SMC Corporation of America
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Search Results "CDLQA50-75DCM-F"

Width across flats KB B C V MM BH1 BH2 BH3 TX D E B1 C B ZZ + Stroke S + Stroke H A K BN N1 N MA MB F AL H1 TT B C B1 C B TY With rod boot d e 10.2 f h 10.2 l [mm] Bore size A AL B B1 BH1 BH2 BH3 BN BP C D E F GA GB GC GD GE GF H H1 J 32 22 19.5 46 46 23 38.5 46.5 59 1/8 32.5 12 30 13 37.5 13 37.5 18.5 4 13 47 6 M6 x 1.0 40 30 27 57 52 28.5 42.5 48.5 73 1/8 38 16 35 13 59.5 14 44.5 19.5 4

lead Series Series 6 Nil X10 F H L 6 8 Standard motor 6mm Cable length Non-standard motor 10mm Series 8 2 3 4 5 2m 20mm Motor specification 3m Motor output Nil G R Y Standard motor 4m Brake Matsushita Electric Industrial Co., Ltd. 5m Nil K E F Mitsubishi Electric Corporation 100W None Switch specification Yasukawa Electric Corporation 200W With brake Nil 1 2 3 4 5 6 7 A B Without switch

Internal Grip External Grip MHK2-12C MHK2-12S 20 15 Pressure 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa Pressure 0.6 MPa Gripping force (N) Gripping force (N) 15 10 0.5 MPa 0.5 MPa 10 0.4 MPa 0.4 MPa 5 5 0.3 MPa 0.3 MPa F F 0 0 10 20 30 40 50 10 20 30 40 50 Note) In case of single acting type, the value is for stroke center.

Table deflection due to yaw moment load Displacement at A when load is applied F Table deflection due to roll moment load Displacement at A when load is applied F A A F A F F L L L L dimension mm L dimension mm L dimension mm MXY6 MXY6 MXY6 100 100 100 MXY8 MXY8 MXY8 100 100 100 MXY12 MXY12 MXY12 140 140 140 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-

10 8.5 6.5 7.5 24 10 M5 x 0.8 M14 x 1.0 M5 x 0.8 19.5 4 43.5 Built-in magnet: CDJP2B6 to 16 Z + Stroke S + Stroke H A' F GB GA 2 x P A F' Mounting nut Width across flats B1 A' Rod end nut Width across flats B2 30 D-1 D E J C MM Without rod end thread NN W B (mm) Symbol A A' B B1 B2 C D E F F' GA GB H J MM NN P S W Z Bore size 6 10 16 7 9 14 14 5.5 2 3 16.5 8 6.5 5.5 6.5 17 6 M3 x 0.5 M10

Calculation of applied lateral load F The lateral load F equals the coefficient between the work piece and the conveyor. Thus, from the total amount of the work piece and coefficient of friction, F = x m g (N) 1. Calculation of applied lateral load The lateral load F equals the total load of the work piece. Thus, F = x m g (N) 2.

D D D D D D 3 2 1 Stations D side How to Order Solenoid Valves SV 1 1 0 0 F 5 Note) Available with manifold block for station additions. Refer to pages 77 and 81.

Valve Body (for Swagelok) Body (for VCR) Spacer (optional) P 33 Series XSA High Vacuum Angle Valve Dimensions (mm) 1in=25.4mm Electrical entry Grommet (G) Electrical entry Conduit (C) F G 27010 F G D 29010 H C G(PF)1/2 DIN terminal (D) F G J C H 29.5 39 H C OUT IN A P G(PF)1/2 6 to 9 22 E B (body dimension) P (fitting size) 2-M5 Thread depth M A Terminal (T) F G2 (Bs) J (XSA S) 25 33 H K

I.D. 427 TU0425-100-X3 TU0604-100-X3 TU0805-100-X3 TU1065-100-X3 TU1208-100-X3 4 6 8 10 12 2.5 4 5 6.5 8 285 Max. operating pressure 142 0 4 32 70 105 140 10Clean Series Operating temperature F Only available in 20m rolls.

