Photoelectric hybrid flange

By incorporating protective components into the optoelectronic hybrid flange and utilizing the interference fit between the sealing element and the opening, along with the design of elastic materials, the problems of cumbersome operation and susceptibility to contamination in existing optoelectronic hybrid flange technologies have been solved. This has enabled efficient and reliable optoelectronic signal transmission and a simplified installation and maintenance process.

CN223637774UActive Publication Date: 2025-12-05SHENZHEN HS FIBER COMM EQUIP CO LTD
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Patent Information

Application Number
CN202423272322.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-05
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing optoelectronic hybrid flange designs suffer from problems such as cumbersome operation, large equipment size, high complexity, susceptibility to contamination, and easy damage to internal components.

Method used

A photoelectric hybrid flange was designed, comprising a housing assembly, a conduction mechanism, and a protection assembly. The protection assembly protects the interior of the housing assembly when not in use. The sealing element is interference-fitted with the opening and is made of elastic material to prevent dust and moisture intrusion. The protection assembly is detachable for easy operation.

Benefits of technology

It improves the ease and efficiency of flange operation, prevents contamination and damage to internal components, ensures the durability and reliability of flanges, simplifies installation and maintenance procedures, and reduces fault repair costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a photoelectric hybrid flange, and relates to the technical field of optical fiber communication. Wherein the shell assembly comprises a first accommodating space and a first opening, the first accommodating space is arranged in the shell assembly, and the first opening is arranged at one end of the shell assembly and is communicated with the first accommodating space; the conduction mechanism is arranged in the first accommodating space and comprises a communication assembly and a conductive assembly, the communication assembly is connected with the conductive assembly and comprises a communication pipe, and a second accommodating space is formed in the communication pipe; the protection assembly comprises a blocking piece and an operating piece, the blocking piece and the operating piece are arranged at the two ends of the protection assembly respectively, the blocking piece is matched with the first opening in shape and size, and the protection assembly is detachably connected with the shell assembly. Effective protection can be achieved by assembling the protection assembly. The shape and size of the plugging piece are precisely matched with those of the first opening, it is guaranteed that dust, water and other foreign matter cannot easily invade the first containing space, and durability and reliability of the flange are guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to optical fiber communication technical field especially relates to a photoelectric hybrid flange. BACKGROUND

[0002] As an important device for connecting optical and electrical signals, the stability and reliability of the photoelectric hybrid flange are crucial for the operation of the entire communication system. However, the existing photoelectric hybrid flange design scheme has many deficiencies. One common scheme is to design the optical connector and the electrical connector independently, and to realize signal docking through optical adapters and electrical adapters respectively. Although this scheme is simple in structure, it is cumbersome to operate, and it takes two plugging operations to complete the connection and transmission of optical and electrical signals, which not only is inefficient, but also increases the volume and complexity of the equipment.

[0003] Another scheme is to integrate the electrical connector into a pair of optical connectors, and to realize connection with the adapter through one plugging operation. However, this design is prone to cause the photoelectric hybrid flange to be easily contaminated, which in turn affects its performance, and even causes internal components to be damaged and unable to work normally. SUMMARY

[0004] To solve the above at least one technical problem, the utility model provides a photoelectric hybrid flange.

[0005] To achieve the above purpose, the embodiments of the present application adopt the following technical solutions:

[0006] The utility model provides a photoelectric hybrid flange, which comprises:

[0007] A housing assembly, the housing assembly comprises a first accommodating space and a first opening, the first accommodating space is arranged in the interior of the housing assembly, and the first opening is arranged at one end of the housing assembly and communicates with the first accommodating space;

[0008] A conduction mechanism, the conduction mechanism is arranged in the first accommodating space and comprises a communication assembly and a conductive assembly, the communication assembly is connected with the conductive assembly, the communication assembly comprises a communication pipe, and the communication pipe has a second accommodating space in it;

[0009] A protection assembly, the protection assembly comprises a plugging piece and an operating piece, the plugging piece and the operating piece are arranged at two ends of the protection assembly respectively, the shape and size of the plugging piece are matched with the first opening, and the protection assembly is detachably connected with the housing assembly.

