Applicable bore size A D L MM N R W Flat type Round type CJ-CF010 CJ-CR010 10 8 10 13 M4 x 0.7 6 10 8 Part no.
Sphere Position of rotation shaft: Diameter a b r r r = m 12 a2 + b2 = m 2 r2 = m 5 2r2 = m 4 r2 9. When a load is mounted on the end of the lever 10. Gear transmission (B) (A) Number of teeth = a r a2 a1 1. Find the moment of inertia B for the rotation of shaft (B). 2. Then, replace the moment of inertia B around the shaft (A) by A, m2 + m2a22 + K 3 a12 = m1 m1 (Ex.)
Pneumatic circuit W a r n i n g Use the pneumatic circuit which applies balance pressure to the both sides of the piston when locking.
L = Stroke 1 2 , or more than 100 mm 1 7 5 4 6 2 6 5 7 3 L L Fig. 11 Position for application of grease Table 10 Amount of grease units: g Stroke 32 40 50 63 80 100 P o s i t i o n f o r Bore g r e a s e At 100st 3 to 4 3 to 4 3 to 5 4 to 5 6 to 8 8 to 10 50st added 1 1 1 1.5 2 3 26 3-2-4.
Centralized piping on right R R L L R L Slide table actuation direction Centralized piping on left R L L R R L Slide table actuation direction 2. The plug position of the piping port can be changed to suit the operating conditions. When screwing in the plug for the second time, wrap a sealant tape around the plug to prevent leakage. (1) M5 First tighten lightly until the rotation stops.
2) Option R is not available with the MXS6 series.
M3E 1 3 1 3 M3E = x FE x Y = x 34.42 x 42.5 x 103 = 0.49 (NNm) FE Y Load factor a5 = M3E / M3E max = 0.49 / 19.5 = 0.03 M3 6 Sum and Examination of Guide Load Factors < = a = a1 + a2 + a3 + a4 + a5 = 0.98 1 The above calculation is within the allowable value and therefore the selected model can be used.
Do not indicate lead wire length symbol N (none) for types D-A3, D-A44, D-G-39 or D-K39. Lead wire length symbols: 0.5m . Nil (Example) C73C 3m . L (Example) C73CL 5m . Z (Example) C73CZ None .
Approx. 1.7 mm Colours Brown, White, Black, Blue Sheath Material Lead free heat and oil resistant PVC Finished O.D. 6 -66No.LV50***-OMQ0002-G Characteristics Chart Flow characteristics (pressure loss) LFE1 LFE2 0.02 0.02 P r essur r e l oss[ M P a] 0.015 0.015 P r essur e l oss[ M P a] 0.01 0.01 0.005 0.005 0 0 0 5 10 15 20 0 20 40 60 80 100 Fl ow r at e[ L/ m i n] Fl ow r at e[ L/ m i n]
[L/min] Flow rate [L/min] Fl ow r at e[ L/ m i n] Fl ow r at e[ L/ m i n] LFE3 0.02 Pressure loss [MPa] 0.015 P r essur e l oss[ M P a] 0.01 0.005 0 0 50 100 150 200 Fl ow r at e[ L/ m i n] Flow rate [L/min] -25No.LV50***-OMQ0004-F IN side straight pipe length (reference value) Straight pipe length 5 Change of accuracy [%F.S.]
D-G5NTL 75 + 50 (n-2) 15 75 30.5 38 43 50 A B 0 (1) 0.5 2 2 D-A3 D-G3, D-K3 100 + 100 (n-2) 35 + 30 (n-2) 35 100 D-B5, D-B6 33.5 23.5 25 25 Approx. Hs 25.5 (28.5) 38 43.5 50.5 D-A4 35 + 30 (n-2) 50 + 50 (n-2) 35 55 A B 0 2 3.5 3.5 D-G5NTL 27 25 26.5 26.5 Approx. Hs 33.5 38 43.5 50.5 A B 0 1.5 1.5 D-A3 D-G3, D-K3 23 24.5 24.5 Approx.
You do not need to specify "N" (i.e., without lead wire) for D-A3, D-A44, D-G39, and D-K39.
Do not indicate suffix N for no lead wire on D-A3/A44/G39/K39 models.
S T U LFE13 48 39 4.6 12 11.5 52 28 2.5 8.5 2 45g LFE14 48 39 4.6 12 11.5 52 28 2.5 8.5 2 45g LFE26 62 53 4.6 9.5 14 56 38 2.5 8.5 2.6 70g LFE38 62 53 4.6 3.5 20 68 43 2.5 8.5 2.6 70g 8mm0.70.8Nm 71 No.LFE*-OMY0008 M12 M12 M12 M12 (LFE (LFE (LFE (LFE-1 1 1 1-A3) A3) A3) A3) ( ( ( ( )3 )3 )3 )3 4( 4( 4( 4( ) ) ) ) ( ( ( ( )2 )2 )2 )2 1( 1( 1( 1( ) ) ) ) 72 No.LFE*-OMY0008 4-14-1,
Functional option With end lock (R) Axial piping (P) For details of adjuster and functional options, please refer to "Optional specifications" on page 46. IN OUT Theoretical Output Table The dual rod ensures an output twice that of existing cylinders.
) Fig. (1) Overhang: Ln (mm), Correction Value of Moment Center Position Distance: An (mm) Pitch moment Yaw moment Roll moment F F My L1 A1 L2 A2 A1 Mp W L1 A1 Mr Static moment Dynamic moment Graph (1) Load Mass: W W W MXJ4 A3 L3 L2 A2 0.10 L3 A3 Rubber stopper Mr Load mass W kg Mp 0.08 My Metal stopper W 0.06 W W 0.04 Mey Mep We 0.02 We L3 L2 A2 0.00 Collision speed V mm/s (Average speed
Parallel I/O Connector: CN5 M NPN output circuit MPNP output circuit COM COM A1 A1 24 VDC power supply for the input signals 24 VDC power supply for the input signals IN0 IN0 A2 A2 IN1 IN1 A3 A3 IN2 IN2 A4 A4 IN3 IN3 A5 A5 The power supply can be either polarity. The power supply can be either polarity.
NPN type PNP type Parallel input/output Parallel input/output Signal power supply Signal power supply Parallel IO connector Parallel IO connector 24VDC 24VDC A1 COM A1 COM A2 COM A2 COM A3 IN0 A3 IN0 A4 IN1 A4 IN1 A5 IN2 A5 IN2 A6 IN3 A6 IN3 A7 IN4 A7 IN4 A8 IN5 A8 IN5 A9 SETUP A9 SETUP A10 HOLD A10 HOLD A11 DRIVE A11 DRIVE A12 RESET A12 RESET A13 SVON A13 SVON Load B1 OUT0 Load B1 OUT0 Load