CNC9810E EtherCAT Bus CNC System
- Product Description
- Specification Parameters
- Download Materials
-
- Commodity name: CNC9810E EtherCAT Bus CNC System
The CNC9810E EtherCAT‑based CNC system is a high‑performance milling‑machine control solution recently developed by Shenzhen STEP Zhongweixing. It can be configured with stepper or servo drives to meet diverse user requirements.
Product Description
The CNC9810E EtherCAT‑based CNC system is the latest high‑performance milling‑machine control solution developed by Zhongweixing, and it can be configured with stepper or servo drives to meet diverse user requirements.
Features:
1. Dual CPUs operate in synchronized, high‑efficiency mode: one CPU handles system‑level human–machine interface operations and the execution of CNC system functions, while the other is dedicated to motion‑control algorithms and high‑speed, high‑precision look‑ahead preprocessing, ensuring smooth, high‑performance system operation.
2. The products are available in two series: the bus‑based version and the pulse‑based version. The bus‑based version supports the EtherCAT fieldbus and can also be configured for mixed bus–pulse operation (with up to 6 pulse‑controlled axes) or up to 12 bus‑controlled axes. It offers a minimum interpolation cycle of 500 µs, and the pulse frequency can reach 4 MHz.
4. By employing the latest motion-control algorithms, the system can simultaneously process two distinct NC programs, enabling true dual‑channel operation and significantly boosting efficiency.
5. Compatible with legacy products, it can directly replace previously shipped standard legacy system products.
6. Integrates IEC‑PLC functionality, enabling users to design simple motion‑control process programs using basic PLC ladder logic and ST language, thereby meeting customer application requirements.
7. Supports B‑material macro commands, allowing users to customize M‑code functions via macros.
8. Supports the auxiliary channel function, allowing configuration of auxiliary channel operation to run concurrently with the user’s machining program, thereby improving work efficiency.
9. Supports the Modbus RTU protocol and RS‑485 bus communication, features communication macro commands, and enables master–slave networking. It can also read data from external slave devices or acquire position information from servo encoders equipped with an RS‑485 bus driver.
Industry Applications:
1: Machining of hardware components, such as deburring die-cast parts, chamfering, drilling, and tapping.
2: Polishing: Polishing of the phone’s frame, back cover, and other components.
3: Tool Grinder
4: CNC woodworking machine
Micrometer-level interpolation accuracy;
Step and servo drives can be configured to meet diverse user requirements, delivering excellent cost performance.
It supports multiple communication interfaces, including USB, USB flash drives, and RS‑232 COM, effortlessly enabling users to meet diverse data transmission needs and perform software upgrades.
Equipped with a network interface, it supports remote monitoring and DNC file transfer for machining.
An open-platform solution that enables custom-designed, dedicated machine systems tailored to customer requirements.
Comprehensive self-diagnostic capabilities, with real-time display of internal and external status, and immediate alarm activation upon detection of any abnormalities.
Supports external add-on panels and handheld box operation, facilitating tool setting for customers.
Macro variables and macro definitions enable the implementation of various logical relationships. It supports parameterized macro program calls, making programming more convenient for users.
DXF+G-code template functionality, automatically converting DXF files into G-code for machining;
It features automatic centering, tool setters, and multiple other tool‑setting methods.
Teaching Function: Teach‑in plus streamlined instruction programming, employing a tabular teaching approach that is simple and intuitive.
Graphical simulation function: Displays the machining program in graphical form and the tool’s motion trajectory during actual operation, enabling verification of the correctness of the programmed machining sequence.
Multi‑interface selection: Supports multiple language interfaces and features automatic fault alarms. Provides comprehensive machining information, including processing time and part count.
Parameter tabulation: Input and output address numbers can be set arbitrarily; simply enter the corresponding values in the configuration table’s address field.
Built-in graphical CAM programming; common processes are implemented via visual, interactive graphics, making it simple and easy to use.
