2 e @1 q @7 @5 @8 CXSL10 CXSL15 @0!5 @9@3@4r!8w!9!3 i!0 @2ut!6 @0 !5 @9 @4 r w !8 !9 !3 i !0 @2 u t !6 !4ye!1!2 q @1 !4 y e !1 !2 @3 @1 q CXSL20 to 32 @0 !5!6@3@4r!8w!7o i!0u@2t !4 y e !1 !2 q @1 Component Parts: Standard Piping Component Parts No.
Load voltage Auto switch model Lead wire length (m) Applicable load Pre-wired connector Tie-rod mounting Band mounting Indicator light Special function Type Electrical entry Wiring (Output) 0.5 (Nil) 3 (L) 5 (Z) 1 (M) AC DC M9N M9P J51 M9B M9NW M9PW M9BW M9NA M9PA M9BA F59F G39 K39 3-wire (NPN equivalent) 3-wire (NPN) 3-wire (PNP) IC circuit 24 V 5 V, 12 V Grommet 100 V, 200 V 2-wire 12
4 t w e !5 Rod end male thread CHQB32 to CHQB100 r o !0 y q !2 !1 !4 u t !3 e w !5 Rod end male thread Description Material Note Parts List Replacement Parts: Seal Kit No. Bore size (mm) Seal kit no.
t e 2 ) 1 pcs. 15 D-P3DW(A) 2 pcs. 15 1 pc. 5 N o t e 2 ) N o t e 4 ) 2pcs.
Type A mounting bracket part numberYA-03 JointYU-03 2 x O depth of counterbore Material: Stainless steel (mm) Bore size (mm) B D E J M O Part no.
Open F 4 x M5 x 0.8 through (Thread for mounting attachment) (mm) J 98 152 192 A B C D E F G H 40 70 90 Model MHL2-16D MHL2-16D1 MHL2-16D2 45 75 95 60 90 110 28 58 78 68 110 130 98 170 210 128 200 240 26 50 70 Note 1) J dimension is at fully closed.
Material: Chrome molybdenum steel (Nickel plated) mm Bore size (mm) YA 03 B D E F M T1 T2 Part no.
2 r w u e !5 y !9 u t MDHR3 !4 !3 q !1 @0 @1 w o e i !5 MHZ MHF r !7 !6 t !8 !0 !2 i !9 y u MHL Component Parts MHR MHR Description Material Description Material Note No. Note No.
Additionally, do not mount the foot bracket with the pressure applied to the port. y 0 A port B port a 1 w y y a e k w of y e e k g n of ra n e io at g ot R n R +4 0 ra ot n io 0 at at ot 8 R io 1 R +4 0 n y ot ra a w n y 0 g at e e k of 9 io 1 n ay ra w n g ey e of k 189
BMA3-050S (A set of a, b, c, e) BMA3-063S (A set of a, b, c, e) Auto switch Switch bracket (Resin) Transparent (Nylon)Note 1) d e White (PBT) c Switch holder b Auto switch mounting screw a * Band (a) is mounted so that the projected part is on the internal side (contact side with the tube).
8 e w !7 t !5 r o !8 e !6 w @0 !7 t !5 r o !8 e !6 w @0 !7 t !5 !0 u !2 i q !1 !4 y !9 !0 u !2 i q !1 !4 y !9 !0 u !3 !2 i q !1 !4 y !9 Open condition Component Parts Note No.
D-X Individual -X 857 Series RLQ Simple Joint: 32 to 63 Type A Mounting Bracket Type A Mounting Bracket 2 x D T1 T2 M W V U Joint F B E Material: Chromium molybdenum steel (mm) Joint and Mounting Bracket (Type A, Type B) Part No. Bore size (mm) 32, 40 50, 63 B D E F M T1 T2 Part No.
The end angular speed is obtained by: t Table 9 Allowable kinetic energy (J) Size Allowable kinetic energy : Rotation angle [ rad ] : Rotation time [ s ] 1 0.001 Kinetic energy E is obtained by: 2 0.0015 3 0.002 7 0.006 E Therefore, the rotary table rotation time is: E: Allowable kinetic energy [ J ] : Rotation range [ rad ] I: Moment of inertia [ kgm2 ] During uniform acceleration, the
The end angular speed is obtained by: Table 7 Allowable kinetic energy (J) t Size Allowable kinetic energy : Rotation angle [ rad ] : Rotation time [ s ] 10 0.00025 15 0.00039 Kinetic energy E is obtained by: 20 0.025 30 0.048 40 0.081 E Therefore, the rotary actuator rotation time is: E: Allowable kinetic energy [ J ] : Rotation range [ rad ] I: Moment of inertia [ kgm2 ] Note) If the
Load mass (kg) 40 50 40 32 E = 2 M + m 2 30 20 E = Kinetic energy (J) M = Mass of non-moving part (kg) m = Mass of moving part (kg) = Piston speed (m/s) 10 5 150 100 200 300 Model Selection Maximum speed (mm/s) RZQ Moving Part Mass Unit (kg) 2. Use the cylinder in applications in which the overrun will not cause any problem.
5 e r t q w @9 @4 @2 CXTM Guide rod/bearing @8 @5 CXTL Guide rod/bearing @1 @6 !9 @7 !2 y !3 u o !8 !0 !7 !6 Description Material Note Component Parts No. Component Parts No.
Please refer below for calculation of kinetic energy. 2 I 2 1 E = E : Kinetic energy J : Angular speed rad/s I: Inertia moment kg/m2 Allowable kinetic energy for the rotary actuator is limited. The limit of rotation time is obtained by calculating inertia moment. Please refer following for obtaining inertia moment.
Please refer below for calculation of kinetic energy. 2 I 2 1 E = E : Kinetic energy J : Angular speed rad/s I: Inertia moment kg/m2 Allowable kinetic energy for the rotary actuator is limited. The limit of rotation time is obtained by calculating inertia moment. Please refer following for obtaining inertia moment.
10 Steel lined oil imfilled acetal resin bearing Cylinder Compact cylinder 11 Description Replacement Parts MHT2-32DZ MHT2-40DZ MHT2-50DZ MHT2-63DZ Main parts wo e!
In-line D-M9N D-M9P D-M9B D-M9NA D-M9PA D-M9BA Electrical entry Special function Wiring (Output) Indicator light Applicable load Smbol A B C E F G 3-wire (NPN) 3-wire (PNP) 2-wire Relay, PLC IC circuit 24 V 5 V, 12 V Grommet Yes 12 V Yes 3-wire (NPN) 3-wire (PNP) 2-wire 24 V 5 V, 12 V Relay, PLC IC circuit Water resistance (2-color display) Grommet 12 V Option (For detail, refer to page