How to Order 25 100 B 2 S A1 S2 w e r t u y i o !0 !
-L MR-PWS1CBLM-A1-H MR-PWS1CBLM-A2-H LE-CSMCNP3 AWG19 AWG19 AWG19 AWG19 / AWG 19() AWG 19() AWG 19() U V W U V W M AWG 19(/) (B) 10m 10m 2m 13.4 2m MR-PWS1CBL2M-A1-L MR-PWS1CBL2M-A2-L MR-PWS1CBL2M-A1-H MR-PWS1CBL2M-A2-H LE-CSM50m MR-PWS2CBL03M-A1-L MR-PWS2CBL03M-A2-L CNP3 AWG19 AWG19 AWG19 AWG19 / AWG 19() AWG 19() AWG 19() U V W U V W M AWG 19(/) () () .
M1 M2 Body (B) N Body (A) 2-R A port S N A port B port 2-R Y Y A1 M1 SMC A2 SMC J 27 H X A1 (mm) R (RC) F (h9) E (g6) H (R) U Model A1 J A2 B G2 V K M2 N C W L D X P G1 Y S Z T M1 Q CDRB1BW 5026 21 29 27 30 29 35.5 38 18 14 18 15 25 20 30 24 38 M6 x 1 depth 9 12 0.006 0.017 25 0 0.052 1/8 67 78 3 6.5 R6 11 32.5 70 34 5 32 66 13.5 39.5 46 50 5.5 60 6.5 R22.5 CDRB1BW 50-E CDRB1BW 63M8 x 1.25
Examine Mep. (20 + 6.8) Mep = 1/3 x 3.36 x 9.8 x = 0.29 1000 Examine Mep. (20 + 6.8) Mep = 1/3 x 3.36 x 9.8 x = 0.29 1000 Load equivalent to collision We = W V : Damper coefficient Rubber stopper = 4/100 Shock absorber = 1/100 Metal stopper = 16/100 Corrected value for moment center position distance An: Table (3) We = 4/100 x 0.2 x 420 = 3.36 A2 = 6.8 We = 4/100 x 0.2 x 420 = 3.36 A2
M4 x 0.7 thread depth 7 M5 x 0.8 thread depth 10 25.5 0.5 10.5 B + Stroke A + Stroke 25.5 34 35 4 x M4 x 0.7 thread depth 7 35 Rod end male thread 6 x M4 x 0.7 thread depth 5.5 3 H9 (+0.025 0 ) depth 3 M8 x 1.25 Width across fats 174 16 23 MD XX 5 Width across fats 22 15 MC ML + Stroke 13 14 24.5 Required Space5 [mm] 4 3 H9 (+0.025 0 ) 3 Cable connector type J Straight 115 XX (2:1) 1 The
D 1.6 x P 0.1 x Wcos + Wsin D 5.0 x P 0.1 x W + W D 5.0 x P W W > Wv P > Pv Determination of allowable load mass & pressure Inclined operation (For vertical operation, refer to page 1205.)
-L MR-PWS1CBLM-A1-H MR-PWS1CBLM-A2-H CNP3 AWG 19() AWG 19() AWG 19() AWG 19() AWG 19() AWG 19() U V W U V W M AWG 19(/) AWG 19(/) (b) 10m 10m 2m 11.5 2m 2m MR-PWS1CBL2M-A1-L MR-PWS1CBL2M-A2-L MR-PWS1CBL2M-A1-H MR-PWS1CBL2M-A2-H LE-CSM50m 50m MR-PWS2CBL03M-A1-L MR-PWS2CBL03M-A2-L CNP3 AWG 19() AWG 19() AWG 19() AWG 19() AWG 19() AWG 19() U V W U V W M AWG 19(/) AWG 19(/) () () b) a)
stud axis 4/2.5 x M5 6/4 x M5 M3 female x M3 female x M3 male For soft nylon and polyurethane tubing M-5ALU-4 M-3UT P. 58 Universal nipple M-5UN M-5ALU-6 P. 56 P. 57 Body rotates at 360 around the stud axis M5 male x M5 male PAT.
With lock W X Z W X Z W X Z W X Z 63 Up to 200 146 4 60 110.2 150.2 15.6 (16.6)* 138.8 178.8 15.6 (16.6)* 98.5 138.5 15.6 (16.6)* 138 178 15.6 (16.6)* 205 to 500 505 to 800 * The values in ( ) are the dimensions when L is selected for screw lead.
