) 5 (Max. 11) 5 (Max. 16.5) 8 (Max. 20) 9 (Max. 25) 13 (Max. 33) 13 (Max. 38) With low load shock absorber + Adjusting bolts MY1W Bore size Stroke L TT h h E F EA h EB W F Stroke adjusting unit S (Shock absorber stroke) T MY1W16, 20 F MY1W50, 63 Shock absorber EC EY h 3.6 3.6 3.5 4.5 4.5 5.5 5.5 TT 5.4 (Max. 11) 5 (Max. 11) 5 (Max. 16.5) 8 (Max. 20) 9 (Max. 25) 13 (Max. 33) 13 (Max. 38) S
RB J D-X 20Data 10-18-11 11 Shock Absorber: Short Type Series RBQ Series RBQ/Shock Absorber: Short Type Technical Data: Model Selection Symbol 1.
Series RZQ 3 Position Cylinder 32, 40, 50, 63 Provides intermediate stop mechanism 2-stage stroke enabled with a small increase in length Overall length of cylinder tube RZQ First-stage stroke Additional cylinder tube length Full stroke CDQ2 Overall length of cylinder tube Comparison of cylinder tube overall length (mm) Full stroke = 300 mm (150 + 150 = 300 mm in case of CG1BN) CG1BN150+
NPN open collector, single output Analog, no output, 3 turn setting 14 NPN open collector, single output Analog, no output, 200 degree setting 15 Electrical entry NPN open collector, double output Analog, no output, 3 turn setting 24, 12, 6, 5, 3 VDC/100, 110, 200, 220 VAC 16 G H L LN LO M MN MO Lead wire length 300 mm Lead wire length 600 mm With lead wires (Length 300 mm) Without lead wires
KQ2U23-M5 38 34.5 2.2 2.2 9 M5 X 0.8 10 9.6 41 44 9.6 15.5 37 38 14 3.4 2.9 3.2 1 8 KQ2U23-01S KQ2U23-02S 11 14 1 4 39.5 KQ2U04-M5 M5 X 0.8 M6 X 1.0 4 2.2 2.2 Kl KQ2U04-M6 40 36 10 11 10.4 16 4 10.4 1 8 42 38 KQ2U04-01S 4.2 4.2 11 Ml 1 4 KQ2U04-02S 46 40 20 14 42.5 KQ2U06-M5 M5 X 0.8 M6 X 1.0 2.2 2.2 12 KQ2U06-M6 43 39 13 Hl
'I. 78 2S 52 14 / 113 21 30 72 23 17 M1 2X l .75 _boot With boot PW S W H 12 ... 1 h f zz j IBore olze k U M MM MM (mm) XIUS N P PG PH PL 40 6 71 11 M1 4Xl .5 7/' 6 20 27 'I, 42 11 20 45 153 8 51 215 43 11 .2 59 223 168 0 I50 58 237 52 11.2 66 245 50 7 80 11 M18Xl .5 30 0/, 46 10 21 V.
21 21 12 10 15 16 17 18 19 13 15 10 16 17 24 11 14 9 8 6 3 9 3 3 7 5 2 2 5 2 5 4 4 4 1 1 1 1 1 1 21 21 11 9 8 6 3 9 3 3 22 23 25 26 27 28 23 7 5 2 2 5 2 5 35 36 20 12 10 15 16 17 18 19 13 15 10 16 17 4 4 4 24 14 34 2B 1B 1A 3A 2A 3B Main Board PCB2 2/2 1/2 23 22 25 26 27 22 37 38 39 40 32 20 20 21 10 12 13 15 16 15 16 18 24 24 11 14 3 9 8 6 2 7 7 2 5 (CN8) 4 4 1 1 1 5 1 21 11 3 9 8 6 2 22
N.C. 3 2 1 19 2 x 3.5 Mounting hole (16) 11 24.5 21 12 Plug IN port 5 (Lead wire length) 27 For LVM14R 36 300 16 13 UL1007 AWG22 1 2 3 N.C. N.O. (16) (16) 11 OUT port IN port 10 Push type Manual override 73.5 For LVM16R N.O. N.C. 3 2 1 25.5 (16) N.O.
N.C. 3 2 1 19 2 x 3.5 Mounting hole (16) 11 24.5 21 12 Plug IN port 5 (Lead wire length) 27 For LVM14R 36 300 16 13 UL1007 AWG22 1 2 3 N.C. N.O. (16) (16) 11 OUT port IN port 10 Push type Manual override 73.5 For LVM16R N.O. N.C. 3 2 1 25.5 (16) N.O.
to 2100 300 to 2100 +3.00 to +21.00 mA 1: Follow the methods below when assigning the user set upper and lower limit by E.O.
