1010 (FKM) 1.3 x 1011 (FKM) A w, e, r 1.3 x 108 1.3 x 109 B w, e 1.3 x 108 1.3 x 109 C r 1.3 x 1010 (FKM) 1.3 x 109 D w 1.3 x 108 1.3 x 1011 (FKM) E w, r 1.3 x 108 1.3 x 109 Seal material Symbol Seal material Compound no.
Z m M1: Moment M1 M1 max (from q of graph MY3A/3B/M1) = 4 (Nm) M1 = m x g x Z = 3 x 9.8 x 0.04 x 10-3 = 1.18 (Nm) m Z Load factor 1 = M1 M2 max = 1.18 4 = 0.29 2 Model Selection Series MY3A/3B Calculation of Guide Load Factor 4 Calculation of Load Factor for Dynamic Moment Equivalent load FE at impact FE = 1.4a x x m x g = 1.4 x 300 x x 3 x 9.8 = 123.56 (N) 1 100 M1 M1E: Moment M1E max
(Example) For M4: L2 = 8 mm Applicable shaft types; S, W L1 L1 = L1 = Q1 = M Q1 = M Q1 = M Q1 = M L1 = L1 L1 = Q2 = M Q2 = M L2 = L2 = Q1 Q1 Size 10, 15 Size 20, 30, 40 Size 10, 15 Size 20, 30, 40 (mm) (mm) (mm) Size 10, 15 Size 20, 30, 40 Size Size Size 10 15 20 30 40 10 15 20 30 40 10 15 20 30 40 Thread Thread Thread M3 x 0.5 M4 x 0.7 M5 x 0.8 M6 x 1 M3 x 0.5 M4 x 0.7 M5 x 0.8 M6 x 1 M3
Applicable shaft type: W CRQ2 MSQ (mm) MSZ Q2 Y L2 max Size (mm) Q1=M Q2=M CRQ2X MSQX 10 X Q1 L1 max Size M 4 7 to 8 Y-3 Y= 10 15 9 to 14 M4 X-5 M 5 8.5 to 9 Y-3.5 L2= L1= MRQ 15 20 M5 11 to 18 X-6 M 6 10 Y-4 X= 20 30 M6 13 to 20 X-7 M 8 13 Y-5 30 40 M8 16 to 22 X-8 M10 15 Y-6 Symbol: A5 Symbol: A6 The long shaft can be further shortened by machining it into a stepped round shaft.
Applicable shaft type: W MSQ MSZ (mm) CRQ2X MSQX Q2 L2 max Y Size (mm) L1 = X = Q2 = M Q1 = M 10 Y 3 M 4 X L1 max Q1 Size 7 to 8 L2 = Y = MRQ 10 15 Y 3.5 M 5 M4 7 to 14 X 3 8.5 to 9 15 20 Y 4 M 6 M5 8.5 to 18 X 3.5 10 20 30 Y 5 M 8 M6 10 to 20 X 4 13 30 40 Y 6 M10 M8 13 to 22 X 5 15 Symbol: A5 The long shaft can be further shortened by machining it into a stepped round shaft.
FV M FZ FX FT FX FZ 4 x FD FT 4 x FD The head flange type is not available for the EQY32.
Flat Type Fingers [3] D4-MM thread depth L (Thread for mounting attachment) 20K J A A D G B D B K J F C S W O (mm) Model Open Closed Weight (g) F G MM L J K C D B A W MHZ2-63 (1) 0 0.05 0 0.05 0 0.05 0 0.05 0 0.05 0 0.05 0 0.05 +1.2 0.8 2H9 2.5H9 3H9 4H9 5H9 6H9 +0.2 0 26 55 115 235 420 4.45 5.8 7.45 8.9 14.8 17.7 M2 x 0.4 M2.5 x 0.45 M3 x 0.5 M4 x 0.7 M5 x 0.8 M6 x 1 M8 x 1.25 3 5 6 8
Option Body Option/End Boss Type Type of piping port Symbol Piping port location Applicable model Double acting Single acting MHZJ2-25 MHZJ2-16 MHZJ2-20 M5 x 0.8 M5 x 0.8 MHZJ2-10 M3 x 0.5 M3 x 0.5 Nil E W K M Basic type Side ported Axial ported Axial ported Axial ported With 4 One-touch fitting for coaxial tubing With 4 One-touch fitting M5 x 0.8 For detailed specification on body options
This could cause auto switch malfunction. 2 x M3 x 0.5, depth 5 Max. 19 M N Width across flats 12 Stroke: S MXP10-10B H 12.5 M8 x 1 A 4 x M3 x 0.5, depth 4 6.5 5.3 14.4 7 MA 40.8 4 11 17.8 21 20 8.5 3 0 +0.030 , depth 2.5 3 0 +0.030 , depth 2.5 A Pilot hole diameter 3.3 4 x M4 x 0.7 15 19 0.5 2 x M5 x 0.8 Piping port W 200.05 2 x M5 x 0.8 Piping port (Plug: M-5P) D B 80.05 10 J 3 0 +0.030
3 y e q w !7 r !4 !8 !6 !2 t u !5 o C85 C95 CP95 NCM NCA D!1 !0 i -X Component Parts 20Material Description Note No.
