I I L aterial I t NIL NBB (Buna) I S Copper Free Extarnal I TFPM (Viton) High Tamperature tP300 42 0 -T-T | l t l Supply & Output Preasure Gauge I t00 no gauge Operution 01 2kgllcrf r bsingte Acring 02 3 kgf/cm'z 03 10kg /cnf 04 4 kgf/cm'?
Steel) IP300 . 1P3100 DIMENS'ONS MODEL 1P300 (Lever Type) tu O O r o r n N ^ " n o r7a <6,69) (LEVER TYPE) MODEL 1P3100 (Rotary Type) O N / (2) t/4 t,tPt J o o iJ5 [8 so]]NVOLUTE SPL]NE 5HA:T 4 9 2 1 [ 1 2 s 0 0 ] r r81 lJ oool oo zzo fr ool r 1 3 T H P U H O I E S \ \ o o L O O N 0 945 I 24 001 2 7ss [7r oo] N O World Wide Ag{C Support...
Steel) IP300 . 1P3100 DIMENS'ONS MODEL 1P300 (Lever Type) tu O O r o r n N ^ " n o r7a <6,69) (LEVER TYPE) MODEL 1P3100 (Rotary Type) O N / (2) t/4 t,tPt J o o iJ5 [8 so]]NVOLUTE SPL]NE 5HA:T 4 9 2 1 [ 1 2 s 0 0 ] r r81 lJ oool oo zzo fr ool r 1 3 T H P U H O I E S \ \ o o L O O N 0 945 I 24 001 2 7ss [7r oo] N O World Wide Ag{C Support...
-X30 IR1010G33-4-01 G33-P4-N01-X30 IR1020G33-10-01 G33-P10-N01-X30 011/84 Rc NNPT FG 00.0050.2MPa 10.010.4MPa 20.010.8MPa PRECI SI O N REG U LATO R I R101BG M AX.
-X30 IR3010G43-4-01 G43-P4-N01-X30 IR3020G43-10-01 G43-P10-N01-X30 02:1/4 03:3/8 04:1/2 Rc FG NNPT 00.010.2MPa 10.010.4MPa 20.010.8MPa PRECI SI O N REG U LATO R I R302BG No.
A1 A1 A2 A1 A2 A1 A2 A3 A1 A2 A3 A1 A2 AC10A-A AC20A-A 41.6 43.2 41.6 41.6 43.2 41.6 57 41.6 43.2 43.2 41.6 57 43.2 41.6 57 AC30A-A 55.1 57.2 55.1 55.1 57.2 55.1 74 55.1 57.2 57.2 55.1 74 57.2 55.1 74 AC40A-A 72.6 75.2 72.6 72.6 75.2 72.6 95 72.6 75.2 75.2 72.6 95 75.2 72.6 95 AC40A-06-A 77.6 77.6 80.2 77.6 102 Attachment Model S T V V1 SV SV1 TV TV1 A1 A1 A1 A2 A1 A2 A1 A2 A1 A2 A1 A2
41.6 57 AC30A-B 55.1 57.2 55.1 55.1 57.2 55.1 74 55.1 57.2 57.2 55.1 74 57.2 55.1 74 AC40A-B 72.6 75.2 72.6 72.6 75.2 72.6 95 72.6 75.2 75.2 72.6 95 75.2 72.6 95 AC40A-06-B 77.6 77.6 80.2 77.6 102 AC50A-B 93.1 93.1 96.2 93.1 124 AC60A-B 98.1 Attachment Model S T V V1 SV SV1 TV TV1 A1 A1 A1 A2 A1 A2 A1 A2 A1 A2 A1 A2 A1 A2 AC10B-A 28 AC20B-B 41.6 41.6 41.6 43.2 41.6 43.2 41.6 57 41.6
Speed: V [mm/s] Cycle time: T can be found from the following equation. a1 a2 T = T1 + T2 + T3 + T4 [s] T1: Acceleration time and T3: Deceleration time can be found by the following equation. Time [s] T1 T2 T3 T4 T1 = V/a1 [s] T3 = V/a2 [s] T2: Constant speed time can be found from the following equation.
