SMC Corporation of America
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Search Results "HRSE012-A-20-T"

lhe sme a th drawings bdow Stroke adjusting shock absorber P s t H EEI o 6ll Bore size @ZRS nQ n32-tlllB 2.18 20 il 120.5 + 2 slrokes Bore size O4O, 50/RSfOlS-nLJB F 2-1tA o *14 *13.5 o2O > H 4dj!

Elbow Universal Elbow body Body A Body A Connection thread size Proper tightening torque [Nm] NPT, R1/8 3 to 5 NPT, R1/4 8 to 12 NPT, R3/8 15 to 20 NPT, R1/2 20 to 25 Body B Body B Caution Chamfered area for female thread By chamfering as shown in the table below, machining of threads is easier and effective for burr prevention.

CJ2 CM2 Symbol A A' B C D E GA GB H J K MM NN Q T CD CH CK CT CU CX CY CZ Bore size (mm) 6 10 15 CG1 6 M10 x 1.0 18.5 7 9 14 16.5 3 10.5 11 17 6 8 M3 x 0.5 20.4 3 16 4 12 1.6 18 3.4 26 MB 6 M12 x 1.0 20.5 10 12 15 20 5 13 17 20 7 8 M4 x 0.7 23.9 5 20 6.5 13.5 1.6 24 4.5 33 6 M14 x 1.0 28 12 14 20 24.5 6 15.5 18.5 24 9 8 M5 x 0.8 31.7 6 25 8 17 2.9 29 5.5 42 MB1 Symbol S Z ZZ R Bore size (

Symbol A A' Bore size (mm) NN MM K J H GB GA E D C CD B CK Q R 6 10 15 +0.040 0 3 M3 x 0.5 8 6 17 11 6 10.5 3 16.5 14 4 9 7 M10 x 1.0 7 0 0.5 17 +0.065 0 5 M4 x 0.7 8 7 20 17 6 13 5 20 15 6.5 12 8 M12 x 1.0 10 0 0.5 22 +0.065 0 6 M5 x 0.8 8 9 24 18.5 6 15.5 6 24.5 20 8 14 10 M14 x 1.0 12 Symbol Z S 5 st 10 st 15 st 20 st 30 st ZZ Bore size (mm) 5 st 10 st 15 st 20 st 30 st 5 st 10 st 15

H A H B B 2-P Port size 2-P Port size 2-M, thread depth N 2-M, thread depth N L L K K DIN terminal: D Conduit terminal: T Cable 6.8 to 10 F S Q 27.5 (Q) D F 25 C R C (44) R R E G 1/2 E G 1/2 A H D (S) B B A H 2-P Port size 2-P Port size 2-M, thread depth N 2-M L L K K N.C. dimensions (mm) Grommet: G Conduit: C DIN terminal: D Conduit terminal: T P Port size Rc A B C D E F H K L M N Model

lhe sme a th drawings bdow Stroke adjusting shock absorber P s t H EEI o 6ll Bore size @ZRS nQ n32-tlllB 2.18 20 il 120.5 + 2 slrokes Bore size O4O, 50/RSfOlS-nLJB F 2-1tA o *14 *13.5 o2O > H 4dj!

model which will provide a gripping force 10 to 20 times the weight of the workpiece.

model which will provide a gripping force 10 to 20 times the weight of the workpiece.

20 SUP=0.3MPa SUP=0.2MPa SUP=0.2MPa 10 10 0 0 4 12 16 20 8 24 2 4 6 8 10 12 Discharge rate l/min Discharge rate l/min Selection from flow rate characteristic graphs (for PA3000) PA313 Air consumption 160 Required specification example: Find the pilot air pressure for a discharge rate of 4l/min and a total lifting range of 15m.

20 SUP=0.3MPa SUP=0.2MPa SUP=0.2MPa 10 10 0 0 4 12 16 20 8 24 2 4 6 8 10 12 Discharge rate l/min Discharge rate l/min Selection from flow rate characteristic graphs (for PA3000) PA313 Air consumption 160 Required specification example: Find the pilot air pressure for a discharge rate of 4l/min and a total lifting range of 15m.