[0010] In one possible implementation of the present application, the first opening is arranged at both ends of the housing assembly, and the first accommodating space is arranged between the two first openings.

[0011] In a possible implementation of the present application, the plugging member comprises a stopper, a cross-sectional area of the stopper being larger than a cross-sectional area of the first opening.

[0012] In a possible implementation of the present application, the plugging member further comprises a filling part, one end of the filling part being provided with a second opening, and the other end of the filling part being connected with the stopper.

[0013] In a possible implementation of the present application, the conductive assembly comprises a first conductive member and a second conductive member, the first conductive member and the second conductive member being connected with the communication assembly respectively.

[0014] In a possible implementation of the present application, the first conductive member and the second conductive member are arranged on two sides of the communication assembly respectively.

[0015] In a possible implementation of the present application, the housing assembly comprises a first housing and a second housing, the first housing and the second housing being detachably connected.

[0016] In a possible implementation of the present application, the conductive assembly penetrates the first accommodating space.

[0017] In a possible implementation of the present application, the plugging member is in interference fit with the first opening.

[0018] In a possible implementation of the present application, the communication assembly comprises a first communication member and a second communication member, the first communication member and the second communication member being detachably connected, and the communication assembly after assembly is clamped with the conductive assembly through a protrusion.

[0019] Compared with the prior art, the photoelectric hybrid flange can effectively protect the internal and partial external areas of the housing assembly by assembling the protection assembly when the flange is in a storage, transportation or non-use state. The shape and size of the plugging member are accurately matched with the first opening, so that dust, moisture and other foreign matters cannot easily enter the first accommodating space, thereby effectively preventing the internal components such as the communication assembly and the conductive assembly from being contaminated or damaged, and ensuring the durability and reliability of the flange. The protection assembly is composed of the plugging member and the operating member, and is detachably connected with the housing assembly. When installing or maintaining, the user can easily remove the protection assembly, which facilitates subsequent plug-in and plug-out operations or internal inspection, and improves the convenience and efficiency of operation. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments of the present application will be described below.

[0021] Figure 1It is a kind of optical-electric hybrid flange structure schematic diagram provided by the utility model,

[0022] Figure 2 It is a kind of optical-electric hybrid flange internal structure schematic diagram provided by the utility model,

[0023] Figure 3 It is a kind of optical-electric hybrid flange explosion structure schematic diagram provided by the utility model,

[0024] Figure 4 It is a kind of optical-electric hybrid flange protection assembly structure schematic diagram provided by the utility model.

[0025] Mark explanation:

[0026] 10, shell assembly;110, first accommodating space;120, first opening;130, first shell;140, second shell;20, conducting mechanism;210, communication assembly;2110, first communication piece;2120, second communication piece;2130, protruding portion;2140, communication pipe;2150, second accommodating space;220, conducting assembly;2210, first conducting piece;2220, second conducting piece;30, protection assembly;310, plugging piece;3110, stop portion;3120, filling portion;3130, second opening;320, operating piece. Specific implementation

[0027] In order to make the purpose, technical scheme and advantage of the utility model more clearly and clearly, the following will be further described in detail by combining with the drawings and examples. It should be understood that the specific examples described here are only used to explain the utility model, and are not used to limit the utility model.

[0028] The terms "first", "second" and the like in the embodiments of the utility model are only used to distinguish related technical features, and do not represent the order. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so as to exchange the embodiments of the application described here. In addition, the terms "include" and "have" and any variation thereof are intended to cover non-exclusive inclusion, for example, the process, method, system, product or equipment including a series of steps or units does not have to be limited to the clearly listed steps or units, but can include other steps or units that are not clearly listed or inherent to these processes, methods, products or equipment.

[0029] In this application, the terms "upper", "lower", "inner", "middle", "outer", "front", "back" and the like indicate the orientation or positional relationship shown in the drawings. These terms are mainly used to better describe the application and its embodiments, and are not used to limit the indicated devices, elements or components to have a specific orientation, or to be constructed and operated in a specific orientation.

[0030] And, in addition to the above-mentioned partial terms can be used to indicate the orientation or position relationship, it may also be used to represent other meanings, for example, the term "upper" in some cases may also be used to represent a certain dependent relationship or connection relationship. For those of ordinary skill in the art, the specific meaning of these terms in this application can be understood according to the specific circumstances.

