D-K39 D-K39C D-A5m D-A6m D-A3m D-A3mC D-A44 D-A44C Auto switch model D-G5m D-K59 D-G5NT D-G5mW D-K59W D-G5BA D-G59F D-F5m D-J59 D-F59F D-F5mW D-J59W D-F5BA D-M9m D-M9mV D-M9mW D-M9mWV D-M9mA D-M9mAV D-B5m D-B64 D-A9m D-A9mV D-A59W D-F5NT D-P3DWA D-P4DW Bore size A B A B A B A B A B A B A B A B A B A B A B 40 9 9 5 5 2.5 2.5 4.5 4.5 2 2 5.5 5.5 3 3 10.5 10.5 0 0 1 1 0 0 50 9.5 8.5 5.5 4.5
) V C Q IN OUT B Maintenance space A G 23 Compressed Air Preparation Filter AMK Series Dimensions Applicable model Semi-standard Metal bowl AFF/AM/AMD AMK Modular Connection Example B B AMK20-D AMK30-D AMK40-D Model Standard specifications Optional specifications Bracket mount P A B C D E G J M N Q R S T U V AMK20-D 1/8, 1/4 40 133.9 17.5 21 25 21 30 27 22 5.4 8.4 60 2.3 28 AMK30-D 1/4,
: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com 5.5 S T K (3.3) D 4-G through R + Clamp stroke X Z C 0.2 2 x 4-H counterbore Q + 2 x Clamp stroke + 0.15 + 0.05 2-3.3 depth 3 K A P Both ends tapped style: MKA A thread (mm) A B Model MKA MKA50 MKA63 32 40 10 M6 x 1.0 14 M8 x 1.25 18 M10 x 1.5 R + Clamp stroke (Basic) (mm) Q A G I J S T B H K L O U C P V D E R X
Applicable model HRS-WL003 HRS090-mm-20/40 Parts List q No.
D-G39A D-K39A D-A44A D-H7lW D-H7BAL D-H7lF D-C73C D-C80C D-B5 D-B6 D-H7l D-H7C D-B59W D-G5NTL Bore 20 25 32 40 A B 5(3) 5(3) 6(4) 11 A 6(4) 6(4) 7(5) 12 B 0(0) 0(0) 0.5(0) 5.5 A 0.5(0) 0.5(0) 1.5(0) 6.5 B 3(1) 3(1) 4(2) 9 A 4(2) 4(2) 5(3) 10 Hs 69.5 72 75.5 79.5 B 6(4) 6(4) 7(5) 12 Hs 60 62.5 66 70 A 7(5) 7(5) 8(6) 13 Hs 25 27.5 31 35 B 0(0) 0(0) 1(0) 6 Hs 22.5 25 28.5 32.5 A 1(0) 1(0) 2
Shield 12 13 7 6 9 8 3 B-4 A-4 B-5 A-5 B-6 A-6 Brown Black Red Black Orange Black Vcc GND A A B B Connector B terminal no.
Cv = Area x Stroke x A x Cf Time x 29 Area = x Radius 2 or see table B below. Stroke = Cylinder Travel (in.) A = Pressure Drop Constant (see table A) Cf = Compression Factor (see table A) Table B Cylinder Area (Sq. In.)
Cv = Area x Stroke x A x Cf Time x 29 Area = x Radius 2 or see table B below. Stroke = Cylinder Travel (in.) A = Pressure Drop Constant (see table A) Cf = Compression Factor (see table A) Table B Cylinder Area (Sq. In.)
Supply NC output NO output Exhaust of NC exhaust of NO Pilot tor NC Pilot for NO P A B R s z Y P A B R1 R2 z Y P A B EA EB PA PB 1 2 4 3 5 1 2 1 4 Table 7.2 Typical port identitications M O N O S T A B L E A N D B I S T A B L E Spring returned valves are monostable. They have a defined prefened position to which they automatically retum.