14 12 P = 43 A P = 43 PA 23 A A B B 14 12 A PA PA L1 L2 L2 L1 B B B 14 12 A A A A B 14 A A PA B B (2n 1/8) 4n-1/4, 3/8 2, 4 port PA L-side R-side L-side R-side D-side D-side 89 3 89 16 141 (Single) 141 (Single) 55 44 186 (Double) 186 (Double) 196 (3 position) 196 (3 position) 77.5 Bottom ported M12 connector L: Dimensions n: Stations 141.5 L n 1 Formula 2 3 4 5 6 7 8 9 10 121 5 1 12 14 PA

When the cylinder is used with a clamping mechanism, there is a danger of work pieces dropping out of it if there is a decrease in clamping force due to a drop in circuit pressure caused by a power outage. Therefore, safety equipment should be installed to prevent damage to machinery and human injury.

L, ' N X NZ NX NZ L, P i A A 0ND. o oNDI1'o A, U, NX bJ AppI bore size A ., E, 11 MM 'R, U. -. . No. CQ2 Single Rod Clevis (mm) C02 Double Rod Clevis (mm) ;1 AppI bon ... A A, E, b MM -110 U, HDHa HX 50,63 56 ,. 028 0) Ml8x1.5 I. 20 ' 4 i 010 22 ~3 ~., Pan No. NX HZ L Y.Q05 50,63 56 20 028 40 , M 1 8xlS " 20 14 ~070 22.03 ~.S 44 SO.8 IV -60s eo 71 2. 038 !

PF2D5--2 (With voltage output type) 19.05 72 62 52 Wiring Brown (1) DC (+) Main circuit 4-4.5 Black (4) OUT (Output for display unit) 62 1 White (2) Analog output Blue (3) DC () Use this sensor by connecting it to a P/A remote type display unit Series PF2D2/3. 25 Flow direction Analog output 20 5 Current [mA] Voltage [V] 4 1 0 0.4 4 1.8 20 4 40 (In case of PF2D504) (In case of PF2D520) (

type: Stainless steel 615 Series AS20-T Dimensions L4 D3 H (Hexagon width across flats) T2 L3 A L2 D1 D2 T1 L1 Dimensions A AS120-U10/32-T 10-32 UNF 10-32 UNF AS120-M5-T M5 x 0.8 8 9 M5 x 0.8 Model T2 H D1 T1 D2 D3 L1 L2 L3 L4 Weight (g) 13 9 4.5 10 31 10.3 0.7 27.4 AS220-N01-ST NPT 1/8 12.7 NPT 1/8 AS220-F01-ST G 1/8 AS220-01-ST Rc 1/8 12 14.3 R 1/8 33 14.6 7 18 34.7 13.2 1.5 31.6 AS220

(R) e r Port 3 (R) Port 2 (A) Port 1 (P) Port 23(P2) (Pilot air port) y i Port 2(A) u r y Port 1(P) t q VEX3320 (Air operated) VEX3420 (Air operated) w e q r y y t w r e u t t 12(P1), 23(P2) Port Port 3(R) y y (Pilot air port) r i Port 2(A) u r Port 1(P) t q Port 1(P) Port 2(A) Port 3(R) Component Parts No.

M1 = F x L A M2 = F x L M3 = F x L Note) Deflection: Displacement of section A when force acts on section F REBH15, 25 REBH15, 25 REBH15, 25 REBH15 REBH15 REBH25 REBH15 REBH25 0.08 0.03 REBH25 0.02 Deflection (mm) Deflection (mm) Deflection (mm) 0.06 0.02 0.04 0.01 0.01 0.02 5 10 15 20 0 25 25 5 10 15 20 0 5 10 15 20 0 25 Moment (Nm) Moment (Nm) Moment (Nm) REBHT25, 32 REBHT25, 32 REBHT25

(RES) A.10 Undervoltage A.12 Memory error 1 (RAM) A.13 Clock error A.15 Memory error 2 (EEP-ROM) A.16 Encoder initial communication error1 A.17 Board error A.19 Memory error 3 (Flash-ROM) A.1A Motor combination error A.1C Software combination error A.1E Encoder initial communication error 2 A.1F Encoder initial communication error 3 A.20 Encoder normal communication error 1 A.21 Encoder normal