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File size: 3.5MB
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File size: 10.0MB
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File size: 1.9MB
CNC9810E EtherCAT Bus CNC System
Product Category
CNC9810E EtherCAT Bus CNC System
Product Category
- Product Description
- Specification Parameters
- Download Materials
-
- Commodity name: CNC9810E EtherCAT Bus CNC System
The CNC9810E EtherCAT‑based CNC system is a high‑performance milling‑machine control solution recently developed by Shenzhen STEP Zhongweixing. It can be configured with stepper or servo drives to meet diverse user requirements.
Product Description
The CNC9810E EtherCAT‑based CNC system is the latest high‑performance milling‑machine control solution developed by Zhongweixing, and it can be configured with stepper or servo drives to meet diverse user requirements.
Features:
1. Dual CPUs operate in synchronized, high‑efficiency mode: one CPU handles system‑level human–machine interface operations and the execution of CNC system functions, while the other is dedicated to motion‑control algorithms and high‑speed, high‑precision look‑ahead preprocessing, ensuring smooth, high‑performance system operation.
2. The products are available in two series: the bus‑based version and the pulse‑based version. The bus‑based version supports the EtherCAT fieldbus and can also be configured for mixed bus–pulse operation (with up to 6 pulse‑controlled axes) or up to 12 bus‑controlled axes. It offers a minimum interpolation cycle of 500 µs, and the pulse frequency can reach 4 MHz.
4. By employing the latest motion-control algorithms, the system can simultaneously process two distinct NC programs, enabling true dual‑channel operation and significantly boosting efficiency.
5. Compatible with legacy products, it can directly replace previously shipped standard legacy system products.
6. Integrates IEC‑PLC functionality, enabling users to design simple motion‑control process programs using basic PLC ladder logic and ST language, thereby meeting customer application requirements.
7. Supports B‑material macro commands, allowing users to customize M‑code functions via macros.
8. Supports the auxiliary channel function, allowing configuration of auxiliary channel operation to run concurrently with the user’s machining program, thereby improving work efficiency.
9. Supports the Modbus RTU protocol and RS‑485 bus communication, features communication macro commands, and enables master–slave networking. It can also read data from external slave devices or acquire position information from servo encoders equipped with an RS‑485 bus driver.
Industry Applications:
1: Machining of hardware components, such as deburring die-cast parts, chamfering, drilling, and tapping.
2: Polishing: Polishing of the phone’s frame, back cover, and other components.
3: Tool Grinder
4: CNC woodworking machine
Micrometer-level interpolation accuracy;
Step and servo drives can be configured to meet diverse user requirements, delivering excellent cost performance.
It supports multiple communication interfaces, including USB, USB flash drives, and RS‑232 COM, effortlessly enabling users to meet diverse data transmission needs and perform software upgrades.
Equipped with a network interface, it supports remote monitoring and DNC file transfer for machining.
An open-platform solution that enables custom-designed, dedicated machine systems tailored to customer requirements.
Comprehensive self-diagnostic capabilities, with real-time display of internal and external status, and immediate alarm activation upon detection of any abnormalities.
Supports external add-on panels and handheld box operation, facilitating tool setting for customers.
Macro variables and macro definitions enable the implementation of various logical relationships. It supports parameterized macro program calls, making programming more convenient for users.
DXF+G-code template functionality, automatically converting DXF files into G-code for machining;
It features automatic centering, tool setters, and multiple other tool‑setting methods.
Teaching Function: Teach‑in plus streamlined instruction programming, employing a tabular teaching approach that is simple and intuitive.
Graphical simulation function: Displays the machining program in graphical form and the tool’s motion trajectory during actual operation, enabling verification of the correctness of the programmed machining sequence.
Multi‑interface selection: Supports multiple language interfaces and features automatic fault alarms. Provides comprehensive machining information, including processing time and part count.
Parameter tabulation: Input and output address numbers can be set arbitrarily; simply enter the corresponding values in the configuration table’s address field.
Built-in graphical CAM programming; common processes are implemented via visual, interactive graphics, making it simple and easy to use.
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