SMC Corporation of America
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Search Results "PF2M711W-F2-F-VA"

Load weight (kg) m1 m2 m3 Moment (Nm) M1=F1 x L1 F1 F2 M3=F3 x L3 F3 M2=F2 x L2 L1 L2 L3 Maximum load weight 1. Maximum allowable load (1), static moment (2), and dynamic moment (at the time of acceleration/deceleration) (3) must be examined for the selection calculations.

OUT1 [CoL][] ON OFF ON OFF [F 1] OUT1 -38No.PF-OMO0004CN-E [F 2] OUT2 OUT2 (31 )(32 ) OUT2()[---] <>OUT2 [F 2] [F 2][oU2] [oU2][] [2ot][] 40 41 42 43 -39No.PF-OMO0004CN-E a.

1]OUT1[F 2]OUT2 P_1 H_1 [kv] ON OFF [] <> 1 [P_1] -16No.IZ*-OMU0031 1 1 [P_2] -17No.IZ*-OMU0031 2[F 0] [F] 2 2 [F 0] 0.4 kV 19 [F 1] OUT1 [F 2] OUT2 20 OUT1+0.2 kV OUT2-0.2 kV 0.04 kV [F 1] OUT1 ON OFF 21 [F 3] 25 mm 22 [F 4] 1 23 [F 5] ON 24 [F 6] OFF 25 [F98] OFF 26 [F99] OFF 27 -18No.IZ*-OMU0031 [F 0] <> [F 0] [F 0] -19No.IZ*-OMU0031 [F 1] OUT1 OUT1 ON OUT1ONOFF

OUT1 OUT2 OUT2 SET [F 2] OUT2 1SET 2SETSET2 -33No.PS-OMV0003CN-G [F 3] 0.01 sec.0.0030.00 sec. <> UPDOWN[F 3] SET UP DOWN SET [F 3] 190% 2(233033) -34No.PS-OMV0003CN-G [F 4] <> ,UPDOWN[F 4] SET UP DOWN SET [F 4] SET SET (36) -35No.PS-OMV0003CN-G () OUT1 SET[AP1 REdY] (OUT1[AP1 REdY]UPDOWN1 OUT2) OUT1 OUT1 OUT1 SET[AP1 RUn] ([AP1 RUn]UPDOWN1 OUT2) OUT2 SET[AP2 REdY] (OUT2

23 [H_2] [WH2] (58) SET 25 ON OFF SET UP DOWN ON ON ON ON OFF OFF OFF OFF OUT1 OUT1 OUT2 OUT2 SET [F 2] OUT2 1SET 2SETSET2 -36No.PS-OMV0008CN-E [F 3] 0.0030.00 sec.0.01 sec. <> UPDOWN[F 3] SET UP DOWN SET [F 3] 190% 2(253336) -37No.PS-OMV0008CN-E [F 4] <> ,UPDOWN[F 4] SET UP DOWN SET [F 4] SET SET (39) -38No.PS-OMV0008CN-E OUT1 SET[AP1 REdY] (OUT1[AP1

1]OUT1(26)[F 2]OUT2(34) -21No.PF-OMN0011CN-C 3 1 [P_1][n_1] 1 1 OUT1OUT2[P_2][n_2] [ tn][ tp] [F 1]OUT1(26)[F 2]OUT2(34) 28 (23 ) -22No.PF-OMN0011CN-C 2 [F 0] [F] 2 2 [F 0] 25 4 L/min [F 1] OUT1 26 ON OFF 50% 5% ON OFF [F 2] OUT2 34 () ( ) ON OFF 50% 5% OUT1 -23No.PF-OMN0011CN-C [F 3] 40 1 [F10] 41 [F20] 45 [F22] 46 OFF [F30] 48 OFF [F80] 49 () [F81

Setting of [F 3] Response time completed. 26 - NO. ZQ-OM01501 [F 4] Auto-preset function This function calculates and sets the pressure values automatically based on the on-going operation. Press the or button in function selection mode to display [F 4]. Press the button. Move on to setting of auto-preset function.

