Plate (Aluminum material) Lr F t MXQ6(A)-Z MXQ6(A)-Z MXQ6(A)-Z Lr = 40 mm 0.030 ST 10, 20 ST 20 to 50 0.003 ST 50 0.025 Table displacement [mm] Table displacement [mm] Table displacement [mm] 0.020 ST 40 0.002 ST 30 to 50 ST 10 0.001 0.015 ST 30 0.010 0.001 ST 20 ST 40, 50 0.005 ST 10 ST 10 to 30 0.000 0.000 0.000 0 2 4 6 8 0 2 4 6 8 0 2 4 6 8 Load [N] Load [N] Load [N] (Plate size: t = 8
range (mm) A L FV FV M 10 to 40 45 8 10 B + Stroke L FT FX 10 to 60 52 10 16 FZ FX A + Stroke 10 to 60 55.5 10 20 FZ 10 to 50,75,100 62 12 25 10 to 50,75,100 68.5 12 28 (Dimensions other than A and L are the same as the front flange type.) 6 Series MQQ Dimensions Lateral load resisting type (through hole and double end tapped)/MQQLB 10, 16, 20 H effective thread depth C 2-M5 x 0.8 2 x 4-
S 20 20 stations P, R port thread type + + + + + + + A, B port size R R P P port 1/8 R port 1/8 A B M5 Nil Rc M5 x 0.8 B A A, B port M5 x 0.8, C4 A, B port M5 x 0.8, C4 C4 F G One-touch fitting for 4 N3 N NPT One-touch fitting for 5/32" T NPTF Common SUP/Individual EXH type Note) For more than 10 stations, supply air to both sides of P port.
range Actuation range A B Rotation range m 190 40 10 20 10 1 2 3 7 20.9 22.8 24.4 28.7 16.9 18.8 20.4 24.7 A A 190 35 10 20 10 190 30 10 15 10 When D-F9 is used 190 25 10 15 10 Rotation range m: Value of the operating range Lm of a single auto switch converted to an axial rotation angle.
I~} a: D-A59W -25 60 70 65 11 0 115 120 1 pC. 15 .. I ~ .pa. (':'!." 15 . I~ _OJ ~I~) -25 60 70 65 11 0 115 120 OF5J5 1 pC. 10 :!l. 2 pes , ~~~
No anchor bolt is included. 77 A HRS090 Series Standard Type Cooling Capacity HRS090-A-20/40 (50 Hz) HRS090-A-20/40 (60 Hz) 12 12 10 10 Ambient temperature 32C Ambient temperature 32C Cooling capacity [kW] Cooling capacity [kW] 8 8 Ambient temperature 40C Ambient temperature 40C 6 6 4 4 Ambient temperature 45C Ambient temperature 45C 2 2 0 0 5 10 15 20 25 30 35 Circulating fluid temperature
T 24 VDC (10-28 VDC) 24 VDC (10-28VDC) 24 VDC: 1 mA or less 24 VDC: 1oFA or less 24 VDC: l0|lA or Less 24 VDC: 1 mA or less Rd: ( ri Best 1 mS or less $erios CLA A||l0 $t/t|ilc SolidState Switch .,:,. 24 VDC (10-26 VDC) 28 VDC 1.5 V or less (1omA: 0.8 V or less) 24 VDC: 10!
T 24 VDC (10-28 VDC) 24 VDC (10-28VDC) 24 VDC: 1 mA or less 24 VDC: 1oFA or less 24 VDC: l0|lA or Less 24 VDC: 1 mA or less Rd: ( ri Best 1 mS or less $erios CLA A||l0 $t/t|ilc SolidState Switch .,:,. 24 VDC (10-26 VDC) 28 VDC 1.5 V or less (1omA: 0.8 V or less) 24 VDC: 10!
(t) is given for 10 l tank by the graph. Then, the charging time (T) for a 100 l tank, T = t x = 49 x = 49 (s). V 10 10 10 T = t x = 110 x = 110 (s). V 10 10 10 T = t x = 2.4 x = 24 (s).
ENT 84 13 Series LC1 Options T-nuts and T-brackets for Mounting Be sure to use when mounting the controller. Note) The controller unit includes either T-nuts or T-brackets.
