Leakage [Pam3/sec] 10-8 MY Note 2) The leakage test result shown is based on a test conducted for 10 minutes after the cylinder was pressurized with helium at 0.1 MPa. Note 2) This data is considered typical but not guaranteed. CY Note 3) A particulate generation test has been conducted in a vacuum environment of 105 Pa.
P = 26 (Pitch) (P port) Max. 10 Max. 10 Mounting bracket n-Rc 1/8, 1/4 (A port) P = 26 L Dimension n: Stations Stations Formula L1 = 26 x n + 24 L2 = 26 x n + 12 2 76 64 3 102 90 4 128 116 5 154 142 6 180 168 7 206 194 8 232 220 9 258 246 10 284 272 L L1 L2 [ ]: With light/surge voltage suppressor 4-7-8
Without Coupling / Construction 9 5 bn bn 4 8 1 3 2 bs A A' bl bq br bm bt bo bp bk 7 View A-A' 6 Material Note Parts list Material Note Parts list No.
flats 8 Piping port A 17 2-M5 x 0.8 (Plug: M-5P) 11 H 26.7 M6 x 1 10.5 5.5 35 34 8.5 A 30 4-M6 x 1 4-M5 x 0.8 depth 7 Prepared hole dia. 5.1 19 6.5 W 32 0.05 46 0.5 0.05 8 B D Piping port 2-M5 x 0.8 47 13 J Mounting reference planes B D 16.5 14.5 Section AA MXP16-30 Without magnet and switch rail 2-M3 x 0.5 depth 3.5 For rail mounting 8 2-M2 x 0.4 depth 3 For magnet mounting 8.5 10.7
8 !7 !1 r #5 @3 @8 #6 y u t !5 #7 #8 @6 w !6 e &0 q &0 #4 #3 $8 $0 %9 ^0 #9 $6 $7 %9 !2 #1 !3 $9 %0 %1 !0 @2 @1 #2 ^2 ^5 $5 %2 @5 ^8 $4 ^1 @4 %4 %5 ^7 $3 #0 $2 %6 @7 ^4 o %7 ^9 ^6 @9 %8 ML2BS $1 %3 ^3 !
D 8 I m + mL kgm Find the gripper's moment of inertia. b a+b 12 I = m + mL kgm a Find the actual moment of inertia.
a 48.5 23 60 142 0 86 1 . 5 1 5 1 0 5 59 130 58 254 58 52 17.5 66 3/. 16 37 55 1 5 23 70 208 0 102 1 3 . 5 1 8 130 76 160 71 296 80 65 21.5 80 4D 56.5 1 5 25 80 226 0 1 6 1 3 . 5 1 8 1 5 0 92 180 3 1 5 80 65 2 1 . 5 81 $eries CLA lllmensio Rear Flange Type/CLAG with Rod Boot tvt14x1.5 M 1 8 X 1 . 5 rv18x1.5 M22)r.1.5 t\426X1.5 I n 2 0 27 ,/. 42 I I 20 45 153 8 60 9 1 2 80 42 100 5 1 2 1
D2 L1 L2 D1 M A (mm) M5 0.8 KCL04-M5 KCL04-01S KCL06-M5 KCL06-01S KCL06-02S KCL08-01S KCL08-02S KCL08-03S KCL10-02S KCL10-03S KCL12-03S KCL12-04S 16.7 18.4 18 8 10 8 12 14 8 10 8 23 17.4 25.1 29.1 27.1 1.9 1.9 6 11 7 13 21 16 24 37 29 38 63 81 4 10.4 25.3 1 8 24.2 20.3 19.5 27.5 19 29.5 30.7 32.7 21.5 34.2 37.2 38.7 44.3 2.3 2.3 2.2 2.2 M5 0.8 26.8 6 1 8 1 4 1 8 1 4 3 8 1 4 3 8 3 8 1 2 12.8
4N NPT 1/4 male 6T 3/8 inch compression Material Code Body material S 316 SS 6BR Rc 3/8 6BRN R 3/8 6 NPT 3/8 female 6N NPT 3/8 male Ports Code Ports 2P 2 ports Note) Only available with same type ttings inlet and outlet.
D2 L A M D1 Nylon Urethane M5 X 0.8 M6 X 1.0 38.5 KXH04-M5 KXH04-M6 KXH04-01S KXH06-M5 KXH06-M6 KXH06-01S KXH06-02S KXH08-01S KXH08-02S KXH08-03S KXH10-02S KXH10-03S KXH10-04S KXH12-03S KXH12-04S 11 13 39 35 8 16 10.4 2.5 4.0 4.0 4 40 39.5 40 42 45 46 49 50 58 59 62 60 63 16 36 12 1 8 M5 X 0.8 M6 X 1.0 2.5 3 4.0 4.0 5.6 5.6 15 8 36 6 17 15 12.8 38 39 42 43 44 1 8 1 4 1 8 20 26 28 34 42 68
Note 8) If the product is subjected to a short power outage (including voltage sag), it may take a long time to resume normal operation or be unable to restart normally due to the protective equipment triggered after the power is recovered.
Auto Switch Groove Position D-A, D-A9V W D-M9, D-F9W A D-M9V, D-F9WV W Bore size (mm) Application B B A W A B stroke 6 5 to 30 3.5 0 17 6.5 13 3.5 2.5(5) 17 4.5 5 to 20 17 13 17 10 25 7.5 3.5 20 16 2.5 7.5 20 1.5 0.5 30 19 15 19 (1) 5 27 23 27 10 22 18 22 15 27 23 27 16 8 4 2 8 2 0 B A 20 22 18 22 Bore (mm) 6 10 16 25 27 23 27 (0.5) 6.9 10 30 27 23 27 8.8 14 13.9 19 Note 1) Negative figures