() 1 3 dec hex 2 0Std 1dUAL(2 ) 2o1Lv(OUT1 ) 3o2Lv(OUT2 ) 4LinE() 5oFF() 1100 0x044C 0 R/W U8 0 Y std 1101 0x044D 0 R/W Std U8 0 Y 2 1102 0x044E 0 R/W U8 0 Y 2 2 1103 0x044F 0 R/W U8 1 Y Line 1820 0x071C 0 R/W Line 1 U8 0 Y 1 (11seg) 1821 0x071D 0 R/W Line 2 U8 0 Y Line 24 (7seg) 1822 0x071E 0 R/W Line 3 U8 0 Y 1823 0x071F 0 R/W Line 4 U8 0 Y 1824 0x0720 0 R/W Line
K L M Size 40 50 Actuator port direction Flange side Left flange surface Rear flange surface Right flange surface Right flange surface Left flange surface E H V I G L H A V V M A C U U Flange side e Temperature specifications/Heater r Auto switch type Symbol Nil H0 H4 H5 Temperature 5 to 60C Heater None None With 100C heater With 120C heater Symbol Nil Auto switch part no.
(m) Nominal filtration accuracy (m) Symbol Symbol FN V N T A Bronze Stainless steel Polypropylene Glass fiber Cotton (Fiber) Cotton (Paper) Element material Fiber (Honeycomb) 050 070 074 075 100 105 120 X50 001 002 005 010 020 040 50 70 74 75 100 105 120 0.5 1 2 5 10 20 40 B S T G H P M L J EB ES Paper Micromesh HEPO 2 Stainless steel 304/Epoxy Stainless steel 316 Polyester/PP Note) For
2-M2 x 0.4 depth 3 For magnet mounting 4.7 2.5 6-M3 x 0.5 depth 4 15 15 L (mm) N MXP10-10 MXP10-20 SMXP10#1 (#1 + #3) SMXP10#2 (#2 + #4) L K J V H S Z G M W Model 20 20 52.4 44 32 10 60 8 21 6.5 40 MXP10-10 36 36 82.4 74 50 20 90 20 39 7.5 65 MXP10-20 9 Precision Air Slide Table Series MXP Dimensions MXP10/With Shock Absorber Z 3 2-M3 x 0.5 depth 5 V K 5 N M Stroke: S Max. 19 MXP10-10B
Y69A Y7PV Y69B Y7NWV Y7PWV Y7BWV 100 V 24 V 12 V Z73 Y59A Y7P Y59B Y7NW Y7PW Y7BW 3-wire (NPN) 2-wire Relay, PLC 5 V, 12 V IC circuit 3-wire (PNP) 2-wire 12 V Relay, PLC 24 V Grommet 3-wire (NPN) 3-wire (PNP) Diagnostic indication (2-color indication) IC circuit 5 V, 12 V 2-wire 12 V Lead wire length symbols: 0.5 mNil (Example) Y59A 3 m L (Example) Y59AL 5 m Z (Example) Y59AZ Since
Y69A Y7PV Y69B Y7NWV Y7PWV Y7BWV 100 V 24 V 12 V Z73 Y59A Y7P Y59B Y7NW Y7PW Y7BW 3-wire (NPN) 2-wire Relay, PLC 5 V, 12 V IC circuit 3-wire (PNP) 2-wire 12 V Relay, PLC 24 V Grommet 3-wire (NPN) 3-wire (PNP) Diagnostic indication (2-color indication) IC circuit 5 V, 12 V 2-wire 12 V Lead wire length symbols: 0.5 mNil (Example) Y59A 3 m L (Example) Y59AL 5 m Z (Example) Y59AZ Since
Auto Switch Proper Mounting Position for Stroke End Detection MY1CW 16, 20 MY1MW 16, 20 B A Reed switch D-A90(V), D-A93(V), D-A96(V) Solid state switch D-F9N(V), D-F9P(V), D-F9B(V) D-F9NW(V), D-F9PW(V), D-F9BW(V) Mounting position 20 16 20 16 20 Mounting position Mounting position 16 A 90 70 93 73 94 A A 74 B 110 90 107 87 106 B B 86 Operating range Note) 7.5 11 6.5 8.5 6.5 Operating range
Linear motion E m V Rotary actuator I = mr m: Mass (kg) (However, the weight of the L section is ignored) E= I Formula (2) 2 1 = mr 2 1 This indicates the moment of inertia with respect to the rotation axis of a mass "m" which is a distance "r" from the rotational axis. The formula for finding the moment of inertia differs depending on the shape of the object.