LECSB Positioning unit QD75D (Manufactured by Mitsubishi Electric) 24 VDC Note 2) Note 4) CN1 Note 4) 21 DICOM CN1 Failure Note 3) DICOM 20 48 ALM RA1 CLEARCOM 14 DOCOM 46 Zero speed detection 23 ZSP RA2 CLEAR 13 CR 41 Torque limiting RDYCOM 12 25 TLC RA3 Positioning completion READY 11 RD 49 24 INP RA4 PULSE F+ 15 PP 10 PULSE F 16 PG 11 10 m or less NP 35 17 PULSE R+ S/S NG 36 4 LA 18 PULSE

I/F DICOM CN3-5 DC24V(DC24V10% 150mA) DC24V CN3-10 DC24V I/F DOCOM CN3-3 EM1LG DC24V DC24V LG CN3-1 MO1MO2 CN3-11 SD 3 22 3 3.6 OFFON CPU () ON ON OFF OFF ON ON OFF OFF ON ON ON () OFF () OFF 1s ON ON () OFF 50ms 60ms () OFF 50ms 60ms .

Bore size CV Rod extended/retracted when energized 20 25 32 40 20 mm Piping 25 mm Built-in Magnet Cylinder Model Screw-in type Nil F Nil B MVGQ Rod extended when energized 32 mm Built-in One-touch fitting If a built-in magnet cylinder without an auto switch is required, there is no need to enter the symbol for the auto switch.

) 2 x 5.5 Without spacer With spacer 2 x M5 thread depth M 15 15 Spacer Grommet: GS Flat terminal: F Conduit: C 280 G F F G 11 300 G F Terminal part Flat terminal connector 11 23 9 H C 15 6.5 H C H C G1/2 Terminal: T DIN terminal: D F G Applicable cable O.D.: 6 to 12 F G Width across flats 22 G1/2 32 (44) H 31.5 25 C H C G1/2 J J Dimensions [mm] Model A B Bs C D E F L M P [inch] Grommet:

XT661-2A: F = f x (1/t) = 0.8 x (1/2) = 0.4 N XT661-4A: F = f x (1/t) = 3.8 x (1/2) = 1.9 N XT661-6A: F = f x (1/t) = 5.9 x (1/2) = 2.95 N XT661-8A: F = f x (1/t) = 7.5 x (1/2) = 3.75 N XT661-10A: F = f x (1/t) = 14.4 x (1/2) = 7.2 N 9700 g 9700 x 9.8/1000 = 95.06 N XT661-10A: Temporary lifting force 11.2 N < Workpiece mass 9700 g (95.06 N) 3) Confirm the relationship temporary lifting force

) is included as an accessory for the thread symbol F.

Calculation of applied lateral load The lateral load F equals the total load of the workpiece. Thus, F= 5 x 0.05 x 9.8 = 2.5 (N) 1. Calculation of applied lateral load F F = N m g (N) = 0.2 x 10 x 0.1 x 9.8 = 2.1 (N) CC 70 Lateral load F (N) RB 60 0.4 MPa 50 J 40 2.

h 9 l 16 2 x 4-J N F H + Stroke A K ZZ + 2 strokes S + Stroke H A K F N C B With rod boot In the case of w/o air cushion, it comes with rubber bumper.

Number of fingers and therefore, mg F 2 x With "a" as the safety margin, F is determined as follows: mg F = x a 2 x When = 0.2 When = 0.1 mg F = x 4 2 x 0.2 mg F = x 4 2 x 0.1 = 10 x mg = 20 x mg 10 x workpiece weight 20 x workpiece weight (Note) Even in cases where the coefficient of friction is greater than = 0.2, for safety reasons, SMC recommends selecting a gripping force which