X01 Collaborative Control Cabinet

Product Overview

Shining bright, outstanding and extraordinary — the X01 Star-1 Collaborative Robot Control Cabinet adopts self-developed control algorithms and dynamics algorithms. It features dynamics-based drag teaching, collision detection, and dynamics feed-forward functions, enabling smooth and compliant drag teaching as well as trajectory recording and playback.

With its compact size and high integration, its portability far exceeds comparable products. The plug-and-play design simplifies installation and deployment — users can connect and run with just a few simple steps, without tedious configuration or debugging, making it convenient and efficient.

Built on the Intel Edge Control Platform (ECI), it simultaneously satisfies industrial-grade requirements for real-time computing and high operational availability, with powerful real-time computing capability. It easily delivers deterministic time-based computing in dense environments, offering exceptional reliability and stability.

Product Advantages

Dynamics Technology

Nabote's load-dynamics technology requires no additional sensors, yet improves the smoothness of drag teaching under load and the sensitivity of collision detection. Combined with force feed-forward, it significantly suppresses vibration in heavy-load robot motion as well as vibration during operation under payload conditions.

Nabote's dynamics identification process is fully automated. After verifying the safety of test trajectories, the system automatically runs preset trajectories to identify dynamics parameters — no manual calculation required.

View Dynamics Identification Video

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Drag Teaching and Trajectory Playback

Supports dynamics-based drag teaching, with trajectory recording and playback.

View Drag Teaching Demo Video

<iframe src="//player.bilibili.com/player.html?aid=842651408&bvid=BV1p54y1r72c&cid=253127216&page=1" scrolling="no" border="0" frameborder="no" framespacing="0" allowfullscreen="true" width="80%" height="300px">

Product Specifications

ItemSpecification
CPUIntel® Celeron J6412, 2.6 GHz
Memory4G
Power Input220V 10A
Power Output48V
Power Consumption1500W / 3000W (optional)
SystemLinux RT
Network Ports1EtherCAT, 3Ethernet
USB2*USB 3.0
COM1RS232, 1RS485, isolated
I/O16isolated DI, 16isolated DO, 2 AI (0-10V), 2 AO (0-10V)
CAN2*CAN
Indicator LEDs1×Power LED, 1×HDD LED, 1×RUN LED, 1×ERR LED
Display1×HDMI, resolution up to 4096×2160 @ 30Hz
MountingDesk-Mount
Dimensions307mm × 297.20mm × 96.20mm
EncoderA/B phase differential input, 5V supply output; 32-bit signed count, 2 channels
PWM2-channel output, single-ended, duty cycle 0–100% adjustable; voltage 5V or 24V, frequency up to 1MHz
Wi-Fi(Optional) 2.4G Wi-Fi module
Teach Pendant(Optional) T30-X Collaborative Robot Dedicated Teach Pendant: 8-inch TFT full touchscreen, Linux + QT
Communication ProtocolsEtherCAT, Profinet, Ethernet/IP, CAN, OPC-UA, FinsTCP, TCP/IP, ModbusTCP, ModbusRTU
Operation ModesTeach mode, Playback mode, Remote mode
Programming MethodsTeach programming, Offline programming, Drag teaching
Coordinate SystemsJoint coordinates, Robot coordinates, Tool coordinates, User coordinates
Kinematic Algorithms5/6/7-axis collaborative robots
ApplicationsArc welding, TIG welding, laser welding, resistance welding (spot welding), stamping, loading/unloading, laser cutting, spraying, dispensing, palletizing, conveyor tracking, etc.
Operating Temperature0°C ~ 50°C (SSD)
Storage Temperature-40 ~ 85°C
Humidity5% ~ 95%, non-condensing
VibrationSSD: 5–500 Hz, 1.5 Grms operation
Mechanical ShockOperation: 10G @ 11ms; Non-operation: 30G @ 11ms
Net Weight6.92 Kg

Product Interface Diagram

Star-1 Interface Diagram
No.Description
1Power Input Interface
2Robot Aviation Connector
3DIO
4Serial, Encoder, PWM, Analog, CAN
5Teach Pendant Interface
6HDMI
7Ethernet Ports
8USB
9Status Indicator LEDs

Dimensions

Dimensions

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X01 Collaborative Control Cabinet-Robot Cabinet-iNexBot