[0031] The photoelectric hybrid flange provided by the utility model, by setting protection assembly, the flange can effectively protect the internal and partial external area of the shell assembly in storage, transportation or non-use state through assembling the protection assembly. The shape and size of the plugging piece are accurately matched with the first opening, which ensures that dust, moisture and other foreign matters cannot easily invade the first containing space, thereby effectively preventing the internal elements such as the communication assembly and the conductive assembly from being contaminated or damaged, and guaranteeing the durability and reliability of the flange. The protection assembly is composed of the plugging piece and the operating piece, and is detachably connected with the shell assembly, so that the user can easily remove the protection assembly during installation or maintenance, which facilitates subsequent plug-in operation or internal inspection and improves the convenience and efficiency of operation. Embodiments

[0032] The utility model embodiment provides a kind of photoelectric hybrid flange, as shown in Figures 1 to 4 It includes shell assembly 10, shell assembly 10 includes first containing space 110 and first opening 120, first containing space 110 is located in the inside of shell assembly 10, first opening 120 is located in one end of shell assembly 10 and is communicated with first containing space 110;Conducting mechanism 20, conducting mechanism 20 is located in first containing space 110 and includes communication assembly 210 and conductive assembly 220, communication assembly 210 is connected with conductive assembly 220, communication assembly 210 includes communication pipe 2140, and communication pipe 2140 has second containing space 2150 in it;Protection assembly 30, protection assembly 30 includes plugging piece 310 and operating piece 320, plugging piece 310 and operating piece 320 are respectively located in both ends of protection assembly 30, the shape and size of plugging piece 310 are matched with first opening 120, and protection assembly 30 is detachably connected with shell assembly 10.

[0033] In this way, by arranging the protection assembly 30, the flange can protect the inside and even the outside of the shell assembly 10 before use, preventing dust, water and other foreign matter from entering the inside of the shell assembly 10, and protecting the performance of the internal components. The optoelectronic hybrid flange integrates the functions of optical and electrical connections in one, while the innovative protection assembly 30 design enhances the practicality and durability of the flange while maintaining a compact structure. It not only meets the high performance requirements of modern communication systems, but also simplifies the installation and maintenance process, reducing the risk of incorrect operation. By preventing internal contamination and component damage in advance, this flange reduces repair and replacement costs due to failures, resulting in significant cost savings for users in the long run.

[0034] As shown in Figure 1 and Figure 2 , more specifically, the two ends of the shell assembly 10 are provided with first openings 120, and the first accommodation space 110 is arranged between the two first openings 120. It can be understood that the connectors connected through the first openings 120 can be optoelectronic hybrid connectors or ordinary connectors.

[0035] It can be understood that the two ends of the shell assembly 10 are provided with first openings 120, and the first accommodation space 110 is arranged between the two first openings 120. This design allows the flange to flexibly accept connectors from both ends. Whether it is an optoelectronic hybrid connector or an ordinary connector, it can be connected through any first opening 120, improving the compatibility and flexibility of the device. This is particularly suitable for communication scenarios that require bidirectional transmission or backup connections, providing more options and possibilities for system architecture. Since both first openings 120 are equipped with removable protection assemblies 30, the protection range of the flange has been further expanded. Regardless of the direction of the connector, it can be prevented from being invaded by dust, moisture and other foreign matter through the corresponding protection assembly 30 before being connected, thereby ensuring the cleanliness of the entire flange internal environment and the safety of the components. The structure of the double-directional opening not only improves the flexibility of connection, but also simplifies the installation and maintenance process. Users do not need to worry about the connection direction of the connector, they only need to choose the appropriate opening to connect.

[0036] As shown in Figure 1 , Figure 3 and Figure 4 , the sealing member 310 includes a stop portion 3110, and the cross-sectional area of the stop portion 3110 is greater than that of the first opening 120. More specifically, the sealing member 310 can be in interference fit with the first opening 120. The protection assembly 30 as a whole or the sealing member 310 can be made of a material with elasticity.

