SMC Corporation of America
Elite Part Number Search
Search Results "10-SS5Y5-45-04B-N7"

Common air pressure SUP port (PV) 118.6 61 4 x 5.5 (Mounting hole) 45 32 12.4 10 Manual override (Push and turn the locking type override.) 6.5 22.7 SMC SMC SMC SMC A: Release flow rate adjusting needle with lock nut 4 21.6 10 20 Pitch = 21 L3 L2 L1 8 (Needle fully open) Manifold base Pressure setting trimmer 6 End plate (44) Ejector + Silencer Pilot valve for supply (N.O.)

. 12-10-13 13 Series MHY2 Dimensions MHY2-25D 2-M6 x 1 thread depth 10 (Mounting hole) Pin hole positioning 16 5 23 50 4H9 + 0.030 depth4 0 4-M5 x 0.8 (Thread for mounting attachment) 10 4-M6 x 1 thread depth 12 12 0.005 0.025 (Mounting hole) 6 12 26.6 2-M6 x 1 thread depth 12 22.5 (Mounting thread) (Mounting hole) (Limted area for mounting attachment) 46 58 45 45 42 26H9 + 0.052 depth1.5

Groove Dimensions 30.3 45 20 O S 16 4.5 4.5 23 10 M5 x 0.8 (Finger operating port) 5 MHW2-25D1 Right angle finger type 6.45 5.5 37 18 12 6 15 16 4-M5 x 0.8 (Thread for mounting attachment) 30 45 21 12-10-20 20 180 Angular Style Air Gripper Rack & Pinion Style Series MHW2 MHW2-32D Flat finger type (Standard) 24 MHZ MHF 2-M6 x 1 thread depth 10 (Mounting hole) 21 MHL 61.5 83.5 MHR 4-M6 x 1

5 $0 @8 #7 #6 $1 F G Area G (10) Enlarged view F 10, 15 w u i o !1 #2 q !3 r y e @6 @5 @3 $1 #0 @7 #1 10 Component Parts Note No. Description Material No.

6 p. 31 3 30 m ZK2 SC3 4 A Body gasket1 (10 pcs. per set) Construction !1 p. 31 Applicable nozzle size ZK2 BG5 A 4 For nozzle size 07, 10 6 For nozzle size 12, 15 1 Applicable type Release lever (10 pcs. per set) Construction !

0 10 20 30 40 50 60 50 60 40 30 20 10 0 10 20 30 Atmospheric pressure dew point ( C) 14-19-10 7 Membrane Air Dryer Series IDG Calculation of inlet air flow rate Q1, and confirmation of compressed air supply capacity.

10 10 10 W 71 58 49 44 LZ Z Bore size 63.5 53 52 47 38.5 34 40 32 25 20 54.5 45 10 12 55 74 4.5 100 125 5 20 28.5 80 101 6 11 65 74 6 120 150 7 20 30 100 121 6 14 50 63 70.5 5 5 40 45 4.5 4.5 17.5 17.5 75.5 22 22 11 13 5 5 67 67 66 82 218 218 86 106 82.5 75.5 14 264 95 16 264 95 Other dimensions are the same as basic type.

-3-050 JA10-4-070 JA15-5-080 JA15-6-100 JA20-8-125 JA30-10-125 JA40-14-150 JA63-18-150 JA80-22-150 JA100-26-150 JA140-30-150 JA160-36-150 3 4 5 6 8 10 14 18 22 26 30 36 23.2 26 34.5 34.5 44 49.5 60 74.5 89.5 110 152 178 7 9 12.5 12.5 17.5 19.5 20 25 29 35 42 52 15 17 23 23 30.5 34 38 47.5 56.5 68 94.5 112 0.5 0.7 0.8 1 1.25 1.25 1.5 1.5 1.5 1.5 1.5 1.5 8 10 14 14 45 55 12 12 16 16 21 24 31

0.8 1 1.25 1.25 1.5 1.5 1.5 1.5 1.5 1.5 8 10 14 14 45 55 12 12 16 16 21 24 31 41 50 59.5 79 96 1.5 1.5 2 2 4.5 5 6 7.5 9.5 11.5 14 16 4 4 6 6 7 8 11 14 19 24 30 36 3.2 4 5 5 7 8 11 13.5 16 20 22 24 5.5 7 10 10 13 17 22 27 32 41 46 55 5 5.5 7 7 8 9 13 15 18 24 38 42 0.5 0.5 0.5 0.5 0.5 0.5 0.75 1 1.25 2 2.5 3 19 54 123 123 1100 2500 6000 11000 18000 28000 54000 71000 0.01 0.01 0.02 0.02 0.05

C HRZ008-L1-F 16 14 [HRZ008-L1-F] Cooling capacitykW 12 10 8 6 4 2 0 -20 -10 0 10 20 30 40 Circulating fluid setting temp.deg.

