2-Axis CNC Lathe System
2. Polar coordinate interpolation: allows profile control of linear and rotary axes through Cartesian command inputs, ideal for applications like cam machining, outer diameter milling, and irregular shape milling.
3. Polygonal cutting (flying cutter): utilizing multi-spindle configurations, enables fast polygon turning, significantly enhancing processing efficiency.

Hardware Overview
- Equipped with a multi-core CPU architecture and high-performance computing platform for a smooth operational experience.
- Built-in 2GB large-capacity storage supports multitasking and ensures seamless program execution.
- High interference resistance design, meeting 4.5KV EFT standards and CE certification, suitable for industrial environments.
- Supports stable RS485 communication for reliable expansion of peripheral devices.
- High-speed USB 3.0 interface for quick data backup and program import.
- Long power-off retention technology safeguards real-time data recording for increased reliability.
- Enables multiple communication methods, including Ethernet, serial, Wi-Fi, and Bluetooth, for remote monitoring, program transfer, and centralized management with upper computers or other CNC devices.
- I/O expansion supports up to 128 control points for handling complex equipment.
- Program look-ahead capability reaches 8000 blocks per second, ensuring outstanding processing power.
- Supports control of up to 20 axes, delivering exceptional multi-axis control capabilities.
Software Overview
- Based on Linux RT operating system, offering enhanced real-time performance and faster responsiveness.
- Integrated open UI and PLC platform allows for custom interface and functionality, enabling unprecedented personalized operation.
- Flexible access control management allows users to assign permissions as needed, enhancing system adaptability.
- Supports graphical simulation, conversational programming, and custom M codes for easy user operation.
- Fast PLC scan response improves processing efficiency.
- Hot and cold machine compensation function enhances the stability of processing quality.
- Supports RTCP and 3D tool length compensation, automatically calculating tool tip position to ensure machining precision.
- Multi-functional machining with turning-milling capabilities: five-axis milling in milling mode and high-speed rotation of the main spindle in lathe mode, enabling high-efficiency processing.
- Optional SSI absolute value communication provides high stability and anti-interference capability, making it suitable for complex industrial environments.
- Supports speed control full closed-loop option, including ab phase feedback and SSI feedback, ensuring high-precision control.
Product parameters
|
Product Series |
300T |
|
|
Function Selection |
300TA |
|
|
Product Model |
300TA1-H |
300TA2-H(V) 300TA3-H(V) 300TA4-V |
|
► System Specifications |
||
|
Installation Method |
Horizontal |
Horizontal / Vertical |
|
Display Screen Size |
7-inch |
8-inch/10.4-inch/15-inch |
|
Maximum Number Of Axes (Including Spindles) |
Standard 5 (Maximum 5) |
Standard 6 (Maximum 6) |
| Maximum Number of Channels | Standard 1 (Maximum 1) | Standard 1 (Maximum 1) |
|
Maximum Number Of Linked Axes Per Single Channel |
3(XZC) |
3(XZC) |
|
Maximum Number Of Spindles Per Single Channel |
Standard 2 (Maximum 2) |
Standard 2 (Maximum 2) |
| Application Scenarios (Axis Distribution) | Single Channel:(XZAC + Turret Axis) | Single Channel:(XZAC + Turret Axis + Positioning Axis) |
|
DA/AD |
Optional |
Optional |
|
Operating System |
LinuxRT |
LinuxRT |
|
Memory |
2GB |
2GB |
|
Program Capacity |
8GB |
8GB |
|
Number Of Pre-read Units |
1000 Block/s |
1000 Block/s |
|
Maximum Number Of Tool Compensation Groups |
40 groups |
40 groups |
|
Transmission |
USB/RS232/RS485/LAN/WIFI |
USB/RS232/RS485/LAN/WIFI |
|
Maximum Expandable I/O |
I32/O32 |
I32/O32 |
|
(IoT)Industrial Internet Of Things |
Optional |
Optional |
|
Bus Servo |
MECHATROLINK-lll(Optional), EtherCAT |
MECHATROLINK-lll(Optional),EtherCAT |
|
Bus Spindle |
Supported |
Supported |
|
Communication Function |
ModbusTcp,RS232,RS485 |
ModbusTcp,RS232,RS485 |
|
Standard I/O |
Bus axis card (including 2 pulse outputs): I24/O16 Bus IO (excluding pulse outputs): I16/O16 |
|
|
► Program function |
||
|
Programming instructions (G-codes) |
Comply with international standards. |
|
|
Macro programming standards |
Supported(Macro B,Macro C) |
|
|
Background programming |
Supported |
Supported |
|
Conversational intelligence |
Supported |
Supported |
|
Program transfer via USB drive |
Supported |
Supported |
|
Automatic program error checking |
Supported |
Supported |
|
Program lock function |
Restricted Program Editing (Optional) | Restricted Program Editing (Optional) |
|
► Compensation function |
||
|
Taper compensation |
Supported |
Supported |
|
Backlash compensation |
Supported |
Supported |
|
Corner radius compensation |
Supported |
Supported |
|
Bidirectional screw error compensation |
Supported |
Supported |
|
Feedforward compensation |
Supported |
Supported |
|
Cold and Hot Machine Temperature Compensation |
Not Supported |
Not Supported |
|
► High-Speed High-Precision |
||
| Spindle (C) Axis Dynamic Positioning | Non-Stop Mode Switching, Direct Positioning Execution (Requires Servo Spindle) | |
| Rapid Retraction for Turning/Tapping | Supported | Supported |
|
Non-Stop Mode between Tool Sections |
