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Agilent86100C Infiniium DCA-J宽带示波器主机
  • Agilent86100C Infiniium DCA-J宽带示波器主机
  • Agilent86100C Infiniium DCA-J宽带示波器主机
Agilent86100C Infiniium DCA-J宽带示波器主机
【简述】:

主要特性与技术指标

数字通信分析仪模式:

主要特性

  • 用户可进行配置:主机插槽可支持 两个模块(4个光通道或电通道)
  • 先进的一键式简单测量
  • 触发带宽大于13 GHz(选件001)
  • 时钟恢复功能具有可调节的环路带宽(参见83496B)

后向兼容:

  • 54750A高带宽数字示波器系列的所有模块
  • 83480A数字通信分析仪系列的所有模块
  • 86100A/B数字通信分析仪的所有模块

 

描述

 

最全面的多功能分析仪,用于测试高速电光信号

86100C Infiniium DCA-J同时拥有极高的精度、可重复性和非常简单的操作步骤,能够简化对50 MHz到80 GHz信号的测试。数字设计人员可以将主机和模块结合到四种具有业界领先的信号完整性性能的主要仪器中,包括:

scope_mode.gif

eye_mode.gif

jitter_mode.gif

tdr_mode.gif

先进的分析特性:

先进的抖动分析

 

  • 把抖动分解为总体抖动(TJ)、随机抖动(RJ)、确定性抖动(DJ)、周期抖动(PJ)、数据相关抖动(DDJ)、占空比失真(DCD)以及由码间干扰(ISI)引起的抖动。
  • 抖动频谱
  • 隔离和分析子速率抖动(SRJ),即比特率的整数子速率(integer sub-rate)时的周期抖动
  • 时钟信号或数据信号的抖动频谱/相位噪声(需要83496B时钟恢复)
  • 将干扰分解为总体干扰(TI)、随机噪声(RN)、确定性干扰、周期干扰(PI)和符码间干扰(ISI)

先进的幅度分析

 

  • 用表格和图形显示“1”和“0”电平上的测量结果
  • 干扰频谱
  • Q因数(与确定性干扰相隔离)
  • 相对噪声强度(RIN 1级,RIN OMA)

先进的波形分析

 

  • 精确地捕获带有或不带有平均值的长波形(高达223 位)
  • 采样/波形仅受限于硬盘或存储棒的大小
  • 示波器使用内置线性前馈均衡(LFE)工具测量均衡波形
  • MATLAB®接口可以即时处理示波器数据:
    °观察和表征任何LFE、判决反馈均衡器(DFE)或其他算法的输出波形。
    °使用专有的或公开的脚本,例如发射机波形色散惩罚值(TWDP),来计算和显示品质因数或惩罚值。

MATLAB 是 MathWorks 公司的注册商标。

先进的TDR分析(频域S参数)

用于差分或单端表征的板上S参数

一端口或二端口设备(单端或差分)

测量当前和最新标准

【系列】:示波器(眼图仪)
产品描述
Main characteristics and technical indexes
Digital communication analyzer mode:
Oscilloscope bandwidth of more than 80 GHz, to ensure that the most accurate waveform measurement
>40 Gb/s - eye analyzer can be used for the optical transmitter and the transmitter power conformance test
Jitter and interference analyzer, can measure the sub components jitter and amplitude interference source
Time domain reflector / time domain transmission (TDR/TDT) for high precision impedance analysis including S parameters
Main characteristics
The user can configure the host slot to support two modules (4 optical channels or electrical channels).
Advanced one click simple measurement
- trigger bandwidth is greater than 13 GHz (option 001)
Clock recovery features adjustable loop bandwidth (see 83496B)
Backward compatibility:
54750A high bandwidth digital oscilloscope series for all modules
All modules of the 83480A digital communication analyzer series
All modules of 86100A/B digital communication analyzer
describe
The most comprehensive multi-function analyzer for testing high-speed electro-optical signal
Infiniium DCA-J 86100C also has a very high accuracy, repeatability and very simple operation steps, can simplify the test of 50 GHz to 80 MHz signal. The digital designer can combine the host and the module into four major instruments with the industry's leading signal integrity performance, including:
Bandwidth of more than 80 GHz of the full function of the oscilloscope to ensure the most accurate waveform measurement
- for use with automatic eye analysis digital communication analyzer transmitter function conformance testing
The industry's most accurate jitter and interference analyzer by simple and easy to use one click operation to measure sub components jitter source
Full time domain reflector (TDR/TDT) for the analysis of high precision impedance and S parameters
Advanced analysis features:
Advanced jitter analysis
- the jitter decomposition for overall (TJ) jitter and random jitter (RJ) and deterministic jitter (DJ), periodic jitter (PJ) and data dependent jitter (DDJ), duty ratio distortion (DCD) and by inter symbol interference (ISI) induced jitter.
Jitter spectrum
Isolation and analysis of sub rate jitter (SRJ), i.e., the bit rate of the integer sub rate (sub-rate integer) when the cycle jitter
Clock signal or data signal jitter spectrum / phase noise (requires 83496B clock recovery)
The interference is decomposed into total interference (TI), random noise (RN), deterministic interference, periodic interference (PI) and inter symbol interference (ISI).
Advanced margin analysis
Use tables and figures to show the measurement results on the "1" and "0" levels
Interference spectrum
Q factor (isolated from deterministic interference)
Relative noise intensity (RIN 1, OMA RIN)
Advanced waveform analysis
To accurately capture long waveforms with or without an average (up to 223 bits)
Sampling / waveform is limited to the size of the hard disk or memory stick
The oscilloscope uses the built-in linear feed-forward equalization (LFE) tool to measure the balanced waveform.
- MATLAB interface can real-time oscilloscope data:
Observation and characterization of any LFE, decision feedback equalizer (DFE) or other algorithms of the output waveform.
Use a proprietary or open script, such as a transmitter waveform dispersion penalty (TWDP), to calculate and display quality factor or penalty value.
MATLAB is a registered trademark of MathWorks company.
Advanced TDR analysis (frequency domain S parameters)
S parameters for differential or single ended characterization of a plate
One port or two port device (single ended or differential)
Measure current and latest standards
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