CN211047101U - Embedded optical modem - Google Patents
Embedded optical modem Download PDFInfo
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- CN211047101U CN211047101U CN201922009619.XU CN201922009619U CN211047101U CN 211047101 U CN211047101 U CN 211047101U CN 201922009619 U CN201922009619 U CN 201922009619U CN 211047101 U CN211047101 U CN 211047101U
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Abstract
The utility model discloses an embedded optical modem, which comprises a panel matched with a socket bottom box and a body fixed at the inner side of the panel; the panel comprises a socket component and a net port; the machine body comprises a power supply assembly, an optical fiber interface and an optical modem; the power supply assembly is used for supplying power to the optical modem; the body power supply assembly is connected with the panel socket assembly in parallel, and the panel network port is connected with the body optical modem Ethernet interface; the optical fiber interface of the machine body is connected with the optical port of the optical modem; when the socket works, the machine body is embedded into the socket bottom box, and the panel is detachably and fixedly connected with the socket bottom box. The utility model provides an embedded light cat, what can inlay formula install on the wall body that has the socket box of reservation, need not preassemble in advance or the wall fluting, can also remain original socket function, when having solved and installed or repacking optic fibre circuit of registering one's residence additional, the inconvenience that can not embedded installation light cat caused.
Description
Technical Field
The utility model belongs to the optical fiber communication field, more specifically relates to an embedded light cat.
Background
In the prior art, a plurality of devices need to be simultaneously accessed to the internet indoors, and multiple devices are simultaneously accessed to the internet usually by connecting an optical modem and a wireless router with an optical fiber home-entry information box. The optical fiber home information box is specially designed for Fiber To The Home (FTTH), and is compatible with ONU equipment of mainstream equipment manufacturers. When the optical fiber home information box is used, the optical fiber home information box is generally embedded into a wall body in a user room and is only used by the user. After wiring installation, a user can surf the internet, the optical fiber home box is generally arranged in a living room, the box door is designed to be easy to open and convenient to maintain, and a socket is usually arranged inside the box door.
However, the optical modem needs to be additionally installed, and in addition, when a power grid is changed into an optical network, interior decoration of a house or structure adjustment is carried out, the optical modem cannot be embedded into a wall body like a pre-installed optical fiber home information box, so that the optical modem needs to be placed on a desktop or fixed on a wall surface, the appearance is not only influenced, and excessive wires are messy.
SUMMERY OF THE UTILITY MODEL
To the above defect of prior art or improve the demand, the utility model provides an embedded light cat, its aim at can be through replacing original plug seat into embedded light cat panel through with light modem and socket high integration to install embedded light cat additional under the prerequisite that does not influence current socket panel function, can not embedded installation's technical problem when solving from this and installing additional or repacking light cat.
In order to achieve the above object, according to one aspect of the present invention, there is provided an embedded optical modem, comprising a panel matched with a socket bottom box, and a body fixed to an inner side of the panel;
The panel comprises a socket component and a net port;
The body comprises a power supply assembly, an optical fiber interface and an optical modem; the power supply assembly is used for supplying power to the optical modem;
The body power supply assembly is connected with the panel socket assembly in parallel, and the panel network port is connected with the body optical modem Ethernet interface; the optical fiber interface of the machine body is connected with the optical port of the optical modem;
When the socket works, the machine body is embedded into the socket bottom box, and the panel is detachably and fixedly connected with the socket bottom box.
Preferably, the body of the embedded optical modem comprises a heat dissipation assembly, the heat dissipation assembly is a passive heat dissipation assembly or an active heat dissipation assembly, and when the heat dissipation assembly is the active heat dissipation assembly, the power supply assembly supplies power to the active heat dissipation assembly.
Preferably, the embedded optical modem comprises a router on the body, a WAN port of the router is connected to a network cable interface of the optical modem, and the power supply component of the body supplies power to the router.
Preferably, the embedded optical modem has a RC7235 chip as a core processor module of the airframe optical modem.
Preferably, the embedded optical modem, the panel thereof comprises a heat dissipation hole.
Preferably, the embedded optical modem is provided with heat dissipation fins at the heat dissipation holes of the panel, the heat dissipation fins are connected with the main body, and the heat generated by the main body is taken out of the panel through the air flow generated by the operation of the heat dissipation fins and the fan.
Preferably, the embedded optical modem, the panel of which includes a reset button, the reset button is used to reset the optical modem.
Preferably, the panel of the embedded light cat comprises an indicator light for indicating the network and/or power supply status.
Preferably, the embedded optical modem, the panel thereof comprises a switch assembly.
preferably, the optical fiber interface of the embedded optical modem is an L C interface or an SC interface, and the optical fiber interface is connected with a home cable.
