Set pressure range [MPa] 0.1 to 1.7 Ambient and fluid temperature [C] 5 to 60 (with no freezing) Applicable Model Applicable Model Model AR25-B AR30-B AR40-B AR40-06-B AR50-B AR60-B Model AR20-B AR25-B AR30-B AR40-B AR40-06-B AR50-B AR60-B Port size 1/4, 3/8 1/4, 3/8 1/4, 3/8, 1/2 3/4 3/4, 1 1 Port size 1/8, 1/4 1/4, 3/8 1/4, 3/8 1/4, 3/8, 1/2 3/4 3/4, 1 1 r BG AR B B X430 30 03 BG q 30 AR
(Check leakag) 100 lloninntal lype Uacuum tntny: Without BufleU Wilh Ban[eil ]itting Specif ications l',.1.t':.,.l,',,,l,. : : : t : . : : . : : . ,t I , i I .. .1. q2-6 8:t) 04 . 06 Nylon tube, 04 . 06 Urethane tube olQ-s16 04 . 06 Nylon tube, a4. 66 Urethane tube szj-sgz 04. oO Nylon tube, @4. oO Urethane tube s40-o5O o6 Nylon tube, oG Urethane tube Vacuum entry Connection o2-o I M 5 x
(Check leakag) 100 lloninntal lype Uacuum tntny: Without BufleU Wilh Ban[eil ]itting Specif ications l',.1.t':.,.l,',,,l,. : : : t : . : : . : : . ,t I , i I .. .1. q2-6 8:t) 04 . 06 Nylon tube, 04 . 06 Urethane tube olQ-s16 04 . 06 Nylon tube, a4. 66 Urethane tube szj-sgz 04. oO Nylon tube, @4. oO Urethane tube s40-o5O o6 Nylon tube, oG Urethane tube Vacuum entry Connection o2-o I M 5 x
As the circulating fluid temperature is within the set range of "AS.06", "AS.06" alarm monitoring starts. Status (2): The circulating fluid temperature becomes within the set range of "AS.04". "AS.04" alarm monitoring starts.
As the circulating fluid temperature is within the set range of "AS.06", "AS.06" alarm monitoring starts. Status (2): The circulating fluid temperature becomes within the set range of "AS.04". "AS.04" alarm monitoring starts.
AS121FM-M5-23 AS121FM-M5-04 AS121FM-M5-06 AS221FM-01-23 AS221FM-01-04 AS221FM-01-06 AS221FM-01-08 AS221FM-02-04 AS221FM-02-06 AS221FM-02-08 AS221FM-02-10 3.2 4 6 3.2 4 6 8 4 6 8 10 22.1 22.1 22.9 27.5 27.5 27.5 32.4 34.4 34.4 36.4 43.2 8.4 9.3 11.6 9.3 9.3 11.6 15.2 10.4 12.8 15.2 18.5 17.3 17.3 18.1 20.4 20.4 20.4 25.3 25.2 25.2 27.2 33.9 12.7 12.3 7 28.8 25.1 30.1 9.6 33.8 M5 x 0.8 8 13.5
Item Descriptions Data recording stores up to 150 pieces of alarm history data.
It.o0 5.06 5.06 150 t]rn .375 .r-24 o.aa .471 .749 o.44 1.56 1.00 0.38 0.63 1.25 1.25 0.25 ,r-14 '|.12 1,8t 0.91 4.OO 4al (E Air Cvlinder Stainles5 Steel Cylinder Series NCM High Temperahrre,/Low Ternperature .
B C D E F G H P U Load (kn) Weight (g) M A MB JA30-10-125 JA40-12-125 JA50-16-150 JAH50-20-150 JA125-27-200 JA160-36-200 2.5 4.4 11 18 28 71 M10 X 1.25 M12 X 1.25 M16 X 1.5 M20 X 1.5 M27 X 2 M36 X 2 49.5 60 71.5 101 123 178 19.5 20 22 28 34 51 22 24 25 30 38 55 24 31 41 59,5 66 96 5 6 7.5 11.5 13 16 8 11 14 24 27 36 8 11 13.5 16 20 24 17 22 27 32 41 55 9 13 15 18 24 42 0.5 0.75 1.0 2.0 2.0
Cushion adjustment (relief adjustment) labor is the same as general purpose cylinder adjustment (cushion needle adjustment). 200 150 Cushioning quality (RHCF40-500, load weight 5kg, supply pressure 0.5MPa, horizontal drive) High power cylinder 500 General purpose cylinder Cushioning capacity [J] 100 1000mm/s 3000mm/s 2000mm/s 500mm/s 400 Stroke [mm] 300 50 200 100 50mm/s 20 25 32 40 50 63
SY100-61-3-05 SY100-61-3-06 SY100-61-2-01 SY100-61-2-02 SY100-61-2-03 SY100-61-2-04 How to Order
84 25 21 98 30 24 111 46 36 132 50 41 200 74 60 230 74 60 271 86 70 JIS Symbol 1 4 1 2 2 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 Construction/Parts/Dimensions ANA1-01 to 06 Sound absorbing Case material (PFV ) End plate Hexagonal flats ANA1-06: PP How to
(mm) Model Av x 10-6m2 Cv converted 1/4 (8A) 3/8 (10A) 1/2 (15A) 3/4 (20A) 1 (25A) 46 58 130 220 290 1.9 2.4 5.3 9.2 12.0 VXEZ2230-02 VXEZ2230-03 VXEZ2240-04 VXEZ2350-06 VXEZ2360-10 550 10 0.7 0 760 1300 1480 15 20 25 1.5 1.0 Weight of grommet type. Add 10 g for conduit, 30 g for DIN terminal, and 60 g for conduit terminal type respectively.
As the circulating fluid temperature is within the set range of "AS.06", "AS.06" alarm monitoring starts. Status (2): The circulating fluid temperature becomes within the set range of "AS.04". "AS.04" alarm monitoring starts.
As the circulating fluid temperature is within the set range of "AS.06", "AS.06" alarm monitoring starts. Status (2): The circulating fluid temperature becomes within the set range of "AS.04". "AS.04" alarm monitoring starts.
As the circulating fluid temperature is within the set range of "AS.06", "AS.06" alarm monitoring starts. Status (2): The circulating fluid temperature becomes within the set range of "AS.04". "AS.04" alarm monitoring starts.
As the circulating fluid temperature is within the set range of "AS.06", "AS.06" alarm monitoring starts. Status (2): The circulating fluid temperature becomes within the set range of "AS.04". "AS.04" alarm monitoring starts.
As the circulating fluid temperature is within the set range of "AS.06", "AS.06" alarm monitoring starts. Status (2): The circulating fluid temperature becomes within the set range of "AS.04". "AS.04" alarm monitoring starts.
As the circulating fluid temperature is within the set range of "AS.06", "AS.06" alarm monitoring starts. Status (2): The circulating fluid temperature becomes within the set range of "AS.04". "AS.04" alarm monitoring starts.
As the circulating fluid temperature is within the set range of "AS.06", "AS.06" alarm monitoring starts. Status (2): The circulating fluid temperature becomes within the set range of "AS.04". "AS.04" alarm monitoring starts.