Photoelectric integrated information socket

By designing an integrated photoelectric information socket with BOSA optical devices and power supply functions, long-distance signal attenuation and equipment power supply problems are solved, high bandwidth and low loss data transmission is achieved, communication system performance is improved and production costs are reduced.

CN222953411UActive Publication Date: 2025-06-06JIANGXI ZHENTIAN TECH CO LTD
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Patent Information

Application Number
CN202421290048.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-06
Publication Date
2025-06-06
Estimated Expiration
2034-06-06

AI Technical Summary

Technical Problem

The existing photoelectric integrated information sockets are slowed down or disconnected due to signal attenuation during long-distance transmission, and traditional optical fiber wiring cannot solve the equipment power supply problems, resulting in high costs, limited bandwidth and limited wiring expansion.

Method used

A photoelectric integrated information socket is designed, integrating BOSA optical devices, coreless adapter, mother seat shrapnel and plastic guide rails. It realizes miniaturization design through miniaturization technology, combines elastic structure to achieve precise movement and positioning of components, realizes the optical-electric/electro-optical conversion function of optical signals, and integrates power supply function.

Benefits of technology

It realizes low loss and high bandwidth data transmission, solves long-distance data transmission and power supply problems, improves the performance of the communication system, and simplifies system design through miniaturization and modularity, reduces production costs, and ensures compatibility between different devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a photoelectric integrated information socket, which belongs to the technical field of optical fiber communication equipment, and aims to solve the problems that a network copper cable is high in cost and cannot be covered due to long distance, the bandwidth cannot be met, and an optical interface under traditional optical fiber wiring cannot supply power to equipment. The left side of the shell is provided with a BOSA optical device, the upper part in the shell is provided with a female seat elastic sheet, the right side of the female seat elastic sheet is provided with a plastic guide rail on the left side of the shell, the lower part in the shell is provided with a female seat terminal, and the BOSA optical device is composed of a TO, a TO and a base and is matched with the shell and the non-ferrule adapter; according to the utility model, the mode that an existing RJ45 seat supplies power through an access network cable can be replaced, remote data transmission and power supply are realized, optical fibers and power transmission copper wires are integrated, the problems of broadband access, equipment power utilization and signal transmission are solved, low-loss and high-bandwidth data transmission is realized, and the performance of a communication system is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of optical fiber communication equipment, and in particular relates to a photoelectric integrated information socket. Background Art

[0002] The optoelectronic integrated information socket is a socket design that integrates optical fiber and telecommunication technology. It combines the advantages of optical communication and electrical communication to provide users with high-speed and stable data transmission services.

[0003] This type of socket is widely used in smart home, smart medical, smart manufacturing and other fields. It can realize data exchange and interaction between devices, improve the intelligence level and interconnection ability of devices. In smart home, the optoelectronic integrated information socket can be applied to various IoT devices, such as smart bulbs, smart door locks, smart home appliances, etc., to provide users with a more convenient and efficient use experience.

[0004] In the prior art, if data and power need to be transmitted simultaneously over a short distance between devices, an RJ45 female socket is usually used. By inserting a network cable as a carrier and using PoE power supply technology, the communication and power supply problems between devices are solved. However, in the prior art, the optical and electrical interfaces are not unified and cannot be standardized. At the same time, the optical and electrical interfaces are not formed into a whole, which occupies equipment space and takes a long time to wire. When the transmission distance exceeds 100 meters, the speed is reduced or the line is disconnected due to signal attenuation. At the same time, due to the long resistance of the wire and the reduction of voltage, the power supply to the device is insufficient. In addition, the cost of network copper cables is high, the bandwidth is limited, and the expansion after wiring is limited.

[0005] Therefore, there is a need for an integrated optoelectronic information socket to solve the problems in the prior art, such as high cost of network copper cables, inability to cover long distances, insufficient bandwidth, and the inability of optical interfaces under traditional optical fiber wiring to power the equipment. Utility Model Content

[0006] The purpose of the utility model is to provide a photoelectric integrated information socket to solve the problems raised in the above background technology.

[0007] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an optoelectronic integrated information socket, comprising a shell, a core-free adapter is molded on the right side of the shell, a BOSA optical device is installed on the left side of the shell, a female socket spring is arranged on the upper part of the shell, a plastic guide rail is arranged on the right side of the female socket spring and on the left side of the shell, and a female socket terminal is arranged on the lower part of the shell.

