Load (kg) m1 m2 m3 Moment (Nm) M3 = F3 x L3 F3 M1 = F1 x L1 F1 M2 = F2 x L2 F2 L1 L2 L3
Porting No. of Ports DXT172-2-1 NPTF Y4" NPTF side ports DXfi72-2-2NPTF %" NPTF side Dorts 3 'lnclud6s gas*et and screws SERIES NVEF FLOW RATE TYPE FLOW CHARACTERISTICS % CurrcnvFlow Rate OPERATING PBINCIPLES The effective orifice size is controlled by lhe movement of the spool, which is balanced between the Solenoid Force (F1) and the Spring Force (F2).
D1.6 x P WB Inclined operation W+WBWV PPV W + WB>WV P>PV Allowable driving force table (Fn) (n = 1, 2, 3) Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal F2 = (W + WB) x 9.8 x (cos + sin) Inclined F3 = (W + WB) x 9.8 x ( + 1) Vertical (Refer to page 4 for connection fitting weight.)
+ WB > WV P > PV Determination of allowable load weight & pressure F1 = x (W + WB) x 9.8 Horizontal Inclined Vertical F2 = (W + WB) x 9.8 x (cos + sin) (See page 63 for vertical operation.)
-LC3 3.2 () F1-LC4 4 () 9 Assy ZQ1-BK1-A 25 - No.ZQ-OM01401-B 7.3 b a a a 1. (2 ) 2.
No.PS-OMU0002CN-D // ZSE20A(F) ISE20A 2 8 10 11 15 15 17 19 [] 22 23 3 24 26 28 28 28 F0 30 F1 OUT1 31 F2 OUT2 34 F3 36 F4 37 F5 FUNC 39 F6 41 F10 42 F11 48 F80 49 F81 50 F82 52 F90 53 F96 55 F97 56 F98 58 F99 60 61 65 65 66 75 75 78 -1No.PS-OMU0002CN-D 1 (ISO/IEC)(JIS) *1) *2) *1) ISO 4414: Pneumatic fluid power -General rules relating to systems ISO
No.PS-OMU0008CN-D // ZSE20C(F) ISE20C(H) 2 9 11 12 16 16 19 21 [] 24 25 3 26 28 30 30 30 F0 32 F1 OUT1 33 F2 OUT2 36 F3 38 F4 39 F5 FUNC 41 F6 43 F10 44 F11 50 F80 51 F81 52 F82 54 F90 55 F96 57 F97 58 F98 60 F99 62 63 67 67 68 77 77 79 -1No.PS-OMU0008CN-D 1 (ISO/IEC)(JIS) *1) *2) *1) ISO 4414: Pneumatic fluid power -General rules relating to systems
No.PS-OMS0006CN-G / / ZSE20(F) ISE20 2 8 10 11 14 14 16 18 [] 20 21 3 22 24 26 26 26 F0 28 F1 OUT1 29 F3 32 F4 33 F6 35 F10 36 F11 41 F80 42 F81 43 F82 45 F90 46 F98 48 F99 49 50 54 54 55 62 62 64 -1No.PS-OMS0006CN-G *1) (ISO/IEC)(JIS) *2) *1) ISO 4414: Pneumatic fluid power -General rules relating to systems ISO 4413: Hydraulic fluid power -General rules
OFF ON SET2OUT1 ()[P_2][n_2]OUT2 SET2 1SET 2SETSET2 3(29)OFF ([SEt]) -23No.PS-OMV0003CN-G 23 P1L()P1H()WH1() dtH/dtL() (n1L n1H) 31 OUT2 -24No.PS-OMV0003CN-G SET3~5[F 0] [F] SET2 SET 3 ~5 FO F1 F99 ()[-] [F 0] 27 [M]MPa PNP ALL [F 1] OUT1 29 OFF ONOFF ISE700.500 MPa ISE710.800 MPa ISE700.050 MPa ISE710.080 MPa 0.00 sec.
