Wn Y Y-axis Yn X-axis Xn Z-axis Zn X Wa 65 mm 0 mm 5 mm 0.88 kg 210 65 150 111 Z Wb 150 mm 0 mm 42.5 mm 4.35 kg Wc 150 mm 111 mm 42.5 mm 0.795 kg Wd 150 mm 210 mm 42.5 mm 0.5 kg Y 42.5 5 n = a, b, c, d 3.
Wn Y X-axis Xn Y-axis Yn Z-axis Zn X Wa 5 mm 0 mm 65 mm 0.88 kg 210 65 150 111 Z Wb 42.5 mm 0 mm 150 mm 4.35 kg Wc 42.5 mm 111 mm 150 mm 0.795 kg Wd 42.5 mm 210 mm 150 mm 0. 5kg Y 42.5 5 n = a, b, c, d 3 Composite Center of Gravity Calculation m1 = mn = 0.88 + 4.35 + 0.795 + 0.5 = 6.525 kg 1 m1 X = x (mn x xn) 1 6.525 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 0.5 x 150) = 138.5 mm 1 m1 Y
Load Blocking Workpiece Weight and Center of Gravity 42.5 150 Center of gravity 5 65 Workpiece no. Wn Weight mn X-axis Xn Y-axis Yn Z-axis Zn Z X Wa 0.88 kg 65 mm 0 mm 5 mm 111 Wb 4.35 kg 150 mm 0 mm 42.5 mm Y 210 Y Wc 0.795 kg 150 mm 111 mm 42.5 mm Wd 1.5 kg 150 mm 210 mm 42.5 mm n = a, b, c, d 3.
(Wn) Weight (mn) Y-axis Yn Z-axis Zn X-axis Xn Z X Wa 5 mm 0.88 kg 0 mm 65 mm 111 Wb 42.5 mm 4.35 kg 0 mm 150 mm Y 210 Y Wc 42.5 mm 0.795 kg 111 mm 150 mm Wd 42.5 mm 1.0 kg 210 mm 150 mm n = a, b, c, d 3 Calculation of composite center of gravity m3 = mn = 0.88 + 4.35 + 0.795 + 1.0 = 7.025 kg 1 m3 X = x (mn x xn) 1 7.025 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 1.0 x 150) = 139.4 mm 1
Load Blocking Mass and Center of Gravity for Each Workpiece 5 42.5 65 150 Center of gravity Mass mn Workpiece Wn Y-axis Yn X-axis Xn Z-axis Zn Z X Wa 0 mm 5 mm 0.88 kg 65 mm 111 210 Wb 0 mm 42.5 mm 4.35 kg 150 mm Y Y Wc 111 mm 42.5 mm 0.795 kg 150 mm Wd 210 mm 42.5 mm 0.5 kg 150 mm n = a, b, c, d 3.
Wn Weight mn X-axis Xn Y-axis Yn Z-axis Zn Z X Wa 0.88kg 65mm 0mm 5mm 111 Wb 4.35kg 150mm 0mm 42.5mm Y 210 Y Wc 0.795kg 150mm 111mm 42.5mm Wd 1.5kg 150mm 210mm 42.5mm n = a, b, c, d 3 Composite center of gravity calculation m3 = mn = 0.88 + 4.35 + 0.795 + 1.5 = 7.525kg 1 m3 X = x (mn x xn) 1 7.525 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 1.5 x 150) = 140.1mm 1 m3 Y = x (mn x yn) 1 7.525
Wn Mass mn X-axis Xn Y-axis Yn Z-axis Zn Z X Wa 0.88kg 65mm 0mm 5mm 111 Wb 4.35kg 150mm 0mm 42.5mm Y 210 Y Wc 0.795kg 150mm 111mm 42.5mm Wd 1.5kg 150mm 210mm 42.5mm n = a, b, c, d 3 Composite center of gravity calculation m = mn = 0.88 + 4.35 + 0.795 + 1.5 = 7.525kg 1 m X = x (mn x xn) 1 7.525 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 1.5 x 150) = 140.1mm 1 m Y = x (mn x yn) 1 7.525
oN Opd.tion: 360 it60 131) 130 360 360 130 150 150 r5n 150 1 1 0 150 150 i $'q (46.C) (4.5) 0,177 t'r.5) (10) 0.39,1 ool (5) (5) .) 0346 19.81 0.543 03.31 03.q M6di4 air {lub.i*td d 0ll.16}, .nd non.flflm.blo mn.torlci non{orcs!.