[0008] It should be noted in the scheme that the BOSA optical device is composed of TO56, TO46, and base, and is matched with the housing and the coreless adapter. The BOSA optical device composed of TO56, TO46, and base is matched with the coreless adapter and housing of the SC interface to form an integrated information socket, completing the optical-to-electrical / electrical-to-optical conversion function of the optical signal. The miniaturization technology realizes a miniaturized design, saves space, and is easy to integrate into various optical communication equipment.

[0009] It is further worth mentioning that the plastic guide rail is elastically movable in the housing through a spring, and the plastic guide rail is pushed by the spring to simply and effectively achieve precise movement and positioning of the components. The elastic properties of the spring ensure that the plastic guide rail can maintain its mobility when subjected to external force, and return to its original position after the external force is removed.

[0010] It should be further explained that the female seat spring piece includes a mounting portion, a buckle portion and a connecting portion, the mounting portion is mounted on the upper inner portion of the shell through the connecting portion, and the buckle portion is opened on the mounting portion and arranged close to the plastic guide rail.

[0011] As a preferred implementation, the buckle portion is elastically arranged on the mounting portion.

[0012] As a preferred embodiment, the female socket terminal includes a positioning portion, an R-shaped bayonet and a pin, the positioning portion is installed at the bottom of the shell through the pin, the pin is arranged through the shell, and the R-shaped bayonet is arranged at the upper end of the positioning portion and is arranged in the shell.

[0013] As a preferred implementation, the positioning portion is U-shaped and elastic.

[0014] Compared with the prior art, the photoelectric integrated information socket provided by the utility model has at least the following beneficial effects:

[0015] (1) An optoelectronic integrated information socket can replace the existing RJ45 socket and connect to the network cable for power supply, solving the problem of long-distance data transmission and power supply. It also integrates optical fiber and power transmission copper wire to solve the problems of broadband access, equipment power consumption, and signal transmission, achieving low-loss and high-bandwidth data transmission and improving the performance of the communication system.

[0016] (2) An integrated optoelectronic information socket, with its miniaturization and modularity, is easy to integrate with other optical communication equipment, simplifying system design and reducing production costs. At the same time, the optoelectronic interface is unified to ensure compatibility between different devices, avoid communication problems caused by interface mismatch, and simplify the operability of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1This is a schematic diagram of the structure of the utility model from a first perspective;

[0018] Figure 2 This is a schematic diagram of the structure of the utility model from a second viewing angle;

[0019] Figure 3 It is a schematic diagram of the top view structure of the utility model;

[0020] Figure 4 This is a schematic diagram of the structure of the female seat spring piece of the utility model;

[0021] Figure 5 This is a schematic diagram of the female terminal structure of the utility model.

[0022] In the figure: 1. Shell; 2. Adapter without core; 3. BOSA optical device; 4. Female socket spring; 401. Mounting part; 402. Buckle part; 403. Connecting part; 5. Female socket terminal; 501. Positioning part; 502. R-shaped bayonet; 503. Pin; 6. Plastic guide rail. DETAILED DESCRIPTION

[0023] The present invention will be further described below in conjunction with the embodiments.

[0024] See also Figure 1-5 The utility model provides an optoelectronic integrated information socket, including a shell 1, a coreless adapter 2 is molded on the right side of the shell 1, a BOSA optical device 3 is installed on the left side of the shell 1, a female socket spring piece 4 is arranged on the upper part of the shell 1, a plastic guide rail 6 is arranged on the right side of the female socket spring piece 4 and on the left side of the shell 1, and a female socket terminal 5 is arranged on the lower part of the shell 1.

[0025] Further Figure 1 , Figure 2 and Figure 3 As shown, it is worth explaining in detail that the BOSA optical device 3 is composed of TO56, TO46, and base, and is matched with the housing 1 and the ferrule-free adapter 2.

[0026] The BOSA optical device 3 composed of TO56, TO46 and base is matched with the coreless adapter 2 of the SC interface and the housing 1 to form an integrated information socket, which completes the optical-electrical / electrical-optical conversion function of the optical signal. The miniaturization technology realizes the miniaturization design, saves space, and is easy to integrate into various optical communication equipment.

[0027] Further Figure 1 , Figure 2 and Figure 3 As shown, it is worth to explain in detail that the plastic guide rail 6 moves elastically in the housing 1 through the spring.

