SMC Corporation of America
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Search Results "HRS030-AN-20-J"

m (kg) Load weight m (kg) 20 20 20 20 20 20 16 16 16 16 16 16 1 1 12 12 12 12 12 12 0.5 10 20 30 31 50 100 101 300 200 0.5 10 20 30 31 50 100 101 300 200 Stroke (mm) Stroke (mm) MGPL32 to 63 MGPL32 to 63 50 50 Load weight m (kg) Load weight m (kg) 63 63 50, 63 50 50 50, 63 50, 63 10 10 40 40 40 50, 63 40 40 40 32 32 32 32 32 32 5 10 20 30 50 40 51 100 101 300 200 5 10 20 30 50 40 51 100

30 40 0 5 10 15 20 10 20 30 40 50 60 Work load [kg] Work load [kg] Work load [kg] 1,000 1,000 1,000 Mey Horizontal m 500 500 500 L2 0 0 0 0 0 5 10 15 20 0 10 20 30 40 10 20 30 40 50 60 Work load [kg] Work load [kg] Work load [kg] 800 800 800 600 600 600 L3 400 400 400 Mer m 200 200 200 0 0 0 0 0 10 20 30 40 50 60 0 10 20 30 40 5 10 15 20 Work load [kg] Work load [kg] Work load [kg] 1,500

The Volume Flow of 9.44 l/min applies to an element (Valve, fining, tub etc.) with an equivalent orifice "S" of 1 mm'. lf an lement has for example an "S' ot 4,5 mm', the flow would be 4.5 times higher, in this case 4.5 . 54.44 limin = 245 Umln Example 2: Given an element wilh an 'S'ol 12 mm", a working pressure of 7 bar and an air consumption ot 600 ymin.

The Volume Flow of 9.44 l/min applies to an element (Valve, fining, tub etc.) with an equivalent orifice "S" of 1 mm'. lf an lement has for example an "S' ot 4,5 mm', the flow would be 4.5 times higher, in this case 4.5 . 54.44 limin = 245 Umln Example 2: Given an element wilh an 'S'ol 12 mm", a working pressure of 7 bar and an air consumption ot 600 ymin.

SB) 7 5 5 5 3 7.5 5 3 5 3 90 90 5 90 5 A MHZ 20 20 20 20 (3 x SA) 20 20 MHF Section SD SD MHL MHSJ3-63D MHSJ3-80D MHR MHK 4 MHS 10 4 11 MHC 3 5 3 5 90 90 MHT 5 MHY 20 20 20 20 MHW -X (mm) L 2H9 3H9 4H9 6H9 8H9 J 20 21 24 28 32 HB 65 75 88 106 130 HA 76 86 103 125 158 FX 22 26 32 40 50 EO 15.5 19 24 31 41 EC 11.5 15 18 23 31 DO 35.5 40 48 59 73 DC 31.5 36 42 51 63 AE 36 37 46 50 57 CA 9.5

JA E H A' A 2-P through KA B 4-T counterbore Width across flats L S + Stroke Z + Stroke (mm) Port size Bore size (mm) GA H J JA A B A' C CA CB D E GB 20 25 32 29 32.5 35 19 23 27 16 20 24 12 15 19 26 32 40 42 50 62 20 25 31 22 25 31 9 10 11 27 22.5 25 14 18 22 12 15.5 19.5 8 10 12 M5 x 0.8 M5 x 0.8 Rc1/8 Bore size (mm) Standard stroke NN T S Z K KA L MM P Q R 20 25 32 M5 x 0.8 with depth

--20, HRS024--20 . 9-11 9.6 Pump capacity . 9-12 9.6.1 HRS012--10-(BJM), HRS018--10-(BJM) . 9-12 9.6.2 HRS012--20-(BGJM), HRS018--20-(BGJM), HRS024--20-(BGJM) . 9-12 9.6.3 HRS012--10-T, HRS018--10-T, HRS012--10-MT, HRS018--10-MT . 9-13 9.6.4 HRS012--20-T, HRS018--20-T, HRS024--20-T . 9-13 9.6.5 HRS012--20-MT, HRS018--20-MT, HRS024--20-MT . 9-14 9.7 Required facility water flow (for water-cooled

Z ZZ (NN1) x H G H 5.5 11 11 5.5 B A 3.2 6.5 7 7 12 1 4 NN-M4 x 0.7 thread depth 8 B A 3H9 depth 2.5 +0.025 0 3H9 depth 2.5 +0.025 0 HA GA Section AA Section BB (mm) Model F 20 30 20 28 38 ZZ 64 74 84 106 122 M 42 52 62 84 100 Z 41.5 51.5 61.5 83.5 99.5 K 22.5 32.5 42.5 52.5 62.5 J 17 27 40 50 60 I 10 10 7 19 25 NN 2 2 3 3 4 H 25 35 20 30 24 G 6 6 11 13 17 HA 20 20 20 30 48 N 4 4 6 6 6 GA

