size C4 (4 Onetouch fitting) C4 (4 One-touch fitting) A, B port C6 (6 One-touch fitting) M5 x 0.8 Flow Rate Characteristics Flow rate characteristics Port size 1 4/2 (P A/B) 4/2 5/3 (A/B R) Manifold C [dm3/(sbar)] b Cv C [dm3/(sbar)] b Cv 1(P), 5/3(R) port 2(B), 4(A) port M5 x 0.8 C4 C6 M5 x 0.8 M5 x 0.8 1/8 C6 C4 1/8 1/8 1/8 1/8 1/8 1/4 1/4 1/8 0.46 0.62 0.79 0.55 0.59 0.74 0.71 0.55
D D E E C B LY LH H1 LT S + Stroke N BN h + l Width across flats B1 C B LX X Y LS + Stroke X Y With rod boot on both sides ZZ + l + 2 stroke Width across flats KA 4 x LD ZZ + 2 l + 2 stroke ZZ + 2 stroke [mm] Bore size [mm] Stroke range [mm] A AL B B1 BN BP BQ C D E F GA GB GC GD GL GR H1 J K KA LD Without rod boot With rod boot 40 Up to 500 20 to 500 30 27 60 22 96 1/4 1/4 44 16 32 10
YY depth YL XA depth XL H7 Dimension of T slot b a X 0.02 X c d XAH7 e XB e 9.5 11 13.5 18.5 d 3.5 4 4.5 7 c 5.5 5.5 7.5 10 b 10.5 10.5 13.5 17.8 Bore (mm) 32 40 50 63 a 6.5 6.5 8.5 11 XA H7 XC XL XX details XX section WB WA Z XX section Back side 4-MM depth ML Z WA L Through 4-OA socket head cap screw HA: T slot for hexagon Through 4-NN 4-OB counter bore depth OL XX section X 0.02 X 0.02
Note) Valve model Type of actuation Type of actuation Valve model 14/2 (PA/B) 4/25/3 (A/BEA/EB) 14/2 (PA/B) 4/25/3 (A/BEA/EB) 1, 5, 3 4, 2 (A, B) (P, EA, EB) 4, 2 (A, B) 1, 5, 3 Cv b C [dm3/ (sbar)] Cv b C [dm3/ (sbar)] Cv b C [dm3/ (sbar)] Cv b C [dm3/ (sbar)] (P, EA, EB) 2position Single Double Closed center Exhaust center Pressure center Single Double Closed center Exhaust center Pressure
(36) 1.20 o,24 (6) (30) NV:2il450-N012 U T 4-63 lbs. (2.1 Ko) P.T 0.1 7 in. (4.4 mm) u 0.08 in. (2.0 mm) 0.25 in. (6.4 mm) '75 PSIG (5 Kgflcm2) A B c U E F G H K M N P R 525 t33 4) 4 3 9 1 1 1 4 ) 1 1 8 t30l ) 4 7 t22\ 0 0 6 a1 5l ) l t (3) 0 8 0 20 4\ 1 5 7 r4nl ) 7 1 tlAl 0 9 6 tr^ 5' 1 2 6 (32) 1.42 (36) 1 2 0 J U 5 (6) Millimelers in Parentheses NVAm5GNo13 F U F 4.63lbs. (2.1 Kq) P.T.
36) 1.20 o,24 (6) (30) NV:2il450-N012 U T 4-63 lbs. (2.1 Ko) P.T 0.1 7 in. (4.4 mm) u 0.08 in. (2.0 mm) 0.25 in. (6.4 mm) '75 PSIG (5 Kgflcm2) A B c U E F G H K M N P R 525 t33 4) 4 3 9 1 1 1 4 ) 1 1 8 t30l ) 4 7 t22\ 0 0 6 a1 5l ) l t (3) 0 8 0 20 4\ 1 5 7 r4nl ) 7 1 tlAl 0 9 6 tr^ 5' 1 2 6 (32) 1.42 (36) 1 2 0 J U 5 (6) Millimelers in Parentheses NVAm5GNo13 F U F 4.63lbs. (2.1 Kq) P.T.