[0037] In this way, the stop portion 3110 provided on the plugging piece 310 has a cross-sectional area greater than that of the first opening 120, which can ensure that the plugging piece 310 can form an effective seal when inserted into the first opening 120. When the plugging piece 310 is in interference fit with the first opening 120, even in the case of changes in external environmental pressure or the presence of slight vibrations, it can prevent foreign matter such as dust and moisture from entering the inside of the flange through the gap, thereby further improving the sealing performance and protection capability of the flange. The use of elastic material to make the entire protection assembly 30 or the plugging piece 310 makes the plugging piece 310 better adapt to changes in the shape and size of the opening when inserted and removed from the first opening 120, reducing wear and tear due to friction. At the same time, the elastic material also has a certain buffering effect, which can absorb external impact and vibration, thereby improving the durability and stability of the flange. Although the plugging piece 310 and the first opening 120 use an interference fit connection structure, due to the use of elastic material for the plugging piece 310 or the entire protection assembly 30, users can still relatively easily operate when installing and disassembling. This not only guarantees the sealing performance, but also takes into account the convenience of operation. Due to the interference fit between the plugging piece 310 and the first opening 120 and the use of elastic material, the optical-electrical hybrid flange can be applied to a variety of different application scenarios. Whether in high-temperature, low-temperature, humid or dry environments, the flange can provide reliable sealing and protection, ensuring stable operation of the communication system.

[0038] As shown in Figure 4 More specifically, the plugging piece 310 further includes a filling portion 3120, one end of the filling portion 3120 is provided with a second opening 3130, and the other end is connected with the stop portion 3110. In this way, the second opening 3130 can be detachably connected with the communication pipe 2140, for example, after assembly, one end of the communication pipe 2140 is clamped into the second opening 3130.

[0039] It can be understood that the introduction of the filling part 3120 enables the closure 310 not only to provide effective sealing externally, but also to form a detachable cooperation with the communication pipe 2140 through the second opening 3130. This not only ensures the close connection between the closure 310 and the flange shell, but also further enhances the stability and reliability of the entire flange structure through the cooperation of the communication pipe 2140 and the filling part 3120. Even in the case of complex and changeable external environment, the transmission of optical and electrical signals inside the flange can be ensured. Since the filling part 3120 and the communication pipe 2140 adopt a detachable cooperation mode, when the user checks, maintains or replaces the internal elements, the user can easily access the communication pipe 2140 and the elements connected thereto by disassembling the filling part 3120. The cooperation between the filling part 3120 and the communication pipe 2140 can further reduce the gaps and gaps inside the flange, thereby improving the overall sealing performance. Even in the case of small pressure changes or vibrations in the external environment, dust, moisture and other foreign matters can be effectively prevented from entering the inside of the flange through the gaps, ensuring the cleanliness and performance of the internal elements.

[0040] As shown in Figure 3 More specifically, the conductive assembly 220 can include a first conductive part 2210 and a second conductive part 2220, and the first conductive part 2210 and the second conductive part 2220 are respectively connected with the communication assembly 210. The first conductive part 2210 and the second conductive part 2220 can respectively serve as negative and positive conductive parts.

[0041] In this way, by respectively setting the first conductive part 2210 and the second conductive part 2220 and connecting them with the communication assembly 210, the photoelectric hybrid flange can simultaneously realize the transmission of optical signals and electrical signals. The first conductive part 2210 and the second conductive part 2220 respectively serve as negative and positive conductive parts, ensuring the stability and reliability of electrical connection. This design not only meets the demand for simultaneous transmission of optical and electrical signals in fiber-optic communication systems, but also improves the overall performance and efficiency of the system. By respectively setting the first conductive part 2210 and the second conductive part 2220 as negative and positive conductive parts, it is easier to achieve more accurate control and monitoring during electrical connection. Once there is a fault or abnormality in electrical connection, it can be quickly located and appropriate measures can be taken to handle it, thereby avoiding system downtime or damage caused by electrical problems. Not only can it improve system safety, but also can enhance reliability. Since the connection of the first conductive part 2210 and the second conductive part 2220 with the communication assembly 210 is independent, the conductive assembly 220 can be operated separately during system maintenance or upgrading, without the need to disassemble the entire flange. With the continuous development of fiber-optic communication technology, there may be more types of connectors or signal transmission requirements in the future. The photoelectric hybrid flange, by respectively setting the first conductive part 2210 and the second conductive part 2220 and reserving the connection interface with the communication assembly 210, provides more possibilities for future expansion and upgrading of the system.

