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Search Results "VV3PA3-41-051-02N"

Return to origin . 41 8.1 Return to origin . 41 8.2 Positioning operation . 41 8.3 Pushing operation. 42 (1) Pushing operation is successfully performed. . 42 (2) Pushing operation is failed (pushing the air) . 42 (3) Movement of the work piece after the completion of the pushing process .. 42 8.4 Controller input signal response time . 43 8.5 Methods of interrupting operation . 43 9.

Mode . 40 9.1 Outline . 40 9.2 Step No. instructions operation function . 40 2 - 9.3 Position / speed monitor . 41 9.4 Operation by numerical instruction . 41 9.5 Data editing function . 42 10. Memory map . 45 10.1 Remote IO (Rx and Ry) . 45 10.2 Remote register (RWr and RWw) . 51 11.

(Example) VVEX2-2-3-02N * VEX3222-1LO1 2 pcs. * VEX1-17-3A1 pc.

Solenoid is not energized Port Pressurized Coil insulation Class B Port exhausted Solenoid is energized Power consumption 0.5W AXT842-30-24A LOCKING TYPE (TOOL REQUIRED) 21.5 Dimension VFN2120N-B-02N-X36A 79 55.5 2xUNF #10-32, M5x0.8 CAPTIVE MOUNTING SCREW M12 CONNECTOR Purpose of the throttle plate: 156.5 37 24 18.5 1.

Solenoid is not energized Port Pressurized Coil insulation Class B Port exhausted Solenoid is energized Power consumption 0.5W AXT842-30-24A LOCKING TYPE (TOOL REQUIRED) 21.5 Dimension VFN2120N-B-02N-X36A 79 55.5 2xUNF #10-32, M5x0.8 CAPTIVE MOUNTING SCREW M12 CONNECTOR Purpose of the throttle plate: 156.5 37 24 18.5 1.

(It should not be changed) Unit name Fixed value 41 No.JXC-OMY0002-A Parameter name Range Description Activation W-AREA1 W-AREA2 ORG Correct [Link Offset] Fixed value This is the fixed value for this controller. It should not be changed. Sensor type Option 1 Undefined parameter No.11 Undefined parameter No.12 *1) The range varies depending on the electric actuator.

Please refer to the manual of the electric actuator for more details. 41 - 7.2 Basic parameter The "Basic parameter" is the data to define the operating conditions of the controller, conditions of the electric actuator, etc. Caution Writing of the parameter should be performed while the electric actuator is stopped.

Refer to the operation manual of the setting software for how to perform a trial run. 41 - Operation . Operation flow The startup procedure varies depending on the power-on situation.

Refer to the operation manual of the setting software for how to perform a trial run. 41 - Operation . Operation flow The startup procedure varies depending on the power-on situation.

/LEHS .20 4.1 . 20 4.2 . 21 4.3 . 22 5.23 5.1 . 23 5.2 . 24 5.3 . 27 . 27 . 29 (1). 31 (2). 32 (3). 33 . 34 5.4 . 36 . 36 . 38 1 - 6.39 7.40 7.1 . 40 7.2 . 41 7.3 . 41 7.4 . 42 7.5 . 44 7.6 . 44 8.45 8.1 . 45 8.2 . 46 8.3 . 50 8.4 . 53 .54 2 - LEH Series / (ISO/IEC)(JIS)1) 2) *1) ISO 4414: Pneumatic fluid power -General rules relating to systems ISO 4413: Hydraulic fluid power -General

Add an interval of 15ms (the recommendation is 30ms) or more between the input signals. / See Operating procedure input / output signals for each operation type on page 25 Alarm for Step data ALM2/code: 1-051 is generated.

Failing to comply may cause an injury or accident, or damage to the actuator and the user's system. 41 - 4.5 Teaching It is possible to set the current position to a target position after the actuator is operated, when setting the step data, or when selecting the ABS or LIN-A for the Movement mode. There are three Teaching methods as shown below.

Crack on the back of the belt s 41 - 6.5 How to detach and attach the dust seal band For the internal-check as the maintenance, the method of detaching and attaching the dust seal band is shown as the following. 1. Loosen the fixing bolts of end side of the Band holder. (The picture shows LEFB, but LEFS is same instruction as LEFB.)

/LEFS /P12,13 2.2 /LEFB -41- No. 5 2 /P30 4. ) 0 /P21 3. 3 ] /P21 3. 3 ] INC/ /P21 3. 3] / No./code1-051 15ms IN* 30ms DRIVE /P25 1) No. RESET 15ms 3 30ms /P25 1) No. No. 4 PLC No. 15ms 1IN* 30ms DRIVE /P25 1) / No. OUT 15ms 2 30msmsec /P25 1) No. OUT -42- No. No. PLC /P25 1) No.

Settings and Data Entry 38 10.1 Step Data 38 10.2 Basic parameters 41 10.3 Return to origin parameter 43 11.

Memory map 31 9.1 Memory allocation 31 (1) Input Area Mapping 31 (2) Input area details 32 (3) Output area mapping 36 (4) Output area details 37 (5) Record data (request sent from PROFINET master to JXCPH controller) 41 10. Settings and Data Entry 42 10.1 Step Data 42 10.2 Basic parameters 45 10.3 Return to origin parameter 47 11.