V = 2gH/1000 x 60 Obtain the total amount of the work piece. Total mass m = 10 x 0.1 (kg) = 1 (kg) Obtain the intersection of the transfer speed V and the total weight of work piece m.
Ra is used to compensate the gas and/or ambient temperature. (a) The gas is static. Ra Ru Rh Rd Flow (b) The gas flows from the left side. 931 Series PFM7/PFM5 Component Parts Straight piping No.
V = 2gH/1000 x 60 Obtain the total amount of the workpiece. Total weight m = 10 x 0.1 (kg) = 1 (kg) Obtain the intersection of the transfer speed V and the total weight of workpiece m.
Lateral load Operating pressure: 1 MPa 1000 200 300 500 Stroke Eccentric distance 100 100 Load weight (kg) 10 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com 63 Allowable lateral load (N) 50 40 63 1 32 25 20 50 40 10 32 0.1 25 10 100 200 300 500 1000 Maximum piston
2 x 4-OB Depth of counterbore RB F Q Y I 4-N through 0.2 D E M L B + Stroke K 0.2 A + Stroke M E 25, 30, 40 H effective thread depth C 2-Rc1/8 (NPT1/8, G1/8) F Q Y 2 x 4-OB Depth of counterbore RB 2 x 4-OA effective depth RA J I 4-N through 0.2 D W E M K L B + Stroke 0.2 A + Stroke M E (mm) Bore size (mm) Stroke range (mm) Note) A OA B C D E F H RB I J K L M N OB Q RA W Y 10 10 to 40 39.5
Standard type (through hole type) Double end tapped type: RQA, RDQA Double end tapped mm OA threads RA RA Bore size (mm) OA RA 63 80 100 M10 x 1.5 18 M12 x 1.75 22 M12 x 1.75 22 H thread effective depth C 4-N through 2 x 4-OB depth of counter bore RB Approx.
V = 2gH/1000 x 60 20 12 = 2 x 9.8 x 15/1000 x 60 = 32.5 (m/min) 20 L=60mm 20 L=50mm . Obtain the intersection of the collision speed V and the total weight of the work piece m. Confirm that the value is within the operating range of the point of application L = 60mm.
V = 2gH/1000 x 60 20 12 = 2 x 9.8 x 15/1000 x 60 = 32.5 (m/min) 20 L=60mm 20 L=50mm Work piece weight (kg) . Obtain the intersection of the collision speed V and the total weight of the work piece m. Confirm that the value is within the operating range of the point of application L = 60mm.
Ra is used to compensate the gas and/or ambient temperature. (a) The gas is static.
Arm length L A Arm length L A Table 1 Table 1 A Model A Model CKZ3N50 CKZ3N63 CKZ3T50 CKZ3T63 5 10 Series CKZ3N Series CKZ3T 10 10 50 63 Arm length L: 150 mm Arm length L: 200 mm 3000 3000 Peak clamping force position 2500 2500 Peak clamping force position 0.7 MPa 2000 2000 Clamping force (N) Clamping force (N) 0.5 MPa 0.7 MPa 1500 1500 1000 1000 0.5 MPa 0.3 MPa 0.3 MPa 500 500 0 0 0 0.5
Specifications [Surface finish Ra] Surface finish of the inner surface (wetted parts). A standard for measuring surface roughness which averages the peak to valley of the surface profile over a given distance (stroke). Multiple readings on a part are also averaged for Ra, but for Ra max, the worst reading is the value for that part.
Extension Locking, Rubber Bumper Retraction Locking, Rubber Bumper 1000 1000 100 100 80 100 80 100 Load mass (kg) Load mass (kg) 63 63 10 10 50 50 40 40 25 32 25 32 1 1 20 20 0.5 MPa 0.4 MPa 0.5 MPa 0.4 MPa 0.1 0.1 100 500 Maximum speed (mm/s) 100 500 Maximum speed (mm/s) Allowable Load Mass Horizontal (Without switch) Horizontal (With switch) 30 30 10 10 100 100 80 Load mass m (kg) Load
Basic style (Through-hole/Both ends tapped common): CQSK/CDQSK 12 16 Auto switch H thread effective depth C 2 x 2 x OB counterbore Minimum lead wire bending radius 10 2 x M5 x 0.8 2 x 2 x OA effective depth RA Note) 2 x N through Width across flats Flat washer 2 pcs.
