CN212906419U - Non-contact infrared temperature measurement gate - Google Patents

Non-contact infrared temperature measurement gate Download PDF

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Publication number
CN212906419U
CN212906419U CN202021066423.0U CN202021066423U CN212906419U CN 212906419 U CN212906419 U CN 212906419U CN 202021066423 U CN202021066423 U CN 202021066423U CN 212906419 U CN212906419 U CN 212906419U
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CN
China
Prior art keywords
temperature measurement
gate
authentication
recognizer
console
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Expired - Fee Related
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CN202021066423.0U
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Chinese (zh)
Inventor
王宁
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Suzhou Yaoteng Medical Instrument Co ltd
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Suzhou Yaoteng Medical Instrument Co ltd
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Priority to CN202021066423.0U priority Critical patent/CN212906419U/en
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Abstract

The utility model discloses an infrared temperature measurement gate of non-contact, it includes the master control floodgate machine, first follow accuse floodgate machine and second follow accuse floodgate machine, master control floodgate machine both ends are equipped with first temperature measurement recognizer and second temperature measurement recognizer, the master control floodgate machine is equipped with the entering authentication operation panel in the information acquisition field of vision side that corresponds first temperature measurement recognizer, the information acquisition field of vision side that corresponds second temperature measurement recognizer is equipped with trip authentication operation panel, the information acquisition field of vision side of first temperature measurement recognizer and the information acquisition field of vision side reverse setting of second temperature measurement recognizer, first follow accuse floodgate machine and second are equipped with the brake lever respectively from the accuse floodgate machine, the lower zone edge that gets into authentication operation panel and trip authentication operation panel all is equipped with the contact preventing device who is used for arris current card. The utility model discloses can accomplish body temperature measurement and management to district business turn over personnel automatically, can alleviate community epidemic prevention staff's working strength greatly, avoid closely contact infection risk, contact risk when especially having avoided the authentication operation.

