CN218550204U - 86 type intelligent wireless gateway capable of inserting card - Google Patents

86 type intelligent wireless gateway capable of inserting card Download PDF

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Publication number
CN218550204U
CN218550204U CN202222637794.5U CN202222637794U CN218550204U CN 218550204 U CN218550204 U CN 218550204U CN 202222637794 U CN202222637794 U CN 202222637794U CN 218550204 U CN218550204 U CN 218550204U
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circuit
pin
pins
power
power supply
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余小益
王玺
夏浏军
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Pioneering Huikang Technology Co ltd
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Pioneering Huikang Technology Co ltd
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Abstract

The utility model discloses a 86 type intelligent wireless gateway of pluggable card, including casing part and control part, the casing department includes panel, 86 base and sets up power strip and the communication mainboard inside panel and 86 base, be equipped with stromatolite connecting terminal between power strip and the communication mainboard, the control part includes 220V power supply circuit, 3.3V converting circuit, POE receive circuit, ethernet connecting circuit, stromatolite connecting circuit, CPU connecting circuit, MINICIE interface connection circuit, board-mounted bluetooth connecting circuit and LED connecting circuit, and 220V power supply circuit, 3.3V converting circuit, POE receive circuit and ethernet connecting circuit integration are on the power strip; the utility model discloses a replacement card formula communication module realizes the access of multiple communication protocol equipment, realizes that different thing networking device connects, is favorable to unifying the network construction of thing networking device, the data transmission agreement of unified various equipment, the design of 86 type socket formulas simultaneously for simple to operate, the access of the power of being convenient for, connection.

