SMC Corporation of America
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Search Results "MDWBD40-100-W"

REBH25, REBHT25 25 9 REBH15 20 16 REBH25 Load weight W (kg) 25 REBH15 10 REBHT25 9 40 REBHT32 5 4 3 W 2 W 1 0.5 70 100 300 500600 Maximum speed U (mm/s) Moment M1, M3 M2 (Static moment/Dynamic moment ) Allowable moment 100 100 85 96 REBHT32 REBHT32 64 56 50 40 30 50 40 30 (Nm) REBHT25 REBH25 REBHT25 REBH25 Model REBH15 REBH25 REBHT25 REBHT32 M2 16 26 85 96 M3 10 28 56 64 M1 10 28

Motor output [W] / size [mm] 100 / 40 200 / 60 Type of Motor AC servo motor (100/200VAC) Type of Motor S2,S3 Incremental 17bit encoder (Resolution:131072 p/rev) Type of Motor S6,S7 Absolute 18bit encoder (Resolution:262144 p/rev) specification Encoder Electric Type of Motor T6,T7 [With LECSB-T/LECSS-T]Absolute 22bit encoder (Resolution: 4194304 p/rev) [With LECSC-T]Absolute 18bit encoder

DC Specification AC Specification (Built-in Full-wave Rectifier Type) Model Power consumption (W) Note 1) Temperature rise (C) Note 2) Model Apparent power (VA) Note 1) 2) Temperature rise (C) Note 3) VXS23/24 12 100 VXS25/26 15 100 VXS23/24 12 100 VXS25/26 15 100 Note 1) The value at ambient temperature of 20C and when the rated voltage is applied.

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Graph 1 10 500st 600st 700st 400st 4 5 300st 3 200st 2 Load movement time: t(s) 100st [Example] 1 Example) 0.4 0.5 0.3 0.2 300 0.1 V' 100 200 1000 400 500 Maximum speed: V(mm/s) V W Step 2 Find the cylinder bore size.

SY11 A 3 4 M3 x 0.5 M3 x 0.5 100 kPA to 0 0.22 100 kPA to 0.6 Large flow 0 to 0.7 N.C. SY13(A): 15 SY14(A): 26 (14) SY13(A): 13 SY14(A): 24 (12) (1) SY12 3 4 M3 x 0.5 M3 x 0.5 100 kPA to 0.6 0.14 100 kPA to 0 Standard 0 to 0.7 N.O. (1) SY12 A 3 4 M3 x 0.5 M3 x 0.5 100 kPA to 0.6 100 kPA to 0 0.22 Large flow 0 to 0.7 N.O.

SY11 A 3 4 0.22 100 kPA to 0.6 100 kPA to 0 M3 x 0.5 M3 x 0.5 Large flow 0 to 0.7 N.C. SY13(A): 15 SY14(A): 26 (14) SY13(A): 13 SY14(A): 24 (12) (1) SY12 3 4 100 kPA to 0 0.14 100 kPA to 0.6 M3 x 0.5 M3 x 0.5 Standard 0 to 0.7 N.O. (1) SY12 A 3 4 0.22 100 kPA to 0 100 kPA to 0.6 M3 x 0.5 M3 x 0.5 Large flow 0 to 0.7 N.O.

100% 10 , 16 20 , 25 540 40% 100% 2150 80% 100% 1120 60% 100% 10L , 16L 510 50% 100% 3150 70% 100% 20L , 25L 520 40% 100% 2130 50% 100% [mm/sec] () 2130 50% 100% 520 40% 100% [mm/sec] () 4150 50% 100% 540 40% 100% 3150 80% 100% 1130 60% 100% 510 40% 100% 22 - 150% LEHZJ 1) (SVON ) 2)CN1 EMG() a)SVRE SETONON SVRE OFF SETON ON b) SVREON SVREON c) SVREON

(Without indicator light), 4.3 W (With indicator light) 4.8 W (Without indicator light), 5 W (With indicator light) Non-locking push type Option Part no.