No.PS-OMV0008CN-E / / ISE70G--L2 ISE75G--L2 ISE76G--L2 ISE77G--L2 ISE78G--L2 2 9 10 12 15 15 17 19 21 22 3 23 25 27 27 28 F0 30 F1 OUT1 32 F2 OUT2 35 F3 37 F4 38 F6 40 F10 41 F11 47 F14 Zero-cut 48 F80 49 F81 50 F90 52 F96 54 F98 55 F99 57 58 IO-Link 63 IO-Link 63 63 64 IO-Link 67 76 76 77 86 88 -1No.PS-OMV0008CN-E (ISO/IEC)(JIS) *1) *2) *1) ISO
F1, 12MM CQ2 PART, .22836 lb
Channel to channel copy function (F95) N Information that can be copied includes the following: F0 (system setting): Connected range, displayed unit F1 ( OUT1 setting), F3 (digital filter), F4 (auto-preset), F5 (auto-shift setting), F10 (sub-screen setting), F11 (display resolution setting), F14 (zerocut setting) When CH1 is copied to CH2, CH3, and CH4, information on OUT1 in CH1 will be
MY1B m2 m3 Moment (Nm) MY1M M1 = F1 x L1 F1 M2 = F2 x L2 M3 = F3 x L3 F3 F2 MY1C L2 L1 L3 MY1H 4. Accuracy Mechanically jointed rodless cylinders do not guarantee traveling parallelism. When accuracy in traveling parallelism and intermediate stroke position is required, please contact SMC sales representatives.
Load mass (kg) m1 m2 Moment (Nm) m3 M3 = F3 x L3 F3 F2 M1 = F1 x L1 F1 M2 = F2 x L2 L2 L1 L3 Calculation of Guide Load Factor 1) Maximum load mass (1), static moment (2), and dynamic moment (3) (at the time of impact with stopper) must be examined for the selection calculations. To evaluate, use a (average speed) for (1) and (2), and (collision speed = 1.4a) for (3).
-X 20m2 m3 Data Moment (Nm) M1 = F1 x L1 F1 F2 M3 = F3 x L3 F3 M2 = F2 x L2 L1 L2 L3 Maximum Load Weight Select the load from within the range of limits shown in the graphs. Note that the maximum allowable moment value may sometimes be exceeded even within the operating limits shown in the graphs. Therefore, also check the allowable moment for the selected conditions.
MY1 HT m2 m3 MY1 W MY1 W Moment (Nm) M3=F3 x L3 F3 F2 M1=F1 x L1 F1 M2=F2 x L2 MY2C L2 L1 L3 Maximum Load Mass MY2 H/HT Select the load from within the range of limits shown in the graphs. Note that the maximum allowable moment value may sometimes be exceeded even within the operating limits shown in the graphs. Therefore, also check the allowable moment for the selected conditions.
Model A L D Applicable Fitting Size d KQP-04 16 32 6 4mm KQP-03 16 32 6 5/32 KQP-06 18 35 8 6mm KQP-07 18 35 8 1/4 KQP-08 20.5 39 10 8mm KQP-09 20.5 39 10 5/16 KQP-10 22 43 12 10mm KQP-11 22 43 12 3/8 BRACKET ASSEMBLY NUMBER (IF ORDERED SEPARATELY) F1 Type SX3/5/7000-16-2A (With Mounting Screw) F2 Type SX3/5/7000-16-1A (With Mounting Screw) Courtesy of Steven Engineering, Inc. !
Porting No. of Ports DXT172-2-1 NPTF Y4" NPTF side ports DXfi72-2-2NPTF %" NPTF side Dorts 3 'lnclud6s gas*et and screws SERIES NVEF FLOW RATE TYPE FLOW CHARACTERISTICS % CurrcnvFlow Rate OPERATING PBINCIPLES The effective orifice size is controlled by lhe movement of the spool, which is balanced between the Solenoid Force (F1) and the Spring Force (F2).
F2 ZH -X185 Laminates Positioning F1 F2 Related Products Vacuum pump As the aperture ratio is large, high adsorption force can be obtained.
Electro-Pneumatic Regulator SMC REGULATOR ITV2000 Electronic Vacuum Regulator Series ITV Series Model Set pressure range Port size Page Series ITV2000 Controls air pressure steplessly in proportion to an electric signal.