Speed: V [mm/s] Cycle time T can be found from the following equation. a1 a2 T = T1 + T2 + T3 + T4 [s] T1: Acceleration time and T3: Deceleration time can be obtained by the following equation. Time [s] T1 = V/a1 [s] T3 = V/a2 [s] T1 T2 T3 T4 T2: Constant speed time can be found from the following equation.
How to Order 25A-LEFS 32 H R S3 B 200 S 2 A2 Series compatible with secondary batteries q w e r t u !1 y i o !
Cycle time: T can be found from the following equation. a1 a2 Calculation example) T1 to T4 can be calculated as follows.
One-touch fitting ARJ310-01 ARJ310-N01 ARJ310F-01-04 ARJ310F-01-06 ARJ310F-N01-03 ARJ310F-N01-07 R 1/8, M5 x 0.8 NPT 1/8, M5 x 0.8 R 1/8, M5 x 0.8 NPT 1/8, M5 x 0.8 Note) M5 x 0.8 female thread is cut inside the pipe.
One-touch fitting ARJ310-01 ARJ310-N01 ARJ310F-01-04 ARJ310F-01-06 ARJ310F-N01-03 ARJ310F-N01-07 R 1/8, M5 x 0.8 NPT 1/8, M5 x 0.8 R 1/8, M5 x 0.8 NPT 1/8, M5 x 0.8 Note) M5 x 0.8 female thread is cut inside the pipe.
Cycle time T can be found from the following equation. a1 a2 T = T1 + T2 + T3 + T4 [s] T1: Acceleration time and T3: Deceleration time can be obtained by the following equation. Time [s] T1 T2 T3 T4 T1 = V/a1 [s] T3 = V/a2 [s] T2: Constant speed time can be found from the following equation.
/O.D. mm 5/8 6/9 6.5/10 8/12 8.5/12.5 Symbol 01 02 03 04 Symbol 50 60 65 80 85 15-2-87 16 16 Series KKH Dimensions: Socket (S) Male thread type (mm) A1 A2 When connected T Connection port size D H Width across flats L2 When connected Effective area mm2 L1 Min. bore size Body size Weight g A2 Model A1 T KKH3S-01MS R 1/8 33.5 20.4 20.4 6.0 36.0 14 40.0 37.5 D -02MS 19.6 R 1/4 1/8 31.5 19.5
Single vane type Double vane type +4 0 9 0 a a r r n n e n n g g g o o e e n i i t t 1 2 a a a 8 7 r t t 0 -5 +4 0 o o 0 0 n R R +4 0 +4 0 o 0 i 0 0 t a 9 1 t o e e R g g n n a a r r n n o o i i t t a a Chamfer Chamfer t t o o Chamfer A port B port Chamfer A port Chamfer R R A port B port B port A port B port A port B port For size 40 actuators, a parallel keyway will be used instead
Single vane type Double vane type +4 0 9 0 a a r r n n e n n g g g o o e e n i i t t 1 2 a a a 8 7 r t t 0 -5 +4 0 o o 0 0 n R R +4 0 +4 0 o 0 i 0 0 t a 9 1 t o e e R g g n n a a r r n n o o i i t t a a Chamfer Chamfer t t o o Chamfer A port B port Chamfer A port Chamfer R R A port B port B port A port B port A port B port For size 40 actuators, a parallel keyway will be used instead
Single vane type Double vane type +4 0 9 0 a a r r n n e n n g g g o o e e n i i t t 1 2 a a a 8 7 r t t 0 -5 +4 0 o o 0 0 n R R +4 0 +4 0 o 0 i 0 0 t a 9 1 t o e e R g g n n a a r r n n o o i i t t a a Chamfer Chamfer t t o o Chamfer A port B port Chamfer A port Chamfer R R A port B port B port A port B port A port B port For size 40 actuators, a parallel keyway will be used instead