Description

86 type intelligent wireless gateway capable of inserting card
Technical Field
The utility model relates to a 86 type intelligent wireless gateway of pluggable card.
Background
At present, in an internet era, data transmission is mostly adopted for transmission among information, so that rapid sharing, understanding and the like of the information are realized. The gateway is basically needed to be used for transmitting the information of the existing equipment, wireless and limited connection is realized through the gateway, however, various kinds of equipment in the existing hospital are respectively managed by different equipment management systems, data acquisition is carried out in a wireless AP mode, and the following defects are caused in the using process:
1. different thing networking equipment need adopt different gateways, is difficult to unify, has the repeated construction problem, easily causes customer's objection.
2. The transmission protocols of the equipment are diversified and difficult to unify.
3. The sensing equipment is used simultaneously, signal interference and poor stability.
4. The implementation is difficult and the installation cost is high.
Therefore, the internet of things gateway is convenient to research and develop, can meet the requirements of different existing internet of things devices, realizes multi-protocol conversion connection, and has the advantages that the gateway with diversified functions is imperative, and the problems in the using process of the existing gateway are solved.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a convenient to use, the installation of being convenient for through replacing plug-in card formula communication module, realizes that multiple communication protocol equipment inserts, realizes that different thing networking facilities connect, is favorable to unifying the network construction of thing networking equipment, unifies the data transmission protocol of various equipment, but its 86 type intelligent wireless gateways that have practicality and use the plug-in card of universality.
In order to solve the above problem, the utility model adopts the following technical scheme:
a86-type intelligent wireless gateway capable of being plugged in a card comprises a shell part and a control part, wherein the shell part comprises a panel, a 86 base, a power panel and a communication mainboard, the power panel and the communication mainboard are arranged in the panel and the 86 base, a laminated connecting terminal is arranged between the power panel and the communication mainboard, a support is arranged on the communication mainboard, and one end of the support is provided with a MINIPIE interface; the control part includes 220V power supply circuit, 3.3V converting circuit, POE receives the circuit, ethernet connecting circuit, stromatolite connecting circuit, CPU connecting circuit, MINICIE interface connection circuit, board year bluetooth connecting circuit and LED connecting circuit, 220V power supply circuit, 3.3V converting circuit, POE receives circuit and ethernet connecting circuit integration on the power strip, MINICIE interface connection circuit, board year bluetooth connecting circuit and LED connecting circuit integration are on the communication mainboard, MINICIE interface connection circuit is the MINICIE interface from electrified circuit and with CPU connecting circuit connection, stromatolite connecting circuit is two, two stromatolite connecting circuit set up respectively on power strip and communication mainboard, connect through stromatolite connecting terminal between two stromatolite connecting circuits.
Preferably, the 220V power supply circuit includes a power management chip U1, the power management chip U1 is provided with 1-6 main power supplies 6 and pins, the pins 1 and 2 are connected to an external 220V power supply, and the pin 6 is used for outputting 12V voltage; the 12V voltage is input into a 3.3V conversion circuit and a POE powered circuit.
Preferably, the 3.3V conversion circuit includes a power management chip U3, the power management chip U3 is provided with 1-6 total supply 6 pins, one end of the pin 3 is used for connecting 12V voltage output on the 220V power supply circuit, and one end of the pin 2 is used for outputting 3.3V voltage.
Preferably, POE receives power supply circuit includes communication module U2, and communication module is equipped with 1-6 total 6 pins that supply, and the 12V voltage of output on its pin 6 one end is used for connecting the 220V power supply circuit.
Preferably, the ethernet connection circuit comprises a transformer T1 and an RJ45 connector, the RJ45 connector has 1-12 pins, and pin 9 thereof is connected to the 3.3V voltage output by the 3.3V conversion circuit.
Preferably, the laminated connection circuits all comprise laminated connection terminals, each laminated connection terminal consists of a bullhorn connector P1, a contact pin P2, a contact pin P3 and a contact pin P4, the bullhorn connector P1 is provided with 1-10 pins for 10 total, and the pins P1 and P2 of the bullhorn connector of the laminated connection circuit arranged on the power supply board are used for accessing 3.3V voltage output by the 3.3V conversion circuit; the pin 1 and the pin 2 of the ox-horn connector P1 of the laminated connecting circuit arranged on the communication mainboard are used for outputting 3.3V voltage.
Preferably, the CPU connection circuit includes a wireless routing chip U2, the wireless routing chip U2 is provided with 1-56 total supply pins 56, and the pins 55 and 53 are used for accessing the 3.3V voltage output by the laminated connection circuit on the communication motherboard.
Preferably, the onboard bluetooth connection circuit comprises a bluetooth module M1, the bluetooth module M1 is provided with 27 total supply pins 1-27, one end of a pin 10 of the bluetooth module is connected to the 3.3V voltage output by the laminated connection circuit on the communication motherboard, a pin 17 of the bluetooth module is connected to the pin 12 of the wireless routing chip U2, and a pin 18 of the bluetooth module is connected to the pin 11 of the wireless routing chip U2.