1]OUT1(29)[F 2]OUT2(47) -23No.PF-OMS0001CN-A <> 1 [P_1][n_1] [] 500 L/min OUT1OUT2[P_2][n_2] [F 1]OUT1(29)[F 2]OUT2(37) 30 (25) -24No.PF-OMS0001CN-A [] 2 [F 0] 2 F99 F1 F0 2 -25No.PF-OMS0001CN-A () () [F 0] [ rEF] [ ANR] 27 [ Uni] 1 [ L] L/min [ oU1] OUT1 [ HYS] [ 1ot] OUT1 [ 1_P] [ 250] 250 L/min(PFMC7501) [ P_1] OUT1 [ 500] 500 L/min(PFMC7102) 29 [F 1] [ 1000] 1000 L/min

(60)[F 2]OUT2(36) -24No.PF-OMM0004-D 3 1 [P_1][n_1] 1 1 OUT1OUT2[P_2][n_2] [ tn][ tp] [F 1]OUT1(60)[F 2]OUT2(36) 30 (26) -25No.PF-OMM0004-D 2 [F 1] [F] 2 [F 1] OUT1 60 ON OFF 50% 5% ON OFF [F 2] OUT2 36 ON OFF 50% 5% OUT1 ON OFF 50 5 -26No.PF-OMM0004-D / [F3] 42 1 [F10] 43 [F20] 47 [F22] 48 OFF [F30] 50 OFF[] [F80] 51 [] [F81] 52 OFF [F82] 53 [*]

These vortexes are stable under certain conditions, and their frequency is proportional to the flow velocity, resulting in the following formula. f = k x v f: Frequency of vortexes, v: Flow velocity, k: Proportional constant (determined by the vortex generator's dimensions, shape, etc.) Therefore, the flow rate can be measured by detecting this frequency.

LQ Thread type Nil T F N For 32A For 40A For 50A 32 40 50 Rc NPTF G NPT Flange LVN Refer to the table (1) given below for availability.

-OM00801-B <> A [F 2] ON OFF OFF ON ON [F 2] OUT2 1 2 2 3ON(H_4)OFF(H_2) -26NO.ZK2-OM00801-B [F 3] <> [F 3] [F 3] -27NO.ZK2-OM00801-B [F 4] <> [F 4] [F 4] (29) ON/OFF -28NO.ZK2-OM00801-B OUT1 AP1 OUT1 OUT1 OUT1 A1L A1H P_1H_1 (n_1H_1 P_1=A-(A-B)/4 A= H_1=|(A-B)/2| B= 1 -29NO.ZK2-OM00801-B [F 6] 5R.D. <> [F 6] [FSC] 1 [F 6] -30NO.ZK2-OM00801-B [F11] <> [F11

[F 1] OUT1 23 - [F 2] OUT2 OUT2 ONOFF OUT2 OUT2ON (P_1 H_3OFF)OFF ON(P_1 H_2ON), ON ONOFF H_2H_4 (H_1 H_2 + H_4 ) P_1-70.0 kPaH_1:10.0 kPaH_2:5.0 kPaH_3:0.0 kPaH_4:1.0 kPa OUT2 () OUT1 (V) H_2 24 - <> [F 2] ON OFF OFF ON ON [F 2] OUT2 1 2 2 3ON(H_4)OFF(H_2) 25 - [F 3] <> [F 3] , [F 3] 26 - [F 4] <> [F 4] , [F 4] , (28 -) ,ON/OFF 27 - OUT1 , AP1 OUT1 OUT1 OUT1 A1L

F = mg Mass m Movement I: Inertial moment Refer to page 100. Static torque calculation Tf = F x L (Nm) Load . g = 9.8m/s2 F: Pressing force (N) : Angular acceleration Load .

(for F, L, S & T1 kits) VVQ5000 3A 1 VVQ5000 2A 1 Electrical entry Electrical entry T1, F, L, T, S kits F kit (connector side) C kit (plug lead type) T1, F, L, T, S kits F kit (connector side) C kit (plug lead type) L F Note1) L F Note1) C C Option Option Nil W Note 2) Standard IP65 enclosure Exhaust cleaner mounting Rc1 Exhaust cleaner mounting Rc1 1/2 Direct exhaust with silencer box Standard

Linearity (77F) 0.15% F .S. Repeatability (77F) 0.6% F .S. 0.5% F .S.

Time Accumulated pulse output mode 50 msec Time -35No.LV50***-OMQ0002-G [F 2] Setting of OUT2 Set the output mode of OUT2.

(50 Hz), 10.5 AV (60 Hz) 7.5 VA (50 Hz), 6 VA (60 Hz) 4.8 W Non-locking push type LVA Allowable voltage fluctuation Coil insulation type Temperature rise LVH LVD Inrush Holding Apparent power AC 3.5 MPa Power consumption Manual override DC LVQ LQ LVN JIS Symbol Valve type Operation 3 Port 2 Port TI/ TIL 12 (P1) 12 (P1) PA PAX Air operated 1(P) 2(A) 3(B) 1(P) 2(A) 7.0 MPa PB 2Port 3Port 12