SMC Corporation of America
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Search Results "LVM10R1Y-5A-2-K-Q"

BH BI (UU) 2-M3 x 0.5 (opposite side, same location) (For front port, use hexagon socket head set screw) Q H 2-J through JA depth of counter bore JB (opposite side, same location) 1.5 S BE CA CB BF DD D BD BG A 2.2 (0.4) Note 1) SD 16 BA 2-M3 x 0.5 depth 4 BB W 2-M3 x 0.5 (For side port, use hexagon socket head set screw) N BC Note 2) For the 180 specification, the slated line area do not

BH BI (UU) 2-M3 x 0.5 (opposite side, same location) (For front port, use hexagon socket head set screw) Q H 2-J through JA depth of counter bore JB (opposite side, same location) 1.5 S BE CA CB BF DD D BD BG A 2.2 (0.4) Note 1) SD 16 BA 2-M3 x 0.5 depth 4 BB W 2-M3 x 0.5 (For side port, use hexagon socket head set screw) N BC Note 2) For the 180 specification, the slated line area do not

from the VY Valve. 02 14 2.0 3 03 38 3.3 body Ported Type 04 12 3.9 Terminal Designations are as follows: 04 12 7.2 5 06 34 8.9 1 = 24v Power Supply 2 = Control Signal 3 = Common Negative for both power and signal. 10 1 10 5% 2% + -2% 7 10 1 114 17 12 114 18 9 14 112 2 33 20 2 37 Courtesy of Steven Engineering, Inc. !

Graph (3) 20 x 9.8 x (0.07 + 0.05) x 10/1000 = 0.24 20 x 9.8 x (m1 + m2) x H/1000 0.24 Nm < Effective torque OK < Effective torque (Nm) Find the moment of inertia, "IR" for the load + attachments (2 pcs.) 7 IR = K x (a2 + b2 + 12h2) x (m1 + m2)/(12 x 106) IR = 2 x (202 + 302 + 12 x 102) x (0.07 + 0.05)/(12 x 106) = 0.05 kgm2 (K = 2: Safety factor) Kinetic energy 8 Confirm that the kinetic

6 $2 #2 !3 #3 !7 !2 @5 @4 r @3 e @6 @1 @2 #1 t y $1 u w q E' Section E-E' CYV32 t !9 $0 @1 @2 y @4 @3 u @6 #9 @5 Description Material Note Parts list Description Material Note No. No.

Current consumption 0.12 A or less Current type Note 2) 4 to 20 mA DC, 0 to 20 mA DC (Sink type) Voltage type 0 to 5 VDC, 0 to 10 VDC Input signal Preset input type 4 points (Negative common) Current type 500 or less Voltage type 6.0 to 6.5 k (at 25C) Input impedance Preset input type Approx. 4.7 k 1 to 5 VDC Output impedance: 1 k or more Output accuracy: 6% F.S. or less Analog output Symbol

4-J Depth JK Thread depth PC (from counterbore surface) 2-P 2-Counterbore dia.

6 $2 #2 !3 #3 !7 !2 @5 @4 r @3 e @6 @1 @2 #1 t y $1 u w q E' Section E-E' CYV32 t !9 $0 @1 @2 y @4 @3 u @6 #9 @5 Description Material Note Parts list Description Material Note No. No.

Quick exhaust Normal operation High speed supply B 1/2 PP PA C D PA PP 1(P) 2 2(A) 1 1/2 PP = approx.

E _ 6 9 " . q l 1 2 3 4 5 Load (kgl 6 7 8 I IE tleunic Auuat I||oilelSdodi||g trlollloil Criteria of Accelerating Speed (Horizontal Orientation) LXSH5BC .of /.

TH Rear cylinder Port TP w e r t q u i y w e r t q u i y Approx. Max. T1 Approx. Max. T1 Approx. Max. T2 Approx. Max. T2 Approx. T3 Cylinder with by-pass piping component parts No. 1 2 3 4 Quantity 1 1 1 1 Description Part No.

26.8 33.7 IDFB37E 1/2 [855] [680] R IDFB55E/75E Q A B H G E D F C (0.4 (39.4[1000]) J L K M N P 4x0..5 [4x13] (M10) Unitinch [mm] A B C D E F G H J K L M N P Q R 31.5 34.2 IDFB55E 2 1.4 [800] [868] 18.5 33.7 5.0 17.9 4.3 9.8 2 0.5 19.70.1 3.0 27.60.04 20.7 20.40.2 [470] [855] [128] [455] [110] [250] [50] [13] [5002] [75] [7001] [526] [5195] [36] 35.4 38.1 IDFB75E 2 [900] [968] IDFB Series

4 o i q !3 e r !2 !1 u t w y CHK CHN CHM CHM CHS CH2 o !

8 22 8 15 80 18 M6 x 1 20 40 36 M26 x 1.5 124 13 10 70 41 41.6 3 16 11 29 10 16 92 23 M6 x 1 26 50 46 M32 x 2 150 13 TF TN Nil P (Piping port) ZZ X W TT Model 12-REA25 12-REA32 12-REA40 50 Rc1/8 30 NPT1/8 137 G1/8 17 50 Rc1/8 40 NPT1/8 156 G1/8 19 60 Rc1/4 40 NPT1/4 182 G1/4 22 12-REA50/63 0 L0.2 33 B 2 x 4 x V Effective thread depth 16 2 x P (Piping port) 14 14 8 (R) D X Q Q 14.5 22 I 2

7. * The seal kit includes 2 cushion seals, 1 rod seal, 1 piston seal, and 2 tube gaskets. 1.7-27 Series MBlQ Basic/(B) G G Cushion valve W V Port 2-Rc(PT)P MM D E MB Effective thread 2 X 4-J lC lB MA A K F N N S + Stroke H ZZ + Stroke (mm) Stroke range Width across flats Bore (mm) Effective thread length A D Ee11 F N G P MA S MB V J W K H ZZ MM lC lB 32 40 50 63 80 100 22 30 35 35 40 40

With 1 switch 10 75 80 90 Wrth 1 switCh 10 75 80 90 0-8586 OGSKS Different 35 75 80 90 With 2 surface sWitches Same Surface 35 75 80 90 Av ro SWitch ~'B5 '86 D-GSoK5 '" " .J ~ ~ D-A4 Different SS.. 3O(n-2} 75+JO2) With n surface "= 1.2.3,4 , n=2,4,6,8 ... n=2.4.5.e .. 1'1 =2 .4 ,6 ,8 ... switches Same 5.S+~1'l2) 7S+,5O(n-2) ao. 5O(1l-2} 90+50(n-2) ""F ttl surface

Max. allowable load weight Wmax: Table (2) 1 = W/Wa 3-2 Load factor of the static moment Rolling Yawing Examine My. My = 0.5 x 9.8 (10 + 11)/1000 = 0.11 A3 = 11 May = 1 x 1 x 9.14 = 9.14 Mymax = 9.14 K = 1 = 1 2 = 0.11/9.14 = 0.012 Examine Mr.