SMC Corporation of America
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Search Results "PSH-L2-01-WA"

XX section T groove dimensions QQ section detail drawing Notch spring force adjustment bolt 4-OA through L 4-MM depth ML QQ section 22.5 4-OB counter bore depth OL B-NN depth NL XX section Z WA Q 45 RA X0.02 RB RC T VB U X PW VA H NL HB HA: T groove for hex. bolt XAH7depth XL DB 2-P GB GA GC 6+0.05depth 6 o PB K J G (Plug) 30 S PA + Stroke C + Stroke FA FB SB SA FC B + Stroke A + Stroke

Series MGP Dimensions 4-MM depth ML 4-OA through 4-OB depth of counter bore OL Section XX HA:T-slot for hexagon bolt Section XX Z WA L 4-YY depth YL 4-NN through Section XX DL X0.02 X T R X0.02 X0.02 DA VB VA H 24 11 PW X U DB End lock mechanism non-locking type manual release ( ) XAH7 depth XL XAH7 depth XL GC XAH7 depth XL 2-P (plug) 2-P Q GA LL GB PB J K WB WA Z G PA + Stroke C + Stroke

R V Basic type (B)/CG5BAS : With air cushion X165US inch rod option dimensional changes WA WB Width across flats B1 Dim. GA GB 2-P Bore size A AL B1 H H1 MM ZZ W 10 M BM H1 20 14 12.7 11.0 25.4 4.0 1/4-28 108.4 25 14 12.7 12.6 28.4 4.8 5/16-24 111.4 Max.

RZQ R V Basic style (B): CG5BAS : With air cushion MI W S WA WB GA GB 2-P W 10 H1 Width across flats B1 CEP1 M BM CE1 Max.WH (E1) D CE2 B2 BZ MM AL A Plug bolt (4 pcs. included) ML2B K KA 8-J (F1) C 0.1 H S + Stroke ZZ + Stroke C J G5-S NA CV Stroke range A Bore size (mm) AL B1 B2 BM BZ C D E1 F1 GA GB H H1 I J K KA M MM NA P S MVGQ 20 Up to 350 18 15.5 13 7 M4 x 0.7 9 16.5 8 15 3 18 12

Acting w/ End of Stroke Cushioning Dimensions: Without Mounting Bracket [First angle projection] CP95SB Bore size Stroke Cushion valve Port CJ1 CJP CJ2 4-RT CM2 VD AM WH CG1 L8 + Stroke H MB ZZ + Stroke MB1 CA2 CS1 CP95SB Bore size Stroke W C76 C85 C95 CP95 NCM NCA DVD -X AM WH WH + Stroke L8 + Stroke H 20ZY + Stroke Data Bore size (mm) AM B D EE PL RT I12 KK SW G BG (MIN) L8 E R VD VA WA

RZQ R V Basic style (B): CG5BAS : With air cushion MI W S WA WB GA GB 2-P W 10 H1 Width across flats B1 CEP1 M BM CE1 Max.WH (E1) D CE2 B2 BZ MM AL A Plug bolt (4 pcs. included) ML2B K KA 8-J (F1) C 0.1 H S + Stroke ZZ + Stroke C J G5-S NA CV Stroke range A Bore size (mm) AL B1 B2 BM BZ C D E1 F1 GA GB H H1 I J K KA M MM NA P S MVGQ 20 Up to 350 18 15.5 13 7 M4 x 0.7 9 16.5 8 15 3 18 12

.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com L8 + Stroke H MB ZZ + Stroke MB1 CA2 CS1 CP95SB Bore size Stroke W C76 C85 C95 CP95 NCM NCA DVD -X AM WH WH + Stroke L8 + Stroke H 20ZY + Stroke Data Bore size (mm) AM KK L8 SW B D G EE BG (MIN) PL RT I12 E R VD VA I9 WA WB WH ZZ ZY I2 M10 x 1.25 32 6

Vertical mounting: f = W = 0.3 (Slide bearing) = 0.1 (Ball bushing bearing) W 0.5 NO Confirmation of adjusting bolt capacity W WA Determine the movable weight WA which can be operated only by adjusting bolts.