r w e r e Component Parts No.
Flow Characteristics Fluid: Air (pressurized) Measured pressure: Downstream release to atmosphere 0.01 0.005 Supply pressure (MPa) AMJ5000 0.001 AMJ4000 0.0005 AMJ3000 100 10 50 0.0001 500 1000 Air flow rate (l/min (ANR)) Construction q q OUT IN IN OUT t w r w e r e Component Parts No.
Function: 1 (Normally Closed), Piping: 4 (Base Mounted), Body Option: M (Common EXH), Specifications: Standard, Voltage: 5 (24VDC), Lead Wire: M (M Plug Connector w/Lead Wire 0.3m), Surge Suppressor: U (Surge Suppressor w/Light Non-polar), Manual Override: Non-locking Push Style, Port Size: 02 (Base Mounted w/Sub-plate 1/4)
bore size determination F3 D1.6 x ___ P WB Inclined operation W+WBWV PPV W+WB>WV P>PV Allowable driving force table (Fn) (n = 1, 2, 3) Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 F2 = (W + WB) x 9.8 x (cos + sin) F3 = (W + WB) x 9.8 x ( + 1) Horizontal Inclined Vertical (Refer to p. 14 for vertical operation.)
: M-5P) 30 4-M6 x 1 4-M5 x 0.8, depth 7 Bottom hole diameter 5.1 W 32 0.05 D B 8 0.05 47 13 Operating port 2-M5 x 0.8 J 8 Mounting base side B D 16.5 14.5 Across AA MXP16-30B Without magnet and switch rail 2-M3 x 0.5, depth 3.5 For rail mounting 8 2-M2 x 0.4, depth 3 For magnet mounting 8.5 10.7 6-M5 x 0.8, depth 7 20 20 L (mm) Model M MA W H S Z J V K L MXP16-20B 40 30 65 58 20 102 93 82
CJ5 CG5 HY C M D-X Individual -X Technical data 893
m 1000 L1 a = 3000 0 20 40 60 Transfer load m (kg) 600 L2 400 Mer L2 (mm) Rolling Yawing m 200 L2 Mer 0 20 40 60 m Transfer load m (kg) 2000 a = 1000 L3 (mm) L3 1000 a = 2000 m a = 3000 Mey a 0 20 40 60 Transfer load m (kg) Refer to page 145 for deflection data. 60 61 Non-standard Motor/Horizontal Mount Specification Series LJ1H30 Dimensions/LJ1H303PD(X10) Scale: 10% 8H10 depth 10 4-M8 x
Single acting Nil E W K M MHC With 4 One-touch fitting for coaxial tubing With 4 One-touch fitting M5 x 0.8 MHT MHY For detailed body option specifications, refer to option specifications on pages 422 and 423.
Angular speed: (/s) Step3 Allowable load q Check the allowable load Radial load Thrust load Moment Selection example Formula Allowable thrust load > m x 9.8 Allowable moment > m x 9.8 x H Thrust load 2.0 x 9.8 = 19.6 N < Allowable load OK Allowable moment 2.0 x 9.8 x 0.04 = 0.784 Nm < Allowable moment OK Step4 Rotation time q Calculation of cycle time (rotation time) Formula Angular
X m3 x g m2 x g Vertical mounting Mounting orientation Horizontal mounting Ceiling mounting Wall mounting Vertical mounting M3 Static load (m) m1 m2 m3 m4 Note) M1 Static moment M1 m1 x g x X m2 x g x X m4 x g x Z z y M2 m1 x g x Y m2 x g x Y m3 x g x Z Y Z M3 m3 x g x X m4 x g x Y m4 x g Note) m4 is a mass movable by thrust.