SMC Corporation of America
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Search Results "LEJB40S2T-400-S2"

When excessive impact (300m/s2 or more) is applied to a reed switch during operation, the contact will malfunction and generate or cut off a signal momentarily (1ms or less). Consult SMC regarding the need to use a solid state switch depending upon the environment. 7. Do not use in an area where surges are generated. Other Warning 1.

For setting the holding force to be at least 20 times the work weight; Required holding force = 0.05kg X 20 X 9.8m/s2 = 10N min. 0 20 30 40 50 60 70 Holding point L (mm) When MHY2-16D is selected, the holding force is determined to be 13N according to the holding point distance (L = 35mm) and the pressure (0.6MPa).

Example) For setting the gripping force to be at least 20 times the work weight; Required gripping force = 0.05 kg x 20 x 9.8 m/s2 = 10 N min.

Do not drop, bump or apply excessive impact (1000 m/s2) when handling. 5. Never mount in a place which will be used as a scaffold during piping work. Damage can be caused if subjected to an excessive load. Since the threaded sections of the PB1000 are resin, take particular care not to tighten any more than necessary. PB Air Supply Warning 1.

When handling the switch, do not apply an excessive impact (1000 m/s2) by dropping or striking the switch. Even if the switch case itself does not become damaged, it could damage the internal switch and cause it to malfunction. 2. Hold the product from the body side when handling. To handle the product, hold it by its body. The tensile strength of the power supply cord is 49 N (5 kgf).

Do not drop, bump or apply excessive impact (1000 m/s2) when handling. 5. Never mount in a place which will be used as a scaffold during piping work. Damage can be caused if subjected to an excessive load. Since the threaded sections of the PB1000 are resin, take particular care not to tighten any more than necessary. PB Air Supply Warning 1.

Variations/Purpose of Usage (Guide) Flow Rate/Operating Frequency (Supply pressure 0.25 MPa, 24 VDC, Duty ratio 1:1) Flow rate 150 High flow 2 High frequency type Medium flow 100 3 1 Super energy-saving type Ultra high frequency type Low flow 50 150 250 350 400 500 550 650 1200 (Hz) (L/min) Operating frequency Specifications Driver Continuous energization Power consumption OFF response time

: Individual take out of A and B sides K plug connector type: Common take out of A and B sides DIN terminal type: individual take out of A and B sides A little power consumption: 1.8 WDC For serial transmission EVS Fluid Maximum operating pressure Minimum operating pressure Proof pressure Ambient and fluid temperature Lubrication Pilot valve manual override Shock/Vibration resistance (m/s2

connector Ambient and fluid temperature (C) Maximum operating frequency (Hz) 10 3 Non-locking push type Push-turn locking slotted type Main and pilot valve common exhaust Pilot valve individual exhaust Not required Unrestricted 150/30 Dustproof Manual override (Manual operation) Internal pilot External pilot Pilot exhaust method Lubrication Mounting orientation Shock/Vibration resistance (m/s2

Do not drop, bump or apply excessive impact (1,000 m/s2) when handling. Even if the switch body is not damaged, the switch may suffer internal damage that will lead to malfunction. 2. Hold the product from the body side when handling. The tensile strength of the power cord is 49 N, and pulling it with a greater force can cause failure. 3.

A and B sides K plug connector type: Common take out of A and B sides DIN terminal type: Individual take out of A and B sides A little power consumption: 1.8 W DC For serial transmission Standard Specifications EVS Fluid Maximum operating pressure Minimum operating pressure Proof pressure Ambient and fluid temperature Lubrication Pilot valve manual override Shock/Vibration resistance (m/s2

itself in the drawing below, it should be regarded as an inertial load. ( ) 100 3 20 0.4 4 20 70 2 10 1 0.2 2 10 Friction coefficient (Example) 0.1 0.2 0.3 0.4 0.5 0.7 0.6 0 0 0 0 0 F = mg 0.2 1 0.8 0.6 0.4 0.4 0.6 0 0.2 0.8 1 Mass m Operating pressure (MPa) Operating pressure (MPa) Operating pressure (MPa) Static torque calculation Movement Load Tf = F x l (Nm) Allowable Load g = 9.8 m/s2

Point of application L (mm) Point of application L (mm) Workpiece transfer speed Distance of workpiece drop V (m/min) H (m/min) Coefficient of friction between the workpiece and conveyor Gravitational acceleration g (m/s2) Point of application L Transfer speed V Procedure 2 Confirmation of impact 1.