Amount of Overhang: Ln [mm], Correction Value for the Distances to the Moment Center: An [mm] Correction Value for the Distances to the Moment Center: An [mm] Fig. 1 Table 1 Mp: Pitching Mounting orientation My: Yawing Mr: Rolling Model A1 A2 22.5 L2 A2 LAT3m-10 LAT3m-20 LAT3m-30 2.2 L1 A1 32.5 2.2 42.5 2.2 Mr L1 A1 Horizontal W Mp My L3 W W Mr W L2 A2 L3 Vertical Mp My W W Allowable Load
-XC88 -XC89 Basic: MBB MB Port V W Cushion valve 2 x Rc P G G E MM Width across flats B1 Width across flats KA Fd D E B C A AL H1 MB N B C MA N 2 x 4 x J K H F ZZ + Stroke S + Stroke Dimensions (mm) Bore size (mm) 32 40 50 63 80 100 A AL B B1 C D E F G H H1 J K KA MA Fd MB MM N P S V W ZZ 22 30 35 35 40 40 28 33 39.5 39.5 44.5 54 4 4 4 4 5 5 M10 x 1.25 M14 x 1.5 M18 x 1.5 M18 x 1.5 M22 x
0.1 x W + W D 5.0 x P W W > Wv P > Pv Determination of allowable load weight & pressure Inclined operation (For vertical operation, refer to page 8-15-74.)
with Ribs Flat Type B4 M4 x 0.7 B5 M5 x 0.8 C 19.5 Model A2 B C Vacuum inlet direction q Pad dia.
serial transmission L1 = 12.5 x n1 + 16 x n2 + a + b x n3 L2 = 12.5 x n1 + 16 x n2 x 48 M = L1/12.5 + 1 Decimal fractions are truncated.
Applicable shaft types: S, W E1 = LL LL DE3 = L3 = Key L1 = X = (mm) (mm) Key dimensions 4 x 4 x 20 4 x 4 x 20 5 x 5 x 25 LL 3 4 5 Size 20 30 40 Size 10 15 X 8 to 18 10 to 20 L1 {10 (18 X)} to (X 2) {10 (20 X)} to (X 2) L3 max X-2 X-2 321 CRQ2X Series (Size: 10, 15, 20, 30, 40) Simple Specials: -XA31 to -XA59: Shaft Pattern Sequencing II Shaft pattern sequencing is dealt with a simple
$Applicable shaft type: W $Applicable shaft type: W (mm) Y L2 L4 max Size (mm) E3 = E1 = Y = 10 X L1 L3 max Size 3 to 8 Y-1 5-( 8-Y) to (Y-1 ) L2 = 10 15 L4 = 9-(14-X) to (X-3) 5 to 14 X-3 3 to 9 Y-1.5 6-( 2-Y) to (Y-1.5) L1 = L3 = 15 20 10-(18-X) to (X-4) 8 to 18 X-4 3 to 10 Y-1.5 7-(10-Y) to (Y-1.5) 20 30 10-(20-X) to (X-4.5) 10 to 20 X-4.5 5 to 13 Y-2 8-(13-Y) to (Y-2 ) X = 30 40 10 to
Applicable shaft types: S, W E3 = LL LL E1 = DKey L1 = X = L3 = (mm) (mm) LL 3 4 5 Key dimensions 4 x 4 x 20 4 x 4 x 20 5 x 5 x 25 Size 20 30 40 X 8 to 18 10 to 20 L1 {10 (18 X)} to (X 2) {10 (20 X)} to (X 2) L3 max X-2 X-2 Size 10 15 259 Series CRQ2 (Size: 10, 15, 20, 30, 40) Simple Specials: -XA31 to -XA59: Shaft Pattern Sequencing Shaft pattern sequencing is dealt with a simple
Industry) LE-CSM-RA 2 U 3 V 4 W LE-CSM-RB View seen from wiring side. (2) Internal wiring diagram LE-CSM-SA LE-CSM-SB LE-CSM-RA LE-CSM-RB MR-PWS1CBL M-A1-H MR-PWS1CBL M-A2-H MR-PWS2CBL03M-A1-L MR-PWS2CBL03M-A2-L AWG 19 (Red) AWG 19 (White) AWG 19 (Black) AWG 19 (Green/yellow) (Note) U V W Note.
CRQ2X MSQX M1 M2 Body (B) MRQ N Body (A) 2 x R A port J E2 H E1 F S A port B port N 2 x R Y Y A1 M1 A2 P 6 x Q X A1 (mm) R () E1 (g6) E2 (h9) F (h9) Model A1 A2 B C D G H J K L M1 M2 N P Q S T U V W X Y Z CRB1BW 5026 18 14 M6 x 1 depth 9 0 0.043 0.006 0.017 0 0.052 R6 1/8 67 70 3 10 13 5 50 60 34 66 46 5.5 6.5 78 19.5 39.5 13.5 11 11.9 12 25 CRB1BW 50-E CRB1BW 6321 18 29 22 15 M8 x 1.25