Generally, through the utility model discloses above technical scheme who conceives compares with prior art, can gain following beneficial effect:
The utility model provides an embedded light cat, what can inlay formula install on the wall body that has the socket box of reservation, need not preassemble in advance or the wall fluting, can also remain original socket function, when having solved and installed or repacking optic fibre circuit of registering one's residence additional, the inconvenience that can not embedded installation light cat caused. And simultaneously, the utility model discloses an embedded light cat has solved traditional optic fibre and has gone into fixed the settling technical problem that can not remove in the sitting room of family information case, specifically does, cooperates indoor stealthy optical cable, can have the position installation of switch socket wantonly indoor, for example, study, gymnasium, multi-functional room, bedroom etc..
The utility model discloses an embedded optical modem, with optical modem and socket high integration, replaced conventional optic fibre information box of registering one's residence, reduced the size of prior art optic fibre information box of registering one's residence by a wide margin. The appearance and the size are close to the socket, the influence on the whole visual effect of living room decoration is reduced to the greatest extent, and the appearance is attractive and elegant. The utility model discloses an embedded light cat can replace optic fibre information box of registering one's residence.
Drawings
FIG. 1 is a schematic illustration of a panel of an embedded light cat;
Fig. 2 is a schematic illustration of the body of an embedded light cat.
The same reference numbers will be used throughout the drawings to refer to the same or like elements or structures, wherein: 1 is a panel, 2 is a switch component, 3 is a socket component, 4 is an indicator light of network and/or power state, 5 is a reset button, 6 is a network port, 7 is a heat dissipation hole, 11 is a machine body, 12 is a strong current interface, 13 is an optical fiber interface, 14 is a power supply component, 15 is an optical modem, and 16 is a heat dissipation component.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail with reference to the following embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention. Furthermore, the technical features mentioned in the embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.
The utility model provides an embedded optical modem, which comprises a panel matched with a socket bottom box and a machine body fixed with the inner side of the panel;
The panel comprises a socket assembly, a network port, a heat dissipation hole, a reset button, an indicator lamp of a network and/or power supply state and a switch assembly; the radiating holes of the panel are provided with radiating fins, the radiating fins are connected with the machine body, and heat generated by the machine body is brought out of the panel through air flow generated by the operation of the radiating fins and the fan, so that the effect of cooling is achieved; the reset button is used for resetting the optical modem; the receptacle assembly is preferably a five-hole receptacle assembly.
the optical fiber modem comprises a body, a strong electric area, a weak electric area, a power supply module, a light modem, a heat dissipation module and a router, wherein the body is divided into the strong electric area and the weak electric area, the strong electric area comprises a power supply module and a strong electric interface, the weak electric area comprises an optical fiber interface, an optical modem, a heat dissipation module and a router, the power supply module is used for supplying power for the optical modem, the optical modem is used for modulating and demodulating optical signals and comprises a transmitting part, a receiving part, a control part, an interface, a power supply and the like, the data terminal equipment provides transmitted data in a binary serial signal form, the data are converted into internal logic level through the interface and are transmitted into a transmitting part, the signals are modulated into signals required by a circuit through the modulation circuit and are transmitted to the circuit, the signals are restored into digital signals through filtering, inverse modulation and level conversion, the digital signals are transmitted to a receiving end through an optical fiber circuit, the optical signals are converted into electric signals through the receiver through the demodulation circuit, more specifically, the optical modem comprises a core processor module, a complex programmable logic device, a singlechip circuit module, a V.35 signal processing module, a V.V.35 signal processing module, a singlechip, a V.V.V. 1 interface module, a phase conversion module, a singlechip, a first chip, a second chip and a second chip, a third chip, a fourth chip, a fifth chip;
the heat dissipation assembly is a passive heat dissipation assembly or an active heat dissipation assembly, and when the heat dissipation assembly is an active heat dissipation assembly, such as a fan, the power supply assembly supplies power to the active heat dissipation assembly;
The body power supply assembly is connected with the panel socket assembly in parallel, and the panel network port is connected with the body optical modem Ethernet interface; the optical fiber interface of the machine body is connected with the optical port of the optical modem; the WAN port of the router is connected with a network cable interface of the optical modem, and the power supply assembly of the machine body supplies power to the router; the optical fiber interface is connected with the home cable.
When the socket works, the machine body is embedded into the socket bottom box, and the panel is detachably and fixedly connected with the socket bottom box. Therefore, the embedded optical modem can be concealed on the wall, namely, the machine body can be buried in the wall, and the thickness of the optical modem panel protruding out of the wall surface is not more than 3mm, so that the vision is relatively beautiful.
