For 115 VAC and 230 VAC, the allowable voltage is 15% to +5% of rated voltage. 33 Series SYJ700 Flow Characteristics/Weight C [dm 3/(s bar)] b Cv C [dm 3/(s bar)] b Cv 1R2 (PRA) 2R3 (ARR) Valve model Flow characteristics Weight (g) Note) Type of actuation Port size Grommet L/M plug connector DIN terminal M8 connector SYJ712 SYJ722 SYJ714 SYJ724 SYJ714 SYJ724 Body ported 0.76 0.69 0.69 0.63
JXC-OMT0032CN TM) (GW)(DeviceNet / LEC-GDN1 . 4 2. . 6 2.1 . 6 2.2 . 6 2.3 . 7 2.4() . 8 (1) . 8 (2) . 8 (3)(LEC) . 8 (4) . 8 (5) . 8 (6) . 9 (7) . 9 3. . 10 3.1 . 10 3.2 . 12 3.3 . 13 (1)(LECGDN1) . 13 (2)DIN(LECGDN1D) . 13 3.4 . 14 (1) . 14 (2) . 14 4. . 15 4.1 (NODE ADDRESS,B RATE) . 15 4.2(CN2SW) . 15 4.3(LEC) . 16 5. . 18 5.2 CN3 . 18 5.3 CN1CONT . 18 5.4 CN2PC/TB . 19 .CN4 . 20
Setting: Operate the NFC-B preferentially using the protocol used. Select the icon. (Windows7 is used in this Operation Manual) (2) Double-click the [NFC port/PaSoRi] icon on the control panel to display the setting window. Select [NFC-B] only for [Detectable cards].
Furthermore, when mounting supply/exhaust block assemblies on both sides of type B with a 2 to 10 station manifold, calculate the weight W using the formula for 11 to 16 stations.
C D (KF) KF (K) KF G I H H V Fn Fd A C C U U M E V V A L E B K S H J M G A A A B C D E Fn Fd G H J K XLD-25 50 123 48 1 12 40 26 41 16 7.5 XLD-40 65 170 66 2 11 55 41 63 20 15 XLD-50 70 183 79 2 11 75 52 68 20 17.5 XLD-63 88 217 100 3 11 87 95 70 72 20 20 XLD-80 90 256 117 3 11 114 110 83 98 20 26.5 XLD-100 108 321 154 3 11 134 130 102 133 20 38 XLD-160 138 335 200 3 11 190 180 153 114
Model Model Model Port size Effective area Weight Dimensions (mm) R(PT) (mm2) (g) Model Port size Effective area Weight Dimensions (mm) R(PT) (mm2) (g) AN103-01 10 1 23.5 11 3 36 16 14 17 66 22 19 A B D A B D 1 8 1 4 2504-002 33.9 111 62 30 24 106 64 30 24 113 68 30 24 AN203-02 15 1 4 AN303-03 35 3 8 25 84 25 22 AN403-04 60 1 2 2505-003 45.9 3 8 2506-004 50.0 1 2 310 88.5 48 35 2507-006
EX245-DX1(EX245-DX1-X36 )2 . 7-3 0 1 2 3 4 5 6 7 2 Bit 1 Bit 3 Bit 5 Bit 7 Bit 9 Bit 11 Bit 13 Bit 15 4 Bit 0 Bit 2 Bit 4 Bit 6 Bit 8 Bit 10 Bit 12 Bit 14 53 No.EX-OMU0020CN 7.5. LED EX245-DX1 LED16 015 015 OFF OFF ON ON ON . 7-2 LED 54 No.EX-OMU0020CN 7.6.
(mm) Electrical entry P Port size A B C D E F H K L M Model Grommet: G Conduit: C DIN connector: D Conduit terminal: T Q R Q R Q R S Q R S 13.5 28 64 31 6.5 12.5 28 14 12.8 M4 22 45 44 43 58 40.5 46.5 99 43 66 1/8 VCW21 18 36 67 31 8.5 12.5 28 18 12.8 M4 22 46 44 44 58 41.5 46.5 99 44 66 1/4 22 40 80.5 36.5 11 15 32 20 19 M5 24 56.5 46 54.5 60 52 48.5 101 54.5 68 1/4, 3/8 VCW31 30 50 85.5
0 (A, B, C common view) 44 MHZ 29 6 x M3 x 0.5 thread depth 6 (A, B, C common view) 9h9 0 0.036 MHF 15 4.7 9.7 1 2 MHL 5.8 3 4.7 2 x 3 MHR MHR (36.5) 33.5 MHK 19.5 2 x 4.2 MHS 2 3e8 0.014 0.028 MHC 10 Auto switch mounting groove Open: 11 Closed: 8 MHT MHY 8 0 0.05 MHW -X 12 4 4 Dimensional Differences between MHR and MDHR MRHQ The following dimensions are different between the MHR and MDHR
2 3 Port size Symbol Nil M3 M5 Sub-plate Without sub-plate With sub-plate S070 B 5 B G Base Mounted S070 C 5 B G 32 Body Ported Body type Body type Body ported Symbol C Port size Symbol 32 Connection Barb fitting Applicable tubing 3.18/2 Coil voltage 5 6 V S R 24 VDC 12 VDC 6 VDC 5 VDC 3 VDC Electrical entry G Grommet C Plug lead with light/ surge voltage suppressor Power consumption Pressure