PA07 1 12 6 3 12 6 3 20 10 5 16 8 4 Feel length multiplication (STM) (Multiplier) PE02 0 0 (<1000 stroke)/0001 (>1000 stroke) Home position return type PE03 0010 3 (Stopper type) Home position return direction PE03 0010 1 (Motor side) Home position return Speed (rpm) PE04 500 150 300 600 150 300 600 90 180 360 112 225 450 Home position return/JOG operation Accelerationeration/De celeration
Wn Mass mn X-axis Xn Y-axis Yn Z-axis Zn Z X Wa 0.88kg 65mm 0mm 5mm 111 Wb 4.35kg 150mm 0mm 42.5mm Y 210 Y Wc 0.795kg 150mm 111mm 42.5mm Wd 0.5kg 150mm 210mm 42.5mm n = a, b, c, d 3 Calculation of composite center of gravity m = mn = 0.88 + 4.35 + 0.795 + 0.5 = 6.525kg 1 m X = x (mn x xn) 1 6.525 = (0.88 x 65 + 4.35 x 150 + 0.795 x 150 + 0.5 x 150) = 138.5mm 1 m Y = x (mn x yn) 1 6.525
Cylinder (Tube) Inner Diameter(φ): 50, Stroke(mm): 150, Cylinder Operation Method: [Double Acting] Double Acting, Rod Operation Method: Single Rods, Main Body Shape: Standard, Additional Function: Standard, Environment, Applications: Non-use of Copper and fluoropolymer-based Material (Partially Plating), End Locking: [Included] Presence, Valves: -, Cushion: Rubber cushion, Operating Pressure
Magnet: None, Mounting: B (Basic Style), Style: N (Non-lube Rubber Bumper), Bore Size: 50mm, Stroke: 150mm, Rod Boot: w/o Rod Boot, Lock Position: R (Front Lock), Release of Manual: L (Locking)
Magnet: None, Mounting: B (Basic Style), Style: N (Non-lube Rubber Bumper), Bore Size: 50mm, Stroke: 150mm, Rod Boot: w/o Rod Boot, Lock Position: R (Front Lock), Release of Manual: N (Non-locking Type)
Magnet: None, Mounting: B (Basic Style), Style: N (Non-lube Rubber Bumper), Bore Size: 50mm, Stroke: 150mm, Rod Boot: w/o Rod Boot, Lock Position: H (Rear Lock), Release of Manual: N (Non-locking Type)
Cylinder (Tube) Inner Diameter(φ): 50, Stroke(mm): 150, Cylinder Operation Method: [Double Acting] Double Acting, Rod Operation Method: Single Rods, Main Body Shape: Standard, Additional Function: Standard, Environment, Applications: Non-use of Copper and fluoropolymer-based Material (Partially Plating), End Locking: [Included] Presence, Valves: -, Cushion: Rubber cushion, Operating Pressure
Magnet: None, Mounting: Basic Style, Style: Non-lube Rubber Bumper, Bore Size: 50mm, Stroke: 150mm, Rod Boot: w/o Rod Boot, Lock Position: Front Lock, Release of Manual: Locking, Auto Switch: -, Lead Wire or Prewired Connector: -, Number: -, Auto Switch Mounting Bracket: -
Magnet: None, Mounting: Basic Style, Style: Non-lube Rubber Bumper, Bore Size: 50mm, Stroke: 150mm, Rod Boot: w/o Rod Boot, Lock Position: Rear Lock, Release of Manual: Non-locking Type, Auto Switch: -, Lead Wire or Prewired Connector: -, Number: -, Auto Switch Mounting Bracket: -
[Tips]
(B@wn)Lead wire: .}i^"r -.. lBlack, Lead wire: Connect wilh load ioi-* (Programmable contrcllr input or relay) O -.-'' (Blu) Lad wire: connect with Po$,er sourc ground Use ot Small Diameler Nozzle for Adsorption Somelimes small diamster nozzles on th orde. of o2mm may be used to adsorb electronic components, small precision components, elc.
Operating 150 psi Specifications Performance requirements of SAE J1 131 Tube O.D. Minimum (mm) Radius Minimum Burst Pressure at 24'C All colors are available in all tube sizes For use in Air Brake systems on Heavy Duty Vehicles. Cold and heat stabilized UV resistant lhwh0nfrr . = Box / A = Heel/' Spscial Order: O= Box n= Reel ilrhh 0rftn .