[0042] As shown in Figure 1 and Figure 2 , the first conductive part 2210 and the second conductive part 2220 are respectively arranged on both sides of the communication assembly 210. More specifically, the housing assembly 10 includes a first housing 130 and a second housing 140, which are detachably connected. In this way, the housing assembly 10 can be separated, making assembly convenient.

[0043] In this way, the first conductive part 2210 and the second conductive part 2220 are respectively arranged on both sides of the communication assembly 210, which not only ensures the stability and reliability of electrical connection, but also helps to reduce electrical interference and signal loss. At the same time, it also makes the connection between the conductive assembly 220 and the communication assembly 210 clearer and more intuitive, making it easier for users to maintain and operate. The housing assembly 10 is composed of the first housing 130 and the second housing 140 which are detachably connected, making it more flexible and convenient for users to assemble and maintain the flange. Users can individually disassemble or install the first housing 130 or the second housing 140 as needed, without the need to disassemble the entire flange. This not only simplifies the assembly process, but also reduces maintenance cost and time.

[0044] As shown in Figure 2 and Figure 3As shown, more specifically, the conductive assembly 220 can be disposed through the first accommodating space 110. Among them, the flange is used to transmit the optical signal and the electrical signal of the optoelectrical hybrid connector to the use equipment, mainly playing the role of an adapter, at this time the conductive assembly 220 can be disposed only on one side of the access connector, and the other is to connect the optoelectrical hybrid connectors on both sides through the optoelectrical hybrid flange, at this time the conductive assembly 220 is generally required to connect both ends in the shell assembly 10.

[0045] It can be understood that the conductive assembly 220 can be disposed only on one side of the access connector. This simplifies the structure of the flange, reduces the manufacturing cost, and makes the flange more lightweight, easy to install and carry. Since the conductive assembly 220 can be directly connected to the use equipment, it reduces the loss and interference in the signal transmission process, thereby improving the transmission efficiency of the optical signal and the electrical signal.

[0046] As shown in Figure 2 and Figure 3 As shown, more specifically, the communication assembly 210 includes a first communication piece 2110 and a second communication piece 2120, and the first communication piece 2110 is detachably connected with the second communication piece 2120. The assembled communication assembly 210 is clamped with the conductive assembly 220 through the protruding part 2130. The detachable connection between the first communication piece 2110 and the second communication piece 2120 can make the installation more convenient.

[0047] In this way, the assembled communication assembly 210 is clamped with the conductive assembly 220 through the protruding part 2130, which can ensure the close connection between the communication assembly 210 and the conductive assembly 220. The setting of the protruding part 2130 not only increases the stability of the connection, but also reduces the risk of loose connection caused by vibration or impact, thereby ensuring the continuity and stability of signal transmission. The clamping setting can also make the connection between the communication assembly 210 and the conductive assembly 220 more firm, so that even in harsh environments or long-term operation conditions, stable signal transmission performance can be maintained, and the reliability of the entire optoelectrical hybrid flange is improved.

[0048] Compared with the prior art, the photoelectric hybrid flange provided by the embodiment of the utility model, by setting protection assembly 30, the flange can effectively protect the inside and part of the outside area of the shell assembly 10 in the storage, transportation or non-use state through the assembly protection assembly 30. The shape and size of the plugging piece 310 are accurately matched with the first opening 120, ensuring that dust, moisture and other foreign matters cannot easily invade the first containing space 110, thereby effectively preventing the internal elements such as the communication assembly 210 and the conductive assembly 220 from being contaminated or damaged, and guaranteeing the durability and reliability of the flange. The protection assembly 30 is composed of the plugging piece 310 and the operating piece 320, and is detachably connected with the shell assembly 10, when installing or maintaining, the user can easily remove the protection assembly 30, facilitating the subsequent plug-in operation or internal inspection, and improving the convenience and efficiency of the operation.

[0049] The above is only the preferred specific implementation manner of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art can easily think of the changes or replacements within the technical range disclosed by the utility model, which should be covered in the protection scope of the utility model.