Supported |
Supported |
|
Closed-Loop Control Functionality |
Not Supported |
Supported |
|
► Auxiliary functions |
||
|
Custom startup screen |
Not Supported |
Not Supported |
|
Custom M-code |
Not Supported |
Not Supported |
|
Custom G-code |
Not Supported |
Not Supported |
|
Mixing bus axes and generic axes |
Not Supported |
Not Supported |
|
IO redefinition function |
Not Supported |
Not Supported |
|
Tilted axis machining |
Not Supported |
Not Supported |
|
Tilted plane machining |
Not Supported |
Not Supported |
|
DNC Machining |
Not Supported |
Not Supported |
|
Proportional scaling |
Not Supported |
Not Supported |
|
Acceleration/Deceleration Type |
Linear (Constant A), S-shaped (Constant JERK) |
|
|
Tool Life Management |
Time limit/Count limit management |
|
|
Protection Functions |
Safety door, hard limits, soft limits, clamping detection, turret tool change detection |
|
|
Handwheel Prediction |
Program prediction/Program rollback function |
|
|
Handwheel Interrupt |
Supported |
Supported |
|
Restart Function |
Automatic Program Breakpoint Detection and Restart, Custom Restart | |
|
Multi-function Handwheel |
Supported |
Supported |
|
Graphical Simulation |
Program Execution Pre-View, Dynamic Graphic Tracing During Execution | |
|
Authority Management |
Parameter permission management |
|
|
Calendar Lock |
Supported |
Supported |
|
Axis Load Monitoring |
Supported |
Supported |
|
Oscilloscope Monitoring |
Real-time monitoring system commands and servo feedback waveforms |
|
|
Following Error Detection |
Supported |
Supported |
|
Spindle Speed Reach Detection |
Supported |
Supported |
|
Data Backu |
Program backup, parameter backup, tool compensation backup |
|
|
Rapid Retraction of Tool for Tapping |
Supported |
Supported |
|
► Tool Turret |
||
|
Tool Turret |
Electric turret, hydraulic turret, servo turret, axis-controlled turret |
|
|
► Programmable Tailstock (Servo Tailstock) |
||
|
Programmable Tailstock |
Not Supported |
Not Supported |
|
► Cutting Functions |
||
|
Parabolic Interpolation |
Supported |
Supported |
|
Elliptical Interpolation |
Supported |
Supported |
|
Cylindrical Interpolation |
Supported |
Supported |
|
3D Circular Arc Interpolation |
Not Supported |
Not Supported |
|
Polygon Interpolation (Flying Knife) |
Supported |
Supported |
|
Polar Coordinate Interpolation |
Supported |
Supported |
|
Tapping |
G84/G88 |
G84/G88 |
|
Thread Cutting |
Thread Cycle Turning, Multi-Start Threads, Arc Threads, Helical Threads, Variable Pitch Threads, and Other Thread Turning | |
|
Chip Breaking Turning |
Second generation (linear, arc, thread chip breaking) |
|
|
► Five-Axis Linked RTCP |
||
|
RTCP |
Not Supported |
Not Supported |
|
► Visual Inspection |
||
|
Visual Inspection |
Optional |
Optional |
|
► Spindle SSV Control |
||
|
Spindle SSV |
Not Supported |
Not Supported |
|
► Common Axis |
||
|
Common Spindle |
Not Supported |
Not Supported |
|
► Synchronous Axis Control |
||
|
Synchronous Thread Turning on the Same Spindle |
Not Supported |
Not Supported |
|
Dual Channel Spindle Synchronization |
Not Supported |
Not Supported |
|
Axis Coupling / Exchange / Mixing |
Not Supported |
Not Supported |
|
► Robot Arm |
||
|
Independent Channel Control for the Robot Arm |
Not Supported |
Not Supported |
Product Features
- Offers exceptional cost-effectiveness.
- The equipment undergoes rigorous testing, ensuring outstanding stability for reliable operation across diverse applications.
- Equipped with 2GB of high-performance RAM and 8GB of extensive storage, providing an exceptionally smooth user experience.
- The system supports pulse control, analog input, and bus communication control, meeting a wide range of control requirements.
Special Features
Chip-breaking Function
Feature Overview
Yida's "Full Synchronization" chip-breaking technology provides an ideal solution for chip-breaking requirements in lathe turning with a cost-effective approach.
Chip-breaking Consistency
Achieves consistent chip-breaking performance across different rotational speeds, ensuring process stability and enhancing machining accuracy.
Reduced Human Intervention
Significantly minimizes the need for human intervention, potentially achieving hands-free operation. This lowers operational complexity and improves machining efficiency.


Interpolation Function
Polar Coordinate Interpolation
By using Cartesian coordinate commands, this function allows interpolation profile control between linear and rotary axes. Applications include cam processing, external diameter milling, and milling of irregularly shaped workpieces.
Cylindrical Interpolation
The rotation axis movement, specified by angular commands, is internally converted to a linear axis distance on the external surface, facilitating straight or circular interpolation with other axes. This simplifies cylindrical surface machining programming significantly.


Application Cases
- Mainly used for complex surface machining, high-precision molds, and precision components, suitable for industries such as automotive, aerospace, electronics, medical devices, and precision instruments.
- In high-efficiency processing scenarios, a machine tool can perform double or multiple workstations machining.
- For batch processing of products that save labor, a lathe combined with a truss for automatic feeding is used.
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