FNY-W6003-01 Omron, FNY-W6003-01 Datasheet - Page 3

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FNY-W6003-01

Manufacturer Part Number
FNY-W6003-01
Description
1.0M MECHATROLINK CABLE
Manufacturer
Omron
Datasheet

Specifications of FNY-W6003-01

Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
FNYW600301
Torque, and Synchronized Control.
ontrol for Up to 30 Axes with Less Wiring.
E q u i p
H i g h
H i g h
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Features
Features
Multi-axis control is made easy by freely combining control axes. Up
to 32 axes can be used, including 30 physical axes and two virtual axes,
and each axis can be set individually. A wide variety of motion control
operations are supported, from independent axis control to
interpolation and synchronized operation.
High-speed MECHATROLINK-II Servo communications (a registered
trademark of Yaskawa Corporation) are used between the servo driver
and Distribution Modules, enabling multi-axis control with less wiring.
The limit switches and origin sensors required for servo control are
input to the servo driver, further enhancing distributed control in the
multi-axis system.
By using high-speed servo communications, motion programs, system
parameters, system data, and servo driver parameters can be set and
read from a Support Software running on a personal computer.
Controller constants and variables, such as system constants, global
variables, local variables, can all be read.
Equipment control status and servo system operating conditions can
be monitored.
Programs and data can be backed up on CPU Unit Memory Cards.
Position control, synchronized control (electronic gear, electronic cam,
follow-up), speed control, and torque control are all supported,
enabling a wide range of applications.
The servo communications cycle can be as short as 1 ms.
Scheduled processing for Motion Controllers, servo drivers, and
Distribution Modules enable consistent high-precision control.
Eight motion tasks can be used to execute motion programs
simultaneously. Branched execution is possible within programs, so
both independent control and control involving multiple axes, such as
interpolation and synchronization, can be achieved in one
programming scheme.
Global variables enable easily sharing data between tasks. Also,
system variables can be used to monitor and use servo status within
programs.
Easy System Configuration
Easy Information Processing
Easy Motion Control
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