传统的误码仪在误码率测试时有很多缺陷。
Traditional error code rate testing instrument has many limitations.
误码率测试或检验装置。
B3G测试平台还提供了误码率测试的功能。
In addition, the B3G test Platform supports the Bits Error Ratio (BER) test.
第三章介绍高速误码率测试仪发端子系统的设计方案;
The third chapter discusses transmitter' s de-sign scheme of high speed BERT.
简述了FPGA在高速位误码率测试仪中的应用,对误码率测试仪的结构,及其FPGA实现进行了详细的介绍。
The structure of the high-speed BER testing instrument is introduced. The application of FPGA in the instrument and the realization of FPGA are expounded.
文章介绍了印制光-电路板的测试方法,主要包括光波导的折射率测试、光传输损失测试、表面粗糙度测试、眼图测试、误码率测试、环境测试。
In the paper, the method of test about OE-PCB was reviewed. Including mainly Refractive Index, Optical Propagation Loss, Surface Roughness, Eye Pattern, Bite Error Rate test and Environment Impact.
本论文主要介绍数字光纤通信系统基本组成,性能指标及其测试,主要是光通信误码率的测量。
This thesis introduces the digital fiber optic communication system's test basically mainly, it is mainly the ber measurement of the fiber optic communication system.
通过硬件平台系统,对算法的误码率进行了验证测试。
Through the hardware platform system, the BER of the algorithms is tested and verified.
应答接收机误码测试系统是在微波频段测试接收机误码率的测试设备。
The error code rate test system of answer receiver is used for testing error rate of testing receiver at microwave band.
模块级和系统级的测试表明,AM、FM的解调音频信纳比和MSK的误码率均满足系 统设计要求。
The demodulated SINAD of AM and FM satisfies the demand of module and system, as well as the bit error ratio(BER) of MSK.
从比特误码率、信噪比等测试结果数据分析可知,接收终端的性能合格,经过前向纠错后可以保证用户数据的准确性。
The test data of bit error rate and signal-to-noise ratio show that the performance of the receiver terminal is available, which guarantees the accuracy of the data after the forward error correction.
通过硬件基本功能测试、物理层功能仿真验证以及模拟业务试验,证实了REPON系统可以稳定且可靠的运行,且其物理层光纤链路上的收发误码率在10-9以下。
The experimentation results show that this REPON hardware system can provide a stable and reliable performance, e. g. the bit error rate of its physical fiber link is less than 10 -9.
通过硬件基本功能测试、物理层功能仿真验证以及模拟业务试验,证实了REPON系统可以稳定且可靠的运行,且其物理层光纤链路上的收发误码率在10-9以下。
The experimentation results show that this REPON hardware system can provide a stable and reliable performance, e. g. the bit error rate of its physical fiber link is less than 10 -9.
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