CN213820892U - Temperature sensing cup holder and cup - Google Patents

Temperature sensing cup holder and cup Download PDF

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Publication number
CN213820892U
CN213820892U CN202022176125.3U CN202022176125U CN213820892U CN 213820892 U CN213820892 U CN 213820892U CN 202022176125 U CN202022176125 U CN 202022176125U CN 213820892 U CN213820892 U CN 213820892U
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temperature sensing
temperature
cup
light guide
cup holder
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CN202022176125.3U
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Chinese (zh)
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殷署龙
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Hangzhou Qicheng Industrial Product Design Co ltd
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Hangzhou Qicheng Industrial Product Design Co ltd
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Abstract

The utility model provides a temperature sensing cup and cup, this temperature sensing cup include the base, and the layer board is installed to the base top, installs temperature sensing assembly between this layer board and base, and this temperature sensing assembly includes: the temperature sensing probe is used for sensing the temperature of the supporting plate and generating a corresponding temperature signal; the control module is used for receiving the temperature signal from the temperature sensing probe and generating a corresponding display signal; the display module is used for receiving the display signal from the control module and making corresponding visual display; and the power supply module is used for supplying power to the control module. The utility model discloses a temperature sensing cup is through setting up temperature sensing subassembly and display module's institutional advancement, can accurate measurement cup temperature and send the suggestion, and the user can observe luminance change easily, and temperature sensing cup both can the exclusive use in addition, can dismantle the combination again with the cup and use.