Preferably, the LED circuit comprises four groups of LED lamps, and the LED lamps are connected with the wireless routing chip U2.
Preferably, the MINIPCIE interface connection circuit includes a MINIPCIE interface, the MINIPCIE interface has 1 to 52 total pins, one end of the pin 39 is connected to the 3.3V voltage output by the stacked layer connection circuit on the communication motherboard, and the pin 36 and the pin 38 are connected to the pin 51 and the pin 52 of the wireless routing chip U2, respectively.
The beneficial effects of the utility model are that:
1. the access of various communication protocol devices is realized by replacing the card-inserting type communication module;
2. the function of a data protocol converter can be achieved, and the data protocols such as ZIGBEE, bluetooth, lora, SUB-G and the like are converted into an Ethernet TCP/IP protocol;
3. the Internet of things equipment is accessed to the Internet of things platform through the gateway, so that unified management of the equipment is realized, and all application systems are supported;
4. the aim is to reduce the size of the equipment and shorten the power supply path on the premise of ensuring the gateway protocol conversion performance.
5. The design of 86 type base for the installation of whole gateway and use convenience more, occupation space is little during the installation, and the security is high.
Drawings
In order to clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the embodiments or the technical solutions in the prior art will be briefly described below, but the present invention is not limited to the scope of the present invention.
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic diagram of the position of the power interface of the present invention;
fig. 3 is a schematic diagram of the position of the network cable jack of the present invention;
fig. 4 is a schematic view of the internal structure of the present invention;
fig. 5 is a schematic structural view of the power board and the communication motherboard of the present invention;
FIG. 6 is a schematic diagram of the 220V power supply circuit of the present invention;
FIG. 7 is a schematic diagram of the 3.3V conversion circuit of the present invention;
fig. 8 is a schematic diagram of the POE power receiving circuit of the present invention;
FIG. 9 is a schematic diagram of the Ethernet connection circuit of the present invention;
FIG. 10 is a schematic view of the laminated connection circuit of the present invention;
FIG. 11 is a schematic diagram of the CPU connection circuit of the present invention;
fig. 12 is a schematic diagram of the MINIPCIE interface connection circuit of the present invention;
FIG. 13 is a schematic diagram of the onboard Bluetooth connection circuit of the present invention;
fig. 14 is a schematic diagram of the LED circuit of the present invention;
the power supply comprises a panel 1, a base 2.86, a power interface 3, a network cable jack 4, a mounting hole 5, a power panel 6, a communication mainboard 7, a support 8, a laminated connecting terminal 9 and a MINIPIE interface 10.
Detailed Description
Referring to fig. 1 to 14, the 86-type intelligent wireless gateway capable of inserting cards comprises a shell part and a control part, wherein the shell part comprises a panel 1, a 86 base 2, a power panel 6 and a communication mainboard 7 which are arranged in the panel and the 86 base, a laminated connecting terminal 9 is arranged between the power panel 6 and the communication mainboard 7, a support 8 is arranged on the communication mainboard 7, and an MINIPCIE interface 10 is installed at one end of the support 8; the control part includes 220V power supply circuit, 3.3V converting circuit, POE receives the circuit, ethernet connecting circuit, stromatolite connecting circuit, CPU connecting circuit, MINICIE interface connection circuit, board-mounted bluetooth connecting circuit and LED connecting circuit, 220V power supply circuit, 3.3V converting circuit, POE receives circuit and ethernet connecting circuit integration on the power strip, MINICIE interface connection circuit, board-mounted bluetooth connecting circuit and LED connecting circuit integration are on the communication mainboard, MINICIE interface connection circuit is the MINICIE interface from electrified circuit and with CPU connecting circuit connection, stromatolite connecting circuit is two, two stromatolite connecting circuit set up respectively on power strip and communication mainboard, connect through stromatolite connecting terminal between two stromatolite connecting circuits.
Further, the 220V power supply circuit includes a power management chip U1, the power management chip U1 is provided with 1-6 total power supplies 6 and pins, the pins 1 and 2 are connected to an external 220V power supply, and the pin 6 is used for outputting 12V voltage; the 12V voltage is input into a 3.3V conversion circuit and a POE powered circuit.
Further, the 3.3V conversion circuit includes a power management chip U3, the power management chip U3 is provided with 1-6 total supply 6 pins, one end of the pin 3 is used for connecting 12V voltage output on the 220V power supply circuit, and one end of the pin 2 is used for outputting 3.3V voltage.
Further, POE receives electric circuit and includes communication module U2, and communication module is equipped with 1-6 and always supplies 6 pins, and the 12V voltage of output on its 6 one end of pin is used for connecting the 220V power supply circuit.
Further, the ethernet connection circuit includes a transformer T1 and an RJ45 connector, the RJ45 connector has 1-12 pins, and pin 9 thereof is connected to the 3.3V voltage output by the 3.3V conversion circuit.
