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测试实验室
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品牌系列
- TEKTRONIX
- POWERTEK
- Rohde & Schwarz
- HIOKI
- FLUKE
- PROSUND
- GWINSTEK
- Elektro-Automatik
-
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- 示波器
- 分析仪
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- 材料和半导体
- 数据采集和万用表
- 电源和负载
- 功率,校准及测量
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- 声学成像和热成像
- 放大器
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主要特点
卓越的动态范围和精度
高分辨率模式
最高的测量速度
自动脉冲分析
统计分析
特性
高分辨率模式
Time resolution of up to 100 ps
Some applications require the display of strongly magnified signal sections such as the rising edge of a pulse. The trace mode has a resolution of 12.5 ns and requires high sample density to improve the graphical display. Equivalent time sampling with repetitive signals enables a time resolution of up to 100 ps.
自动脉冲分析
Ideal with R&S®NRX
Automatic pulse analysis helps measure important pulse parameters, eliminating the need for complex measurements with markers. Changes in the pulse shape are immediately taken into account in the measurement results.
- Time parameters: rise/fall time, start/stop time, pulse width, duty cycle, pulse period, pulse-off time
- Level parameters: pulse top, pulse base, peak, average, minimum, overshoot (positive and negative)
- 雷达应用的理想选择
分析脉冲和调制信号
The R&S®NRPxxP pulse power sensors are perfect for analyzing pulsed and/or modulated signals. The high sampling rate of 80 Msample/s allows the power envelope of radar pulses to be reconstructed with a time resolution of 12.5 ns. The automatic pulse analysis function can measure 15 important pulse parameters automatically to simplify and speed up testing.
统计分析
幅度分布的统计分析
The R&S®NRPxxP pulse power sensors permit statistical analysis of the amplitude distribution of noise-like signals to determine key parameters such as peak envelope power, average power and peak-to-average power ratio. A measurement of the CCDF, CDF or PDF using one million samples can be performed by the R&S®NRPxxP pulse power sensors in less than 25 ms at full video bandwidth.
Trigger sender mode
with base unit or R&S®NRP-Z5;
Combined with the R&S®NRX base unit or the R&S®NRP-Z5 sensor hub, an R&S®NRPxxP pulse power sensor can be used as a trigger source. In trigger sender mode, a trigger signal is derived from the measured signal inside the power sensor and forwarded to the base unit or sensor hub for further use. All other connected sensors can be externally triggered using this trigger signal.
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