Description q w e r t y u i o !0 !1 !2 !3 !4 !5 !6 !7 !8 !9 @0 @1 @2 @3 @4 @5 Material Rolled steel plate Rolled steel plate Carbon steel Rolled steel plate Carbon steel Steel wire Urethane Cast iron Lead-bronze casted Carbon steel Carbon steel Rolled steel No. Description q w e r t y u i o !0 !1 !2 !3 !4 !5 !6 !7 !8 !
Find the moment of inertia I for the rotation of shaft (B). r B 2. I is converted to the rotation of the shaft (A). B 2 r I = m2 2 b a I I = A B Number of teeth = b 5. Solid sphere Position of rotational axis: Through the center of diameter r 2 2 r I = m5 -27- Kinetic energy Table shows the allowable kinetic energy of the rotary actuator.
Leakage voltage Take note that the leakage voltage will increase when a resistor is used in parallel with a switching element or when a C-R circuit (surge voltage suppressor) is used for protecting a switching device because of the leakage voltage passing through the C-R circuit. The suppressor residual leakage voltage should be as follows. 4.
How to Order Manifold
7 r !5 CJ1 CJP CJ2 JCM CM2 32 CM3 CG1 CG3 JMB MB MB MB1 MBW125 CA2 Component Parts CS1 No. Description Material Qty Note 1 Rod cover Aluminum die-cast 2 Trivalent chromated No.
3 @3 r t @5 e !1 @1 @1 @4 @6 !4 @6 !4 u @8 !5 @0 !8 !9 i Parts list Parts list Description Material Note Description Material Note No. No.
Fluid Passage Structure q r r No.
Basic moment of inertia 2 r m I m : Weight [ kg ] r : Center of gravity of load and distance of rotational axis [ m ] This shows moment of inertia of m (weight) at r distance from the axis of rotation. The calculation for the moment of inertia depends on the shape of the object. Date 2 shows formulae to find moment of inertia of various shapes.
Basic moment of inertia 2 r m I m : Weight [ kg ] r : Center of gravity of load and distance of rotational axis [ m ] This shows moment of inertia of m (weight) at r distance from the axis of rotation. The calculation for the moment of inertia depends on the shape of the object.
9 e r Component Parts Note Anodized Anodized Chromated No.
Applicable cable O.D.: 4 to 6.5 (Reference) 0.5 mm2 2 core and 3 core wires equivalent to JIS C 3306 NL: Neon bulb R: Resistor LED: Light emitting diode R: Resistor D: Protective diode LED: Light emitting diode R: Resistor How to Calculate the Flow Rate For obtaining the flow rate, refer to front matters 44 to 47.
Red flashes if the CPU is abnormal. q w e r t y u Green lights up when emitters require cleaning.
Through-hole/CQ2YB, CDQ2YB Both ends tapped/CQ2YA, CDQ2YA Both ends tapped (mm) Bore size (mm) 63 O1 R O1 thread R R M10 x 1.5 18 80 M12 x 1.75 22 100 M12 x 1.75 22 H thread effective depth C 4-N through 8-O counter bore U Q F 2-P (Port size) (Rc, NPT, G) I 22 M E D Z 11 Lead wire min. bending radius 10 Auto switch D-A7, A8 K M E S J B + Stroke A + Stroke L Rod end male thread H1 Rod end
24 V: 600 Min. load impedance 50 -S/-R (Auto-shift input mode) With auto-shift switch output NPN open collector output type-2 output Max. 28 V, 80 mA Residual voltage 1 V or less -X (Copy function switch output) -S/-R (Copy input mode) NPN open collector output type-2 output Max. 28 V, 80 mA Residual voltage 1 V or less -22No.PS-OMU0009-D -V/-T (Analog output mode) Switch output PNP open
P V < 2 3 . 0 o C # 1 S V 3 0 . 0 o C M O D E R e m : 0 5.10.4 Circulating fluid set temperature The circulating fluid set temperature can be set by specifying the circulating fluid target temperature during Serial Remote mode.
Symbol: A3 Symbol: A2 Symbol: A1 Symbol: A0 C DA C0.5 30 30 A H H H W1 T H Symbol: A7 Symbol: A6 Symbol: A5 Symbol: A4 30 RD RD B AL MM AL MM H L L W H 30 30 H 30 H Symbol: A11 Symbol: A10 Symbol: A9 Symbol: A8 WA C C0.5 file chamfer AL B MM R sphere TP R sphere DC 30 H W1 T H H H 117 Simple Specials C85/C75 Series Single Acting, Spring Return/Extend Single Acting, Spring Return/Extend
0 i e r y !3 !4 @0 !9 t !8 @2 @4 !
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 =
Counter (CEU1) Brake valve Solenoid valve Hyrodless Monosashi-kun (ML2) Extension cable (CE1-R) 11 For precise positioning (Stopping accuracy 0.5mm) Hyrodless Monosashi-kun + Controller Controller : CEU2 Series External equipment (Sequence controller, etc.)