= 9.0 x 10-6 (kgm2) Moment of inertia around Z axis = Z1 m1r12 X 10-6 z r2 z2 B part r2 = 47(mm) Calculation of weight m2 = d x e x f x Specific gravity m2 = 5 x 10 x 12 x 2.7 x 10-6 = 0.002 (kg) Moment of inertia around Z2 axis Z2 = {m2 (d2 + e2)/12} x 10-6 Z2 = {0.002 x (52 + 102)/12} x 10-6 = 0.02 x 10-6 (kgm2) B = 0.02 x 10-6 + 0.002 x 472 x 10-6 = 4.4 x 10-6 (kgm2) = 9.0 x 10-6

14 10 14 12 16 20 24 27 38 41 51 37 41 50 41 45 57 42 43 53 72 78 KA 4 2.5 1.8 1.6 10 8 13.5 5 4 3 KQG2 2.3 2.6 Applicable tubing L1 M 6 4 6 10 10 15 5.8 3.3 KG H1 12 d 8 6 KFG2 KFG2 5.3 12 14 17.4 6.6 16 22.2 A L2 23 H2 MS 25.6 10 7.5 6.8 26 Connection thread 27.5 15 17 20.9 7.6 KKA 27 25.6 10 8 7.3 30 KP 27.5 27 25.6 12 9 8 LQ 35 27.5 16 17 23.5 8.5 34 MQR 25.6 12 10 9 44 27.5 31 32.9

-10 10 15.9 26.7 37.9 35.7 15.6 57 AS321FSG-G02-12 12 18.5 29.7 40.9 34.5 17 59 AS321FSG-G03-06 6 1/4 21 16.6 45 AS321FSG-G03-08 8 13.2 22.7 33.9 14.2 46 AS321FSG-G03-10 10 15.9 26.7 37.9 28 15.6 47 AS321FSG-G03-12 12 18.5 29.7 40.9 26.8 17 49 AS421FSG-G04-10 10 1/2 27 15.9 18.8 27.4 41.8 36.2 64.1 62.5 55.1 53.5 15.6 26 29 10 19 80 AS421FSG-G04-12 12 18.5 30.8 45.2 35.1 17 82 AS421FSG-G04

Number of auto switches Same surface Different surfaces Same surface (n 2) 2 D-M9m/M9mW D-A9m 15 + 45 10 15 Note 1) Note 1) 45 45 + 45 (n 2) (n = 2, 4, 6) (n 2) 2 15 + 45 D-H7BAL/H7NF 10 15 60 60 + 45 (n 2) (n = 2, 4, 6) (n 2) 2 D-C73C/C80C D-H7C 15 + 50 10 15 65 65 + 50 (n 2) (n = 2, 4, 6) (n 2) 2 D-B54/B64 D-G5NTL 15 + 50 10 15 75 75 + 55 (n 2) (n = 2, 4, 6) (n 2) 2 20 + 50 D-B59W

-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Vacuum switch unit E C ZX1 1 10 Ejector unit Filter unit F ZX1 1 10 Ejector unit PV/V port size Ejector unit nozzle dia.

Note) ( ): Long stroke 1.6-8 Standard: Double Acting Single Rod Series CG1 With Mounting Bracket Axial foot (mm) Z ZZ Bore (mm) LT W X B LC LD LH LS LZ M LX Y Without rod boot With rod boot Without rod boot With rod boot 67+l 74+l 75+l 83.5+l 95.5+l 95.5+l 104+l 104+l 20 25 32 40 50 63 80 100 10 10 10 10 15 15 16 4 4 4 4 5 5 6 6 6 6 45 (53) 3 3 3 3 34 20 44 49 58 71 86 3 32 36 44 54 66 82

2.7 X 10-6 Calculation of weight m2 = d X e X f X Specific gravity = 0.002(kg) Iz2 = {0.002 X (52 + 102)/12} X 10-6 Moment of inertia around Z2 axis = 0.02 X 10-6 (kgm 2) IB = 0.02 X 10-6 + 0.002 X 472 X 10-6 Iz2 = {m2(d 2 + e2)/12} x 10-6 Moment of inertia around Z axis IB = IZ2 + m2r22 x 10-6 = 4.4 X 10-6 (kgm2) I = 9.0 X 10-6 + 4.4 X 10-6 Total moment of inertia I = IA + IB = 13.4 X

level: 1 Air flow level: 1 10 10 10 10 Air flow level: 10 5 Air flow level: 10 5 Air flow level: 10 Air flow level: 10 5 5 Air flow level: 10 Air flow level: 10 5 5 0 0 0 200 400 600 800 1000 1200 1400 1600 0 200 400 600 800 1000 1200 1400 1600 0 0 0 0 Installation distance [mm] 0 200 400 600 800 1000 1200 1400 1600 0 200 400 600 800 1000 1200 1400 1600 Installation distance [mm] 0 200 400

10 0 0 10 30 40 50 20 60 10 20 Discharge rate l/min Discharge rate l/min Selection from flow rate characteristic graphs (PA3000) Required specification example: 3.

10 0 0 10 30 40 50 20 60 10 20 Discharge rate l/min Discharge rate l/min 1m = 3.28ft 1l/min = 0.035SCFM Selection from flow rate characteristic graphs (PA3000) Required specification example: 3.