Technical data 879 Series HYG Dimensions: 20, 25 With auto switch: HYDG20, 25 RC RB 4 x RE depth RF RA + Stroke Bottom view M5 x 0.8 (Breathing port on guide) Note 3) TA QA RB RA + Stroke 4 x TC depth TD 4 x RD through 4 x RE depth RF (D-F6) [Auto switch] MB J [24] PC RC G UB D TB L 10 [29] QB [29] [Width across flats 3] 2 x K [ 3] PA H F UA 11.5 4 x UC depth UD (4.7) A + Stroke B + Stroke
With air cushion 2 x M5 x 0.8 Relief port RA GA WA RA GA WA Cushion valve (Width across flats WH) Cushion valve (Width across flats WH) 10 10 20 20 ZZ + 2 Stroke S + Stroke (mm) A AL Bore size Stroke range Standard Long B1 C D E F GA H H1 I J K KA MM NA P RA S 1 2 ZZ 20 20 20 13 14 14 20 20 2 2 2 2 2 2 3 3 12 14 18 25 30 32 40 50 8 10 12 16 20 20 25 30 14 16.5 20 26 32 38 50 60 13 17 17 19
of bottom positioning pin hole Position of bottom positioning pin hole Symmetric type For 180 For 90 Positioning pin hole Positioning pin hole 3 Counter-clockwise 3 B port 3 22.5 3 22.5 84 96 e ng e ng ra 3 ra on on ti A port ta 3 ti 90 4 ro ta 7 ro m 1 A port A port u Clockwise m e e m g s u 3 i ni w n k im C c ra l o Mi 6 3 8 n ax o 1 ti ta M ro e m g u m ni n Mi e ra 180 C s l i o
20 ~ 1000 32 35 70 52 20 40 17 17 M 8 x 1.25 7 11 M 18 x 1.5 30 3/8 90 0 63 ~ 1000 20 ~ 1000 32 35 85 64 20 40 17 17 M 10 x 1.25 7 14 M 18 x 1.5 31 3/8 98 0 80 ~ 1000 20 ~ 1000 37 40 102 78 25 52 21 21 M 12 x 1.75 11 17 M 22 x 1.5 37 1/2 116 0 100 ~ 1000 20 ~ 1000 37 40 116 92 30 52 21 21 M 12 x 1.75 11 17 M 26 x 1.5 40 1/2 126 0 Without gaiter With gaiter Bore Size (mm) FV FD FT FX FY FZ
500 250 143 1000 500 250 Different from the initial value. *5.
Electronic gear numerator *3 PA06 1 32768 Electronic gear denominator *3 PA07 1 2500 1500 750 3000 2000 1000 3750 2500 1250 Feel length multiplication (STM) (Multiplier) PA05 0 0(Less than stroke 1000)/ 0001(Stroke 1000 or more) Home position return type PC02 0 3Stopper type Home position return direction PC03 0001 1 (Motor side) Home position return Speed (rpm) PC04 500 90 150 300 75 113
20 ~ 1000 32 35 70 52 20 40 17 17 M 8 x 1.25 7 11 M 18 x 1.5 30 3/8 90 0 63 ~ 1000 20 ~ 1000 32 35 85 64 20 40 17 17 M 10 x 1.25 7 14 M 18 x 1.5 31 3/8 98 0 80 ~ 1000 20 ~ 1000 37 40 102 78 25 52 21 21 M 12 x 1.75 11 17 M 22 x 1.5 37 1/2 116 0 100 ~ 1000 20 ~ 1000 37 40 116 92 30 52 21 21 M 12 x 1.75 11 17 M 26 x 1.5 40 1/2 126 0 Without gaiter With gaiter Bore Size (mm) FV FD FT FX FY FZ