0 n r Ro 18 tio ta or tio ta t f n r Ro fla an le ge ng of si +10 0 0 Ro 19 tat or io t f n r fla an gle ge sin of With external stopper For 90 For 180 Single flat Single flat 5 A A e ng ng ng le le ra ad ad t ju ju en st st m m m st en en ju t r t r ad an an gle ge ge An 5 5 B port A port B port A port 90 A 5 ng ge le an ad t r ju en st m 180 Note) The drawings show the rotation range
-5 6-10-19 6-10-5 6-10-5 6-10-19 6-10-37 6-10-3 4 Series C76 Stroke Selection The maximum stroke at which the cylinder can be operated under a lateral load The relation between the cylinder size and the maximum stroke depending on the mounting style The region that does not exceed the bold solid line represents the allowable lateral load in relation to the cylinder of a given stroke length
-5 6-10-19 6-10-5 6-10-5 6-10-19 6-10-37 6-10-3 4 Series C76 Stroke Selection The maximum stroke at which the cylinder can be operated under a lateral load The relation between the cylinder size and the maximum stroke depending on the mounting style The region that does not exceed the bold solid line represents the allowable lateral load in relation to the cylinder of a given stroke length
0 o @0 i A A MX MTS MY CY !4 !3 y e !2 q r t o !6 @0 !4 !1 q !6 i t y e !5 r u !
Polyurethane Coil Tubing: Series 10-TCU For details, refer to Pneumatic Clean Series catalog. Specifications 10-TCU 10-TCU 10-TCU 10-TCU 0425B-1 0425B-2 0425B-3 0604B-1 0604B-2 0604B-3 0805B-1 10-TCU 10-TCU 10-TCU Model Tubing O.D. (mm) No. of cores 2 cores 3 cores 1 core 2 cores 3 cores 1 core 1 core 4 6 4 8 5 Tubing I.D.
One-touch fitting (C12: 12 One-touch fitting) Output connector 8 Station 7 6 5 4 3 2 1 U side n D side DIN rail clamping screw C10: 10 One-touch fitting C10 [3(R) EXH port] DIN rail clamping screw 56.6 30 R R 8 11.5 76.5 12 3 3 X 49.5 B B B B B B B B P X P12 30 25 1 A 1 A A A A A A A 13.5 10 (12) (7.5) 25 C10: 10 One-touch fitting C10 [1(P) SUP port] P = 16 45 C4, C6, C8 [4(A), 2(B) port
Part numbers indicating changed seal material and leakage Changed part Note 2) Leakage (Pam3/s or less) Note 1) Symbol Nil N1 Symbol 1349-80 2101-80 Internal External FKM EPDM Barrel Perfluoro w, e, r, t w, r, t e 1.3 x 10-10 (FKM) 1.3 x 10-8 1.3 x 10-11 (FKM) 1.3 x 10-9 Nil A B C P1 70W 1.3 x 10-8 1.3 x 10-11 (FKM) 1.3 x 10-9 Kalrez Q1 R1 R2 R3 S1 T1 4079 SS592 SS630 SSE38 1232-70 3310
(P) Male thread type A T L H L (mm) T Connection male thread Weight g Effective area mm L Min. bore A Body size H Width across flats Model L KK3P-01MS R 1/8 8.4 26.4 30.4 10 1/8 18.4 -02MS R 1/4 22.6 14.2 27.4 33.4 6 KK4P-01MS R 1/8 17 33 37 14 -02MS R 1/4 20.2 34.2 40.2 1/4 25.2 -03MS 9 R 3/8 50.9 32.5 35.7 42.2 17 -04MS R 1/2 57.4 38.2 46.2 22 KK6P-03MS 11 R 3/8 76.0 44.7 41.5 48 19 1
5+ g"'" 116 5:5 M4XO,7 YPOIO , '10 6.S 10 sg04I 16 5.5I M,4 XQ,7 71' 5 a 6.3 7 I 5 a 1 6.3 YP015 I 15 7 12 ~-g.048 19 7 M5XO,a 9 I 6 10 ,7.8 10 7,a ...!:!'.015 l 15 7 12 6 -g~ 19 9 I 6 7 M5 x O.B . ~I ~--~~ K ~~ P~ ' ~k I -TFunnion Pin' . , nue ' :e In .
Model r e b m u N A f o t r o P l e d o M g n i t r o P e z i s t r o P B e z i s t r o P A c i r t e M " 2 3 / 5 " 4 " 4 / 1 " 6 " 6 1 / 5 " 8 t r o P A t r o P B h c n I 1 1 M K h c u o t e n O g n i t t i f g n i t t i f h c u o t e n O 0 1 , 6 6 1 / 5 8 8 / 3 0 1 2 / 1 2 1 2 1 M K h c u o t e n O g n i t t i f d a e r h t T P N 0 1 , 6 4 / 1 T P N ) T P ( c R 4 / 1 d a e r h