60 27 7 7 38 45h9 46h9 20H9 6 15H9 8 4 3 4.5 13 6.8 11 6.5 8 32.4 65 17 18.5 10 1.2 12 76 34 8.1 10 50.4 60h9 61h9 28H9 9 17H9 10 6 2.5 6.5 17 8.6 14 8.5 8 34.7 70 17 18.5 10 1.2 12 84 37 10.5 10.5 53.5 65h9 67h9 32H9 12 22H9 10 4.5 3 6.5 17 8.6 14 8.5 10 39.7 80 19 21 12 1.6 15.5 100 50 12.4 12.5 60.6 75h9 77h9 35H9 13 26H9 12 5 3 7.5 20 10.5 18 10.5 (mm) JC JD JJ JU JV Q S SC SD SU UU WA

Vertical mounting: f=W =0.3(Slide bearings) =0.1(Ball bushing bearings) MGC W MGF b 0.5 q CY1 q MY1 NO Confirmation of adjusting bolt capacity W WA Determine the movable weight WA which can be operated only by adjusting bolts.

Vertical mounting x P. 42 Wc: MHL2-16D1 (795g) P. 80 z y x y z Wa: Connection plate t = 10 (880g) Wd: Work piece (500g) Refer to the pages above for actual examples of calculation for each orientation. 2 Load blocking Work piece mass and center of gravity 5 42.5 65 150 Center of gravity Work piece no.

This is a legacy product. Please contact us for the latest version.sales@ocaire.com

400 Mer L2 (mm) Rolling Yawing m 200 L2 Mer 0 2 4 6 8 10 m Transfer load m (kg) 3000 a = 1000 2000 L3 (mm) L3 1000 a = 2000 m a = 3000 Mey a 0 2 4 6 8 10 Transfer load m (kg) Refer to page 145 for deflection data. 2 Standard Motor/Horizontal Mount Specification Series LJ1H10 Dimensions/LJ1H101PB Scale: 15% 10 6 Work piece mounting reference plane LJ1 LG1 LX LC6D/LC6C Switches LC1 80 5H10

400 Mer L2 (mm) Rolling Yawing m 200 L2 Mer 0 2 4 6 8 10 m Transfer load m (kg) 3000 a = 1000 2000 L3 (mm) L3 1000 a = 2000 m a = 3000 Mey a 0 2 4 6 8 10 Transfer load m (kg) Refer to page 145 for deflection data. 2 3 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

Dimensions Space saving branch tee: LQ3T-SB Metric Size (L2, L2) 2 x B Model Applicable tubing O.D.

L1, L2 max. overhang = 45 mm w Confirm that L1 and L2 are lower than the max. overhang. L1 = 20 mm and L2 = 30 mm OK (L1, L2 max. overhang = 45 mm) Selection method q Find the max. overhang of L1 and L2 from the selection graph. L1: Find the L at an operating pressure of 0.5 MPa from the graph, and multiply it by 1/2.

400 Mer L2 (mm) Rolling Yawing m 200 L2 Mer 0 2 4 6 8 10 m Transfer load m (kg) 3000 a = 1000 2000 L3 (mm) L3 1000 a = 2000 m a = 3000 Mey a 0 2 4 6 8 10 Transfer load m (kg) Refer to page 145 for deflection data. 2 3 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

400 Mer L2 (mm) Rolling Yawing m 200 L2 Mer 0 2 4 6 8 10 m Transfer load m (kg) 3000 a = 1000 2000 L3 (mm) L3 1000 a = 2000 m a = 3000 Mey a 0 2 4 6 8 10 Transfer load m (kg) Refer to page 145 for deflection data. 2 3 Standard Motor/Horizontal Mount Specification Series LJ1H10 Dimensions/LJ1H101PB Scale: 15% 10 6 Work piece mounting reference plane LJ1 LG1 LX LC6D/LC6C Switches LC1 80 5H10

Applicable shaft type: K (mm) X W1 L1 max L3 max (mm) Shaft type L3 = Y W2 L2 max L4 max L1 = W1 = J K T J K T J K T J K T Size Size L2 1 4.5 to 14 10 10 X 3 Y 1 0.5 to 2 0.5 to 2 6.5 to 14 L1 1 L4 = L2 = Y = L2 1 5.5 to 18 15 15 X 4 Y 1.5 0.5 to 2.5 0.5 to 2.5 8 to 18 L1 1 L2 1 6 to 20 20 20 Y 1.5 X 4.5 0.5 to 3 0.5 to 3 9 to 20 L1 1 X = L2 2 8.5 to 22 30 30 Y 2 X 5 0.5 to 4 0.5 to 4 11.5