Sysmac Studio Software integrates configuration, programming, simulation and monitoring in a simple interface. Created to provide machine developers with complete control from a single environment.
True integrated development environment
Designed to give machine development managers complete control from a single environment, Sysmac Studio integrates configuration, programming, simulation and monitoring into a simple interface. This advanced software tool is the only software that the NJ series machine automation controller needs, which brings together logic, motion, and vision on a single platform. The main hardware products that are found inside the IDE are...
· NJ/NX series controllers
· HMI series NA
· NX Series I/O and security
· Servo series G5
· MX2 series and RX series frequency variator
· FH and FQM vision and sensor system
· GX Network Components
· Intelligent sensors E3 N
· ZW series measuring sensors
Also included in the software package are other utilities for the design of HMI and additional network configuration data. A single software to control and configure the entire machine through a single connection, gives you the ability and efficiency to develop and create like never before. Latest version: Sysmac Studio V1.13
Standards
Compliance with conventional Sysmac Studio standards
Fully compliant with IEC 61131-3, Sysmac Studio offers a state-of-the-art programming environment based on ladder and structured text programming languages and program organization units that include programs, functions, and function blocks. In addition, plcopen-based motion control instructions and a set of instructions that follow IEC rules are included. Thanks to the conventional programming environment, the need for learning is virtually nil, and you can start using the new software very quickly.
Variables
Programming with variables
There is no need to program the internal memory map of the NJ series controller. Sysmac Studio automatically assigns CPU drive memory to the variables it creates, promoting faster development and reducing errors. This also eliminates the need to wait for memory address settings for the hardware before starting software development. You can design hardware and software independently and develop them in parallel.
Easy
Easy operation with Sysmac Studio
Sysmac Studio places as few restrictions as possible on design procedures, so you can start work from anywhere on the system. The design concept integrates easy-to-understand operating procedures with proper guides that don't interfere with the workflow. This provides intuitive operation for flexible design work, where even errors in settings and procedures can be corrected immediately or remain until the project is completed, as long as they do not cause serious incidents.
Depuration
Full debugging
Sysmac Studio offers complete functions for controlling the debug sequence, such as changing current values and changing online programming. It also offers debugging functions with motion control simulation, such as presenting 2D or 3D results and presenting tracking on virtual devices. The new 3D simulation tool gives the programmer the opportunity to see the physical movement and sequence of machines that results directly from the code and configuration they have chosen to implement.
To accurately simulate motion control, Sysmac Studio gives instructions for creating external virtual signals, such as positive/negative end-of-stroke switches, initial position proximity signal, and external closing and intermediate-stop input signals. You can implement motion alarms and warning instructions, as well as provide the programmer with test measures for recovery from additional failures.
The built-in data tracking function also provides a high level of detail and features a time chart simultaneously with 2D or 3D route markers. Simulation results are recorded in a data tracking file, allowing a detailed analysis of performance to ensure correct functioning. Combining 3D motion simulation with CPU emulator provides utilities for the programmer so that the programmer can evaluate the correct sequencing, optimal route, minimum runtime, and other critical operations. Thus, the time between machine design and operation is drastically reduced.
System requirements:
CPU: 1.8 GHz dual core processor
RAM: 2 GB
HDD / SSD: 50 GB of free space on the main drive
Operating system: Microsoft Windows 10, Microsoft Windows 8 32-bit, Microsoft Windows 7 32-bit and Microsoft Windows Vista 32-bit
Resolution: 1024×768
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