G TT GA Air release GA M Width across flats G 4-J V V MM MM R (max.)
(NPN) 3-wire (PNP) A96 A96V 5 V M9N M9NV IC circuit 5 V 12 V M9P M9PV 12 V M9B M9BV 2-wire Relay PLC Yes Grommet 24 V 3-wire (NPN) 3-wire (PNP) F9NW F9NWV Diagnostic indication IC circuit 5 V 12 V F9PW F9PWV 2-color indication F9BW F9BWV 2-wire 12 V Lead wire length symbols 0.5 m Nil (Example) F9NW 3 m L F9NWL 5 m Z F9NWZ Solid state switches marked with a symbol are produced upon
(NPN) 3-wire (PNP) A96 A96V 5 V M9N M9NV IC circuit 5 V 12 V M9P M9PV 12 V M9B M9BV 2-wire Relay PLC Yes Grommet 24 V 3-wire (NPN) 3-wire (PNP) F9NW F9NWV Diagnostic indication IC circuit 5 V 12 V F9PW F9PWV 2-color indication F9BW F9BWV 2-wire 12 V Lead wire length symbols 0.5 m Nil (Example) F9NW 3 m L F9NWL 5 m Z F9NWZ Solid state switches marked with a symbol are produced upon
100 V, 200 V 12 V 2-wire 24 V CJ1 No 200 V or less Relay, PLC Yes Connector 24 V or less 5 V, 12 V No IC circuit CJP Grommet Diagnostic indication (2-color indication) Yes 3-wire (NPN) 3-wire (PNP) IC circuit CJ2 5 V, 12 V Grommet 12 V 2-wire CM2 Connector 3-wire (NPN) IC circuit Relay, PLC 5 V, 12 V Diagnostic indication (2-color indication) Yes 3-wire (PNP) 24 V CG1 Courtesy of Steven
of gravity (mm) m a = 2000 1000 L1 a = 3000 0 2 4 6 8 10 Transfer load m (kg) 600 L2 400 Mer L2 (mm) Rolling Yawing m 200 L2 Mer 0 2 4 6 8 10 m Transfer load m (kg) 3000 a = 1000 2000 L3 (mm) L3 1000 a = 2000 m a = 3000 Mey a 0 2 4 6 8 10 Transfer load m (kg) Refer to page 145 for deflection data. 2 3 Standard Motor/Horizontal Mount Specification Series LJ1H10 Dimensions/LJ1H101PB Scale:
Form w 1 Material e Buffer spec. r Buffer stroke t Vacuum inlet 8 N S U F GN GS 3 6 10 15 20 8 U2 6.5 0.9 M-5AU-2 ZP3 Y 04 06 08 B J JB K Vacuum inlet: One-touch fitting U4 8.5 1.8 M-5AU-4 Applicable tubing O.D.
Solenoid Specifications L type (for plug-in), M type plug connector (M) Electrical entry Rated coil voltage V Note) 24, 12, 6, 5, 3DC 10% of rated voltage Allowable voltage fluctuation 0.6 (with light: 0.65) Power consumption W Diode Surge voltage suppressor LED Indicator light Note) Only 24V and 12VDC are available for plug-in use.
V V V V V V Clevis pin V Single knuckle joint V V V V V V V Double knuckle joint (with pin) V V V V V V V Option With rod boot V V V V V V V * Refer to page 690 for dimensions and part numbers of the option.
Linear motion E m V Rotary actuator I = mr m: Mass (kg) (However, the weight of the L section is ignored) E= I Formula (2) 2 1 = mr 2 1 This indicates the moment of inertia with respect to the rotation axis of a mass "m" which is a distance "r" from the rotational axis. The formula for finding the moment of inertia differs depending on the shape of the object.
DC 2 W 3.2 W (Energy saving type) Note 4) (Inrush 3.2 W, Holding 1.0 W) DC Power consumption M plug connector Base mounted M plug connector Body ported L plug connector, M plug connector With light/surge voltage suppressor Electrical entry Note 1) Based on dynamic performance test, JIS B 8374-1981.
Refer to the power supply specification for the size of the acceptable electric wire. [2] Connect the motor cable (U, V, W) to the servomotor connection terminals (U, V, W). Connect the motor ground terminal to the driver ground terminal. Connect the encoder cable to the encoder cable connector.
Refer to the power supply specification for the size of the acceptable electric wire. [2] Connect the motor cable (U, V, W) to the servomotor connection terminals (U, V, W). Connect the motor ground terminal to the driver ground terminal. Connect the encoder cable to the encoder cable connector.