Weight (kg) 1 4/2 (P A/B) 4/2 5/3 (A/B EA/EB) Port size Type of actuation C [dm3/ (sbar)] b Cv C [dm3/ (sbar)] b Cv (B) (A) 4 2 (B) (A) 4 2 Plug-in Non plug-in 2 position 3 position 4.73 (4.56) VFR611 VFR610 40 0.12 9.1 41 0.15 9.6 2 Single 3 4 100 or less (EA)(P)(EB) 5 1 3 (EA)(P)(EB) 5 1 3 2 100 or less 4.78 (4.61) 40 0.14 9.2 41 0.17 9.7 VFR621 VFR620 3 4 Double Double Exhaust center
size 63 21 32 32 22 6 63 all types 80 65 20 30 16 M18 x 1.5 18.3 4 4 x 28AW M D L 80 26 40 36 27 7 80 all types 100, 125 all types 95 78 22 35 16 M22 x 1.5 22.3 4 4 x 36AW 100 34 45 40 32 8 110 90 26 42 20 M27 x 2 27.5 5 5 x 40AW l 45 160 all types 160 43 50 44 36 10 120 100 30 50 22 M33 x 2 34 5 5 x 50AW 10 K C F B A H 0 0.2 Material: Carbon steel Y-type knuckle d (H8) A B C D G L F E K
Orifice conductance In the case of a A (cm) hole in an ultra-thin plate, the conductance C results from V the average velocity of the gas, R the gas constant, M the molecular weight and T the absolute temperature. From the formula C=VA/4=(RT/2M)0.5A, the conductance for 1cm is C=11.6A l/sec, at an air temperature of 20C.
50 [10] 59 [15] 68 [20] 77 [25] 86 [30] 95 [35] Circulating fluid temperature F [C] Circulating fluid temperature F [C] HRS100-W -20/40(50 Hz) HRS100-W -20/40(60 Hz) 14 14 Facility water temperature 90F (32C) 12 12 Cooling capacity [kW] Cooling capacity [kW] Facility water temperature 90F (32C) 10 10 8 8 6 6 4 4 Facility water temperature 104F (40C) Facility water temperature 104F (40C) 2
ratio : 1 [kgf/L] Circulating fluid (volume) flow rate qv : 70 [L/min] Circulating fluid specific heat C : 1.0 x 103 [cal/(kgfC)] Circulating fluid outlet temperature T1 : 20 [C] Circulating fluid return temperature T2 : 24 [C] Circulating fluid temperature difference iT : 4 [C] (= T2 T1) Conversion factor: hours to minutes : 60 [min/h] Conversion factor: kcal/h to kW : 860 [(cal/h)/W]
56.5 20 21 23 23 25 14 18 18 22 26 45 50 60 70 80 M8 X 1.25 M8 X 1.25 M10 X 1.25 M12 X 1.75 M12 X 1.75 1/4 Stroke 1/4 Stroke 1/4 Stroke 1/4 Stroke 1/4 Stroke 106.5 125.5 139.5 CLAG40SCLA40, #4 (#1+#4+#11) CLAG50SCLA50, #4 (#1+#4+#11) CLAG63SCLA63, #4 (#1+#4+#11) CLAG80SCLA80, #4 (#1+#4+#11) CLAG100SCLA100, #4 (#1+#4+#11) Single Clevis/CLAC (mm) Stroke range (mm) Bore (mm) CX GB BP BQ C GC
D ENSIONS A B c D E F 2.66 (67.5) 2.42 (61.5) (14) 0.28 17', 0.16 (4) 1.42 (36) ,ltrF-l rD C Solsnoid DIN "Electricrl Connector" 'AC" Vottage only ml--l l "*---l-l I .f;T.
(A) 4 (B) 2 C *Specifications and dimensions for the 90-series are the same as standard products.
(sbar)] b Cv C [dm3/(sbar)] b Cv C [dm3/(sbar)] b Cv 1 4/2 (P A/B) VQ5 2 position metal seal 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 1 2 VQ4 50 VQZ 4/2 5/3 (A/B EA/EB) VQD 1 4/2 (P A/B) 2 position rubber seal 1 2 VQ4 51 4/2 5/3 (A/B EA/EB) Note) Port
TF G 1/8 G 1/8 G 1/8 G 1/4 TN NPT 1/8 NPT 1/8 NPT 1/8 NPT 1/4 Nil M5 x 0.8 Rc 1/8 Rc 1/8 Rc 1/8 Rc 1/4 CY3B15 CY3B20 CY3B25 CY3B32 CY3B40 b C H B d M10 x 1.0 M20 x 1.5 M26 x 1.5 M32 x 2.0 H 4 8 8 10 B 14 26 32 41 C 16.2 30 37 47.3 Part no.
(Full Span) Display accuracy Size 4 6 5/32 1/4 Symbol C4 C6 N3 N7 Semi-standard 230 Calibration angle ARM ARM Description None Oil-free Symbol Nil X17 Limit indicator With limit indicator Weight 17 g ARP 17.5 IR-A ARM10 Straight type 6 28 IR X Fitting size 4, 5/32 2 IRV OPEN 6 2 X 1.5 1/4 6 VEX 28 Elbow type X Y Fitting size SRH 4, 5/32 10.5 21.5 R 5.5 E V O C 6 10.5 22 SRP 1/4 10.5 24.5
Bore size (mm) Part no. l m L d Dd9 H B C D Applicable cotter pin CJ1 3 x 18 l 4 x 25 l 4 x 35 l 4 x 40 l 0.040 0.076 0.050 0.093 0.065 0.117 0.065 0.117 Note 1) When using cotter pin, flat washer is used together.