400 Gbps hot-plug high-speed optical transceiver module

An optical transceiver module, optoelectronic transceiver technology, applied in the field of optical communication, can solve the problem of not being able to achieve 400Gb/s high-speed optical transceiver module, and achieve the effects of compact structure, low power consumption, and reduced assembly steps

Active Publication Date: 2015-05-06
WUHAN TELECOMM DEVICES
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The purpose of the embodiment of the present invention is to provide a 400Gb / s hot-swappable high-speed optical transceiver module to solve the problem that the existing technology cannot realize the 400Gb / s high-speed optical transceiver module

Method used

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  • 400 Gbps hot-plug high-speed optical transceiver module
  • 400 Gbps hot-plug high-speed optical transceiver module
  • 400 Gbps hot-plug high-speed optical transceiver module

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0050] Embodiment 1 provided by the present invention is the first embodiment of the photoelectric transceiver unit of a 400Gb / s hot-swappable high-speed optical transceiver module provided by the present invention. This embodiment is an embodiment with a transmission distance of 500 meters or less, such as image 3 Shown is a schematic structural view of the first embodiment of the photoelectric transceiver unit of a 400Gb / s hot-swappable high-speed optical transceiver module provided by the present invention, by image 3 It can be seen that the photoelectric transceiver unit includes: data clock recovery circuit chip 201 at the transmitting end, driver chip 202, laser chip 203, photodetector chip 204, transimpedance amplifier chip 205, data clock recovery circuit chip 206 and control circuit chip 207 at the receiving end.

[0051] The data clock recovery circuit chip 201 at the transmitting end receives the input electrical signal, and the preprocessed electrical signal is lo...

Embodiment 2

[0058] The second embodiment provided by the present invention is the second embodiment of the photoelectric transceiver unit of a 400Gb / s hot-swappable high-speed optical transceiver module provided by the present invention. This embodiment is an embodiment with a transmission distance of more than 500 meters, such as Figure 4 Shown is the structural representation of the second embodiment of the photoelectric transceiver unit of a kind of 400Gb / s hot-swappable high-speed optical transceiver module provided by the present invention, by Figure 4 It can be seen that the photoelectric transceiver unit includes: a transmitting end data clock recovery circuit chip 301, a driver chip 302, a laser chip 303, a wavelength division multiplexer chip 304, a wavelength division multiplexer chip 305, a photodetector chip 306, and a transimpedance amplifier chip 307 and the receiving end data clock recovery circuit chip 308 and control circuit chip 309.

[0059] The wavelength division mu...

Embodiment 3

[0067]The third embodiment provided by the present invention is the third embodiment of the photoelectric transceiver unit of a 400Gb / s hot-swappable high-speed optical transceiver module provided by the present invention. This embodiment is an embodiment with a transmission distance of more than 500 meters, such as Figure 5 Shown is a schematic structural view of the third embodiment of the photoelectric transceiver unit of a 400Gb / s hot-swappable high-speed optical transceiver module provided by the present invention, by Figure 5 It can be seen that the photoelectric transceiver unit includes: photoelectric multiplexing / demultiplexing chip 403, transmitting end data clock recovery circuit chip 401, driver chip 402, transimpedance amplifier chip 404, receiving end data clock recovery circuit chip 405 and control circuit chip 406.

[0068] The data clock recovery circuit chip 401 at the transmitting end receives the electrical signal input by the electrical interface unit, an...

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Abstract

The invention provides a 400 Gbps hot-plug high-speed optical transceiver module which is suitable for the optical communication technical field. The 400 Gbps hot-plug high-speed optical transceiver module comprises an optical interface unit, a photoelectric transceiver unit and an electrical interface unit; the photoelectric transceiver unit is used for achieving the functions of photoelectric conversion and high-speed electrical signal processing through a photoelectric transceiver chip; the internal working process of the photoelectric transceiver chip comprises receiving an electrical signal input through the electrical interface unit by a transmitting terminal data clock recovery circuit, loading the electrical signal to a laser after the pretreatment through a driving circuit, converting the high-speed electrical signal into a high-speed optical signal through the laser, reusing the high-speed optical signal through a wavelength division multiplexer to be output, reusing the received optical signal into a 16-channel optical signal through a wavelength division demultiplexer to be transmitted to an optical detector and transmitting the 16-channel optical signal to a trans-impedance amplifier and a receiving terminal data clock recovery circuit after photoelectric conversion to be processed. According to the 400 Gbps hot-plug high-speed optical transceiver module, the factors such as the cost, the transmission loss, the chromatic dispersion and the size are considered to select different optical transceiver modules and accordingly the long-distance single-mode optical fiber transmission or the short-distance multimode transmission is implemented.

Description

technical field [0001] The invention belongs to the technical field of optical communication, in particular to a 400Gb / s hot-swappable high-speed optical transceiver module. Background technique [0002] In recent years, as the demand for high-quality video services, cloud computing, large-scale data centers, and fixed / mobile Internet applications continues to grow, people require more and more information and faster information transfer rates. Operators also realize that bandwidth requirements will continue to increase with the data explosion, and they have accelerated the pace of evolution of transmission networks, upgrading from 40G / 100G to 400Gbps to meet people's eager demand for speed. [0003] In March 2014, the CDFP industry alliance released the multi-source agreement CDFP MSA (400Gbps form-factor pluggable Multi-sources Agreement) for 400G hot-swappable modules, which is used to standardize the mechanical and electrical interface design of 400G modules. The specifi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04B10/40
Inventor 李世瑜余少华
Owner WUHAN TELECOMM DEVICES
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