Description

Temperature sensing cup holder and cup
Technical Field
The utility model relates to a temperature sensing cup holder and cup, especially a cup holder and cup with temperature prompt facility.
Background
In daily life, people usually drink water from various cups, such as glass cups, metal cups and the like. However, it is known that the temperature of water just poured into a glass cup is high, generally 80 to 95 ℃, or boiling water just boiled is provided, and the water is suitable for drinking after being cooled. Experience shows that the optimal temperature of people in drinking water is generally 34-39 ℃, the temperature is closest to the body temperature of human bodies, and supercooling or overheating easily causes adverse stimulation to oral cavities, teeth, stomach and the like, and is not beneficial to health. However, at present, whether the water temperature is proper or not is usually judged by human body perception, so that the water is easy to scald, the oral mucosa is damaged, the water dispenser is unsafe and inconvenient, and the trouble is brought to water drinking. Some temperature sensing cups or temperature sensing color changing cups exist in the market at present, but temperature measurement is inaccurate or a display lamp is unclear due to the problems of temperature sensing contact and light guiding. In addition, the temperature sensing assembly and the water cup are integrated, so that the manufacturing cost is high, the temperature sensing assembly is only suitable for a single cup, and the whole cleaning is not facilitated due to the existence of the circuit system. Therefore, it is desirable to provide a cup holder with a temperature sensing function that can be used alone.
Disclosure of Invention
In order to overcome the defects of the prior art, the utility model provides a temperature sensing cup holder and cup, this temperature sensing cup holder both can the exclusive use, can dismantle the combination with the cup again to through the institutional advancement who sets up temperature sensing subassembly and display module, can accurately measure the cup temperature and send the suggestion, the user can observe luminance variation easily.
The utility model provides a technical scheme that its technical problem adopted is: the utility model provides a temperature sensing cup, includes the base, the layer board is installed to the base top, installs the temperature sensing subassembly between this layer board and base, and this temperature sensing subassembly includes: the temperature sensing probe is used for sensing the temperature of the supporting plate and generating a corresponding temperature signal; the control module is used for receiving the temperature signal from the temperature sensing probe and generating a corresponding display signal; the display module is used for receiving the display signal from the control module and making corresponding visual display; and the power supply module is used for supplying power to the control module.
The utility model has the advantages that: the utility model discloses a temperature sensing cup has set up the temperature sensing subassembly between base and layer board, can accurate perception cup temperature through this temperature sensing subassembly to with signal transmission to control module, then indicate the user through display module, make the user judge the cup temperature directly perceivedly, thereby avoid the damage that human perception brought. Compared with the cup base with the temperature sensing function in the prior art, the temperature sensing cup base improves the accuracy of temperature measurement and the display signal is easy to observe. Moreover, the temperature sensing cup holder can be used independently, and various cups commonly seen in life can be directly placed on the supporting plate, so that the cup holder is wider in application range and convenient to use and carry.
Further setting the following steps: the display module is a plurality of LED lamps, and each LED lamp is arranged around the periphery of the supporting plate and is electrically connected with the control module.
By adopting the technical scheme, the display module is composed of a plurality of LEDs arranged around the supporting plate, so that a user can observe the brightness of the LED lamp from all directions, and can conveniently receive prompt signals sent by the temperature sensing device.
Further setting the following steps: the LED lamp is characterized in that a mounting groove for the temperature sensing assembly to be arranged is formed in the base, a light guide cover used for supporting the supporting plate and used for refracting light is further arranged in the mounting groove, and the LED lamp is mounted at the bottom of the mounting groove and adjacent to the light guide cover.
By adopting the technical scheme, the LED lamp is arranged at the bottom of the mounting groove, so that the LED lamp is protected to a certain extent, and the LED lamp can be hidden to be attractive. Therefore, in order to easily observe the prompting signal emitted by the LED lamp, a light guide cover is arranged between the supporting plate and the LED lamp, and the specific structure and arrangement of the light guide cover are known to those skilled in the art, such as the light guide cover body disclosed in patent application No. 201610382525.5.
Further setting the following steps: the light guide cover comprises a light guide sleeve with openings at two ends, the light guide sleeve is sleeved outside the control module and the power supply module, a light guide blank holder extends from the periphery of the opening, close to the bottom of the mounting groove, of the light guide sleeve, and the light guide blank holder is pressed on the surface of the LED lamp; the supporting plate is fixed at an opening of the light guide sleeve, which is far away from the bottom of the mounting groove, and is used for sealing the opening; the supporting plate is made of heat conducting materials.
By adopting the light guide cover structure, the signal of the LED lamp can be observed more easily by refracting the light emitted by the LED lamp, and particularly, the signal range is wider and the identification is convenient. In addition, the temperature sensing assembly is sealed in the mounting groove through the matching of the light guide cover and the supporting plate, and the effect of protecting the temperature sensing assembly can be achieved.
Further setting the following steps: the light guide edge pressing is in sealing fit with the bottom of the mounting groove, and the supporting plate is in sealing fit with the opening of the light guide sleeve.
Through the cooperation of the light guide edge pressing, the light guide sleeve and the supporting plate, the temperature sensing assembly is sealed in the mounting groove. Such a seal may be a waterproof seal known to those skilled in the art such that the temperature sensitive cup holder may be directly connected to the unsealed cup body.
Further, a light guide cover is further installed on the base, the light guide cover is arranged outside the temperature sensing assembly, and the supporting plate and the light guide cover are of an integrated structure.
By adopting the technical scheme, the light guide cover has the light guide effect and can also support a cup.