35 32 50 6.8 11 depth 8 28 16.5 M6 X 1depth12 135 73.5 26.5 118 16 75 15 40 37 50 8.6 14 depth 10 29 160 86.5 31.5 140 104 19 M8 X 1.25 depth 16 75, 100, 125, 150, 200, 250, 300 MXP 16 75 15 40 37 50 8.6 14 depth 10 30 160 86.5 31.5 140 104 19 M8 X 1.25 depth 16 19 18 45 42 80 17 depth 12 35 142 22 M10 X 1.5 depth20 194 170 110 95 37 10.5 MG Bore size (mm) H GR GQ GL O GK J N S GD I K L
400 200 VXB215 B E(H) 100 300 400 500 600 200 VXB215 C F(H) 100 300 400 500 600 700 800 200 Flow rate Q [kg/h] How to read the graph The sonic range pressure to generate a flow rate of 300 kg/h is P1 0.3 MPa for the VXB215C F(H).
125 L M9BW With auto switch CDS2 L 125 300 With auto switch (Built-in magnet) Made to Order For details, refer to the next page.
For details, refer to the optional accessory (page 11). 6 HEF Series Cooling Capacity Circulating fluid: Water, Flow rate: 1 L/min Circulating fluid: Water, Flow rate: 1 L/min, When constant fan speed mode is selected 600 600 500 500 Cooling capacity [W] Cooling capacity [W] Ambient temperature 25C 400 400 Ambient temperature 25C 300 300 200 200 Ambient temperature 35C Ambient temperature
400 200 VXB215 B E(H) 100 300 400 500 600 200 VXB215 C F(H) 100 300 400 500 600 700 800 200 Flow rate Q [kg/h] How to read the graph The sonic range pressure to generate a flow rate of 300 kg/h is P1 0.3 MPa for the VXB215C F(H).
500 1000 1500 0.1 100 200 300 400 500 1000 1500 100 200 300 400 500 1000 1500 100 200 300 400 500 1000 1500 Piston speed (mm/s) Piston speed (mm/s) Piston speed (mm/s) Piston speed (mm/s) ML2B/M1 (Pitch moment) ML2B/M2 (Roll moment) ML2B/M3 (Yaw moment) 30 40 20 20 5 4 3 10 10 5 4 3 ML2B40 ML2B40 2 5 4 3 Moment (Nm) Moment (Nm) Moment (Nm) 2 ML2B32 ML2B32 1 ML2B40 ML2B40 ML2B40 ML2B40 2
400 500 100 200 300 400 500 100 200 300 400 500 Elimination ratio (%) Elimination ratio (%) Elimination ratio (%) 75 70 60 50 40 30 20 10 0 1 5 10 50 100 1 5 10 50 30 100 1 5 10 50 100 Flow-back count Flow-back count Flow-back count Explanation of graph Explanation of graph Example: Elimination ratio and concentration after using the FHM-100 for one hour under the following conditions.
: m (kg) 700 800 900 700 800 900 160 600 600 140 500 500 125 400 400 300 300 200 200 100 100 100 500 400 300 200 100 500 400 300 200 Maximum speed: V (mm/s) Maximum speed: V (mm/s) 9-8-7 8 Cylinder with Lock Double Acting, Single Rod Series CNS 125, 140, 160 How to Order 125 125 100 100 Y7BW CDNS D CNS D L Without auto switch L With auto switch Number of auto switches Built-in magnet Port
ZP3EU-F6-TB12 [Weight: 236 g] ZP2 ZP2V 26 18 26 18 ZP Width across flats 22 M12 x 1.75 M12 x 1.75 Width across flats 22 ZPT ZPR 6 27 19 52 6 27 19 52 11 11 XT661 32 32 4 4 11.11) 11.11) 30 30 (Rotating angle) (Rotating angle) Applicable pad part no. ZP3E-125UM ZP3E-100BM 93.8 78.6 Applicable pad part no.
400 500 280 560 Data 10 4 8 7 6 5 MXY12 3 2.0 Shock absorber Rubber stopper screw 2 4 Load weight W kg 1.5 Metal stopper screw 3 1.0 1 100 50 200 300 400 560 2 100 50 200 300 400 500 Average speed Va mm/s Collision speed V mm/s 0.5 Average speed Va mm/s 0.0 Collision speed V mm/s 0 100 200 300 400 500 280 560 Note) Use the average speed when calculating static moment.