Claims

1. An opto-electric hybrid flange, characterized in that, The utility model relates to a shell assembly (10) and a protection assembly (30) and a conductive mechanism (20) and a communication assembly (210) and a first opening (120) and a first accommodating space (110) and a first conductive component (2210) and a second conductive component (2220) and a second opening (3130) and a stop portion (3110) and a filling portion (3120) and a first shell (130) and a second shell (140) and a second accommodating space (2150) and a communication pipe (2140) and a protruding portion (2130) are provided. The utility model relates to a shell assembly (10) and a protection assembly (30) and a conductive mechanism (20) and a communication assembly (210) and a first opening (120) and a first accommodating space (110) and a first conductive component (2210) and a second conductive component (2220) and a second opening (3130) and a stop portion (3110) and a filling portion (3120) and a first shell (130) and a second shell (140) and a second accommodating space (2150) and a communication pipe (2140) and a protruding portion (2130) are provided. The utility model relates to a shell assembly (10) and a protection assembly (30) and a conductive mechanism (20) and a communication assembly (210) and a first opening (120) and a first accommodating space (110) and a first conductive component (2210) and a second conductive component (2220) and a second opening (3130) and a stop portion (3110) and a filling portion (3120) and a first shell (130) and a second shell (140) and a second accommodating space (2150) and a communication pipe (2140) and a protruding portion (2130) are provided. The utility model relates to a shell assembly (10) and a protection assembly (30) and a conductive mechanism (20) and a communication assembly (210) and a first opening (120) and a first accommodating space (110) and a first conductive component (2210) and a second conductive component (2220) and a second opening (3130) and a stop portion (3110) and a filling portion (3120) and a first shell (130) and a second shell (140) and a second accommodating space (2150) and a communication pipe (2140) and a protruding portion (2130) are provided.

2. The opto-electric hybrid flange of claim 1, wherein, The utility model relates to a shell assembly (10) and a protection assembly (30) and a conductive mechanism (20) and a communication assembly (210) and a first opening (120) and a first accommodating space (110) and a first conductive component (2210) and a second conductive component (2220) and a second opening (3130) and a stop portion (3110) and a filling portion (3120) and a first shell (130) and a second shell (140) and a second accommodating space (2150) and a communication pipe (2140) and a protruding portion (2130) are provided.

3. The opto-electric hybrid flange of claim 1, wherein, The utility model relates to a shell assembly (10) and a protection assembly (30) and a conductive mechanism (20) and a communication assembly (210) and a first opening (120) and a first accommodating space (110) and a first conductive component (2210) and a second conductive component (2220) and a second opening (3130) and a stop portion (3110) and a filling portion (3120) and a first shell (130) and a second shell (140) and a second accommodating space (2150) and a communication pipe (2140) and a protruding portion (2130) are provided.

4. The opto-electric hybrid flange of claim 3, wherein, The utility model relates to a shell assembly (10) and a protection assembly (30) and a conductive mechanism (20) and a communication assembly (210) and a first opening (120) and a first accommodating space (110) and a first conductive component (2210) and a second conductive component (2220) and a second opening (3130) and a stop portion (3110) and a filling portion (3120) and a first shell (130) and a second shell (140) and a second accommodating space (2150) and a communication pipe (2140) and a protruding portion (2130) are provided.

5. The opto-electric hybrid flange of claim 1, wherein, The utility model relates to a shell assembly (10) and a protection assembly (30) and a conductive mechanism (20) and a communication assembly (210) and a first opening (120) and a first accommodating space (110) and a first conductive component (2210) and a second conductive component (2220) and a second opening (3130) and a stop portion (3110) and a filling portion (3120) and a first shell (130) and a second shell (140) and a second accommodating space (2150) and a communication pipe (2140) and a protruding portion (2130) are provided.

6. The opto-electric hybrid flange of claim 5, wherein, ​ 7. The opto-electric hybrid flange of claim 1, wherein, ​ 8. The opto-electric hybrid flange of claim 2, wherein, ​ 9. The opto-electric hybrid flange of claim 1, wherein, ​ 10. The opto-electric hybrid flange according to claim 1 or 7, characterized in that, ​