SMC Corporation of America
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Search Results "AFF80D-N14-H-B"

A A A B A B P1 B B Section A-A (ejector) Section B-B (solenoid valve) Replacement parts list Parts list No. 1 2 3 4 5 6 7 8 Description Material No. Description Part No.

(mm) Thread Weight g A B C D E F H Model Applicable tubing M3 x 0.5 M5 x 0.8 M-3AU-2 M-5AU-2 0.9 0.7 1.5 4.5 7 9 10 3 4 5 7.7 4 2 x 1 .2 3 2 1 4 Thread Parts list Material Brass Brass No. 1 2 3 Description Sleeve Barb fitting Gasket Note Electroless nickel plated Electroless nickel plated E D F NBR, Stainless steel B C A Width across flats H Barb elbow: M-3ALU-2, M-5ALHU-2 Applicable tubing

Core sheet XT661 D Seal Dimensions t d Material: Core sheet Rolled steel Seal NBR Part no. d B H Sales unit ZPNA-M6 M6 x 1 8 3 Dimensions 10 pcs. ZPNA-M12 M12 x 1.25 19 7 ZPNA-M14 M14 x 1 19 5 ZPNA-M16 M16 x 1.5 22 6 Part no. t D Applicable thread size ZP3EA-SW6 1.3 14 M6 x 1 ZP3EA-SW10 1.6 15.5 M10 x 1 ZP3EA-SW12 2 24.3 M12 x 1.25 ZP3EA-SW16 2 28 M16 x 1.5 H B 2 pcs.

(B contact) S N.C. (B contact) Lead screw lead N.C. (B contact) A B 6mm 12mm N.C. (B contact) N.O. (A contact) N.O. (A contact) Stroke N.O. (A contact) 50 75 100 125 150 50mm 75mm 100mm 125mm 150mm Use a driver with CE marking. N.O.

Model Selection 1 Obtain the correction factor for the temperature from data A or B and the correction factor for the air pressure from data C. Temperature Data A or B = Series IDUS: Data A Series IDFS: Data B Air pressure Data C = 3 2 Calculate corrected air flow by using A or B and C.

Calculate the moment of inertia for A and B separately as shown in the figures on the right. A part B part Procedure Calculation Calculation example 1. Check the operating conditions, dimensions of attachment, etc. Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b c B part e f d 2.

(Values at the initial period) Note 3) At rated voltage Flow Characteristics/Weight Flow characteristics 1 2 (P A) 2 3 (A R) 3 2 (R A) 2 1 (A P) Weight Valve model Grommet C [dm 3/(sbar)] b Cv C [dm 3/(sbar)] b Cv C [dm 3/(sbar)] b Cv C [dm 3/(sbar)] b Cv VT317 VT317V (Vacuum spec. type) VT317E (Continuous duty type) 0.29 kg 2.4 0.26 0.62 2.6 0.34 0.67 2.8 0.25 0.67 2.5 0.37 0.66

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).

Temperature Data A or B = Series IDUS: Data A Series IDFS: Data B Air pressure Data C = 2 Calculate corrected air flow by using A or B and C. Corrected air flow = (Air flow) (Data A x Data C) Corrected air flow = (Air flow) (Data B x Data C) 3 Select a model having an air flow capacity that is higher than the corrected air flow.

0.70 B 0.56 0.66 0.70 A 1.50 1.81 2.29 A 1.50 1.81 2.29 B 0.48 0.58 0.61 B 0.48 0.58 0.61 A 1.42 1.72 2.21 A 1.42 1.72 2.21 B 0.60 0.70 0.74 B 0.60 0.70 0.74 A 1.54 1.85 2.33 A 1.54 1.85 2.33 B 0.37 0.46 0.50 B 0.37 0.46 0.50 A 1.30 1.61 2.10 A 1.30 1.61 2.10 Bore Bore 075 (3/4") 106 (1 1/16") 150 (1 1/2") 075 (3/4") 106 (1 1/16") 150 (1 1/2") Mounting Height (NCDM) (in) D-C7 D-C80 D-H7

