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PXIE-1073 采集仪 交流电源NI PXIe-1073 是 用于 PXI 系统 的 高性能 交流 电源 采集 设备。它是NI PXIe-1000系列模块化
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PXIE-1073 采集仪 交流电源
NI PXIe-1073 是 用于 PXI 系统 的 高性能 交流 电源 采集 设备。它是NI PXIe-1000系列模块化仪器的一部分, 以灵活性、高性能和广泛的功能而闻名。它设计用于测量和分析各种应用中的交流电源参数,例如电压、电流、功率和能量。
NI PXIe-1073 交流 功率 采集 设备 的 主要 特性 包括 :
高精度测量:测量交流电压、电流、功率和能量,准确度高。
测量范围广:支持各种交流电压和电流测量,满足各种应用需求。
同步多通道测量:同时从多个通道采集数据,实现高效的多相功率分析。
高级功率分析功能:提供高级功率分析功能,包括谐波分析、电能质量评估和瞬态捕获。
坚固的结构:PXIe-1073 采用 坚固 的 组件 制造, 可 承受 恶劣 环境, 包括 极端 温度、 振动 和 电磁 干扰。
应用:
NI PXIe-1073 交流 功率 采集 设备 广泛 用于 各种 交流 功率 测量 和 分析 应用, 包括 :
电力系统监测与控制:监测和控制电力系统的性能,如发电机、变压器和配电网。
能效分析:分析能源消耗并确定潜在的节能机会。
电能质量评估:评估交流电源的质量,包括谐波、电压骤降和瞬态。
电器和设备测试:测试电器和电子设备的功耗和效率。
实验室研究:对电力系统、能源效率和电能质量进行研究。
PXIE-1073 采集仪 交流电源
The NI PXIe-1073 is a high-performance AC power acquisition device for PXI systems. It is part of the NI PXIe-1000 series of modular instruments known for flexibility, high performance and a wide range of features. It is designed to measure and analyze AC power supply parameters in a variety of applications, such as voltage, current, power and energy.
The main features of the NI PXIe-1073 AC power acquisition equipment include:
High precision measurement: AC voltage, current, power and energy are measured with high accuracy.
Wide measurement range: Support a variety of AC voltage and current measurement to meet various application requirements.
Synchronous multi-channel measurement: Data is collected from multiple channels simultaneously for efficient multiphase power analysis.
Advanced Power Analysis features: Provides advanced power analysis features, including harmonic analysis, power quality assessment, and transient capture.
Rugged construction: The PXIe-1073 is built with rugged components that can withstand harsh environments, including extreme temperatures, vibration and electromagnetic interference.
Applications:
The NI PXIe-1073 AC Power acquisition equipment is used in a wide variety of AC power measurement and analysis applications, including:
Power System Monitoring and control: Monitoring and controlling the performance of power systems such as generators, transformers and distribution networks.
Energy Efficiency analysis: Analysis of energy consumption and identification of potential energy saving opportunities.
Power Quality Assessment: Evaluate the quality of AC power supplies, including harmonics, voltage dips, and transients.
Electrical and equipment testing: Tests the power consumption and efficiency of electrical and electronic equipment.
Laboratory research: Research on power systems, energy efficiency and power quality.
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