condensation or freezing) Operating humidity range Operating/Stored: 35 to 85% RH (No condensation) Standards UL/CSA (E216656), CE, RoHS Port size Rc1/4, NPT1/4, G1/4 Piping Materials of parts in contact with fluid Sensor pressure receiving area: Silicon Piping port: C3604 (Electroless nickel plating), O-ring: HNBR Port size Rc1/4 153 g Weight Body Port size NPT1/4 152 g Port size G1/4 150
Recommended Tightening Torque [Nm] Connection thread Pressure Control Equipment 1/2 3/8 1/4 1/8 Torque 28 to 30 22 to 24 12 to 14 7 to 9 2. Avoid excessive torsional moment or bending moment other than those caused by the equipments own weight as this can cause damage. Support external piping separately. 3.
VCHR ITV IC ITVX Recommended Tightening Torque PVQ Unit: Nm Connection thread 1/2 3/8 1/4 1/8 VEF VEP Torque 28 to 30 22 to 24 12 to 14 7 to 9 VER 2. Avoid excessive torsional moment or bending moment other than those caused by the equipments own weight as this can cause damage. Support external piping separately. 3.
SRF ITV IC ITVH Recommended Tightening Torque ITVX Unit: Nm Connection thread 1/2 3/8 1/4 1/8 PVQ Torque 28 to 30 22 to 24 12 to 14 7 to 9 VY1 2. Avoid excessive torsional moment or bending moment other than those caused by the equipments own weight as this can cause damage. Support external piping separately. 3.
10 to 50C35 to 85%RH (with no condensation)1500 VAC for 1 min. between external terminals and FG10 M or more (500 VDC) between external terminals and FG10 to 150 Hz with a 0.35 mm amplitude or 49 m/s2 in each X, Y, Z direction for 2 hrs (De-energized)98 m/s2 in each X, Y, Z direction, 3 times (De-energized)CE marking, UL (CSA)120 g
10 to 50C35 to 85%RH (with no condensation)1500 VAC for 1 min. between external terminals and FG10 M or more (500 VDC) between external terminals and FG10 to 150 Hz with a 0.35 mm amplitude or 49 m/s2 in each X, Y, Z direction for 2 hrs (De-energized)98 m/s2 in each X, Y, Z direction, 3 times (De-energized)CE marking, UL (CSA)120 g
10 to 50C35 to 85%RH (with no condensation)1500 VAC for 1 min. between external terminals and FG10 M or more (500 VDC) between external terminals and FG10 to 150 Hz with a 0.35 mm amplitude or 49 m/s2 in each X, Y, Z direction for 2 hrs (De-energized)98 m/s2 in each X, Y, Z direction, 3 times (De-energized)CE marking, UL (CSA)120 g
Perform the various settings. (1) Name: Input a unit name of your choice. (2) Comm Format: Select the data format of the Connection Parameters. (3) IP Address: Input the IP Address of the SI unit. (4) Assembly Instance: Set as follows: Input = 100 Output = 150 Configuration = 105 (5) Size: Set as follows: Input = 2 bytes (for Data-SINT) = 1 word (for Data-INT) Output = 4 bytes (for Data-SINT
Nominal thread size Appropriate tightening torque Rc(NPT)3/8 22 to 24 Nm Rc(NPT)1/2 28 to 30 Nm Rc(NPT)3/4 28 to 30 Nm Rc(NPT)1 36 to 38 Nm If the tightening torque is exceeded, the product can be damaged. If the tightening torque is insufficient, the mounting screws and brackets may become loose. The product body is made of resin.
