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Current LocationFiber optic communications > Communications Signal Analyzers > Optical/Electrical Communications Signal Analyzer
Agilent 86113A Dual Channel Amplified Optical Module
Description
Product Overview:
The Agilent 86113A dual-channel optical wave receiver module is a high-performance module designed for optical signal reception and processing. It is mainly used for testing and measurement in the field of optical communication and is typically compatible with the Agilent 86100A/B/C Infiniium DCA/DCA-J host. Channel characteristics: It has two amplified optical channels, each with a bandwidth of up to 3GHz, capable of simultaneously processing two optical signals. It is compatible with 9/125 to 62.5/125 optical fibers and can meet the requirements of various fiber connection needs.
Wavelength range: The wavelength range is 1000-1600nm, suitable for the reception of various wavelengths of optical signals, and can meet the testing requirements of different optical communication systems.
Input power: The maximum average input power is 0.4mW, with a low requirement for input optical power, and can adapt to different intensities of optical signal input within a certain range.
Noise level: It has a low root mean square noise. At a rate of 0.155/0.622/2.488Gb/s, the typical RMS noise is 1μW, and at a rate of 1.063/1.250Gb/s, it is 1.5μW, which helps to improve the accuracy and stability of optical signal reception.
Product Features:
High-bandwidth channel: It has two 3GHz optical channels, which can meet the requirements for receiving high-speed optical signals and can accurately capture rapidly changing optical signals. It is suitable for testing various high-speed optical communication systems.
Wide wavelength range: The wavelength range is 1000-1600nm, which is compatible with various wavelengths of optical signals and can adapt to different types of optical communication systems, including single-mode and multi-mode fiber systems, etc.
Low noise performance: It has a low root mean square noise. At a rate of 0.155/0.622/2.488Gb/s, the typical RMS noise is 1μW, and at a rate of 1.063/1.250Gb/s, it is 1.5μW. This helps improve the accuracy and stability of optical signal reception, reduces the influence of noise on measurement results, and achieves high-precision signal detection.
Low input power requirement: The maximum average input power is 0.4mW, which has a low requirement for input optical power. It can adapt to different intensities of optical signal input within a certain range and does not require an additional high-power optical signal source, reducing the cost and complexity of the testing system.
Reference receiver function: It has a reference receiver function, which can provide reference measurements at rates of 155/622Mb/s, 1.063/1.250Gb/s, or 0.155/0.622/2.488Gb/s, providing a more accurate benchmark for optical signal measurement, facilitating signal quality assessment and analysis.
Fiber compatibility: It can be compatible with various types of fibers, including 9/125 to 62.5/125, and can be connected to different specifications of fiber lines, expanding the application scope of the module.
Improving testing efficiency: It can simultaneously measure multiple channels of parallel optical components without measuring each channel sequentially. For network equipment manufacturers, it can also test multiple devices or multiple ports on one device simultaneously, significantly increasing testing throughput, saving testing time and costs.
Quality AssuranceMost of our products were examined strictly before shippinp and can apply for a calibration report. |
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