The following are examples:
An embedded optical modem comprises a body 11 and a panel 1; as shown in fig. 2, the main body 11 includes a high-power interface 12, a power supply module 14, an optical fiber interface 13, an optical modem 15, and a heat sink module 16; as shown in fig. 1, the panel 1 includes a heat dissipation hole 7, a reset button 5, a power indicator 4, a socket assembly 3, a network port 6, and a power switch 2.
After the embedded optical modem is installed, the thickness of the optical modem panel protruding out of the wall surface is not more than 3 mm. The power switch is arranged on the right side of the panel and used for controlling the power supply of the socket and the power supply assembly. The socket is close to the power switch and is connected with the power supply assembly in parallel, and the socket is a 5-hole socket which is used for supplying power for the wireless router or other equipment. The reset button, the network port and the power indicator lamp are close to the socket; the reset button is used for password resetting so as to restore the setting; the number of the network ports is 1 to 4 groups, and the network ports are used for connecting the wireless router. The radiating fins are arranged in the radiating holes of the panel, are good thermal conductors and are easy to conduct and release heat, and the radiating fins are provided with a plurality of groups of fins, so that the radiating area can be increased, and the radiating effect is improved.
the embedded optical modem is characterized in that a body of the embedded optical modem is embedded in a wall, the body comprises a strong current interface, a power supply assembly, an optical fiber interface, an optical modem and a heat dissipation assembly, the power supply assembly is connected with household electricity through the strong current interface, the power supply assembly is used for providing direct current power and is used for providing electricity for the optical modem and a heat sink fan, the optical fiber interface is of a model L C and is used for being connected with an indoor rubber-insulated cable or an indoor invisible cable, a core processor module, a complex programmable logic device, a single chip circuit module, a dial switch circuit module, a V.35 signal processing module, an optical fiber interface module, an E1 interface module and the like are integrated on a circuit board of the optical modem and used for converting and receiving and transmitting photoelectric signals, and the heat dissipation assembly comprises a fan and is connected with the power supply.
It will be understood by those skilled in the art that the foregoing is merely a preferred embodiment of the present invention, and is not intended to limit the invention to the particular forms disclosed, but on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the invention as defined by the appended claims.
Claims (11)
1. An embedded optical modem is characterized by comprising a panel matched with a socket bottom box and a body connected with the panel;
The panel comprises a socket component and a net port;
The machine body comprises a power supply assembly, an optical fiber interface and an optical modem; the power supply assembly is used for supplying power to the optical modem;
The power supply assembly is connected with the socket assembly in parallel, and the network port is connected with the Ethernet interface of the optical modem; the optical fiber interface is connected with the optical port of the optical modem;
When the socket works, the machine body is embedded into the socket bottom box, and the panel is detachably and fixedly connected with the socket bottom box.
2. The embedded optical modem of claim 1, wherein the body includes a heat sink assembly that is either a passive heat sink assembly or an active heat sink assembly, and wherein the power assembly provides power to the active heat sink assembly when the heat sink assembly is an active heat sink assembly.
3. The embedded optical modem of claim 1, wherein the body includes a router, the router WAN port is connected to the network cable interface of the optical modem, and the power supply assembly supplies power to the router.
4. The embedded optical modem of claim 1, wherein the optical modem core processor module employs an RC7235 chip.
5. The embedded photo cat of claim 1 wherein the panel comprises heat dissipation vents.
6. The embedded photo cat as claimed in claim 5 wherein the heat dissipation apertures of the panel are provided with heat sinks attached to the body, the heat generated by the body being carried out of the panel by the air flow generated by the operation of the heat sinks and/or the fan.
7. The embedded optical modem of claim 1, wherein the panel includes a reset button operative to reset the optical modem on restart.
8. The embedded photo cat of claim 1 wherein the panel includes indicator lights for indicating network and/or power status.
9. The embedded optical modem of claim 1, wherein the panel comprises a switch assembly.
10. the embedded optical modem of claim 1, wherein the optical fiber interface is an L C interface or an SC interface, and the optical fiber interface is connected to a fiber optic home cable.
11. The embedded optical modem of claim 1, wherein the optical modem panel protrudes from the wall surface by a thickness of no more than 3 mm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922009619.XU CN211047101U (en) | 2019-11-20 | 2019-11-20 | Embedded optical modem |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922009619.XU CN211047101U (en) | 2019-11-20 | 2019-11-20 | Embedded optical modem |
Publications (1)
Publication Number | Publication Date |
---|---|
CN211047101U true CN211047101U (en) | 2020-07-17 |
Family
ID=71566995
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201922009619.XU Active CN211047101U (en) | 2019-11-20 | 2019-11-20 | Embedded optical modem |
Country Status (1)
Country | Link |
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CN (1) | CN211047101U (en) |
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2019
- 2019-11-20 CN CN201922009619.XU patent/CN211047101U/en active Active
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