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  • マニュアル

    ...'pagtameterissetto"0"(ogve), 鐡 c◎mmen9 Settherunぴesetandrunthoid量nputsby也ecodesse量ec抵dfヤ◎mthedi蓼i領10peratiOit assigRment(arguments)励;eonpageS-35. ffowever,tsetethatcodescanb¢setonlyw量血inther斑壌培1)to202.(Def毫u猛輌...

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    ... and can be calculated as described next. Only Message Communications (Remote I/O Communications Stopped) Communications cycle time = 2 (see note) + 0.11 x TB + 0.6 ms TB depends on the baud range as follows: 500 KB/s: 2, 250 KB/...

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    ...H'00000004: Alarm Setting Level: L.3 (4) H'00000003: Control Initial Setting 2 Level: L.2 (3) H'00000002: Control Initial Setting Level: L.1 (2) H'00000001: Input Initial Setting Level: L.0 (1) monl H'00000000: Disabled: OFF (0) H'00000004: 4 ...

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    ... (100 Hz or higher) 0.03 Hz/60 Hz (11 bits + sign) 150% of rated current for one minute 0 to ±10 VDC (20 kΩ), 0 to 10 VDC (20 kΩ) voltage input or 4 to 20 mA (250 Ω) current input 0.01 to 6000.0 s (4 selectable combinations of independent acceleration and deceleration settings) Approximately 20% (Increment possible with an external braking resistor.) Select vector control, one from 15 types of fixed V/f patterns, or set a user V/f pattern. Protective Functions Model number 3G3FVMotor protection Instantaneous overcurrent protection Overload protection Overvoltage protection Undervoltage protection...

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    ... Word Specify the beginning word address for the command data transferred to the DeviceNet Master Unit. Preset the data to be transferred in consecutive words as shown in the following table. Bits Word address S S+1 S+2 S+3 ...

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    ...0.001 Hz Overload capacity 150% of rated current for one minute Frequency setting signal 0 to ±10 VDC, 0 to 10 VDC (20 kΩ) voltage input or 4 to 20 mA (250 Ω) current input Acceleration/Deceleration time 0.01 to 6000.0 ...

  • マニュアル

    ... Slave 1 Second Slave address 0002 RUN command to Slave 2 Frequency reference to Slave 2 Third Slave address 0003 RUN command to Slave 3 Frequency reference to Slave 3 Protocol macro function S 1 S 2 S 3 ...

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    ... slave or master to which message is to be sent: 0 to 3F Hex (0 to 63) S+2 Class ID code (Sets the DeviceNet class code for the function.) S+3 Instance ID code (Sets the DeviceNet instance code for the function.) ...

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    ... Storage Word Specify the beginning word address for the command data transferred to the DeviceNet Master Unit. Preset the data to be transferred in consecutive words as shown in the following table. Word address S S+1 S+2 S+3 ...

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    ... output current per minute*3, *6 VT selected (high carrier, variable torque applications): 120% of rated output current per minute *6 Frequency setting signal -10 to +10V, 0 to 10 V, 4 to 20 mA, pulse train Acceleration/Deceleration time 0.01 to 6000.0 ...

  • マニュアル

    ... to 3F hex (0 to 63) S+2 Class ID code (Set the DeviceNet Class code of the target function.)*1 Explicit Message service codes Write: 10, Read: 0E S+3 Instance ID code (Set the DeviceNet Instance code of the target function.) ...

  • マニュアル

    ... address of the Slave/Master to which the Explicit Message is sent: 0 to 3F hex (0 to 63) S+2 Explicit Message service codes Write: 10, Read: 0E S+3 Class ID code (Set the CompoNet Class code of the target function.)*1 ...

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    ... the whether remote I/O communication is executed or not.  Only message communication is executed (Remote I/O communication under suspension) Communication cycle time = 2 Note + 0.11 x TB + 0.6 [ms] When TB is 500 k bits/s = 2, 250 k bits/...

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    ...) SRC) and ends immediately before ETX. Setting range: 0000 Hex to 0492 Hex (0 to 984 in decimal) For sequence No. 600, set the number of bytes of data that has been converted into ASCII code (that is, the number of bytes set in ...

  • マニュアル

    ...Main program Subroutine program (SBN(092) to RET(093)) Program end MACRO MCRO @MCRO 099 MCRO(099) N Calls the subroutine with the specified subroutine number and executes that program using the input parameters in S to ...

  • マニュアル

    ...Main program Subroutine program (SBN(092) to RET(093)) Program end MACRO MCRO @MCRO 099 MCRO(099) N Calls the subroutine with the specified subroutine number and executes that program using the input parameters in S to ...

  • マニュアル

    ...program in the interrupt task is not checked by compile on the CX-Programmer. 19 Target value comparison table Item CPM1A S Number of target values S+1 to S+2 Lower word of target value: BCD S+3 to S+4...

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    ... compile on the CX-Programmer. Allocate the task type and check the program. 19 Target value comparison table Item CPM2A S Number of target values S+1 to S+2 Lower word of target value: BCD S+3 to S+4 Upper word of target value: BCD S+5 Subroutine number CP1E Number of target values Lower word of target value: BIN Upper word of target value: BIN Interrupt task number Range comparison table Item CPM2A S to S +1 Lower word of target value: BCD S +2 to S +3 Upper word of target value: BCD ...

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    ... values (BCD 4 digits) 0001 to 0048 S Number of target values (BIN 4 digits) 0001 to 0030Hex S+3 Target value #1, lower 4digits (BCD 8 digits) S+1 Lower word of target value 1 (BIN 8 digits) S+4 Target value #1, upper 4digits 00000000 to 00064999 S+2 Upper word of target value 1 S+5 Subroutine number (Incremental) 0000 to 0255 S+3 interrupt task number for target value 1 (Decrement) F000 to F255 S+144 Target value #48, lower 4digits S+145 Target value #48, upper 4digits S+146 Subroutine number (BCD 8digits) 80000000 ...

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    ...512 (H) × 484 (V) Code size C (mm) Symbol size MXM Cell size S (mm) = C/M Four pixels are required per cell. A margin of about the size of one cell is required. C Max.: A (mm) = S/4 × 484 Min.: A (mm) = C + S × 1 × 2 A Field of vision S Taking the positioning accuracy of the workpiece in account, set a suitable field of vision. Example: In this example, the code size is 3 mm and the symbol size is 12 × 12. • Cell size: S = 3/12 = 0.25 mm • Maximum field ...