CPU Architecture | High-precision 3-axis machining | Industry Standard: 32-bit processor (e.g., 80MHz) | Cost-effective for basic applications | Limited for complex 5-axis tasks (e.g., aerospace parts) |
| | Our Base: 32-bit ARM Cortex-M7 (120MHz ▲) + DSP/FPGA | ▲ 50% faster clock speed vs. industry baseline (handles 5-axis retrofits) | Lacks 64-bit support for advanced simulations |
| | Our Advanced: 64-bit ARM Cortex-R52 (200MHz ▲▲) + dual FPGA | ▲▲ 2x industry speed, supports real-time AI-driven adjustments | Higher cost, requires specialized training |
Memory Capacity | Large-scale production runs | Industry Standard: 64MB (ISO 10110 compliant) | Adequate for standard G-code storage | Struggles with multi-axis high-resolution paths |
| | Our Base: 128MB (IEC 61131-3 certified ▲) | ▲ 2x industry memory, supports complex NC programs | Limited for simultaneous multi-tool coordination |
| | Our Advanced: 512MB (ASME B5.54 extended ▲▲) | ▲▲ 8x industry capacity, enables adaptive path optimization | Requires robust cooling systems |
I/O Expandability | Automated assembly lines | Industry Standard: 8 digital I/O ports (EN 60204) | Minimal setup for simple workflows | Inflexible for sensor-heavy environments |
| | Our Base: 16 I/O ports (with CANopen ▲) | ▲ 100% more connectivity, integrates robotics | No Ethernet/IP support for IoT ecosystems |
| | Our Advanced: 32 I/O + dual Ethernet (EtherCAT ▲▲) | ▲▲ Full IoT compatibility, real-time PLC communication | Higher integration complexity |
Warranty Coverage | Industrial environments | Industry Standard: 1 year (IP54 rated) | Standard protection for controlled settings | Riskier in harsh environments |
| | Our Base: 2 years (IP65 ▲) | ▲ Extended durability for dusty/oily workshops | No on-site support in remote areas |
| | Our Advanced: 3 years + 24/7 remote diagnostics (IP67 ▲▲) | ▲▲ Military-grade sealing, predictive maintenance | Higher upfront cost |
Axis Control Precision | Medical device manufacturing | Industry Standard: ±0.01mm (ISO 230-2) | Meets basic tolerance needs | Inaccurate for micro-machining |
| | Our Base: ±0.005mm (NIST traceable ▲) | ▲ 50% better precision for dental implants | Limited to 5-axis synchronization |
| | Our Advanced: ±0.002mm (ASME B89.4.21 ▲▲) | ▲▲ Nanometer-level accuracy for semiconductor tools | Requires calibration every 500 hours |
Software Features | Custom toolpath programming | Industry Standard: Basic G-code interpreter (RS-274) | Easy for legacy systems | No simulation tools |
| | Our Base: 3D simulation + DNC (ISO 6983 ▲) | ▲ Visual error detection before machining | Limited post-processor options |
| | Our Advanced: AI-driven collision avoidance + cloud sync (ISO 13399 ▲▲) | ▲▲ Auto-optimizes paths, reduces scrap by 40% | Requires stable internet connection |