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Input Specifications: 1 (Current Input), Output Specification: SV [2 Outputs (NPN/PNP Switching Type) + Analog Current Output], Unit Specification: Units selection Function; for Overseas use only; SI Unit provided for Use in Japan, Lead Wire: L (Power Supply/Output Connection Lead Wire, 2m), Bracket/Panel Mount: A2 (Bracket B, Horizontal Mounting), Sensor Connector: F (Sensor Connector, for

Series: LEKFS, Size: 40, Motor Mounting Position: In-line, Motor Type: S4 (400W Output, Incremental Encoder), Lead: B (LEKFS25, 6mm; LEKFS32, 8mm; LEKFS40, 10mm), Stroke: 500mm, Motor Option: w/o Option, Grease Application: with, Cable Type: S (Standard Cable), Cable Length: 2 (2m), Driver Type: A2 (LECSA2-S, 200~230V Incremental, Pulse Input), I/O Cable Length: 1 (1.5m)

Series: LEKFS, Size: 40, Motor Mounting Position: In-line, Motor Type: S4 (400W Output, Incremental Encoder), Lead: B (LEKFS25, 6mm; LEKFS32, 8mm; LEKFS40, 10mm), Stroke: 500mm, Motor Option: w/o Option, Grease Application: with, Cable Type: S (Standard Cable), Cable Length: 5 (5m), Driver Type: A2 (LECSA2-S, 200~230V Incremental, Pulse Input)

Static Load B W3max=60Nm (Checked from graph with Va) W3 15 Load Rate a1= = =0.25 W3max 60 B M2max=2Nm (Checked from graph with Va) M2=Wx L1=15x0.05=0.75Nm M 2 0.75 Load Rate a2= = =0.375 M 2max 2 3.

ML2B32 15N Va 0.25m/s 0.5MPa L1 0.05m L2 0.05m W W 1 L L1 W W W M We M3 V M1 V <> W max=60N( Va P 19) a1= W = 15 =0.25 W max 60 M 2 max=2Nm( Va P 19) a2= M = 0.75 =0.375 M max 2 <> We=1.410VaW=1.4100.2515=52.2N M max=3.5Nm( V=1.4Va) M 3 WeL 1 =52.50.05 1 =0.88Nm 3 3 a3= M 3 = 0.88 =0.25 M 3max 3.5 M max=12Nm( V=1.4Va) M 1 WeL 1 1 =52.50.05 1 =0.88Nm 3 3 a4= M 1 =

Table 9 Port size Size Port size Size Port size A1, B1 A2, B2 10 M5x0.8 10 20 20 A1 30 Rc1/8 30 50 50 M5x0.8 B2 B1 G1/8 70 70 NPT1/8 100 100 Fig. 8 NPTF1/8 200 200 Rotary table ports and plate have a fixed orifice. Do not make the diameter of this hole larger by additional processing.

Force OUT 1 ON OUT0 [ ] OUT1 OFF OUT2 [ ] a2 Output signal Output signal corresponding to No.1 terminal keykey Output signal corresponding to No.2 terminal Output signal corresponding to final terminal 77 - b ON/OFF SETSET ON/OFFON/OFF b1 SET AX IS. Force OUT 1 Output signal Output pin SET . ON/OFF SET AX IS.

A part z1 m1 = 20 x 3 x 4 x 2.7 x 10-6 = 6.48 x 10-4 (kg) Weight calculation m1 = a x b x c x Relative density IZ1 Inertial moment around Z1 axis IZ1 = {m1 (a2 + b2) / 12} x 10-6 = {6.48 x 10-4 x (202 + 32)/12} x 10-6 = 2.21 x 10-8 (kg.m2) = 2.21 x 10-8 + 6.48 x 10-4 x 16.42 x 10-6 = 0.20 x 10-6 (kg.m2) IA Inertial moment around Z axis IA =IZ1 + m1r12 x 10-6 z f2 z2 B part r2 = 23.5(mm)

Calculate the moment of inertia of attachment. z r1 Material of attachment: Aluminum alloy (Specific gravity = 2.7) A part z1 r1 = 37 (mm) Calculation of weight m1 = a x b x c x Specific gravity m1 = 40 x 7 x 8 x 2.7 x 10-6 = 0.006 (kg) Moment of inertia around Z1 axis IZ1 = {m1(a2 + b2)/12} x 10-6 Iz1 = {0.006 x (402 + 72)/12} x 10-6 = 0.8 x 10-6 (kgm2) IA = 0.8 x 10-6 + 0.006 x 372 x 10

Calculate the moment of inertia of attachment. z r1 Material of attachment: Aluminum alloy (Specific gravity = 37 (mm) r2 = 2.7) A part z1 m1 = 40 x 7 x 8 x 2.7 x 10-6 = 0.006 (kg) Calculation of weight m1 = a x b x c x Specific gravity Moment of inertia around Z1 axis IZ1 = {m1(a2 + b2)/12} X 10-6 Iz1 = {0.006 x (402 + 72)/12} x 10-6 = 0.8 x 10-6 (kgm2) IA = 0.8 x 10-6 + 0.006 x 372 x 10