Description

Non-contact infrared temperature measurement gate
Technical Field
The utility model belongs to electronic body temperature measurement field, concretely relates to infrared temperature measurement gate of non-contact.
Background
The virus epidemic situation outbreaks from the end of 2019 to the beginning of 2020 brings serious threat to the life safety of people and huge loss to national economy. The epidemic situation has the advantages of high spreading speed, more infected people and wide spreading range, and has great influence on the whole world. With the deep understanding of viruses, governments have taken steps to isolate and enter the registrations, and facilitate the subsequent epidemiological investigation and research by registering identity information. People need to cooperate with corresponding managers to finish the body temperature detection work when entering or exiting a community, entering or exiting a subway station, entering an office building and the like. Only people who are healthy and have no abnormal body temperature can enter some public places.
In the existing community epidemic prevention management, a forehead thermometer is manually held in a short distance to carry out body temperature detection and identity registration on people entering and leaving the community. Not only is the workload huge, but also community management personnel are exposed to dangerous environments due to close contact with numerous personnel. At present, some gates are equipped with a pass identification function, and a pass card is read through a card reader in a near field communication mode, however, the pass card is mostly attached to an induction card taking area, when the pass card is taken back, hands are easy to touch an operation table board, and the risk of virus infection by contact exists.
SUMMERY OF THE UTILITY MODEL
The utility model provides a non-contact infrared temperature measurement gate for solving the technical problems existing in the prior art.
The utility model adopts the technical proposal that: a non-contact infrared temperature measurement gate comprises a master control gate, a first slave gate and a second slave gate, wherein the first slave gate and the second slave gate are positioned on the left side and the right side of the master control gate in parallel, a first temperature measurement recognizer and a second temperature measurement recognizer are arranged at two ends of the master control gate, an entry authentication console is arranged on the information acquisition visual field side corresponding to the first temperature measurement recognizer of the master control gate, a travel authentication console is arranged on the information acquisition visual field side corresponding to the second temperature measurement recognizer of the master control gate, the information acquisition visual field side of the first temperature measurement recognizer and the information acquisition visual field side of the second temperature measurement recognizer are reversely arranged in the channel direction of the gate, the first temperature measurement recognizer and the second temperature measurement recognizer have the same structure, the entry authentication console and the travel authentication console have the same structure, gate levers are respectively arranged on the first slave gate and the second slave gate, and the lower edges of the entering authentication operating platform and the lower edges of the traveling authentication operating platform are provided with anti-contact devices for supporting the arris pass cards.
Preferably, the first temperature measurement identifier comprises an identifier body which is vertically arranged, the identifier body is fixed on a machine table of the main control gate close to the gate entrance end, and the identifier body is provided with a human face camera and an infrared temperature measurement module on the information acquisition visual field side facing the gate entrance end.
Preferably, the main control floodgate machine includes two vertically fixed case posts and connects two the connection platform between the case post upper end the case post with the position that the connection platform is connected the first slope mesa and the second slope mesa that the inclined plane is opposite are moulded respectively to the position the case post with the connection platform is connected, wherein is close to first temperature measurement recognizer the mesa of first slope mesa is towards gate entrance entering end, is close to the second temperature measurement recognizer the mesa of second slope mesa is towards gate exit.
Preferably, the entry authentication console is disposed on the first inclined table top, and the exit authentication console is disposed on the second inclined table top.
Preferably, the entry authentication console is provided with an LED display screen and an authentication sensing area, the master control gate is provided with an authentication sensing card reader, and a sensing chip of the authentication sensing card reader is embedded in the lower surface of the authentication sensing area.
Preferably, the anti-contact device is a supporting rib block arranged on the lower edge of the corresponding authentication sensing area of the entry authentication console and the corresponding authentication sensing area of the travel authentication console.
Preferably, one end of the supporting edge strip block close to the authentication sensing area is provided with a guide slope surface with an upper end slope surface far away from the authentication sensing area, and the upper end of the supporting edge strip block is molded with a rubber anti-slip strip.
The utility model has the advantages that: the utility model discloses a temperature measurement sluice gate sets up respectively towards the first temperature measurement recognizer and the second temperature measurement recognizer of business turn over direction through the both ends at sluice gate master control floodgate machine, can carry out temperature measurement and discernment to the personnel of business turn over respectively. The human face cameras and the infrared temperature measurement modules on the first temperature measurement recognizer and the second temperature measurement recognizer can finish infrared body temperature measurement and human face recognition of people who pass in and out, body temperature measurement and management of people who pass in and out in a community are automatically finished, the working intensity of community epidemic prevention workers can be greatly reduced, and close-range contact infection risks are avoided. Particularly, the lower edge of the pass card can be ridged by the ridge bars arranged on the lower edges of the corresponding authentication induction areas of the entrance authentication operation table and the trip authentication operation table, so that the pass card is prevented from being clung to the authentication induction areas, the problem that the pass card is inconvenient to take back after being clung to the authentication induction areas is avoided, and hands are prevented from contacting the authentication induction areas.
Drawings
Fig. 1 is a perspective view of the present invention;
fig. 2 is a structural diagram of the access authentication console of the present invention;
fig. 3 is a state diagram of the pass card edge in the authentication sensing area of the present invention.
Detailed Description
For a further understanding of the invention, reference is made to the following description taken in conjunction with the accompanying drawings and specific examples, in which:
in the description of the present invention, it should be noted that the terms "vertical", "upper", "lower", "horizontal", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of the description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, "first," "second," "third," and "fourth" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it should be further noted that, unless explicitly stated or limited otherwise, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly and may be, for example, fixedly connected, detachably connected, or integrally connected, mechanically connected, electrically connected, directly connected, connected through an intermediate medium, or connected to the inside of two elements. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
In order to further understand the contents, features and effects of the present invention, the following embodiments are described in detail:
referring to fig. 1, as shown in the drawings, an embodiment of the present invention provides a non-contact infrared temperature measurement gate, which includes a master control gate 1, and a first slave gate 2 and a second slave gate 21 located on the left and right sides of the master control gate 1 in parallel. The two ends of the main control gate 1 are provided with a first temperature measurement identifier 3 and a second temperature measurement identifier 4, and the temperature measurement and identification of the personnel passing in and out can be respectively carried out through the first temperature measurement identifier 3 and the second temperature measurement identifier 4. The main control gate 1 is provided with an entering authentication console 5 at the information acquisition view side corresponding to the first temperature measurement identifier 3, the main control gate 1 is provided with a traveling authentication console 6 at the information acquisition view side corresponding to the second temperature measurement identifier 4, and the information acquisition view side of the first temperature measurement identifier 3 and the information acquisition view side of the second temperature measurement identifier 4 are reversely arranged in the channel direction of the gate. When the user enters the cell, the user obtains the authorization of entering the gate by completing the pass authentication on the entering authentication console 5. When entering the cell, the user obtains the authorization of leaving the gate by completing the pass authentication on the trip authentication console 6. The first temperature measurement identifier 3 and the second temperature measurement identifier 4 have the same structure, the entrance authentication console 5 and the exit authentication console 6 have the same structure, and the first slave gate control machine 2 and the second slave gate control machine 21 are respectively provided with a gate rod 7. The master control gate machine 1 is internally provided with a control mainboard and a power supply, the control mainboard is integrated with a processor and a wireless signal sending module, and the first slave control gate machine 2 and the second slave control gate machine 21 are respectively provided with a power supply, a gate rod driving motor, a motor driver and a wireless signal receiving module. After the body temperature measurement of the user is abnormal and passes the access communication authentication or the travel communication authentication, the processor in the master control gate 1 sends a release instruction to the wireless signal receiving modules in the first slave gate 2 and the second slave gate 21 through the wireless signal sending module, the motor driver obtains the release instruction and then controls the gate rod to drive the motor to rotate by a corresponding angle, and the gate rod 7 intercepted on the master control gate 1 and the first slave gate 2 or the channel between the master control gate 1 and the second slave gate 2 or between the master control gate 1 and the second slave gate 2 is opened. Further, in order to prevent the hand from contacting the entry authentication console 5 or the exit authentication console 6 when performing the authentication operation, contact prevention means for the arris pass card 100 are provided at lower edges of the entry authentication console 5 and the exit authentication console 6.
Referring to fig. 1, as shown in the preferred embodiment of the present invention, the first temperature measurement identifier 3 includes a vertically disposed identifier body 31, and the identifier body 31 is fixed on the machine platform of the main control gate 1 near the gate entrance end. The recognizer body 31 is provided with a human face camera 32 and an infrared temperature measurement module 33 on the information acquisition visual field side facing the entrance end of the gate. Infrared temperature measurement module 33 and face camera 32 all adopt the integrated module among the prior art in the utility model discloses an among the preferred embodiment, infrared temperature measurement module 33 adopts the thermopile infrared temperature sensor that the model is ZTP-148SR, and face camera 32 adopts the face identification camera module that the model is the integrated form of HT-USBD-F001, and the ultra-low power consumption singlechip that the processor adopts the model to be MSP430G2553 is as the controller.
Further, as shown in fig. 1, the main control gate 1 includes two vertically fixed box columns 11 and a connection table 12 connected between the upper ends of the two box columns 11. A first inclined table top 13 and a second inclined table top 14 with opposite inclined surfaces are respectively formed at the connecting position of the box column 11 and the connecting table 12. Wherein, the table top of the first inclined table top 13 close to the first temperature measurement identifier 3 faces the entrance end of the gate, and the table top of the second inclined table top 14 close to the second temperature measurement identifier 4 faces the exit end of the gate. The entry authentication console 5 is arranged on a first inclined table top 13 and the exit authentication console 6 is arranged on a second inclined table top 14.
Further, referring to fig. 2, as shown in the figure, an LED display screen 51 and an authentication sensing area 52 are disposed on the entry authentication console 5, an authentication sensing card reader is disposed in the master control gate 1, and a sensing chip 521 of the authentication sensing card reader is embedded in a lower surface of the authentication sensing area 52. The structure of the outgoing authentication console 6 is the same as that of the incoming authentication console 5.
Further, referring to fig. 3, the contact preventing means is a ridge block 53 disposed at the lower edge of the corresponding authentication sensing area 52 of the entry authentication console 5 and the travel authentication console 6. One end of the supporting rib block 53 close to the authentication induction area 52 is provided with a guide slope surface 531 with an upper slope surface far away from the authentication induction area 52, and the upper end of the supporting rib block 53 is molded with a rubber anti-slip strip 532. During the authentication operation, the wireless authentication communication can be completed by arranging a branch edge of the communication card 100 along the reserved part on the rubber anti-slip strip 532 at the upper end of the branch edge strip block 53, and meanwhile, the communication card 100 is prevented from being clung to the authentication induction area 52, so that the contact between the hand and the authentication induction area 52 caused by the clung of the communication card 100 and the authentication induction area is prevented when the communication card is taken back. Specifically, as shown in fig. 3, the authentication sensing area 52 is at an angle α of 5 to 15 ° with respect to the horizontal plane.
To sum up, the utility model discloses an infrared temperature measurement sluice gate of non-contact sets up first temperature measurement recognizer and second temperature measurement recognizer towards the business turn over direction respectively through the both ends at sluice gate master control floodgate machine, can carry out temperature measurement and discernment to the personnel of business turn over respectively. The human face cameras and the infrared temperature measurement modules on the first temperature measurement recognizer and the second temperature measurement recognizer can finish infrared body temperature measurement and human face recognition of people who pass in and out, body temperature measurement and management of people who pass in and out in a community are automatically finished, and the working intensity of community epidemic prevention workers can be greatly reduced. The contact prevention device can further prevent the hands from contacting public facilities during authentication operations.
The basic principles, main features and advantages of the present invention have been shown and described above, and it should be understood by those skilled in the art that the present invention is not limited by the above embodiments, but only by the principles of the present invention, and that various changes and modifications may be made without departing from the spirit and scope of the invention, which fall within the scope of the invention as claimed, and the scope of the invention is defined by the appended claims and their equivalents.

