起订量:
二手 R&S FSWP 相位噪声分析仪/VCO测试仪
中级会员第3年
经销商北京利德信测科技有限公司是一家集电子测试仪器租赁、销售、测试方案提供、售前售后服务、仪器设备维修,计量为一体的专业性公司。为无线通信企业提供快速、便捷、经济的测试仪器租赁和销售维修等服务。
R&S FSWP 相位噪声分析仪/VCO测试仪主要特点:
频率范围介于 1 MHz 至 8/26.5/50 GHz,使用外部谐波混频器时ZUIGAO可达 500 GHz
得益于互相关技术以及噪声极低的内部参考源,为相位噪声测量提供了高灵敏度
在 1 GHz 载波频率及 10 kHz 偏移下,典型值为 –172 dBc (1 Hz)
在 10 GHz 载波频率及 10 kHz 偏移下,典型值为 –158 dBc (1 Hz)
同时测量幅度噪声及相位噪声
一键测量脉冲源的相位噪声
用于测量加性相位噪声(包括脉冲信号噪声)的内部源
信号与频谱分析仪及相位噪声分析仪集于一体
GAODUAN信号与频谱分析仪,10 Hz 至 8/26.5/50 GHz
显示平均噪声电平 (DANL) 低至 –156 dBm (1 Hz)(无噪声消除),三阶截止点 (TOI) 高达 25 dBm(典型值),确保具备宽动态范围
320 MHz 信号分析带宽
总体测量不确定度:< 0.2 dB(最高 3.6 GHz),< 0.3 dB(最高 8 GHz)
触摸屏操作
12.1" 大显示屏,可同时查看多个测量窗口
可以并行运行和显示多个测量应用
测量速度快
低噪声内部直流源,便于进行 VCO 特性测量
自动进行 VCO 特性测量
分析高达 8 GHz 的宽跳频(瞬态)
测量阿伦方差
R&S FSWP 相位噪声分析仪/VCO测试仪特点和优势:
测量速度快
非常适用于生产应用
加快开发
高度灵敏地测量相位及幅度噪声
内部源的相位噪声极低
互相关技术以提高相位噪声灵敏度
幅度噪声测量的准确度远高于二极管检波器
展示通过互相关技术提高灵敏度
频率偏移达到最大输入频率
测量阿伦方差
一键测量脉冲源的相位噪声
测试装置简单
具有高灵敏度(即使灵敏度有所降低)
自动测量脉冲参数
用于测量加性相位噪声(包括脉冲信号噪声)的内部源
测量简单快捷
通过互相关提高灵敏度
脉冲信号的残余相位噪声
外部源的其他输入
测量脉冲信号的相位与幅度稳定性
信号与频谱分析仪及相位噪声分析仪集于一体,最高可达 50 GHz
测试装置简单,优化成本
一项值得的投资
GAODUAN信号与频谱分析仪
低噪声内部直流源,便于进行 VCO 特性测量
Complete VCO characterization
测量更高谐波
相对于调谐电压的相位噪声
测量瞬态或跳频(瞬态分析)
频率及相位分析带宽高达 8 GHz
触发相位或频率偏差
分析线性调频连续波 (FMCW) 信号的线性度
自动测量稳定时间
规则:
Base unit | ||
Frequency | ||
Frequency range, RF input | ||
Phase noise, amplitude noise measurement | R&S®FSWP8 | 1 MHz to 8 GHz |
R&S®FSWP26 | 1 MHz to 26.5 GHz | |
R&S®FSWP50 | 1 MHz to 50 GHz | |
Phase noise measurement | ||
Measurement results | SSB phase noise, spurious signals, integrated RMS phase deviation, residual FM, time jitter | |
Offset frequency range | input signal ≤ 3,33 GHz | 10 mHz to 30 % of carrier frequency |
input signal > 3,33 GHz | 10 mHz to 1 GHz |
Phase noise sensitivity with R&S®FSWP-B60 option (no. of correlations = 1, start offset = 1 Hz)1) | |||||||||
RF input frequency | Offset from carrier | ||||||||
1 Hz | 10 Hz | 100 Hz | 1 kHz | 10 kHz | 100 kHz | 1 MHz | 10 MHz | ≥ 30 MHz | |
10 MHz | –96 | –128 | –140 | –158 | –170 | –170 | –170 | – | – |
100 GHz | –76 | –108 | –136 | –163 | –170 | –173 | –175 | –175 | –175 |
1 GHz | –56 | –88 | –116 | –143 | –166 | –173 | –173 | –173 | –173 |
3 GHz | –46 | –78 | –106 | –133 | –156 | –158 | –163 | –170 | –170 |
7 GHz | –39 | –71 | –99 | –130 | –152 | –153 | –157 | –166 | –166 |
10 GHz | –36 | –68 | –96 | –128 | –147 | –150 | –155 | –173 | –173 |
16 GHz | –32 | –64 | –92 | –124 | –143 | –146 | –151 | –170 | –170 |
26 GHz | –28 | –60 | –88 | –120 | –139 | –142 | –147 | –166 | –166 |
50 GHz | –22 | –54 | –82 | –114 | –133 | –136 | –141 | –160 | –160 |
Phase noise sensitivity with R&S®FSWP-B61 option (no. of correlations = 1, start offset = 1 Hz)1) | |||||||||
RF input frequency | Offset from carrier | ||||||||
1 Hz | 10 Hz | 100 Hz | 1 kHz | 10 kHz | 100 kHz | 1 MHz | 10 MHz | ≥ 30 MHz | |
