Calculation of applied lateral load The lateral load F equals the total load of the work piece. Thus, F = x m g (N) 1. Calculation of applied lateral load F The lateral load F equals the coefficient between the work piece and the conveyor. Thus, from the total amount of the work piece and coefficient of friction, F = x m g (N) 2.
G, C and D [First angle projection] Mounting style (L) XA + Stroke SA + Stroke Mounting style (F, G) Head side mounting (G) ZF + Stroke Rod side mounting (F) Mounting style (C) Mounting style (D) XD + Stroke Bore size (mm) E1 R W MF ZF FB CD EB L XD UB CB EW MR TR AO AT XA SA AH AB TF UF E2 32 32 16 10 130 10 12 142 26 48 7 65 45 26 32 10 4.5 144 142 32 9.5 7 64 79 50 40 36 20 10 145 12
G, C and D [First angle projection] Mounting style (L) XA + Stroke SA + Stroke Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com Mounting style (F, G) Head side mounting (G) ZF + Stroke Rod side mounting (F) Mounting style (C) Mounting style (D) XD + Stroke Bore size
For Water 30 20 VX2 60-02 10 VX234.5 VX2 46 VX2 6010 VX2 50 8 3 2 04 03 3 2 3 2 VX223 10 3 2 VX2112 5 4 3 Flow rate Q l/min 2 1 0.001 (0.0018) (0.0054) 0.01 (0.017) 0.05 (0.07) 0.1 Pressure differential P = (P1 P2) MPa How to read the graph When a water flow of 2 l/min is generated, lP 0.017 MPa for a valve with 3 orifice (VX212, 222, 232).
RoHS Blow Gun Series VMG How to Order VMG1 1 02 32 W C With nozzle cover (Only for male thread nozzle, 6 extension nozzle) Piping entry Bottom Top 1 2 C CF None With nozzle cover/HNBR With nozzle cover/Fluororubber Body color Nozzle White Dark blue W BU Nozzle size Type Symbol Nozzle part no.
Symbol Bore size (mm) A A' B B' D E F GA GB H MM NN R X Y LC LH LT LX LZ 6 10 15 M3 x 0.5 17 6 28 6 20 8 10.5 1.6 3 11 14 3.4 14 6.5 10.5 9 M10 x 1.0 7 7 M4 x 0.7 20 7 33 6 24 8 13 1.6 5 13 17 4.5 15 7 12 12 M12 x 1.0 8 10 M5 x 0.8 24 7 43 6 30 10 15.5 2.3 6 18 19 5.5 20 16.5 14 M14 x 1.0 10 12 10 Symbol S Z With auto switch Bore size (mm) W J 5 st 10 st 15 st 20 st 30 st 5 st 10 st 15 st
Symbol Bore size (mm) A A' B B' D E F GA GB H MM NN R X Y LC LH LT LX LZ 6 10 15 M3 x 0.5 17 6 28 6 20 8 10.5 1.6 3 11 14 3.4 14 6.5 10.5 9 M10 x 1.0 7 7 M4 x 0.7 20 7 33 6 24 8 13 1.6 5 13 17 4.5 15 7 12 12 M12 x 1.0 8 10 M5 x 0.8 24 7 43 6 30 10 15.5 2.3 6 18 19 5.5 20 16.5 14 M14 x 1.0 10 12 10 Symbol S Z With auto switch Bore size (mm) W J 5 st 10 st 15 st 20 st 30 st 5 st 10 st 15 st
N 0.5MPa 0.5MPa 40 40 0.4MPa 0.4MPa F 0.3MPa 0.3MPa 20 20 0.2MPa 0.2MPa 0 0 10 10 20 20 30 30 40 40 Gripping point L mm Gripping point L mm MHS2-25D MHS2-25D 100 100 F Internal gripping Pressure 0.6MPa Pressure 0.6MPa 80 80 Gripping force N Gripping force N 0.5MPa 0.5MPa 60 60 Note: 1N = 0.2248lbf 1in = 25.4mm 1MPa = 145psi 0.4MPa 0.4MPa 40 40 0.3MPa 0.3MPa 0.2MPa 0.2MPa 20 20 0 0 10 10
connector (CS0) 3 7 5 1 39 37 35 33 31 29 27 25 23 21 19 17 15 13 11 9 Power supply terminal block 20 18 16 14 12 10 8 6 4 2 Input/output connector (CS1) 19 17 15 13 11 9 7 5 3 1 Green Red F E D C B A 9 8 7 6 5 4 3 2 1 0 4 3 2 1 CN1 4 3 2 1 CN2 4 3 2 1 CN3 4 3 2 1 CN4 4 3 2 1 CN5 4 3 2 1 CN6 4 3 2 1 CN7 4 3 2 1 CN8 4 3 2 1 CN9 4 3 2 1 CNA 4 3 2 1 CNB 4 3 2 1 CNC 4 3 2 1 CND 4 3 2 1 CNE 4
Bore size (mm) 12 16 20 25 32 40 Distance between guide rods GP 50 65 80 90 110 130 GP > 0.5 Calculation of load ratio to the theoretical output of cylinder = f / F Horizontal mounting: f = x W Inclined mounting: f = x Wcos + Wsin (Refer to the figure on the right.)