) M3 x 0.5 Finger opening port 53 35.5 12h9-0.043 0 26 1.5 5 20 26.5 43.5 (47) 9.6 M3 x 0.5 thread depth 4 2 2 Vacuum suction port 3.5e8-0.038 -0.020 Open: 13.5, Closed: 9.5 8-0.05 0 15 6 5 3 x M3 x 0.5 thread depth 6 (Thread for mounting attachment) With Auto Switch: MDHR3-15R 11221122MDHR3-15E port location 3 x M3 x 0.5 thread depth 6 A P.C.D.29 (Mounting thread) 21 24 120 120 B 48 11 25
6 7 8 9 10 11 12 Hard chromium electro plating Nickel plated Nickel plated L M 20, 32 only Roller 13 Spring pin Roller pin Lever pin Ring A Ring B Adjustment dial End rod Lever spring Magnet Flat washer Flat washer C type snap ring for shaft C type snap ring for shaft C type snap ring for shaft Return spring 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40
Material Note PBT PBT Description Body A Body B Needle Seat ring Spring U seal Cassette Seal O-ring O-ring O-ring O-ring Gasket 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 1 2 3 4 5 6 7 8 9 10 11 12 13 14 Body A Elbow body Body B Needle Seat ring Spring U seal Cassette Seal O-ring O-ring O-ring O-ring O-ring Electroless nickel plated Electroless nickel plated Electroless nickel plated Brass
20.5 (28.5) A B 15 (22.5) A B 17.5 (25.5) A B 19.5 (27.5) A B 18 (26) A B 16 (24) B 20 27.5 27 24.5 31 25.5 27.5 29 27 24 30 21.5 (29.5) 20.5 (28.5) 15 (22.5) 17.5 (25.5) 19.5 (27.5) 18 (26) 16 (24) 25 30 29.5 27 31 25.5 27.5 29 27 24 30 22.5 (30.5) 21.5 (29.5) 15.5 (23.5) 18.5 (26.5) 20.5 (28.5) 19 (27) 17 (25) 32 33.5 33 30.5 32 26.5 28.5 30 28 25 31 25 (34) 24 (33) 18 (27) 21 (30) 33 (
.38 5.3 <> NPNPNP LEFS16A-100 NPN -14- 2.4. 16/25/32 40 22 21 1 12 2 13 3 14 4 15 5 16 NBR 6 17 7 18 8 A 19 9 B 20 10 21 11 22 1 12 2 13 3 14 4 15 5 16 NBR 6 17 7 18 8 A 19 9 B 20 10 21 11 22 -15- 1 14 2 15 3 16 4 17 5 18 6 19 NBR 7 20 8 21 9 A 22 10 23 11 24 12 25 13 -16- 3. 3.1. 1 I/O LEC-CN5-* / PLC 1 2 DC24V
1 2 3 4 5 6 7 8 9 10 11 12 13 80 0 5 10 15 20 25 30 35 40 45 50 55 60 Load capacity (N) Load capacity (pounds) 63 300 12.0 280 11.0 Distance from pivot point (inches) 260 Distance from pivot point (mm) 10.0 240 9.0 220 200 8.0 180 7.0 160 6.0 140 5.0 120 100 0 5 10 15 20 25 30 35 40 45 50 55 60 65 70 75 80 4.00 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 Load capacity (N) Load capacity
rules relating to systems ISO 4413: Hydraulic fluid power -General rules relating to systems IEC 60204-1: Safety of machinery -Electrical equipment of machines (Part 1: General requirements) ISO 10218: Manipulating industrial robots-Safety JIS B 8370: JIS B 8361: JIS B 9960-1: -(1 : ) JIS B 8433: *2) 1. 2. 3. 1. 2. 3. 4
2006h 00h DXD, IN 0 15 (Slot 2) RO : : : 2020h 00h RO *1: RO means Read Only data.
Operating equipment: MHC2-6D A part a b c d e f = 20 (mm) = 3 (mm) = 4 (mm) = 4 (mm) = 5 (mm) = 6 (mm) b c a e B part f d z f1 x.Calculate the inertial moment of the attachment. Assuming the attachment material is aluminium alloy (relative density=2.7), r1= 16.4 (mm).
1.9/1.8 2.2/2.2 3.4 4.0 3.3/3.5 3.8/3.6 0.31 0.26 0.86 0.99 3.5 4.4 3.5/3.5 4.1/3.9 7.5 9.3 7.4/7.3 9.2/9.1 13 16 14/14 15/15 3.4 3.7 0.34 0.27 0.86 0.88 2.9 3.2 2.9/3.0 2.7/3.6 6.9 8.8 7.9/7.4 9.2/8.8 12 15 14/13 15/15 0.38 0.28 0.37/0.37 0.25/0.23 0.42 0.43 0.35/0.32 0.22/0.21 0.36 0.29 0.25/0.24 0.22/0.24 0.47 0.40 0.38/0.40 0.57/0.21 0.34 0.36 0.30/0.26 0.17/0.14 0.31 0.22 0.25/0.24