Further, the laminated connection circuits all comprise laminated connection terminals, each laminated connection terminal consists of a bull horn connector P1, a contact pin P2, a contact pin P3 and a contact pin P4, the bull horn connector P1 is provided with 1-10 pins for 10 total supply, and the pin 1 and the pin 2 of the bull horn connector P1 of the laminated connection circuit arranged on the power supply board are used for accessing 3.3V voltage output by the 3.3V conversion circuit; the pin 1 and the pin 2 of the header connector P1 of the laminated connection circuit arranged on the communication mainboard are used for outputting 3.3V voltage.
Further, the CPU connection circuit includes a wireless routing chip U2, the wireless routing chip U2 is provided with 1-56 total supply pins 56, and the pins 55 and 53 are used for accessing the 3.3V voltage output by the laminated connection circuit on the communication motherboard.
Further, the onboard Bluetooth connecting circuit comprises a Bluetooth module M1, the Bluetooth module M1 is provided with 27 pins for 1-27 total supply, one end of a pin 10 of the Bluetooth module is connected to the 3.3V voltage output by the laminated connecting circuit on the communication mainboard, a pin 17 of the Bluetooth module is connected with the pin 12 of the wireless routing chip U2, and a pin 18 of the Bluetooth module is connected with the pin 11 of the wireless routing chip U2.
Further, the LED circuit comprises four groups of LED lamps, and the LED lamps are connected with the wireless routing chip U2.
Further, the MINIPCIE interface connection circuit includes a MINIPCIE interface, the MINIPCIE interface has 1 to 52 total pins, one end of the pin 39 is connected to the 3.3V voltage output by the stacked layer connection circuit on the communication motherboard, and the pin 36 and the pin 38 are connected to the pin 51 and the pin 52 of the wireless routing chip U2, respectively.
Further, a power interface 3 and a network cable socket 4 are arranged on the 86 base.
Further, the 220V power supply circuit is used for converting the accessed 220V voltage into 12V output voltage so as to meet the requirements of different circuits and electronic devices.
Further, the 3.3V conversion circuit is used for converting the accessed 12V voltage into an output voltage of 3.3V so as to meet the requirements of different circuits and electronic devices.
Further, the POE powered circuit is used for power supply during data transmission.
Further, the Ethernet connection circuit is used for connecting an external Ethernet cable, and the transformer is used for realizing the voltage value stabilization of data transmission.
Further, the laminated connection circuit is used for line connection between the power panel and the communication main board, and data access, output and other operations are achieved while electrification is guaranteed.
Furthermore, the CPU connecting circuit is a control terminal of the communication mainboard, and the function of the wireless WIFI router is achieved.
Further, the MINIPIE interface connection circuit is used for accessing different card-inserting type communication modules.
Furthermore, the onboard Bluetooth connecting circuit is used for connecting Bluetooth equipment, and a data connection mode is used as a basis to ensure that the gateway device can meet the connection of most Internet of things equipment in the market.
Further, the LED circuit is used for displaying the working state of the equipment and the access state of the signal.
The utility model discloses mainly use linux operating system to tailor, realize the wireless sensing equipment's of multiple agreement access ability, manage through the IOT platform, when equipment is in on-line state at the platform, can dispose equipment, including OTA upgrading, script management, gateway parameter's configuration, hang the management etc. of equipment down.
The utility model has the advantages of that:
1. diversity: the intelligent gateway of the Internet of things has diversity, supports various common wireless network communication protocols (WiFi, zigBee, BLE, lora and Sub-G), and is more suitable for the use scene of a hospital.
2. Safety: the gateway can authenticate the accessed equipment, ensures that an unauthorized party cannot take over the equipment of the Internet of things, supports data encryption transmission and prevents data from being intercepted and forged.
3. Parallelism: the intelligent gateway of the Internet of things supports a plurality of network modules to be used simultaneously, the access equipment works simultaneously, and data are transmitted and received in parallel.
4. Supporting protocol conversion: the gateway converges each communication module, and different communication protocols are uniformly converted into standard protocols such as wired or WiFi, which is beneficial to the butt joint of the upper-end platform.
5. The implementation is simple, and the power supply is convenient: the product can directly replace a panel switch and reserve the functions of panel power supply or switch.
The utility model discloses during the use:
during installation: the product is installed in the same way as the traditional 86-type socket, and no extra groove is needed in the wall body or a space is needed to be reserved.
After the installation and implementation are finished, the power supply is ensured to be correctly switched on, then a management interface provided by the wireless gateway is opened through equipment with a WiFi function, and then required protocol conversion setting is carried out, so far, the wireless gateway can be normally used. The subsequent software maintenance part only needs to be managed and maintained through a webpage or an app.
The above is only the specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any changes or substitutions that are not thought of through the creative work should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope defined by the claims.

