



The FD8121W 8-channel force data acquisition device features independent synchronous acquisition across 8 channels, delivering high-speed response and high-precision performance. It offers a single-channel response time as fast as 2ms and an accuracy of up to ±0.05% F.S. The system supports signal acquisition from mechanical force sensors, load cells, force sensors, and deformation sensors, enabling accurate real-time recording of force and changing measurement data. With dedicated analysis software, users can generate real-time curves and graphical data visualization for intuitive monitoring of engineering conditions. Supporting multiple signal inputs and USB connectivity, the device is compact and portable with a durable aluminum alloy housing and strong anti-interference capability. It is widely used in material analysis, testing, weighing measurement, stress analysis, and deformation measurement applications.
| Force measurement range | 0~±1N, 100N, 1kN, 10kN, 1000kN, 2000kN, 3000kN, 4000kN, 5000kN |
| Deformation measurement range | 0~±1μm, 10μm, 100μm, 1000μm |
| Supported input signals | 0~0.1mV/V, 0.5mV/V, 1mV/V, 2mV/V, 3mV/V |
| Operating voltage | 80–305 VAC |
| Accuracy | ±0.5%FS, ±0.2%FS, ±0.1%FS, up to ±0.05%FS |
| Long-term stability | ≤ ±0.1% FS / year |
| Operating temperature | -10°C to +80°C |
| Storage temperature | -10°C to +80°C |
| Response frequency | 2–5ms |
For stress analysis and deformation testing, a system with independent multi-channel acquisition, high accuracy, fast response, and real-time analysis is recommended. The Yatan FD8121W is designed to meet demanding testing requirements in complex environments.
Yes. The device supports USB 1.0 and USB 2.0 interfaces for fast connection to computers and real-time data transmission.
When selecting a force sensor data acquisition system, consider the number of channels, measurement accuracy, response speed, sensor compatibility, interface options, and software capabilities. The FD8121W combines high precision, multi-channel acquisition, and real-time analysis for various testing applications.
Yes. The FD8121W features an aluminum alloy housing with strong anti-interference capability and long-term stability. It operates in temperatures from -10°C to +80°C for continuous industrial use.
A force data acquisition system is designed for dynamic and static force measurement, while a weighing data acquisition system focuses on weight measurement applications. The FD8121W supports both force sensors and load cells for broader industrial use.
Yes. The FD8121W software supports real-time monitoring, dynamic curve generation, trend visualization, data recording, and analysis to improve testing efficiency.
An 8-channel independent acquisition system allows simultaneous monitoring of multiple measurement points while minimizing signal interference. It improves efficiency and data consistency for multi-point force analysis, material testing, and automation systems.
The FD8121W provides measurement accuracy up to ±0.05% F.S with a fast response time of up to 2 ms, making it suitable for high-precision dynamic force measurement applications.
The FD8121W supports mechanical force sensors, load cells, force sensors, and deformation measurement sensors. It can acquire signal inputs including 0–0.1mV/V, 0.5mV/V, 1mV/V, 2mV/V, and 3mV/V.
The FD8121W 8-channel force data acquisition system is widely used in weighing measurement, stress analysis, deformation measurement, material testing, force monitoring, and industrial automation applications. It supports synchronized multi-channel acquisition and real-time data recording for both laboratory and industrial environments.
📧 Email: sales@yatansensor.com, support@yatansensor.com
💬 WhatsApp:+86 185 1660 2370
Please specify the full ordering code when requesting a quotation.
Quantity - %s – Force Measurement Range–Signal Input – Connector–Cable Length – Power Supply – Linearity Accuracy
Example:
1 pcs - FD8121W- 100N - 2mV/V - M20*1 - 1m - 80VAC- 0.5%
Our engineering team will help you select the right product based on your application requirements.