ni_pxi-5651

物理接口

-射频输入:SMA接头(50Ω阻抗匹配);

-同步信号:支持PXI Trig Lines及外部参考时钟(10 MHz输入/输出)。

技术特点

架构优化

-直接变频架构:省去超外差级联,降低系统相位失真;

-FPGA协处理:内置Xilinx Kintex-7 FPGA实现信号预处理(如数字下变频)。

软件生态

-驱动兼容:NI-IMAQdx及LabVIEW射频工具包;

-协议支持:LTE、Wi-Fi 6物理层解调(需配套算法库)。

描述

产品定位与功能

NI PXI-5651推测为PXI平台高精度射频信号分析模块,专注于矢量信号接收与频谱分析,适用于5G通信测试、雷达信号解调及卫星导航设备验证等场景。其核心功能包括:

宽频段信号捕获:覆盖9 kHz–3.6 GHz(可扩展至6.7 GHz);

高动态范围:支持-160 dBm/Hz灵敏度(典型噪声系数≤12 dB);

多调制格式解码:包含QPSK、QAM、GMSK及定制化数字调制方案。

核心参数与性能

射频接收链路

-频率范围:9 kHz–3.6 GHz(基础配置);

-分辨率带宽(RBW):1 Hz–1 MHz(可编程调节);

-最大输入电平:+30 dBm(衰减器自动切换保护)。

信号处理能力

-采样率:125 MS/s(中频数字化架构);

-FFT深度:支持4096点快速傅里叶变换(实时频谱显示);

-相位噪声:<−100 dBc/Hz(10 kHz偏移载波)。

物理接口

-射频输入:SMA接头(50Ω阻抗匹配);

-同步信号:支持PXI Trig Lines及外部参考时钟(10 MHz输入/输出)。

技术特点

架构优化

-直接变频架构:省去超外差级联,降低系统相位失真;

-FPGA协处理:内置Xilinx Kintex-7 FPGA实现信号预处理(如数字下变频)。

软件生态

-驱动兼容:NI-IMAQdx及LabVIEW射频工具包;

-协议支持:LTE、Wi-Fi 6物理层解调(需配套算法库)。

环境适应性

-抖动容限:±100 ppm(时钟同步场景需外接OCXO参考源);

-散热设计:被动散热(依赖机箱风扇)。

典型应用场景

通信系统验证

-5G NR信号EVM测量(误差向量幅度<0.5%);

-WLAN发射机频谱掩模测试(邻道泄漏比ACLR分析)。

电子战仿真

-多频段雷达脉冲参数提取(脉宽、PRI测量);

-模糊波形信号特征识别(时频联合分析)。

Product Positioning and Functions

NI PXI-5651 is speculated to be a high-precision RF signal analysis module on the PXI platform,focusing on vector signal reception and spectrum analysis,and is suitable for 5G communication testing,radar signal demodulation and satellite navigation equipment verification and other scenarios.Its core functions include:

Wideband signal capture:Covering 9 kHz–3.6 GHz(scalable to 6.7 GHz);

High dynamic range:Supports-160 dBm/Hz sensitivity(typical noise figure≤12 dB);

Multi-modulation format decoding:including QPSK,QAM,GMSK and customized digital modulation solutions.

Core parameters and performance

RF Receive Link

-Frequency range:9 kHz–3.6 GHz(basic configuration);

-Resolution bandwidth(RBW):1 Hz–1 MHz(programmable);

-Maximum input level:+30 dBm(attenuator automatic switching protection).

Signal processing capability

-Sampling rate:125 MS/s(intermediate frequency digital architecture);

-FFT depth:supports 4096-point fast Fourier transform(real-time spectrum display);

-Phase noise:<−100 dBc/Hz(10 kHz offset carrier).

Physical interface

-RF input:SMA connector(50Ωimpedance matching);

-Synchronous signal:Supports PXI Trig Lines and external reference clock(10 MHz input/output).

Technical Features

Architecture optimization

-Direct frequency conversion architecture:eliminate superheterodyne cascade and reduce system phase distortion;

-FPGA coprocessing:Built-in Xilinx Kintex-7 FPGA realizes signal preprocessing(such as digital downconversion).

Software Ecology

-Driver compatibility:NI-IMAQdx and LabVIEW radio frequency toolkit;

-Protocol support:LTE,Wi-Fi 6 physical layer demodulation(requires supporting algorithm library).

Environmental adaptability

-Jitter tolerance:±100 ppm(clock synchronization scenarios require external OCXO reference source);

-Heat dissipation design:passive heat dissipation(relying on the chassis fan).

Typical application scenarios

Communication system verification

-5G NR signal EVM measurement(Error vector amplitude<0.5%);

-WLAN transmitter spectrum mask test(adjacent channel leakage ratio ACLR analysis).

Electronic warfare simulation

-Extraction of pulse parameters of multi-band radar(pulse width,PRI measurement);

-Fuzzy waveform signal feature recognition(time and frequency joint analysis).