Cylinder bore size 12 16 20 25 32 40 Distance between guide rods GP 50 65 80 90 110 130 MGQ GP b>0.5 Calculation of load ratio b to MGG the theoretical output of cylinder b=f / F Horizontal mounting: f= X W Inclined mounting: f= X Wcosq+Wsinq (Refer to the diagram on the right.)
-X 1 to 349 20, 25, 32 Applicable stroke (mm) 5 to 345 40 to 80 2025 to 345 100 Part no.: MLGPM20-39-F A 1 mm spacer is installed in MLGPM20-40-F . Dimension C is 77 mm.
16.5) 8 (Max. 20) 9 (Max. 25) 13 (Max. 33) 13 (Max. 38) 5.8 5.8 6.5 8.5 10 14 14 39.5 45.5 53.5 67 83 106 129 14.6 20 24 29 35 40 52 58 58 70 88 104 128 152 6 6 7 12 12 15 15 7 10 12 14 17 20 26 8-12-21 22 Series MY1W Side Support Side support A MY-SA 2-G 2-H E E F A B C D Side support B MY-SB 2-J Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main
-X 1 to 349 20, 25, 32 Applicable stroke (mm) 5 to 345 40 to 80 2025 to 345 100 Part no.: MLGPM20-39-F A 1 mm spacer is installed in MLGPM20-40-F . Dimension C is 77 mm.
16.5) 8 (Max. 20) 9 (Max. 25) 13 (Max. 33) 13 (Max. 38) 5.8 5.8 6.5 8.5 10 14 14 39.5 45.5 53.5 67 83 106 129 14.6 20 24 29 35 40 52 58 58 70 88 104 128 152 7 10 12 14 17 20 26 6 6 7 12 12 15 15 8-12-21 22 Series MY1W Side Support Side support A MY-SA 2-G 2-H E E F A B C D Side support B MY-SB 2-J 2-H C D A B (mm) A B C 15 25 35 45 E F G D H J M4 x 0.7 M5 x 0.8 M6 x 1 M8 x 1.25 Applicable
) 13 (Max.38) MY1C MY1H MY1 HT MY1 W MY1 W With low load shock absorber + Adjusting bolt MY2C MY1W Bore size Stroke L MY2 H/HT TT MY3A MY3B h h E F MY3M EA h EB W F Stroke adjustment unit (Shock absorber stroke) T MY1W16/20 S F MY1W50/63 Shock absorber EY EC (mm) h E EB EC EY T EA S TT F Shock absorber model RB0806 W 58 Model MY1W16 MY1W20 MY1W25 MY1W32 MY1W40 MY1W50 MY1W63 3.6 14.6 30 5.8
-RA Both ends tapped (CQMA) (mm) Without auto switch With auto switch Stroke range (mm) Bore size (mm) P P EA EB EC B F Q A B F Q A TN TF NN NN TN TF 5 5.5 11.5 M5 x 0.8 M5 x 0.8 40 23 32 10 to 50 50 33 7.5 10.5 45 43 34.4 Rc1/8 NPT1/8 NPT1/8 G1/8 7.5 10.5 G1/8 Rc1/8 NPT1/8 NPT1/8 75, 100 50 33 5 to 50 46.5 29.5 40 Rc1/8 NPT1/8 NPT1/8 G1/8 8 11 G1/8 56.5 39.5 8 11 52 50 41.4 Rc1/8 NPT1
30.5 32 26.5 28.5 30 28 25 31 25 (34) 24 (33) 18 (27) 21 (30) 33 (32) 21.5 (30.5) 19.5 (28.5) 40 38 37.5 35 36.5 31 33 34.5 32.5 29.5 35.5 29.5 (41.5) 28.5 (40.5) 22.5 (34.5) 25.5 (37.5) 27.5 (39.5) 26 (38) 24 (36) 50 43.5 43 40.5 44 38.5 40.5 42 40 37 43 ( ): For long stroke 3.20-14
(Note 8) 33 OP Encoder Z-phase pulse (open collector) 1 P15R SD Plate 10m max. (Note 7) 2m max.