NCDA1F150-1600-XA22, TIE ROD CYLINDER, 2.42 lb
NCDA1F150-0125-A54L, TIE ROD CYLINDER, 1.15 lb
NCDA1F150-1200-XC35, TIE ROD CYLINDER, 2.08 lb
NCDA1F150-1200-XA22M, TIE ROD CYLINDER, E14, 2.08 lb
NCDA1F150-0400-XC35, TIE ROD CYLINDER, E14, 1.39 lb
NCDA1F150-0100-XA7, TIE ROD CYLINDER
NCDA1F150-0400-XA7, TIE ROD CYLINDER
NCDA1F150-0350-XA7, TIE ROD CYLINDER
NCDA1F150-0500-XA22, TIE ROD CYLINDER
NCDA1F150-1600-XA7, TIE ROD CYLINDER, 2.42 lb
NCDA1F150-0400-XC35, TIE ROD CYLINDER, 1.39 lb
NCDA1F150-0100-XC35, TIE ROD CYLINDER, 1.13 lb
NCDA1F150-1200-XC35, TIE ROD CYLINDER, 2.08 lb
NCDA1F150-1000-XA22, TIE ROD CYLINDER, E14, 1.91 lb
NCDA1F150-0500-XA22, TIE ROD CYLINDER, 1.47 lb
MK MB1 ML + Adjustable range 4 Stroke XC6 Standard model no.
CS1 Order Made 40 500 2000 Made to Order Note 1) Other intermediate strokes can be manufactured upon receipt of order.
Dimensions Stainless steel piston rod and rod end nut XC6 MM Width across flats MA 8 M I Applicable in cases where there is concern about rust or corrosion, etc., such as when the piston rod end gets wet when extended.
The kinetic energy of load can be found using the following formula. 20 10 5 V M M 2 V 2 100 300 1000 2000 500 Ek = Ek: Kinetic energy (J) M: Weight of load (kg) V: Piston speed (m/s) Maximum drive speed (mm/s) Example) Load limit at rod end when air cylinder 63 is actuated with max. actuating speed 500 mm/s. at a maximum drive speed of 500 mm/s.
The kinetic energy of load can be found using the following formula. 20 10 5 V M M 2 V 2 100 300 1000 2000 500 Ek = Ek: Kinetic energy (J) M: Weight of load (kg) V: Piston speed (m/s) Maximum drive speed (mm/s) Example) Load limit at rod end when air cylinder 63 is actuated with max. actuating speed 500 mm/s. at a maximum drive speed of 500 mm/s.