仪器分类
1. 网络接口:2 个 RJ45 10/100/1000Mbps 自适应以太网端口,支持 TCP/IP、UDP 及 Modbus TCP 协议。
2. USB 接口:2 个 USB 2.0 接口(用于外设扩展,如传感器连接)+1 个 USB 3.0 接口)。
3. 模拟 / 数字 I/O 接口(专业级卡片通用配置):8 路模拟输入(AI)、4 路模拟输出(AO)、16 路数字输入 / 输出(DI/DO)。
4. 电源供应:直流 12V/2A 输入,典型功耗<15W。
5. 模拟输入(AI):
分辨率:16 位(高精度模式)/12 位(高速模式)。
采样率:单通道最高 200kS/s(千采样点 / 秒),多通道多路复用 500kS/s(适用于动态信号采集)。
输入范围:±5V、±10V(可选择),输入阻抗≥100MΩ,信噪比≥90dB。
6. 模拟输出(AO):
分辨率:12 位,输出范围 ±10V,精度 ±0.1% 满量程(FS)。
1. Network Interface: 2 RJ45 10/100/1000Mbps adaptive Ethernet ports, supporting TCP/IP, UDP, and Modbus TCP protocols.
2. USB Interface: 2 USB 2.0 interfaces (for peripheral expansion, e.g., sensor connection) + 1 USB 3.0 interface.
3. Analog/Digital I/O Interfaces (Pro-grade Card Standard Configuration): 8-channel analog input (AI), 4-channel analog output (AO), and 16-channel digital input/output (DI/DO).
4. Power Supply: DC 12V/2A input, with a typical power consumption of <15W.
5. Analog Input (AI):
Resolution: 16-bit (high-precision mode) / 12-bit (high-speed mode).
Sampling Rate: Maximum 200kS/s (kilosamples per second) for single channel, 500kS/s for multi-channel multiplexing (suitable for dynamic signal acquisition).
6. Input Range: ±5V, ±10V (selectable); input impedance ≥ 100MΩ; signal-to-noise ratio (SNR) ≥ 90dB.
Analog Output (AO):
Resolution: 12-bit; output range ±10V; accuracy ±0.1% full scale (FS).
1. 多模式数据采集:支持连续采集、触发采集(边沿 / 电平触发)及有限长度采集,可适配静态(如温度)与动态(如振动)信号测量场景。
2. 双接口冗余:以太网用于远程集中监控(如车间生产线),USB 3.0 用于本地高速采集(如实验室瞬态信号捕捉),部署方式灵活。
3. 实时数据处理:板载现场可编程门阵列(FPGA),可实现基础信号滤波(低通 / 高通)与量程缩放,减轻上位机工作负荷。
4. 数据存储与追溯:支持实时保存至本地磁盘(通过 USB)或网络服务器(通过以太网),具备时间戳同步功能(基于 NTP 协议),可实现实验 / 生产过程追溯。
5. 软件兼容性:提供适用于 Windows/Linux 系统的软件开发工具包(SDK),兼容 LabVIEW、MATLAB 及 Python,支持自定义应用程序开发。
1. Multi-mode Data Acquisition: Supports continuous acquisition, triggered acquisition (edge/level trigger), and finite-length acquisition. It is adaptable to measurement scenarios for static signals (e.g., temperature) and dynamic signals (e.g., vibration).
2. Dual-Interface Redundancy: Ethernet is used for remote centralized monitoring (e.g., workshop production lines), and USB 3.0 is used for local high-speed acquisition (e.g., laboratory transient signal capture), enabling flexible deployment methods.
3. Real-time Data Processing: Equipped with an on-board Field-Programmable Gate Array (FPGA), which can implement basic signal filtering (low-pass/high-pass) and range scaling, reducing the workload of the upper computer.
4. Data Storage & Tracing: Supports real-time saving to local disks (via USB) or network servers (via Ethernet), and is equipped with a timestamp synchronization function (based on the NTP protocol), enabling the tracing of experiment/production processes.
5. Software Compatibility: Provides a Software Development Kit (SDK) suitable for Windows/Linux systems, compatible with LabVIEW, MATLAB, and Python, and supports the development of custom applications.
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