[0028] The plastic guide rail 6 is pushed by a spring to achieve precise movement and positioning of components in a simple and effective manner. The elastic characteristics of the spring ensure that the plastic guide rail 6 can maintain its mobility when subjected to external force and return to its original position after the external force is removed. This design not only improves the flexibility of the optoelectronic device, but also enhances the reliability of its function. The plastic guide rail 6 can evenly disperse the pressure when pressed down, and the surface of the guide rail is smoothed to reduce friction, making the guide rail easier to move.

[0029] Further Figure 4 As shown, it is worth explaining in detail that the female seat spring piece 4 includes a mounting portion 401, a buckle portion 402 and a connecting portion 403. The mounting portion 401 is installed on the upper inner portion of the shell 1 through the connecting portion 403. The buckle portion 402 is opened on the mounting portion 401 and is arranged close to the plastic guide rail 6. The buckle portion 402 is elastically arranged on the mounting portion 401.

[0030] Further Figure 5 As shown, it is worth specifically explaining that the female terminal 5 includes a positioning portion 501, an R-shaped bayonet 502 and a pin 503. The positioning portion 501 is installed at the bottom of the shell 1 through the pin 503. The pin 503 is arranged through the shell 1. The R-shaped bayonet 502 is arranged at the upper end of the positioning portion 501 and is arranged in the shell 1. The positioning portion 501 is arranged in a U shape and has elasticity.

[0031] The female terminal 5 is designed with an elastic structure, which supports strong plugging and unplugging and has a good contact effect. This ensures that the fiber optic plug can closely contact the fiber optic interface when inserted and unplugged, thereby achieving a good optoelectronic combination connection. This elastic connection can be repeatedly plugged and unplugged and reduce contact impedance, thereby improving the reliability and stability of the connection.

[0032] This solution has the following working process: when this device is used, the optoelectronic plug is inserted into the device through the coreless adapter 2. At this time, the optoelectronic plug is limited by the elastic movement of the buckle part 402. At the same time, the positioning part 501 is elastically moved, and the R-shaped bayonet 502 is used to clamp and limit it, so that it is firmly inserted into the coreless adapter 2 and connected to the BOSA optical device 3 to perform optical fiber transmission while maintaining stability.

[0033] In summary: an optoelectronic integrated information socket can replace the existing RJ45 socket and be powered by access to the network cable to solve the problem of long-distance data transmission and power supply. It integrates optical fiber and power transmission copper wire to solve the problems of broadband access, equipment power consumption, and signal transmission, and realizes low-loss and high-bandwidth data transmission, thereby improving the performance of the communication system. Moreover, through its miniaturization and modularization, it is easy to integrate with other optical communication equipment, simplify system design, and reduce production costs. At the same time, the optoelectronic interface is unified to ensure compatibility between different devices, avoid communication problems caused by interface mismatch, and simplify the operability of the equipment.

Claims

1. A photoelectric integrated information socket, comprising a housing (1), characterized in that: The right side of the shell (1) is provided with a coreless adapter (2), the left side of the shell (1) is provided with a BOSA optical device (3), the upper part of the shell (1) is provided with a female socket spring piece (4), the right side of the female socket spring piece (4) is provided with a plastic guide rail (6) on the left side of the shell (1), and the lower part of the shell (1) is provided with a female socket terminal (5).

2. The photoelectric integrated information socket according to claim 1, characterized in that: The BOSA optical device (3) is composed of TO56, TO46, and base, and is matched with the housing (1) and the ferrule-free adapter (2).

3. The photoelectric integrated information socket according to claim 1, characterized in that: The plastic guide rail (6) moves elastically in the housing (1) via a spring.

4. The photoelectric integrated information socket according to claim 1, characterized in that: The female seat spring piece (4) comprises a mounting portion (401), a buckle portion (402) and a connecting portion (403); the mounting portion (401) is mounted on the upper inner portion of the housing (1) via the connecting portion (403); the buckle portion (402) is disposed on the mounting portion (401) and close to the plastic guide rail (6).

5. The photoelectric integrated information socket according to claim 4, characterized in that: The buckle portion (402) is elastically arranged on the mounting portion (401).

6. The photoelectric integrated information socket according to claim 1, characterized in that: The female socket terminal (5) comprises a positioning portion (501), an R-shaped bayonet (502) and a plug pin (503); the positioning portion (501) is mounted on the inner bottom of the housing (1) via the plug pin (503); the plug pin (503) is arranged to penetrate the housing (1); and the R-shaped bayonet (502) is arranged at the upper end of the positioning portion (501) and is arranged in the housing (1).

7. The photoelectric integrated information socket according to claim 6, characterized in that: The positioning portion (501) is arranged in a U shape and has elasticity.