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6 Axis Load Cell, 20N/50N/200N, RS485

$2,571.42
The 6 axis load cell sell at a low price, offer Fx/Fy/Fz ranges of 20N/20N/20N, 50N/50N/50N, and 200N/200N/200N, respectively, with corresponding Tx/Ty/Tz ranges of 0.5Nm, 2Nm, and 5Nm. Multi axis load cell has RS485 output. They provide exceptional accuracy, rated at ±0.5N, ±1N, and ±0.01N, and Z-axis ranges of 2-10kg, 0-5kg, and 10-50kg. RS485 output signals, load cells are constructed from durable aluminum alloy/17-4PH. Protected to IP65 standards and offer a robust overload capacity of 300%FS.
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SKU: ATO-LC-T45
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Delivery date: 6-12 days

The 6 axis load cell provides Fx/Fy/Fz ranges of 20N, 50N, and 200N, with Tx/Ty/Tz ranges of 0.5Nm, 2Nm, and 5Nm. With RS485 output and high accuracy (±0.5N to ±0.01N), it supports Z-axis ranges of 2-10kg, 0-5kg, and 10-50kg. Made from aluminum alloy/17-4PH, multi axis load cell is IP65 rated and supports 300%FS overload capacity.

After purchasing 6 Axis Load Cell, you can choose ATO matching signal transmitter RD304A, RD304B, which is responsible for amplifying, filtering, digital conversion, software decoupling, secondary correction and other processing of the sensor output mv signal. The data can be uploaded to the upper computer or PLC through RS485 serial port or Ethernet port.

Specification

Model ATO-y45-20NX6 ATO-y45-50NX6 ATO-y45-200NX6
Fx/Fy/Fz Range 20N/20N/20N 50N/50N/50N 200N/200N/200N
Tx/Ty/Tz Range 0.5Nm 2Nm 5Nm
Z-axis Range 2-10kg 0-5kg 10-50kg
Output Signal DR304A (RS485 Modbus protocol), DR304B (0~10V, 6 channels)
Material Aluminum Alloy/17-4PH
Dimensions Φ45mm × 20mm
Protection Level IP65
Overload Capacity 300%FS
Stiffness (Calculation)
Fx 1.6×10⁷ N/m
Fy 1.6×10⁷ N/m
Fz 1.3×10⁷ N/m
Tx 6059.99 Nm/rad
Ty 6059.99 Nm/rad
Tz 10056.99 Nm/rad
Weight ~140g
Electrical Characteristics
Input/Output 350Ω
Communication Interface mV Matrix
Operating Voltage 5–15V DC
Cable Length 5m
Accuracy Levels 
Resolution Better than 0.1%FS
Non-linearity Better than 0.2%FS
Precision Better than 0.3%FS
Repeatability Better than 0.2%FS
Hysteresis Accuracy Better than 1.5%FS
Full-scale Accuracy Better than 0.3%FS
Temperature Characteristics 
Temperature Zero Drift 0.2%FS/10°C
Zero Humidity Drift 0.1%FS/30 min
Storage Temperature -25°C to 70°C
Operating Environment 0°C to 40°C, 20–80% RH
Expansion Ports 
Interfaces 0–10V, EtherCAT, Modbus-TCP, Ethernet, Canopen, Modbus-RTU


Feature

  • Material: The 6 axis load cell is constructed from high-strength aluminum alloy or 17-4PH stainless steel, ensuring exceptional durability and high overload capacity.
  • Precision: Designed with advanced international water-resistant strain chips, it achieves high resolution, high frequency response, and outstanding test accuracy.
  • Structure: Features a 100% proprietary design, ensuring reliable precision testing and excellent stability.
  • Connectivity: The multi axis load cell supports multiple communication protocols, compatible with most domestic and international mainstream robotic interfaces.
  • Software Support: Includes calibration software or testing tools for enhanced functionality.
  • Flexibility: Equipped with durable and flexible cables resistant to bending.
  • Applications: Perfect for complex medical machinery, biomechanics experiments, aircraft lift testing, robotic force control, grinding, and scientific research such as traction simulations.

Dimension (unit: mm)

6 axis load cell size

DR304 Signal Transmitter Detail and Size 

DR304 signal transmitter detail and size

Application

6 axis load cell application 

Tips: What applications can benefit from the 6 axis load cell's capabilities?

The 6 axis load cell is highly versatile and finds applications in a wide range of industries and research fields. In robotics, it is used to measure forces on robotic arms, ensuring precise control, enhanced safety, and efficient performance in automation systems. In the aerospace sector, it plays a critical role in testing the structural integrity of components under multi-directional loads, which is essential for ensuring reliability and safety in high-stress environments. Biomechanics researchers use this load cell to analyze human joint or muscle forces during movement studies, providing valuable insights into physical performance and injury prevention. It is also widely used in manufacturing to monitor and optimize machining or assembly processes, ensuring product quality and reducing waste. In the medical field, the load cell aids in the design and testing of prosthetics and surgical tools, enabling better performance and reliability in real-world use. Additionally, it supports advanced scientific experiments by providing precise force and torque measurements, making it an invaluable tool for cutting-edge research and development.

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