Claims (7)

1. The utility model provides an infrared temperature measurement gate of non-contact, includes main control floodgate machine (1) and is located first slave gate machine (2) and second slave gate machine (21) that main control floodgate machine (1) left and right sides parallels, characterized by: a first temperature measurement identifier (3) and a second temperature measurement identifier (4) are arranged at two ends of the master control gate (1), an entering authentication console (5) is arranged at the information acquisition view side corresponding to the first temperature measurement identifier (3) of the master control gate (1), a traveling authentication console (6) is arranged at the information acquisition view side corresponding to the second temperature measurement identifier (4) of the master control gate (1), the information acquisition view side of the first temperature measurement identifier (3) and the information acquisition view side of the second temperature measurement identifier (4) are reversely arranged in the passage direction of the gate, the first temperature measurement identifier (3) and the second temperature measurement identifier (4) have the same structure, the entering authentication console (5) and the traveling authentication console (6) have the same structure, and gate rods (7) are respectively arranged on the first slave gate controller (2) and the second slave gate controller (21), the lower edges of the entrance authentication console (5) and the lower edges of the travel authentication console (6) are provided with anti-contact devices for supporting the arris pass cards (100).
2. The non-contact infrared temperature measurement gate of claim 1, which is characterized in that: first temperature measurement recognizer (3) include recognizer body (31) of a vertical setting, recognizer body (31) are fixed master control floodgate machine (1) is on being close to the board of entrance end of floodgate, recognizer body (31) are equipped with people's face camera (32) and infrared temperature measurement module (33) towards the information acquisition field of vision side of entrance end of floodgate.
3. The non-contact infrared temperature measurement gate of claim 1, which is characterized in that: master control floodgate machine (1) includes two vertical fixed case posts (11) and connects two connect platform (12) between case post (11) upper end case post (11) with the position that is connected platform (12) is formed respectively and is had opposite first slope mesa (13) of inclined plane and second slope mesa (14), wherein is close to first temperature measurement recognizer (3) the mesa of first slope mesa (13) is towards gate entrance entering end, is close to second temperature measurement recognizer (4) the mesa of second slope mesa (14) is towards gate exit end.
4. The non-contact infrared temperature measurement gate of claim 3, which is characterized in that: the entrance authentication console (5) is arranged on the first inclined table top (13), and the exit authentication console (6) is arranged on the second inclined table top (14).
5. The non-contact infrared temperature measurement gate according to claim 1 or 4, characterized in that: an LED display screen (51) and an authentication induction zone (52) are arranged on the entry authentication console (5), an authentication induction card reader is arranged in the main control gate (1), and an induction chip (521) of the authentication induction card reader is embedded in the lower surface of the authentication induction zone (52).
6. The non-contact infrared temperature measurement gate of claim 5, which is characterized in that: the anti-contact device is a supporting edge strip block (53) arranged on the lower edge of the corresponding authentication induction area (52) of the entering authentication console (5) and the trip authentication console (6).
7. The non-contact infrared temperature measurement gate of claim 6, which is characterized in that: one end of the supporting edge strip block (53) close to the authentication induction area (52) is provided with a guide slope surface (531) with an upper end slope surface far away from the authentication induction area (52), and the upper end of the supporting edge strip block (53) is molded with a rubber anti-slip strip (532).
CN202021066423.0U 2020-06-11 2020-06-11 Non-contact infrared temperature measurement gate Expired - Fee Related CN212906419U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021066423.0U CN212906419U (en) 2020-06-11 2020-06-11 Non-contact infrared temperature measurement gate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021066423.0U CN212906419U (en) 2020-06-11 2020-06-11 Non-contact infrared temperature measurement gate

Publications (1)

Publication Number Publication Date
CN212906419U true CN212906419U (en) 2021-04-06

Family

ID=75276592

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021066423.0U Expired - Fee Related CN212906419U (en) 2020-06-11 2020-06-11 Non-contact infrared temperature measurement gate

Country Status (1)

Country Link
CN (1) CN212906419U (en)

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Granted publication date: 20210406

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