10 MHz | –108 | –130 | –142 | –160 | –170 | –170 | –170 | – | – |
100 MHz | –92 | –115 | –140 | –166 | –170 | –173 | –175 | –175 | –175 |
1 GHz | –72 | –95 | –120 | –150 | –166 | –173 | –173 | –173 | –173 |
3 GHz | –62 | –85 | –110 | –140 | –156 | –158 | –163 | –170 | –170 |
7 GHz | –55 | –78 | –103 | –133 | –152 | –153 | –157 | –166 | –166 |
10 GHz | –52 | –75 | –100 | –133 | –152 | –153 | –157 | –173 | –175 |
16 GHz | –48 | –71 | –96 | –129 | –148 | –149 | –153 | –170 | –171 |
26 GHz | –44 | –67 | –92 | –125 | –144 | –145 | –149 | –166 | –167 |
50 GHz | –38 | –61 | –86 | –119 | –138 | –139 | –143 | –160 | –161 |
Amplitude noise measurement | |||||||||
Offset frequency range | input signal ≤ 100 MHz | 10 mHz to 30 % of carrier frequency | |||||||
input signal > 100 MHz | 10 mHz to 30 MHz | ||||||||
AM noise sensitivity1) | |||||||||
RF input frequency | Offset from carrier | ||||||||
1 Hz | 10 Hz | 100 Hz | 1 kHz | 10 kHz | 100 kHz | 1 MHz | 10 MHz | 30 MHz | |
1 GHz | –105 | –120 | –135 | –150 | –158 | –165 | –165 | –165 | –165 |
Residual phase noise measurement (R&S®FSWP-B64 option), internal source | |||||||||
Signal source | |||||||||
Frequency range | R&S®FSWP8 | 10 MHz to 8 GHz | |||||||
R&S®FSWP26 | 10 MHz to 18 GHz | ||||||||
R&S®FSWP50 | 10 MHz to 18 GHz | ||||||||
Additive phase noise measurement | |||||||||
Offset frequency range | input signal ≤ 100 MHz | 10 mHz to 30 % of carrier frequency | |||||||
input signal > 100 MHz | 10 MHz to 30 MHz | ||||||||
AM noise sensitivity1) | |||||||||
RF input frequency | Offset from carrier | ||||||||
1 Hz | 10 Hz | 100 Hz | 1 kHz | 10 kHz | 100 kHz | 1 MHz | 3 MHz | ||
1 GHz | –115 | –123 | –137 | –147 | –160 | –165 | –165 | –161 | |
10 GHz | –85 | –104 | –120 | –138 | –148 | –154 | –164 | –160 |
1) 数值单位:dBc (1 Hz)。
R&S®FSWP-B1 signal and spectrum analyzer option | ||
Frequency range | R&S®FSWP8 | 10 Hz to 8 GHz |
R&S®FSWP26 | 10 Hz to 26.5 GHz | |
R&S®FSWP50 | 10 Hz to 50 GHz | |
Aging per year | ±1 × 10 –7/year | |
with R&S®FSWP-B4 option | ±3 × 10 –8/year | |
Resolution bandwidths | standard filter | 1 Hz to 10 MHz with R&S®FSWP-B8 option: 20 MHz, 50 MHz, 80 MHz additionally |
RRC filter | 18 kHz (NADC), 24.3 kHz (TETRA), 3.84 MHz (3GPP) | |
channel filter | 100 Hz to 5 MHz | |
video filter | 1 Hz to 10 MHz | |
I/Q demodulation bandwidths | 10 MHz | |
with R&S®FSWP-B80 option | 80 MHz | |
with R&S®FSWP-B320 option | 320 MHz | |
Displayed average noise level (DANL) | 2 GHz | typ. –150 dBm (1 Hz) |
8 GHz | typ. –150 dBm (1 Hz) | |
20 GHz | typ. –145 dBm (1 Hz) | |
40 GHz | typ. –137 dBm (1 Hz) | |
DANL with preamplifier | 8 GHz | typ. –162 dBm (1 Hz) |
20 GHz | typ. –160 dBm (1 Hz) | |
40 GHz | typ. –156 dBm (1 Hz) | |
Phase noise | 1 GHz carrier frequency, 10 kHz offset | typ. –138 dBm (1 Hz) |
Total measurement uncertainty | < 8 GHz | < 0.4 dB |