Bushing: MS-5B Plug: MS-5P Width across flats 10 Width across flats 7 KQ2 Effective area: 12 mm2 Weight: 5.5 g Weight: 1.2 g KQB2 Extension Fitting: MS-5J Nipple: MS-5N KS KX Width across flats 7 KM KF M Width across flats 7 Effective area: 4.0 mm2 Weight: 3.4 g Effective area: 4.0 mm2 Weight: 1.4 g H/DL L/LL Barb Tee for Soft Tube: MS-5ATHU-3/4/6 KC Weight (g) Effective area (mm2) 1.1 1.4 A1 A2

Symbol: A0 Symbol: A1 Symbol: A2 Symbol: A3 DA C0.5 C 30 30 H H W1 T H A H Symbol: A4 Symbol: A5 Symbol: A6 Symbol: A7 RD B RD AL MM AL MM 30 H L 30 30 30 H L W H H Symbol: A8 Symbol: A9 Symbol: A10 Symbol: A11 C0.5 file chamfer AL B MM Made to Order Auto Switch WA C R sphere TP R sphere DC 30 H W1 T H H H Symbol: A12 Symbol: A13 Symbol: A14 Symbol: A15 R sphere C0.5 DA DA AL MM DA C

Thin shaft Position of rotational axis: Perpendicular to the shaft through one end I = m1 + m2 3 a1 I = m 2 r 3 a2 2. Thin shaft Position of rotational axis: Through the shaft's center of gravity 7. Solid sphere Position of rotational axis: Diameter I = m 12 a I = m 5 2r 3.

Eliminate the unnecessary parts. 1.10-18 Air Cylinder Series CS1 Accessory Dimensions Accessories I type single knuckle joint Knuckle pin, Clevis pin CJ1 Material: Cast iron CJP Bore (mm) NDH10 Material: Carbon steel A2 RR1 U1 Part No. A1 E1 L1 MM NX d (Drill through) Part No.

A part z1 m1 = 20 x 3 x 4 x 2.7 x 10-6 = 6.48 x 10-4 (kg) Weight calculation m1 = a x b x c x Relative density IZ1 Inertial moment around Z1 axis IZ1 = {m1 (a2 + b2) / 12} x 10-6 = {6.48 x 10-4 x (202 + 32)/12} x 10-6 = 2.21 x 10-8 (kg.m2) = 2.21 x 10-8 + 6.48 x 10-4 x 16.42 x 10-6 = 0.20 x 10-6 (kg.m2) IA Inertial moment around Z axis IA =IZ1 + m1r12 x 10-6 z f2 z2 B part r2 = 23.5(mm)

Calculate the moment of inertia of attachment. z r1 Material of attachment: Aluminum alloy (Specific gravity = 37 (mm) r2 = 2.7) A part z1 m1 = 40 x 7 x 8 x 2.7 x 10-6 = 0.006 (kg) Calculation of weight m1 = a x b x c x Specific gravity Moment of inertia around Z1 axis IZ1 = {m1(a2 + b2)/12} X 10-6 Iz1 = {0.006 x (402 + 72)/12} x 10-6 = 0.8 x 10-6 (kgm2) IA = 0.8 x 10-6 + 0.006 x 372 x 10

Made to Order Modification of Rod End Configuration 1 CH2 Series Mounting type Bore size Rod size series Stroke Cylinder options X A0 Indicate the rod end configuration pattern symbol A1 A2 A3 CO.5 30 30 30 30 D D D d d Width across flats F F F A4 A5 A6 30 30 30 D D D d D d 30 30 Width across flats Width across flats F Width across flats F F Note) Female thread effective depth should

Symbol: A4 Symbol: A3 Symbol: A2 Symbol: A5 30 30 30 C0.5 30 Symbol: A7 Symbol: A9 Symbol: A6 Symbol: A8 Symbol: A10 approx.

VK300-37-2-01 VK300-37-2-02 VK300-37-2-07 VK300-37-4-51 VK300-37-4-06 VK300-37-3-05 VK300-37-3-53 A1 A2 A3 LW06 LW2 LD4 LD8 100 VAC 200 VAC 240 VAC 6 VDC 12 VDC 24 VDC 48 VDC 4-13-3 4 For details about the applicable products conforming to international standards, visit us at www.smcworld.com. 3 Port Direct Operated Poppet Solenoid Valve Series VKF300 How to Order Valves Electrical entry

VK300-37-2-01 VK300-37-2-02 VK300-37-2-07 VK300-37-4-51 VK300-37-4-06 VK300-37-3-05 VK300-37-3-53 A1 A2 A3 LW06 LW2 LD4 LD8 100 VAC 200 VAC 240 VAC 6 VDC 12 VDC 24 VDC 48 VDC 4-13-3 4 For details about the applicable products conforming to international standards, visit us at www.smcworld.com. 3 Port Direct Operated Poppet Solenoid Valve Series VKF300 How to Order Valves Electrical entry