150 0400 N 0200 R XC10 CA2 Auto switch Stroke B Dual operation Double rod Mounting Bore size CS1 Stroke A C76 Cushion Both ends N W/o cushions H Head end R Rod end Dimensions C85 C95 CP95 P + stroke A 4-EE (NPTF) P + stroke B 4-DD NCM D across flats D across flats NCA D-X Stroke A Stroke B SN + Stroke (A + B) 4-NT Depth ND 20LD + Stroke (A + B) Data ZZ + Stroke (A + B) Bore size (in) MM

Auto switch capable How to Order NC D A1 B 150 0400 + 0200 H XC11 R Mounting Bore size Auto switch Stroke B-A Dual operationSingle rod Stroke A Cushion Both ends N W/o cushions H Head end R Rod end Dimensions PA + Stroke B PB + Stroke A 4-EE (NPTF) 4-DD D across flats Stroke A Stroke B 4-NT Depth ND SN + Stroke A + Stroke B LF + Stroke A + Stroke B ZB + Stroke A + Stroke B Bore size (in)

ANR) 1.00 0.89 0.80 256 m 3/h(ANR) 7.2 GWP (GWP) GWP Regulation (EU) No 517/2014 Regulation EU No 517/2014 (IPCC AR4 ) IPCC AR4 R410A 2,088 2,090 2,088 2,090 R410A 1 IDFA60/70/80/90 Series 7-2 IDX-OM-W094 7.3 Port size Compressed air inlet Compressed air outlet Port size A B E D G F C P J M N H K O L mm A B C D E F G H J K L M N O P IDFA60 R1 307 745 605 161 405 681 94 71 46 12.5

H ASP (Width across flats) (Width across flats) ASN D3 D3 AQ A1 A1 ASV L5 L5 A2 A2 AK ASS T T ASR ASF Model T H D1 D2 D3 L1 L2 L6 A2 M L5 A1 Weight (g) Note 5) MAX.

How to Calculate the Set Value A = Max. pressure value in auto preset mode B = Tentative min. pressure value in auto preset mode P1 = A (A B)/4 P2 = B + (A B)/4 Manual adjustment is possible after finishing in the auto preset mode.

Mounting brackets Nil S n Manual override N L Non-locking type Locking type Basic type Axial foot type Front flange type Rear flange type Front trunnion type Rear trunnion type Clevis type B L F G U T D Auto switch type Lock position Nil Without auto switch (built-in magnet) H R W Rear lock Front lock Double locks Not available on 80 and 100.

Manual override (Non-locking) Bracket B (Standard accessory) (Mounting hole) Bracket B (Standard accessory) (Mounting hole) Supply valve Release valve Release valve Supply valve N.O.

PB B A B A B A N.C. N.O. Double acting Double acting With flow rate adjustment PA PA N.C. B A PB B A Double acting N.C. Double acting With by-pass PA PA N.C. PB B A B A Double acting N.C. Double acting With flow rate adjustment & by-pass PA PA N.C. PB B A B A Double acting N.C.

SN-032B SN-040B Applicable bore size (mm) 25, 32 40 8 M26 x 1.5 32 37 11 M32 x 2.0 41 47.3 H B 6

L D d m t d H B C l IY-G04 IY-G05 C type 10 for shaft 41.6 50.6 9.6 13.4 36.2 44.2 1.55 2.05 1.15 1.15 M14 x 1.5 M18 x 1.5 8 11 22 27 25.4 31.2 C type 14 for shaft 10 14 -0.040 -0.076 -0.050 -0.093 9-12-19 20 Simple Joint: 32 to 63 Type A Mounting Bracket 2-D T1 T2 M W V U F B E (mm) Joint and Mounting Bracket (Type A, Type B) Part No.