Claims (10)

1. A86 type intelligent wireless gateway capable of being plugged with a card is characterized in that: the intelligent power supply comprises a shell part and a control part, wherein the shell part comprises a panel, a 86 base, a power panel and a communication mainboard, the power panel and the communication mainboard are arranged in the panel and the 86 base, a laminated connecting terminal is arranged between the power panel and the communication mainboard, a support is arranged on the communication mainboard, and one end of the support is provided with an MINIPIE interface; the control part includes 220V power supply circuit, 3.3V converting circuit, POE receives the circuit, ethernet connecting circuit, stromatolite connecting circuit, CPU connecting circuit, MINICIE interface connection circuit, board year bluetooth connecting circuit and LED connecting circuit, 220V power supply circuit, 3.3V converting circuit, POE receives circuit and ethernet connecting circuit integration on the power strip, MINICIE interface connection circuit, board year bluetooth connecting circuit and LED connecting circuit integration are on the communication mainboard, MINICIE interface connection circuit is the MINICIE interface from electrified circuit and with CPU connecting circuit connection, stromatolite connecting circuit is two, two stromatolite connecting circuit set up respectively on power strip and communication mainboard, connect through stromatolite connecting terminal between two stromatolite connecting circuits.
2. A pluggable 86-type smart wireless gateway as claimed in claim 1, wherein: the 220V power supply circuit comprises a power management chip U1, the power management chip U1 is provided with 1-6 total power supplies 6 and pins, the pins 1 and 2 are connected with an external 220V power supply, and the pin 6 is used for outputting 12V voltage; 12V voltage input 3.3V conversion circuit and POE powered circuit.
3. A pluggable 86-type smart wireless gateway as claimed in claim 2, wherein: the 3.3V conversion circuit comprises a power management chip U3, the power management chip U3 is provided with 1-6 total supply pins 6, one end of the pin 3 is used for connecting 12V voltage output by the 220V power supply circuit, and one end of the pin 2 is used for outputting 3.3V voltage.
4. A pluggable 86-type smart wireless gateway as claimed in claim 2, wherein: the POE powered circuit comprises a communication module U2, the communication module is provided with 1-6 total supply pins, and 6 ends of the pins are used for connecting 12V voltage output by the 220V power supply circuit.
5. The intelligent plug-in card wireless gateway 86 according to claim 3, wherein: the Ethernet connection circuit comprises a transformer T1 and an RJ45 connector, wherein the RJ45 connector is provided with 1-12 pins, and a pin 9 of the RJ45 connector is connected with 3.3V voltage output by the 3.3V conversion circuit.
6. The intelligent card-insertable type 86 wireless gateway of claim 3, wherein: the laminated connecting circuits comprise laminated connecting terminals, each laminated connecting terminal consists of a bull-horn connector P1, a contact pin P2, a contact pin P3 and a contact pin P4, the bull-horn connector P1 is provided with 1-10 pins for 10 total supply, and the pin 1 and the pin 2 of the bull-horn connector P1 of the laminated connecting circuit arranged on a power supply board are used for accessing 3.3V voltage output by a 3.3V conversion circuit; the pin 1 and the pin 2 of the ox-horn connector P1 of the laminated connecting circuit arranged on the communication mainboard are used for outputting 3.3V voltage.
7. A pluggable 86 smart wireless gateway as claimed in claim 6, wherein: the CPU connecting circuit comprises a wireless routing chip U2, the wireless routing chip U2 is provided with 1-56 total pins for 56, and the pins 55 and 53 are used for accessing 3.3V voltage output by the laminated connecting circuit on the communication mainboard.
8. The pluggable 86-type intelligent wireless gateway of claim 6, wherein: the onboard Bluetooth connecting circuit comprises a Bluetooth module M1, the Bluetooth module M1 is provided with 27 pins 1-27, one end of a pin 10 of the Bluetooth module is connected to 3.3V voltage output by the laminated connecting circuit on the communication mainboard, a pin 17 of the Bluetooth module is connected with a pin 12 of a wireless routing chip U2, and a pin 18 of the Bluetooth module is connected with a pin 11 of the wireless routing chip U2.
9. A pluggable 86 smart wireless gateway as claimed in claim 7, wherein: the LED circuit comprises four groups of LED lamps, and the LED lamps are connected with the wireless routing chip U2.
10. A pluggable 86-type smart wireless gateway as claimed in claim 7, wherein: the MINICIE interface connection circuit comprises an MINICIE interface, the MINICIE interface is provided with 1-52 total pins, one end of the pin 39 is connected with the 3.3V voltage output by the laminated connection circuit on the communication mainboard, and the pin 36 and the pin 38 are respectively connected with the pin 51 and the pin 52 of the wireless routing chip U2.
CN202222637794.5U 2022-10-09 2022-10-09 86 type intelligent wireless gateway capable of inserting card Active CN218550204U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222637794.5U CN218550204U (en) 2022-10-09 2022-10-09 86 type intelligent wireless gateway capable of inserting card

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222637794.5U CN218550204U (en) 2022-10-09 2022-10-09 86 type intelligent wireless gateway capable of inserting card

Publications (1)

Publication Number Publication Date
CN218550204U true CN218550204U (en) 2023-02-28

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ID=85276178

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222637794.5U Active CN218550204U (en) 2022-10-09 2022-10-09 86 type intelligent wireless gateway capable of inserting card

Country Status (1)

Country Link
CN (1) CN218550204U (en)

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