = Air consumption required for one reciprocation of Mini-Rotary Actuator [l (ANR)] 6 4 12.6 8 5 19.6 8 6 28.3 6.5 33.2 10 7.5 44.2 12 8 50.3 12 9 63.6 9.2 66.5 16 12 113 12.7 127 16 13 133 16.1 204 21.6 366 27.6 598 Air Consumption

(mm) a = Internal cross section of piping [mm] T 0425 T 0604 TU 0805 T 0806 1/8B T 1075 TU 1208 T 1209 1/4B TS 1612 3/8B T 1613 1/2B 3/4B 1B 4 2.5 4.9 QC = Air consumption required for one reciprocation of Mini-Rotary Actuator [l (ANR)] 6 4 12.6 8 5 19.6 8 6 28.3 6.5 33.2 10 7.5 44.2 12 8 50.3 12 9 63.6 9.2 66.5 16 12 113 12.7 127 16 13 133 16.1 204 21.6 366 27.6 598 Air Consumption

S 55 58 60 74 75 P M5 x 0.8 Rc 1/8 Rc 1/8 Rc 1/4 Rc 1/4 NY 26 28 36 42 46 NX 6 6.5 8 10 11 NC 7.5 depth 4.5 9 depth 5.5 10.5 depth 6.5 13.5 depth 8.5 17 depth 10.5 MM M10 x 1.25 M12 x 1.25 M14 x 1.5 M18 x 1.5 M18 x 1.5 NS 43 45 44 54 53 N 14 15.5 16 21.5 21.5 KA 10 12 14 18 18 ND M5 x 0.8 M6 x 1 M8 x 1.25 M10 x 1.5 M12 x 1.75 NE 4.3 5.1 6.9 8.7 10.5 ZZ 69 72 75 92 96 Model MUB25 MUB32 MUB40