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.
VKF Energy-saving type Rated voltage 0.22 W 5 6 VQZ 24 VDC 12 VDC 0 W 62 ms VZ
Cross-section of a cylinder tube is the same configuration regardless of w/ switch or w/o switch.
(kg) Fig. (2) Overhang: Ln (mm), Correction Value of Moment Center Position Distance: An (mm) Pitch moment Yaw moment Roll moment W My Mp Mr W W W Static moment Dynamic moment L1 A1 L3 A5 L2 A3 MXH W Mp Mr W MXU W My L3 A6 W L1 A2 L2 A4 MXS W Mey Mep MXQ Note) There is no need to consider this load factor in the case of using perpendicularly in a vertical position.
If there is vibration, impact, etc. at long stroke, we recommend adoption of side support even if it is within the allowable value shown in the graph. 400 W l Load W ML2B32 W (1200) (1200) 300 ML2B25 l l 200 100 0 1000 2000 (mm) Support spacing l 10-13-16 14 Stroke Reading Rodless Cylinder with Brake Series ML2B Proper Auto Switch Mounting Position (Detection at stroke end) Operating Range
If there is vibration, impact, etc. at long stroke, we recommend adoption of side support even if it is within the allowable value shown in the graph. 400 W l Load W ML2B32 W (1200) (1200) 300 ML2B25 l l 200 100 0 1000 2000 (mm) Support spacing l 10-13-16 Stroke Reading Rodless Cylinder with Brake Series ML2B Proper Auto Switch Mounting Position (Detection at stroke end) Operating Range Bore
If there is vibration, impact, etc. at long stroke, we recommend adoption of side support even if it is within the allowable value shown in the graph. 400 W l Load W ML2B32 W (1200) (1200) 300 ML2B25 l l 200 100 0 1000 2000 (mm) Support spacing l 10-13-16 14 Stroke Reading Rodless Cylinder with Brake Series ML2B Proper Auto Switch Mounting Position (Detection at stroke end) Operating Range
. = 2.5 mm only, w/threads w e u i Stainless steel Lever Packing O-ring NBR Valve Retainer Spring r POM o NBR t Stainless steel !
Rated voltage 3: Main/Pilot valve common exhaust type Electrical entry 100 VAC 50/60 Hz 200 VAC 50/60 Hz 110 VAC 50/60 Hz 220 VAC 50/60 Hz 24 VDC 12 VDC Other 1 2 3 Grommet L plug connector M plug connector DIN terminal G: Lead wire length: 300 mm L: With lead wire (Wire length: 300 mm) M: With lead wire (Wire length: 300 mm) D: With connector 4 5 6 R port P/E port 9 Option H: Lead wire
-Outside Local Area: (800) 258-9200-www.stevenengineering.com Example) 2 1 200 st 0.5 0.4 0.3 V' 100 st 0.2 280 V W 0.1 100 200 300 400 500 Maximum speed: V (mm/s) Cylinder stroke Movement distance of load Step (2) Find the bore size.
1 u t q w e y !2 i r !4 !0 MX MTS MY CY !9 !8 !5 !7 MG CX MY1WK with side seal D@5 @0 @3 @4 @2 @1 -X 20Data Component Parts No. q w e r t y u i o !0 !
With air cushion 15 LH B 4 x LD Z Y X W LZ LX 2 x LC (Knock pin position) ZZ + S Stroke LS + Stroke Y X W M (mm) B 54.5 78 LS 54 LX 71 LZ 4 M 10 W 4 LC 7 LD 30 LH 3 LT 16.5 X 8.5 Y Z 63.5 205 ZZ Bore size 40 50 63 5 5 10 12 40 45 91 91 4.5 4.5 17.5 17.5 70.5 75.5 66 82 86 106 5 5 22 22 11 13 242 242 82.5 75.5 Other dimensions are the same as basic type.
speed (mm/s) Collision speed (mm/s) L unit 1000 1000 Air cushion 500 400 300 500 400 300 L unit Air cushion 200 200 1002 3 4 5 10 20 50 100 1 2 3 4 5 10 20 30 400 50 Caution Load weight (kg) Load weight (kg) 1.
time Tmin [ms] Shortest positioning time Tmin [ms] 6 86 350 W = 300 W = 400 W = 500 LAT3m-10 120 250 W = 400 W = 500 300 100 5 LAT3m-20 Frequency [cpm] Frequency [cpm] Allowable thrust setting value 150 200 120 250 W = 300 LAT3m-30 4 200 150 200 150 W = 0 W = 100 W = 200 200 150 300 100 W = 0 W = 100 W = 200 3 300 100 600 50 600 50 2 0 0 0 5 10 15 20 25 30 Stroke(Positioning distance) St
Dimensions: Without Buffer ZP2-R W-A5 04 06 ZP2-R 20 W-A5 04 06 ZP2-R 30 W-A5 04 06 Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 10 (Hexagon) Q Q Q Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) 4 4 4 4 4 4 21 21 21 M5 x 0.8 M5 x 0.8 M5 x 0.8 P P P (60) (60) (60) S S 31 8 31 S 31 14.9 A 14.9 14.9 R R R 6 6 6 M5
Dimensions: Without Buffer ZP2-R W-A5 04 06 ZP2-R 20 W-A5 04 06 ZP2-R 30 W-A5 04 06 Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 10 (Hexagon) Q Q Q Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) 4 4 4 4 4 4 21 21 21 M5 x 0.8 M5 x 0.8 M5 x 0.8 P P P (60) (60) (60) S S 31 8 31 S 31 14.9 A 14.9 14.9 R R R 6 6 6 M5
Dimensions: Without Buffer ZP2-R W-A5 04 06 ZP2-R 20 W-A5 04 06 ZP2-R 30 W-A5 04 06 Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 10 (Hexagon) Q Q Q Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) 4 4 4 4 4 4 21 21 21 M5 x 0.8 M5 x 0.8 M5 x 0.8 P P P (60) (60) (60) S S 31 8 31 S 31 14.9 A 14.9 14.9 R R R 6 6 6 M5
Dimensions: Without Buffer ZP2-R W-A5 04 06 ZP2-R 20 W-A5 04 06 ZP2-R 30 W-A5 04 06 Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 10 (Hexagon) Q Q Q Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) 4 4 4 4 4 4 21 21 21 M5 x 0.8 M5 x 0.8 M5 x 0.8 P P P (60) (60) (60) S S 31 8 31 S 31 14.9 A 14.9 14.9 R R R 6 6 6 M5
to 500 300 to 1500 400 to 2000 600 to 2000 100 to 175 50 to 1300 50 to 2000 50 to 2000 3 300 to 400 300 to 1500 350 to 2000 500 to 2000 75 to 150 50 to 1200 50 to 2000 50 to 2000 5 300 to 400 300 to 1500 300 to 2000 400 to 2000 75 to 150 50 to 1200 50 to 2000 50 to 2000 8 300 to 350 300 to 1400 250 to 2000 300 to 2000 75 to 150 50 to 1200 50 to 2000 50 to 2000 10 200 to 300 200 to 1400 200
San=a1+a2+a31 3.11-10 Air Slide Table Series MXS Allowable load: W (N) Fig.1 Overhang: Ln (mm), Correction value for moment center distance An (mm) Fig.2 Pitch moment Yaw moment Roll moment W My Mp Mr W W W Static moment Dynamic moment L1 A1 L3 A5 L2 A3 CL W Mp Mr My W W MLGC L3 A6 W L1 A2 L2 A4 CNA W Mey Mep CB L2 A4 CV/MVG A2 L3 Work mounting coefficient: K Fig.3 CXW Table mounting CXS