Mode of operation: Double-acting
Piston diameter: 32 mm
Theoretical force at 0.6 MPa (6 bar, 87 psi), advance stroke
: 482.5 N
Stroke: 250 mm
Cushioning : Self-adjusting pneumatic end-position cushioning
aves 20% space over the basic length of a corresponding ISO/VDMA cylinder
Low friction, long-life seals
High-strength, double-crimped end cap design
Standard magnetic piston for full control system versatility
It saves 20% space over the basic length of a corresponding ISO/VDMA cylinder
Low friction, long-life seals
High-strength, double-crimped end cap design
Standard magnetic piston for full control system versatility
Piston diameter: 25 mm
Theoretical force at 0.6 MPa (6 bar, 87 psi), advance stroke:
295 N
Stroke: 80 mm
Cushioning: Elastic cushioning rings/plates at both ends
Position detection: Via proximity switch
Mode of operation: Double-acting
Piston diameter: 40 mm
Theoretical force at 6 bar, advancing: 754 N
Stroke: 250 mm
Cushioning : Pneumatic cushioning, adjustable at both ends
Piston diameter: 16 mm
Theoretical force at 6 bar, advancing 121 N
Stroke: 10 mm
Cushioning: Elastic cushioning rings/pads at both ends
Position sensing for the proximity sensor
Pneumatic connection, port 1: Male thread R1/8
Pneumatic connection, port 2: For tubing outside diameter of 6 mm
Temperature-dependent operating pressure: :-0.95 bar to 14 bar
Ambient temperature: -10 °C to 80 °C
Nominal size: 4.2 mm
Pneumatic connection, port 1: Male thread M5
Pneumatic connection, port 2: For tubing outside diameter of 6 mm
Temperature-dependent operating pressure: -0.95 bar - 14 bar
Ambient temperature: -10 °C–80 °C
Nominal size : 2.1 mm
Reliable detection of system pressure in industrial applications
High shock and vibration resistance
Excellent repeatability and low linearity error
Lifespan of more than 60 million pressure cycles
Compact and robust stainless steel housing for use where space is restricted
Mode of operation: Double-acting
Piston diameter: 25 mm
Theoretical force at 0.6 MPa (6 bar, 87 psi), advance stroke: 295 N
Stroke 20 mm
Cushioning: Elastic cushioning rings/plates at both ends
Mode of operation: Double-acting
Piston diameter: 20 mm
Theoretical force at 0.6 MPa (6 bar, 87 psi), advance stroke: 188 N
Stroke: 25 mm
Cushioning: Elastic cushioning rings/plates at both ends
Mode of operation: Double-acting
Piston diameter: 50 mm
Theoretical force at 0.6 MPa (6 bar, 87 psi), advance stroke: 1178 N
Stroke: 80 mm
Cushioning: Pneumatic cushioning, adjustable at both ends
Mode of operation: Double-acting
Piston diameter: 25 mm
Theoretical force at 0.6 MPa (6 bar, 87 psi), advance stroke : 295
Stroke: :20 mm
Cushioning: Elastic cushioning rings/plates at both ends
Series VG342 is a 3-port pilot poppet solenoid valve that can be used as a selector or divider valve (external pilot). Actuation is changeable between N.C., N.O., or external pilot types. VG342 is possible to use in vacuum or under low pressures. No lubrication is required.
3-port pilot-operated poppet valve
Material restriction type
Low power consumption: 4.8W DC (standard type); 2W DC (energy-saving type)
It is possible to use in vacuum or under low pressure
Total gripping torque at 0.6 MPa (6 bar, 87 psi), opening: 233 Ncm
Total gripper torque, closing, 0.6 MPa (6 bar, 87 psi): 215 Ncm
Max. opening angle: 180 deg
Position detection: Via proximity switch
VMPA1-MPM-EMM-8 electronic module for MPA-S valve terminal with modular multipole connector for 8 magnetic coils. Maximum number of positions for valves 4, Maximum number of solenoid coils 8, Rated starting current per coil: 80 mA up to 25 ms, Rated current with current reduction: 25 mA after 25 ms; Corrosion resistance class KBK
Design: Diaphragm valve
Valve function: 2/2-way, closed, monostable
Connection Process valve: G1
Standard nominal flow rate (standardised to DIN 1343):
11500 l/min
Medium pressure: 0.5 bar - 10 bar
Bosch Rexroth Valves of type Z3DR are pilot-operated 3-way pressure reducing valves in sandwich plate design with pressure limitation of the actuator. They serve for reduction and control of secondary pressure.