SMC Corporation of America
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Search Results "HRS012-W-10"

16 20 25 32 RHC Min. operating pressure (MPa) 0.06 0.06 0.05 0.05 0.05 MK(2) Standard Stroke RS Q G Bore size (mm) Standard stroke (mm) RS H A 10, 16 5, 10, 15, 20, 25, 30 20, 25, 32 5, 10, 15, 20, 25, 30, 40, 50 RZQ Precautions MI W S CEP1 Be sure to read before handling.

F, 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

: (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 (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 50 26 32 10 4.5 144 142 32 9.5 7 64 79 40 36 20 10 145 12 15 160 28 55 9 75 52 55 28 36 11 4.5

Flat Finger Type [3] 4-MM thread depth L Attachment mounting thread K J A A D G B D B K J F C S W O Unit: mm Weight g F G Open Closed 2 2.5 3 4 J K MM L B C D Model A W 5.4 7.4 4.45 5.8 7.45 8.9 M2.5 x 0.45 M3 x 0.5 M4 x 0.7 M5 x 0.8 5 6 8 10 55 115 235 420 5.2 8.3 10.5 13.1 10.9 14.1 17.9 21.8 2.45 3.05 3.95 4.9 6 8 10 12 5 8 10 12 +2.2 0 2H9 2.5H9 3H9 4H9 1.4 1.4 1.6 2 0 -0.2 0 -0.2 0 -

/Flange Rod end width across flats 10 10 21 21 46 46 Data Part no.

Flow rate Power consumption Operating frequency 100 Hz 500 Hz 1000 Hz 80 W 1200 Hz Low flow type 50 L/min 40 W 1000 Hz 10 W 550 Hz 4 W 350 Hz 80 W 650 Hz Medium flow type 100 L/min 40 W 550 Hz 10 W 300 Hz 4 W 200 Hz 80 W 600 Hz High flow type 150 L/min 40 W 500 Hz 10 W 250 Hz 4 W 150 Hz VCH VDW SX10 SX10 Select a model according to applications and purposes.

Lr=40 mm MXJ4 MXJ4 MXJ4 0.03 0.20 0.10 Table displacement amount (mm) Table displacement amount (mm) Table displacement amount (mm) MXJ4-10 MXJ4-10 MXJ4-5 MXJ4-5 MXJ4-5 MXJ4-5 -10 0.08 -10 0.15 MXJ4-10 MXJ4-10 0.02 0.06 MXJ4-5 MXJ4-5 0.10 0.04 0.01 0.05 0.02 20 40 60 0 10 30 50 20 40 60 0 10 30 50 0 10 5 15 Load (N) Load (N) Load (N) MXJ6 MXJ6 MXJ6 0.04 0.10 0.20 Table displacement amount

50 93 M12 x 1.75 depth 21 34 6.5 9 10 7 150, 200, 250 14 depth 10 19 21 22 150 45 50 M10 x 1.5 depth 20 182 194 37 120 170 11 55 103 M14 x 2 depth 25 38 7 11 12 7 300 17 depth 12 For long strokes Bore size (mm) Stroke range (mm) Bore size (mm) PG PL W X XA Y Z R Y K L M N O Q R S V T U 20 25 32 40 250 to 400 350 to 500 350 to 600 350 to 800 30.5 74 52 30 3 152 194 14 160 20 25 32 40 80 106

Air Pressure settiflq range 0 -3oinHs (0 760mmHo) Hystersis 3% or less (fixed) Accuracv a3% full scale (40 100"F) 15% full scale (32 140'F) Supply voltage 12 24VDC (Ripple r'10% max.) Port srze M5 ( 10 32 nom.)

fluid temperature[] 60Hz 50Hz Fig. 9-5 Heating capacity(HRS050-A-20-(BJM)) 9.5.2 HRS050-W-20-(BJM) 2000 2000 Ambient Ambient temperature temperature 5 20 25 32 40 1500 1500 5 20 25 32 40 Heating capacity [W] Heating capacity [W] 1000 1000 500 500 0 0 5 10 15 20 25 30 35 40 5 10 15 20 25 30 35 40 Circulating fluid temperature[] Circulating fluid temperature[] 50Hz 60Hz Fig. 9-6 Heating capacity

LEC [] LEC ID 1 164 1) IO 1: 64 1 S 0 (+) 1000.00 (-) -1000.00 / 3000 3000 0.50 0.00 -9000.009000.00 2) LEY *16** 85 ~85 LEY *25** 65 ~65 LEY *32** 85 ~85 LEY *16*A* 95 ~95 LEY *25*A* 95 ~95 1+ /1+2 SW 2 /12 14 W 1 0.00 W 2 0.00 0.00 1 2P.33 2 CW + CCW + 1 CCW 2mm -32- 2 =02mm =0 aCCW 50mm 0 50mm CCW CW 0 10 20 30 40 50 [mm] 10 50mm CCW CW 10 20 30 40

If a moment or torque directly acts on the cylinder, it will lead to reduced service life or damage to machinery. 10-10-8 9 3 Position Cylinder Series RZQ Construction u i @2 r !0 y q w !9 e @1 @4 !3 RE A B @0 REC !2 CX @3 !

25 EA 7 8.5 13 EC 6 9 13 EY 27 36 57 FA 12.5 19.3 17 h 4 5 6 S 40.8 46.7 67.3 T 6 7 12 TT 5.6 (MAX. 11.2) 7.1 (MAX. 18.6) 10 (MAX. 26) W 16.5 25.8 38 High load shock absorber MY2H Bore size Stroke H G (Shock absorber stroke) S T W SD TT E Shock absorber EA h EY Stroke adjusting unit EC FA MY2H16 W Applicable cylinder MY2H16 MY2H25 MY2H40 TT 5.6 (MAX. 12) 7.1 (MAX. 18.6) 10 (MAX. 6) Shock

9 10 10 11 D-C7 D-C80 10 15 50 50 + 45 (n2) D-B5/B64 8 10 13 4 8.5 9 14 4.5 9 10 14 5 10 10 14 6 9.5 11 17 6.5 10.5 11 16 6.5 10.5 11 18 7 11 9 10 9 10 10 11 11 11 9 10 10 11 RZQ 15 + 45 ( ) n2 2 D-H7 D-H7W D-H7BAL D-H7NF D-B59W 13 (n = 2, 4, 6, ) D-H7/H7NF/H7W/H7BAL 4 10 15 60 60 + 45 (n2) MI W S D-H7C 7 D-A3/A44 D-G39/K39 8 CEP1 D-C73C D-C80C D-H7C 10 15 65 9 9 9 15 + 50 ( ) n2 2 65

Material Number Description NBR VVQ4000-80A-1 10 Gasket r Option NBR VVQ4000-80A-2 10 Gasket t A C y For 1 station Nil W Standard Stainless steel VVQ4000-80A-4 10 Clip For 2 stations(3) (2) IP65 enclosure is dust Note) Spare parts consist of sets containing 10 pcs. each.

Note that frequencies 2446 to 2468 [MHz] correspond to (1) W-LAN Channel: CH.10 above.

3 PBT Return spring 9 Stainless steel o Board assembly 10 Casing 11 PBT r e Plug 12 NBR w O-ring 13 NBR O-ring 14 EPDM/FKM/Kalrez !

Name Alarm flag 1 Bit 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Name Alarm flag 2 Bit 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Name Alarm flag 3 Bit 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Name Alarm flag 4 Bit 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 Bit Name Explanation 0 Low level in tank 1 High circulating fluid discharge temp. 2 Circulating fluid discharge temp. rise 3 Circulating fluid discharge