0 IS1000 No. q w e r t y u i o !
02-08 AS221FG-N02-11 18.8 35.3 44.5 63 18.5 29.5 41 8 15.2 3/8" 17.9 21 23 37.8 43.3 48.3 19 42.8 21.3 R 1/4 AS321FG-02-10 AS321FG-N02-07 27.8 39.3 67 21 31.8 43.3 10 18.5 1/4" 13.2 17 60 NPT 1/4 AS321FG-02-12 AS321FG-N02-09 21.3 29.5 19 41 69 22 48.3 32.8 44.3 43.3 42.8 12 20.9 5/16" 15.2 37.8 18.5 63 23 AS321FG-03-06 AS321FG-N02-11 31.8 43.3 55 17 27.8 39.3 6 12.8 3/8" 17.9 21 67 AS321FG
Weight (g) d L4 Model L3 D1 T H D2 D3 L1 L2 Max. Min.
-03SD 5/32" 10.4 25.2 34.4 16 6 18.2 12.8 17 40.7 R 1/4 18.5 7.2 1.2 34.7 17 AS221F-02-08SD AS221F-N02-05SD 3/16" 11.4 24.9 34.2 17 18.2 8 15.2 36.4 27.2 18.5 AS221F-02-10SD AS221F-N02-07SD NPT 1/4 17.5 18.5 7.2 40.7 1.2 34.7 1/4" 13.2 25.2 34.5 18.5 10 18.5 43.2 33.9 21 20 AS321F-02-06SD AS221F-N02-09SD 5/16" 15.2 27.2 36.4 6 12.8 39.3 27.8 17 33.9 43.2 20 21 AS321F-02-08SD AS221F-N02-11SD
AS221FG-N02-11 33.9 43.2 63 18.5 29.5 41 15.2 17.9 8 3/8" 23 43.8 48.8 21.8 19 42.8 37.8 R 1/4 AS321FG-02-10 AS321FG-N02-07 27.8 39.3 67 21 31.8 43.3 18.5 13.2 10 1/4" 17 60 NPT 1/4 AS321FG-02-12 AS321FG-N02-09 19 21.8 29.5 41 69 22 32.8 44.3 20.9 15.2 12 5/16" 48.8 43.8 42.8 37.8 18.5 63 23 AS321FG-03-06 AS321FG-N02-11 31.8 43.3 55 17 27.8 39.3 12.8 17.9 6 3/8" 21 67 AS321FG-03-08 AS321FG-N03
Applicable model t ZH15DA-09-N03-11 ZH15DA-N02-N03-N03 2 Minimum C Factor of a Supply Valve Model C[dm3/(sbar)] ZH05A 0.12 ZH07A 0.23 ZH10A 0.47 ZH13A 0.80 ZH15A 1.06 ZH18A 1.53 ZH20A 1.88 ZH18DA-11-N03-13 ZH18DA-N03-N03-N03 1 ZH20DA-10-04-12 ZH20DA-03-04-04 ZH20DA-11-N04-13 ZH20DA-N03-N04-N04 t 2.
57 43.2 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
Dimensions L4 D3 H (Hexagon width across flats) T2 L3 A L2 D1 D2 T1 L1 Dimensions A AS120-U10/32-T 10-32 UNF 10-32 UNF AS120-M5-T M5 x 0.8 8 9 M5 x 0.8 Model T2 H D1 T1 D2 D3 L1 L2 L3 L4 Weight (g) 13 9 4.5 10 31 10.3 0.7 27.4 AS220-N01-ST NPT 1/8 12.7 NPT 1/8 AS220-F01-ST G 1/8 AS220-01-ST Rc 1/8 12 14.3 R 1/8 33 14.6 7 18 34.7 13.2 1.5 31.6 AS220-N02-ST NPT 1/4 17.5 NPT 1/4 AS220-F02-ST
A A1 RR1 A1 E1 L1 MM RR1 U1 NZ L Part no.
A A1 RR1 A1 E1 L1 MM RR1 U1 NZ L Part no.
4 r t y u i !5 !6 No.
Applicable bore size A1 L1 MM NDH10 NX R1 U1 Part no. Applicable bore size Dd9 d L L1 m t Included retaining ring Part no.
Cycle time: T can be found from the following equation. a1 a2 Calculation example) T1 to T4 can be calculated as follows.
Head Trunnion, Rod Trunnion, Side Lug H O W T O O R D E R S E R I E S N C A 1 A I R C Y L I N D E R O P T I O N S S T A I N L E S S S T E E L R O D X C 6 O P T I O N NC A1 XC6 A U T O S W I T C H C A P A B L E N O O F S W I T C H E S S T Y L E A P P L I C A B L E A U T O S W I T C H M O U N T I N G R O D B O O T B O R E S I Z E S T R O K E A I R C U S H I O N T E C H N I C A L SPECIFICATIONS
Cycle time: T can be found from the following equation. a1 a2 Calculation example) T1 to T4 can be calculated as follows.
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.
C08 C10 C12 02 N02 F02 C04 C06 C08 02 N02 F02 C08 C10 C12 02 N02 F02 C04 C06 C08 02 N02 F02 IN port size IN port size Construction The construction and materials are the same as the standard product. Refer to Construction on page 323. The symbol stands for unavailable combination. The symbol stands for unavailable combination.