25, 32 40, 50, 63 CY1S, CY1L: 6 to 40 12, 16, 20 25, 32, 40 50, 63, 80 100 12, 16, 20 25, 32, 40 50, 63, 80 100 6, 10 15, 20 25, 32 12, 16 20, 25 32, 40 20, 25 32, 40 50, 63 32, 40 50, 63 80, 100 6, 10 16, 20 25, 32 12, 16 20, 25 6, 10 16 20, 25, 32 40, 50 10, 15 25 10, 16, 20 25, 32 6, 10 16 20, 25 32, 45 Bore size (mm) 5 to 50 mm/s 7 to 50 mm/s 5 to 50 mm/s 5 to 50 mm/s Piston speed Air

K J K J K M J K M N Q R S T N.C., N.O., COM.

CRB2 CRB2 W1 = L3 = L1 = CRB1 L4 = Y = L2 = MSU X = Applicable shaft types: J, K, T Applicable shaft type: K W2 = CRJ [mm] CRA1 CRB2, CRBU2 X W1 L1 max L3 max J K T J K T J K T J K T 10 6.5 to 14 0.5 to 2 X-3 L1-1 15 8 to 18 0.5 to 2.5 X-4 L1-1 20 9 to 20 0.5 to 3 X-4.5 L1-1 30 11.5 to 22 0.5 to 4 X-5 L1-2 40 15.5 to 30 0.5 to 5 X-5.5 L1-2 [mm] Size CRB2, CRBU2 Y W2 L2 max L4 max 10 4.5

to 600mm/s Cushion Bumper is standard on both ends Port size M5 x 0.8 Rc 1/8 Bearing type Slide bearing, Ball bushing bearing (Same dimensions for both) 0.0023 J 0.064 J 0.095 J 0.17 J 0.27 J 0.32 J Allowable kinetic energy Lock Specifications Lock specifications Rear end lock 6 10 15 20 25 32 Bore size (mm) Maximum holding force (N) Non-lock type 14.7 98.1 157 235 382 39.2 Manual release

XA17 H: M8 or more, X: 26.5 mm or less H: M8 or less 20 20 J: 5 mm or more, I :11 mm or less J: 5 mm or more, I: 11 mm or less H : M10 or more, X: 33 mm or less H: M10 or less 25 25 J: 6 mm or more, I: 13 mm or less J: 6 mm or more, I: 13 mm or less H: M5 or more, X: 20 mm or less H: M5 or less For 12 For 12 H: M4 or less H: M4 or less H: M6 or more, X: 22.5 mm or less H: M6 or less 16 16

MXS6-50 VWith stroke adjuster MXS6-10AS MXS6-20AS MXS6-30AS MXS6-50AS SMXS6N, #1 SMXS6N, #2 SMXS6N, #3 SMXS6, #1(#1+#5) (mm) Model F 20 30 20 28 38 ZZ 48 58 68 90 106 M 42 52 62 84 100 Z 41.5 51.5 61.5 83.5 99.5 K 22.5 32.5 42.5 52.5 62.5 J 17 27 40 50 60 I 10 10 7 19 25 NN 2 2 3 3 4 H 25 35 20 30 24 G 6 6 11 13 17 HA 20 20 20 30 48 N 4 4 6 6 6 GA 11 21 31 43 41 MXS6-10 MXS6-20 MXS6-30 MXS6

This information is needed when contacting an SMC sales distributor. THERMO CHILLER HRS050-A-20 POWER SUPPLY SERIAL No.

Model number: HRS060-N-20 The transition connector from Rc to NPT is enclosed as an accessory. For NPT piping, be sure to use this connector. Model number: HRS060-F-20 The transition connector from Rc to G is enclosed as an accessory. For G piping, be sure to use this connector.

Standard Stroke Model Standard stroke (mm) 10, 20, 30, 40, 50 MXQ6 10, 20, 30, 40, 50, 75 MXQ8 10, 20, 30, 40, 50, 75, 100 MXQ12 10, 20, 30, 40, 50, 75, 100, 125 MXQ16 10, 20, 30, 40, 50, 75, 100, 125, 150 MXQ20 10, 20, 30, 40, 50, 75, 100, 125, 150 MXQ25 8-5-9 10 Series MXQ Theoretical Output IN OUT The dual rod ensures an output twice that of existing cylinders.

Shock absorber External shock absorber With adjustment bolt 0.007[J] 0.025[J] 0.048[J] 0.081[J] 0.240[J] 0.320[J] 0.560[J] With internal shock absorber 0.039[J] 0.116[J] 0.116[J] 0.294[J] 1.100[J] 1.600[J] 2.900[J] Allowable Kinetic Energy (J) With external shock absorber (For low energy) 0.161[J] 0.574[J] 0.805[J] 1.310[J] With external shock absorber (For high energy) 0.231[J] 1.060[J