OMY0008 NG IN 5 (5D)(68 ) 20 No.LFE*-OMY0008 FG 3 1 DC() 4 2 2 OUT2 3 DC() 1 4 OUT1 3 4 2 1 DC() 2 OUT2 3 DC() 1 4 OUT1 LFE M12 21 No.LFE*-OMY0008 NPN2 LFEA PNP2 LFEB DC() OUT1 OUT2 DC() OUT1 DC24V DC24V DC() DC() Max.28 V80 mA 1 V Max.80 mA 1.5 V NPN LFEC NPN LFED DC() OUT1 OUT2 DC() OUT1 OUT2 DC24V DC24V DC() DC() Max.28 V80 mA 1 V 420 mA 600 Max.28 V80 mA 1 V 15 V 1 k 22
A: April 2022 (Add average speed data) 4-14-1, Sotokanda, Chiyoda-ku, Tokyo 101-0021 JAPAN Tel: + 81 3 5207 8249 Fax: +81 3 5298 5362 URL https://www.smcworld.com NOTE: Specifications are subject to change without prior notice and any obligation on the part of the manufacturer. 2022 SMC Corporation All Rights Reserved 22
This person should also continuously review all specifications of the product referring to its latest catalogue information, with a view to giving due consideration to any possibility of equipment failure when configuring the equipment. 100 0.05 0.09 0.15 0.24 0.39 0.64 1.00 125 0.07 0.11 0.18 0.29 0.47 0.76 1.20 150 0.08 0.13 0.21 0.34 0.54 0.89 1.30 200 0.10 0.17 0.28 0.44 0.70 1.10 1.70
120 60 10 19 31 55 88 140 251 1 N 12 21 35 61 97 153 268 mm 4 4 6 8 8 12 16 g 66 110 154 300 390 590 1,095 1) 1625 L=20mm 3263 L=30mm 0.5MPa 4 MHSJ3 MHSJ316D MHSJ320D MHSJ325D MHSJ332D MHSJ340D MHSJ350D MHSJ363D MHSJ380D mm 16 20 25 32 40 50 63 80 MPa 0.20.6 0.10.6 -1060 mm 0.01 c.p.m. 120 60 30 9 21 36 62 97 155 280 400 1 N 16 28 47 82 130 204 359 525 mm 4 4 6 8 8 12 16 20 g 95 150
MHY2-10D MHY2-16D MHY2-20D MHY2-25D [mm] 10 16 20 25 [MPa] 0.10.6MPa [] -1060 [mm] 0.2mm [c.p.m] 60 c. p. m [Nm] 0.16 (1.6) 0.54 (5.5) 1.10 (11.2) 2.28 (23.3) (0.5MPa ) 180 ( ) -3 ) g 70 150 320 560 ) 5 2. 2-1. 1. ( ) 2. 3. 2-2. 1. 2.
JMHZ2-16D mm 16 MPa 0.1~0.7 (oC) -10~60 (mm) 0.01 (c.p.m.) 120 32.7 (N) 43.5 mm 10 3 4M40.7 8 3.4 8 2 13 - 4-2.3 V114-5LU (oC) -1050( (ms) ON5 OFF4 Hz 20 / m/s2 150/30 V114-5LU L (L) (V) 24 -1010% (W) 0.4 [0.40.1] P .1367 LED 300 14 - 4-3.
JMHZ2-16D mm 16 MPa 0.1~0.7 (oC) -10~60 (mm) 0.01 (c.p.m.) 120 32.7 (N) 43.5 (mm) 10 (g) 128 3 4M40.7 8 3.4 8 2 11 - 4-2.3 V114-5LU (oC) -1050( (ms) ON5 OFF4 Hz 20 / m/s2 150/30 V114-5LU L (L) (V) 24 -1010% 0.4 (W) [0.40.1] P .1367 LED 300 12 - 4-3.
M3x7 0.59Nm 21 - 0.7mm 22 - 5-3 1. 2. 3. 4. 1.() 2. 5m 3. 4. 5 5-4. 1.
ASS ASR ASF Male thread Proper tightening torque Nm Width across flats mm Nominal size of adjustable angle wrench mm M5 1/6 turn after hand tightening 8 100 12 17 19 24 7 to 9 12 to 14 22 to 24 28 to 30 1/8 1/4 3/8 1/2 150 200 200 200 Lock Nut Tightening Torque Caution 1. The proper tightening torque for the hexagon lock nut is as shown in the table.
Male thread Proper tightening torque Nm Width across flats mm Nominal size of adjustable angle wrench mm M5 1/6 turn after hand tightening 8 100 12 17 19 24 7 to 9 12 to 14 22 to 24 28 to 30 1/8 1/4 3/8 1/2 150 200 200 200 Lock Nut Tightening Torque Caution 1. The proper tightening torque for the hexagon lock nut is as shown in the table.
Not required Unrestricted 150/30 Note 1) Be certain that pressure within operating pressure range be supplied to supply port, because return pressure is introduced from supply port {1(P)} for activation. Note 2) Impact resistance: No malfunction resulted from the impact test using a drop impact tester.