Graph (1) 10 500 st 600 st 700 st 700 st 500 st 600 st 400 st 400 st 4 5 300 st 300 st 3 200 st 200 st Load movement time: t (S) 2 100 st [Example] Example) 1 0.4 0.5 0.3 V' 0.2 300 0.1 V W 100 200 1000 400 500 Maximum speed: V (mm/s) Cylinder stroke Movement distance of load Step (2) Find the bore size.

Lead wire length 3.0 m C Lead wire length 0.6 m CL Lead wire length 3.0 m CN W/o lead wire Pilot valve Connector type Nil DC: 1 W (With indicator light: 1.05 W) AC Refer to page 13-3-5 for part no. of lead wire with connector. Y DC: 0.45 W (With indicator light: 0.5 W) Combination of vacuum switch/Suction filter Electrical entry 24 VDC and 12 VDC are applicable to 0.45 W.

I T C H E S Reed D-90 (DC Only) D-97 (w/LED, DC Only) A-90A (AC or DC) D-93A (w/LED, AC or DC) Solid State D-F9N (W/LED, 3 Wire NPN) D-F9P (W/LED, 3 Wire PNP) D-F9B (W/LED, 2 Wire) N O O F S W I T C H E S 2 Switches S 1Switch Safety Note For cap type mounting, care should be taken not to exceed 6 bar when ejecting the workpiece Courtesy of Steven Engineering, Inc. !

Pressure 0.7MPa 0.6MPa 0.6MPa 50 80 0.5MPa Gripping force N 0.5MPa Gripping force N 40 60 0.4MPa 0.4MPa 0.3MPa 30 0.3MPa L 40 20 0.2MPa 0.2MPa 20 10 Internal gripping 0 20 40 60 80 0 20 40 60 80 100 MHZ2/Standard Gripping point L mm Gripping point L mm MHZ 2-25D MHZ 2-25D 160 100 Pressure 0.7MPa Pressure 0.7MPa 140 0.6MPa 0.6MPa 80 120 L 0.5MPa Gripping force N 0.5MPa Gripping force N 100

kPa to 0.6 100 kPa to 0.6 100 kPa to 0 100 kPa to 0 100 kPa to 0 100 kPa to 0 100 kPa to 0.6 100 kPa to 0.6 N.C.

6 w !7 !1 !0 !6 w !7 !1 !0 !5 w !7 !0 o !2 !4 u t t q t u y !3 u e !3 !8 t y e !2 !1 !3 !6 r A A A A !4 i u q i !4 r y t y !2 o !5 r u t q !5 e i o !2 r Component Parts No. Description Material Note No. Description Material Note Body A O-ring PBT NBR q !3 Elbow body O-ring PBT NBR w !4 Body B O-ring Electroless nickel plated Brass NBR e !

W a r n i n g Do not open the cushion valve beyond the stopper. Crimping (32) or a retaining ring (40~100) is provided to prevent the accidental removal of the cushion valve. Do not open the vale beyond the mechanism. If air is supplied without confirming above, the cushion valve may shoot out from the cover.

(value under the prescribed conditions) 5. 100 mesh The number of meshes over a length of 25.4 mm (1 inch). Electrical Terminology 1. Apparent power (VA) Volt-ampere is the product of voltage (V) and current (A). Power consumption (W): For AC , W = VAcos. For DC, W = VA. Note) cos shows power factor. cos = 0.6 2.

Graph (1) 10 500 st 600 st 700 st 700 st 500 st 600 st 400 st 400 st 4 5 300 st 300 st 3 200 st 200 st Load movement time: t (S) 2 100 st 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 [Example] Example) 1 0.4 0.5 0.3 V' 0.2 300 0.1 V W 100 200 1000 400 500 Maximum

V 10 10 10 100 10 100 10 1012 Booster Regulator VBA Series VBA43A VBA11A Pulsation/Pulsation is decreased with a tank. If the outlet capacity is undersized, pulsation may occur.

Ambient temp. 500 Heating capacity [W] Heating capacity [W] 400 40 40 400 32 32 300 300 25 25 5 5 200 200 100 100 0 0 10 15 20 25 30 35 40 10 15 20 25 30 35 40 Circulating fluid temperature [] Circulating fluid temperature [] 50Hz 60Hz Fig 9-11 Heating capacity (HRR010-A-20-) 9.5.4 HRR010-W-20400 400 Facility water temp.