Supply NC output NO output Exhaust of NC exhaust of NO Pilot tor NC Pilot for NO P A B R s z Y P A B R1 R2 z Y P A B EA EB PA PB 1 2 4 3 5 12 1 4 Table 7.2 Typical port identitications M O N O S T A B L E A N D B I S T A B L E Spring returned valves are monostable. They have a defined prefened position to which they automatically retum.
D-C7 D-C8 D-C73C D-C80C D-H7 D-H7C D-H7W D-H7BAL D-H7F D-A7/A8 D-A79W Bore B A B A B A B A B A 2 (8.5) B 2 (0.5) A 1 (7.5) B 1 (0) A 6 0 0.5 0 0.5 3 3.5 3 3.5 3.5 4 3.5 4 7.5 8 7.5 8 0.5 1 0.5 1 10 16 2.5 3 2.5 3 1.5 2 1.5 2 ( ) in the table: In case of double rod style, series CJ2W.
The VN series is a combination of process valves that can be operated with pressure differential zero and comes with many variations. The VNA series is used for controlling pneumatic systems or air-hydro circuits. The VNB series controls various fluids. VNC is used for controlling the cutting oils and coolants used in machine tools. VNH is for controlling high pressure cutting oils and coolants
Cv C [dm 3/(sbar)] b Cv C [dm 3/(sbar)] b Cv C [dm 3/(sbar)] b Cv VT325 VT325V (Vacuum spec. type) VT325 VT325V (Vacuum spec. type) 0.55 kg (For AC) 0.60 kg (For DC) Note) Values for a single valve unit.
Grease pack part number: GR-S-010 (10 g), GR-S-020 (20 g) 414 Air Cylinder: Non-rotating Rod Type Double Acting, Double Rod MBKW Series Standard Basic: (B) Cushion valve Port W V G 2 x Rc P G Width across flats KB Q E CJ1 CJP E D MM MM E KA B C CJ2 Section Q-Q Q JCM Width across flats B1 H1 A AL F H N MA MB Width across flats B1 ZZ + 2 x Stroke S + Stroke N F H + Stroke A AL H1 CM2 2 x 4
VX3 Threaded M5 x 0.8 VXA Fluid temperature (C) 0 to 100 Ambient temperature (C) 0 to 60 VN Weight (kg) 0.09 0.15 0.36 0.17 LVC Construction LVA Standard type N.C. type N.O. type Double acting type LVH LVD LVQ PB PB PB q q q LQ PA PA PA e e e LVN TI/ TIL A B A B A B A B A B PA r w PAX PB With flow rate adjustment t PB PA Description Material Parts list No.
3 q e w t !2 !4 !3 e !0 q o Spring acting/Spring return/With auto switch (Built-in magnet) Single acting/Spring extend/With auto switch (Built-in magnet) 12, 16 !2 t w !4 y i !1 !3 e !0 q o t w !0 r q o i !1 !3 e 20, 25 w t !2 !4 !1 !3 e !0 q o w t !0 r o q !1 !3 e Component Parts Rod end nut No.
1 q !3 o e i !0 r !5 @0 !6 !4 @ A !7 !9 !8 @ B @ C Boss-cut Integrated clevis Spring extend t !2 u @1 y q !3 r !5 @0 !6 !0 i e o !4 !1 @ A !9 !8 @ B @ C !7 Boss-cut Integrated clevis Component Parts No.
Description Note q Material No.
Q = qm x C x (T2 T1) r x qv x C x iT 60 = 1 x 10 x 4.2 x 103 x 2.0 60 = Q = qm x C x (T2 T1) 860 = 1400 [J/s] 1400 [W] g x qv x 60 x C x iT 860 = Cooling capacity = Considering a safety factor of 20%, 1400 [W] x 1.2 = 1680 [W] 1 x 10 x 60 x 1.0 x 103 x 2.0 860 = qv: Circulating fluid flow rate Q: Heat generation amount Users equipment T2: Return temperature 120 [cal/h] 860 = 1400 [W]