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销售安捷伦 83434A 光波接收机

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产品参数

选件 是否计量 发货周期 保修时间 成色
1-4周 12- 8成新
所在地 机身号 状态 资料下载
深圳市 完好
更新日期:2020-03-28
联系电话:0755-86016691

* 产品描述

是德科技/ Agilent 83433A / 83434A 10Gb / s光波测试仪

主要功能:

它们以10G / STM-64 / OC-192和2.5G / STM-16 / OC-48的速度一起发送和接收

83433A:以2.4到10.7 Gb / s的数据速率进行调制

83433A:具有Mach-Zehnder调制器的1550 nm ITU-T网格波长内部DFB激光器

83433A:与外部偏振控制的TLS兼容,波长范围为1530至1565 nm

83434A:基于PIN二极管的接收器,波长范围1300至1600 nm

83434A:线性,非重定时数据输出

描述:

Agilent 83433A 10Gb / s光波发射器

Agilent 83433A光波发射器基于由内部CW DFB 1552.52 nm激光器驱动的铌酸锂调制器。激光器和调制器在外部与PMF光纤互连。该调制器还可以与带有保偏光纤的外部激光器一起使用,例如配备81680A选件071的Agilent 8164A。


Agilent 83433A旨在为2.488 Gb / s STM-16 / OC-48、9.953 Gb / s STM-64 / OC-192以及高达10.7 Gb / s的其他传输速率生成高保真度,低抖动波形。 Agilent 83433A适用于使用误差性能分析仪(例如Agilent 71612B)进行BER测试。 Mach-Zehnder调制器被调整为固定的零chi。其输出波形产生的最小消光比为12 dB。


内部DFB激光器可以在15 kHz至10 MHz的频率下进行调制,以增加线宽,以用于SBS抑制或信道识别应用。内部激光波长可以在1552.52中心波长附近调整为±1.25 nm。


安捷伦83433A可以与安捷伦83434A 10 Gb / s光波接收器结合使用,以创建用于系统或光纤测试的完整光学链路,或为商用发射器和接收器的替代测试奠定基础。


Agilent 83434A 10Gb / s光波接收器

Agilent 83434A 10 Gb / s光波接收器旨在恢复时钟数据并从数字调制的SDH / SONET STM-64 / OC-192光信号以及采用前向纠错(FEC)的信号中提供线性,非重定时数据)的速度为10.664 Gb / s(选件106)。该接收器基于放大的PIN接收器,以产生具有AGC稳定度的线性输出。接收器设计为提供–16 dBm的灵敏度,PRBS长度为231 –1,BER性能至少为1E-10。


恢复的时钟可用作Agilent Infiniium DCA的触发输入,以在没有外部时钟信号可触发时进行光学眼图测量。恢复的时钟还为Agilent 71612B错误性能分析器的错误检测器提供了所需的时钟输入。非重定时数据输出可与错误检测器一起使用,以测量和优化BER。接收器的输出也适合眼睛轮廓和Q因子测量。


可将Agilent 83434A与Agilent 83433A 10 Gb / s光波发射器结合使用,以创建用于系统或光纤测试的完整光链路,或为商用发射器和接收器的替代测试奠定基础。

详细信息

Keysight / Agilent 83433A / 83434A 10Gb/s Lightwave Test Set

Features
  • Together They Tx and Rx at 10G/STM-64/OC-192 and 2.5G/STM-16/OC-48 Speeds
  • 83433A: Modulate at Data Rates From 2.4 to 10.7 Gb/s
  • 83433A: 1550 nm ITU-T Grid Wavelength Internal DFB Laser With Mach-Zehnder Modulator
  • 83433A: Compatible With External Polarization Controlled TLS at Wavelengths From 1530 to 1565 nm
  • 83434A: PIN Diode-Based Receiver, Wavelength Range 1300 to 1600 nm
  • 83434A: Linear, Non-Retimed Data Output

Description

Agilent 83433A 10Gb/s Lightwave Transmitter
The Agilent 83433A lightwave transmitter is based on a lithium niobate modulator driven by an internal CW DFB 1552.52 nm laser. The laser and modulator are inter-connected externally with a PMF fiber. The modulator can also be used with an external laser with polarization maintaining fiber such as the Agilent 8164A, with 81680A option 071.

The Agilent 83433A is designed to produce high fidelity, low jitter waveforms for 2.488 Gb/s STM-16/OC-48, 9.953 Gb/s STM-64/OC-192 and other transmission rates up through 10.7 Gb/s. The Agilent 83433A is intended for BER testing with error performance analyzers such as the Agilent 71612B. The Mach-Zehnder modulator is adjusted for a fixed zero chirp. Its output waveform producesa minimum extinction ratio of 12 dB.

The internal DFB laser can be modulated at frequencies from 15 kHz to 10 MHz to increase linewidth for SBS suppression or channel identification applications. The internal laser wavelength can be adjusted ±1.25 nm around the 1552.52 center wavelength.

The Agilent 83433A can be combined with the Agilent 83434A 10 Gb/s lightwave receiver to create a complete optical link for system or fiber testing, or to form a basis for substitution testing of commercial transmitters and receivers.

Agilent 83434A 10Gb/s Lightwave Receiver
The Agilent 83434A 10 Gb/s lightwave receiver is designed to recover clock data and to provide linear, non-retimed data from digitally modulated SDH/ SONET STM-64/OC-192 optical signals, as well as signals employing forward error correction (FEC) at 10.664 Gb/s (option 106). The receiver is based on an amplified PIN receiver to produce a linear output with AGC stabilization. The receiver is designed to provide –16 dBm sensitivity with PRBS lengths to 231 –1 with BER performance of at least 1E-10.

The recovered clock can be used as a trigger input for the Agilent Infiniium DCA to allow optical eye diagram measurements when no external clock signal is available for triggering. The recovered clock also provides the required clock input for the error detector of the Agilent 71612B error performance analyzer. The non-retimed data output can be used with an error detector to measure and optimize BER. The output of the receiver is also appropriate for eye contour and Q-factor measurements.

The Agilent 83434A can be combined with the Agilent 83433A 10 Gb/s lightwave transmitter to create a complete optical link for system or fiber testing, or to form a basis for substitution testing of commercial transmitters and receivers.

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