consumption (W) Max. operating frequency (Hz) A 80 1200 B 40 1000 C 10 550 D 4 350 E Note) Two mounting screws (M3 x 0.5) and a gasket are included.
construction 0.44 1.25 0.59 Weight (kg) Note 1) Pressure gauge connection threads are not available for F .R.L. unit with a square embedded type pressure gauge.
Description Each part order comes with two M3 x 8 tapping screws.
N.C. 3 2 1 9.5 7 The figures in brackets < > indicate the values for PFA plate material (wetted part material E, F, G).
socket head set screw) 4-M5 x 0.8 x 4l Guide rail width 5 3-M4 x 0.7 through Bottom hole dia. 3.3 6-6 counter bore depth 3.3 4-M3 x 0.5 Depth 5.5 2-M5 x 0.8 6.5 5 4-M3 x 0.5 Depth 4.8 17 38 39 15 19 10 18 19 18 5 5.5 10 5.5 5.5 NS 4 9 10.5 8.5 31 + Stroke 39.5 + Stroke 16 4-M3 x 0.5 Depth 4.8 5 + Stroke 10 Stroke (mm) NS LT LB LA J 5 42 14 10 4 10 42 14 4 10 15 24 52 4 20 20 24 20 52
Calculate (1) (Wmax) from the graph of max. payload (W1, W2, W3) and calculate (2) and (3) (Mmax) from the maximum allowable moment graph (M1, M2, M3).
Cylinder bore size 12 16 20 25 32 40 Distance between guide rods GP 50 65 80 90 110 130 MGQ GP b>0.5 Calculation of load ratio b to MGG the theoretical output of cylinder b=f / F Horizontal mounting: f= X W Inclined mounting: f= X Wcosq+Wsinq (Refer to the diagram on the right.)
V Red F 0 V Black G Shield 10-12-20 Stroke Reading Cylinder Series CE1 Construction 12, 20 32 @7 @4@8 @0 oi @3 !
Hexagon socket head cap screw (M3 x 0.5 x 16l) 2 pcs.
rated pressure range, Ambient temperature 25 3C) Linearity 1% F .S. or less Repeatability 1% F .S. or less Power supply voltage effect 1% F .S. or less based on the analog output at 18 V ranging from 12 to 24 VDC Enclosure IP40 Temperature range 0 to 50C; Stored: 10 to 70C (No freezing or condensation) Resistance Withstand voltage 1000 VAC, 50/60Hz for 1 minute between external terminals
CLQ Without Auto Switch A73 S B 40 30 D F CDLQ With Auto Switch Number of auto switches With auto switch (built-in magnet) Nil S n 2 pcs. 1 pc.
Distance between guide rods GP 40 65 12 80 16 90 20 110 25 130 32 Bore size 50 GP > 0.5 Calculation of load ratio to the theoretical output of cylinder = f / F Horizontal mounting: f = x W Inclined mounting: f = x Wcos + Wsin (Refer to the figure on the right.)
V Red F 0 V Black G Shield 10-12-20 20 Stroke Reading Cylinder Series CE1 Construction 12, 20 32 @7 @4@8 @0 oi @3 !
Bore size (mm) 12 16 20 25 32 40 Distance between guide rods GP 50 65 80 90 110 130 GP > 0.5 Calculation of load ratio to the theoretical output of cylinder = f / F Horizontal mounting: f = x W Inclined mounting: f = x Wcos + Wsin (Refer to the figure on the right.)
Stroke Note 1) 50, 63: L 0 0.008 8-V Effective thread length Y H A B G H B G NN (R) NA Q N F I NA F N CC0.1 NCY3B50, 63 NCY3B6 to 15 (inch) Model Symbol L K J I H G F D A B NN C MM CC N NA P NCY3B6 NCY3B10 NCY3B15 NCY3B20 NCY3B25 NCY3B32 NCY3B40 NCY3B50 NCY3B63 1.38 1.50 2.24 2.60 2.76 3.15 3.62 4.50 5.00 0.19 0.19 0.37 0.31 0.38 0.51 0.56 1.00 1.00 0.16 0.18 0.24 0.24 0.31 0.31 0.39 0.47
1.25-3 6.5mm 2 (16AWG) 812mm3 () 1.25mm 0.1m 30m (11 ) M3 6.5mm () M3 0.631Nm () 2-2 IDU Series 2 4 IDX-OM-W014 2 2 3 ()2 2 2-2-3 4 IDU Series 2-3 2 5 IDX-DM-W014 3 3 1 IDU3E6E ` 3 2 ON IDU3E6E 5 0.15MPa IDU Series 3-1 3 1 IDX-DM-W014 3 3 3 3 4 3 3 5 3 5 OFF 3 6 24 IDU Series 3-3 3 2 IDX-OM-W014 4 4 4-1 5 310 4-2 4-2-1 () 4-2-2 1.
Note 1) Sampling air flow rate: Number of particles contained in 75l of air Note 2) Actuator: 1 million cycles Solenoid valve: 2 million cycles Particle generation characteristics of CM2 Particle generation characteristics of CXSL Particle generation characteristics of CY1B 106 106 106 Particle concentration (particles/m3) Particle concentration (particles/m3) Particle concentration (particles
OK OK NG OK OK 17 4-2 W (N) WeN) () V m/s) () Va (m/s) L (m) M (Nm) E (J) g (m/s) (9.8m/ ) (N) W1 (Nm) V=1.4Va MFL F (V=0.) 1 L <> W1.VaW10 M2F2L2 F2 M= WeL =5VaWL 3 2 L W2 M3F3L3 F3 an= F Fmax 3 L F W4 Fmax : () W Ek= W V 2g (V=0.
B E YA 03 Applicable air cylinder bore size mm 03 05 32, 40 50 Bore size (mm) B D E F M T1 T2 Part no.