The new style MGP has a shorter guide rod and thinner plate resulting in a weight reduction of up to 17% over the original MGP.??The series is designed for high side load applications found in material handling, lifting and stopping. The?cylinder utilizes an ultra-compact design by incorporating the cylinder body as part of the guide body. As the stroke length increases, so does the bearing
Series CS2 air cylinder is a double acting, non-lube air cylinder. Aluminum die-cast is used for both the rod and head covers, which means a maximum weight reduction of approximately 50% *. This series is available in bore sizes 125mm, 140mm and 160mm with maximum strokes up to 1600mm *. Air cushions are standard on both ends. Other options include auto switches, rod boots, and Rc, NPT or
The MB series medium duty tie rod cylinder offers an improved design that enhances cylinder operation and ease of use. The standard air cushion utilizes a floating cushion seal to eliminate piston rod bouncing. The cushion volume has been elevated permitting about 30% more allowable kinetic energy absorption. The port and captive cushion adjustment valve are located on the same side
The MB series medium duty tie rod cylinder offers an improved design that enhances cylinder operation and ease of use. The standard air cushion utilizes a floating cushion seal to eliminate piston rod bouncing. The cushion volume has been elevated permitting about 30% more allowable kinetic energy absorption. The port and captive cushion adjustment valve are located on the same side of cap
Fittings & Tubing Air Cylinders Rotary Actuators 52 When closed E When closed J 4 x M6 x 1 thread depth 12 (Mounting thread) 5 +0.030 4H9 0 depth 4 K cross view (Closed) +0.052 27H9 0 depth 1.5 Auto switch mounting groove (4 locations) 65 Width across flats 10 (4 locations) M5 x 0.8 (Finger closing port) M5 x 0.8 (Finger opening port) H 4 x M6 x 1 (Piston rod thread and rack thread) 28.2
9 @0 @1 @2 @3 @4 Material Description Spring washer Set screw Rod end nut Wear ring Cushion seal Rod seal Piston seal Cushion valve seal Cylinder tube gasket Piston gasket Magnet No. q w e r t y u i o !0 !1 !2 !
Determination of load's kinetic energy (E) bore size E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 8-16-8.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 8-16-8.)
Body material Port size Orifice diameter e VXS2 3 A w B 5 Body material C37 Port size 1/4 e A Orifice diameter 10 Step 3 Select electrical specification.
Thrust energy E Fs Fs + mgs Fs mgs Absorbed energy E E + E Symbols : Speed of impacting object (m/s) m: Weight of impacting object (kg) F: Cylinder thrust (N) g: Gravitational acceleration (9.8m/s) s: Shock absorber stroke (m) Note) Although the lock plate may slightly bend due to tightening of the lock plate holding bolt, this does not a affect the shock absorber and locking function.
Material: Chrome molybdenum steel (nickel plated) mm Bore size (mm) YA 03 B D E F M T1 T2 Part no.
Component Parts No. q w e r t y u No. i o !0 !1 !2 !3 !
9 @0 @1 @2 @3 @4 No. q w e r t y u i o !0 !1 !2 !3 Steel wire Chrome-molybdenum steel Steel Resin Urethan rubber NBR NBR NBR NBR NBR Rod cover Head cover Cylinder tube Piston rod Piston Cushion ring A Cushion ring B Bushing Cushion valve Snap ring Tie-rod Tie-rod nut Piston nut Replacement Parts: Seal Kit Bore size (mm) Kit no.
Determination of load's kinetic energy (E) bore size E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 8-16-8.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 8-16-8.)
.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com V 1000 1 2 420 1000 1 2 E = W (-) 2 E = 1 (-) 2= 0.088 Find the kinetic energy E (J) of the load. Find the allowable kinetic energy Ea (J). Confirm that the kinetic energy of the load does not exceed the allowable kinetic energy.
OUT side passage IN side passage y u t OUT IN i o Basic type (Knob): IR30l0-A e e r q r w e OUT side passage IN side passage t u OUT IN o i Basic type (Knob): IR30l1 2-A e e r q r w e OUT side passage IN side passage t u OUT IN o i 800 Precision Regulator IR1000-A/2000-A/3000-A Series Dimensions Basic type (Knob): IR10l0-01l-A 10.5 42 ARJ 1.6 Bracket AR425 to 935 Mounting hole for hexagon
Z A + Stroke B + Stroke L W E M K J 2 x P (Rc, NPT, G) (Port size) 100 Auto switch Minimum lead wire bending radius 10 H thread effective depth C 4 x N through F Q I E M Z A + Stroke B + Stroke L W G M K J Standard [mm] Bore size Stroke range Without magnet for auto switch With magnet for auto switch C D E F G H I J K L M N P Q W Z A B A B 50 10 to 50 37 29 42.5 34.5 15 18 57 9 M10 x 1.5
How to Order w e r t q y u i o !0 !1 !2 !
The power supply for control and input, or the input device, is Off. 10 to 57 Hz: constant amplitude 0.75 mm p-p 57 to 150 Hz: constant acceleration 49 m/s2 DX E/DX F DY B/DY E/DY F Content Content Content DM E/DM F ST: STatus display LED ST: STatus display LED ST: STatus display LED
<> <> <> ON(SVONON) (01-193) E <>ON(SVON ON) <> Output current limit is exceeded set value (01-194) Over current E <> -66- <> <> I sent ALM (1-195) E <> (01-196) E <> <>EEPROM (01-197) E <> (EEPROM 10 ) <>CPU (CPU ) CPU (01-198) CPU E <> *1 (code)-3 Byte16-19 10 -67- 16/ A () (50mm ) () ( ) 5m 5m 10%(15m 20%) -68- 17/ 17.1.
ON(SVON ON) 1-193 E ONSVON ON 1-194 E 1-195 E 1-196 E EEPROM 1-197 E EEPROM 10 CPU CPU CPU 1-198 CPU E 1 SV1.00 RESETSVONSETUP 52 - 13. / A () (50mm ) () () 5m 5m 10% 15m 20% 53 - 14 / 141.