Further setting the following steps: the light guide cover is in sealing fit with the surface of the base and is used for sealing the temperature sensing assembly on the base.
Through the cooperation of light guide cover and base, seal the temperature sensing subassembly on the base, make this temperature sensing cup base directly be connected with unsealed cup like this.
Further setting the following steps: the supporting plate is provided with a through hole, and the temperature sensing probe is arranged at the through hole.
The supporting plate is provided with a through hole, and the temperature sensing probe is arranged at the through hole and used for sensing the temperature of a cup supported on the supporting plate, so that the temperature sensing probe is directly abutted against the bottom of the cup seat, and the accuracy of temperature detection is improved. The temperature-sensitive probe may be a temperature-sensitive probe known to those skilled in the art, for example, a temperature-sensitive probe having a semiconductor thermistor as a temperature-sensitive element, preferably a negative temperature coefficient thermistor.
Further setting the following steps: the supporting plate is made of heat conducting materials.
The layer board is made by the heat conduction material, and preferred layer board is made by the aluminium foil, and aluminium foil heat conduction effect is good and high temperature resistant for can conduct heat rapidly, thereby help the temperature that the temperature-sensing probe accurately detected the cup. Meanwhile, in order to better protect the temperature sensing assembly below the supporting plate, the bottom of the supporting plate is provided with a heat insulation layer, so that the influence of the heat above the supporting plate on the control module or a power supply is reduced.
Further setting the following steps: the power module is a built-in battery or an external power interface.
By adopting the technical scheme, the control module is supplied with power through the built-in battery or the external power supply, and then the control module is respectively electrically connected with the temperature sensing probe and the display module, so that the power supply module respectively supplies power to the temperature sensing probe, the control module and the display module.
The utility model provides a technical scheme that its technical problem adopted is: the cup comprises a cup body and a temperature sensing cup seat, wherein the cup body is detachably arranged on the temperature sensing cup seat, and a temperature sensing probe on the temperature sensing cup seat is adjacent or propped against the bottom of the cup body.
The utility model has the advantages that: the utility model discloses a cup's cup can be dismantled with the temperature sensing cup and be connected, the washing of the cup of being convenient for and the change of temperature sensing cup power module for this cup convenient to use and manufacturing cost reduce. Moreover, the temperature of the cup body can be accurately sensed by the temperature sensing cup holder, and the user is prompted by the display module, so that the user can visually judge the temperature of the cup body, and the damage caused by human body perception is avoided. Compared with the cup with the temperature sensing function in the prior art, the cup has higher temperature detection accuracy and easier observation of the display signal.
Drawings
Fig. 1 is a schematic structural view of a cup holder according to a first embodiment of the present invention;
fig. 2 is a cross-sectional view of a cup holder according to a first embodiment of the present invention;
fig. 3 is an exploded view of a cup holder according to a first embodiment of the present invention;
fig. 4 is a schematic structural view of a cup according to a first embodiment of the present invention;
fig. 5 is a schematic structural view of a cup holder according to a third embodiment of the present invention;
the temperature-sensing cup comprises a base 1, a mounting groove 11, a supporting plate 2, a through hole 21, a power supply module 31, a control module 32, a temperature-sensing probe 33, a lead 34, an LED lamp 35, a light guide cover 36, a light guide sleeve 361, a light guide blank 362 and a cup body 5.
Detailed Description
The technical solution of the present invention will be described clearly and completely with reference to the accompanying drawings, and obviously, the described embodiments are some, but not all embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention. Electrical connection
In a first embodiment, as shown in fig. 1 to 3, a temperature sensing cup holder includes a base 1, wherein a mounting groove 11 is formed in the middle of the base 1. A temperature sensing component is arranged in the mounting groove 11 of the base 1, a supporting plate 2 used for placing a cup is arranged above the temperature sensing component, the supporting plate 2 is made of aluminum foil, and a heat insulation layer is arranged at the bottom of the supporting plate 2. The aluminum foil supporting plate 2 can rapidly conduct the heat of the cup, and the temperature sensing assembly is facilitated to more accurately detect the temperature of the cup. Meanwhile, the heat insulating layer at the bottom of the supporting plate 2 further blocks heat from being transferred downwards, and the influence of the heat above the heat insulating layer on the temperature sensing assembly is reduced.
The temperature sensing assembly comprises a power module 31, a control module 32, a temperature sensing probe 33 and a plurality of LED lamps 35. The power module 31 is used for supplying power to the LED lamp 35, the control module 32 and the temperature sensing probe 33. It should be noted that in this embodiment, the power module 31 is a battery, and the power module 31 may be replaced by an external power interface. The support plate 2 is provided with a through hole 21, and the temperature sensing probe 33 is mounted at the through hole 21 to abut against a cup placed on the support plate 2. The temperature sensing probe 33 is used for sensing the temperature of the cup on the supporting plate 2 and generating a corresponding temperature signal, and the temperature sensing probe 33 is connected with the control module 32 through a lead 34 so as to transmit the generated temperature signal to the control module 32. It should be noted that the temperature sensing probe 33 and the control module 32 may be electrically connected in other manners. The control module 32 receives the temperature signal from the temperature sensing probe 33 and generates a corresponding display signal, the control module 32 is further electrically connected to the LED lamp 35, so that the generated display signal is transmitted to the LED lamp 35, and the LED lamp 35 receives the signal and emits light.
For the convenience of observation of a user, the LED lamps 35 are installed at the bottom of the installation groove 11, each LED lamp 35 is arranged around the periphery of the supporting plate 2, and the light guide cover 36 is further arranged on the inner side of each LED lamp 35, so that the user can observe the light emission of the LED lamps 35 from all directions. The light guide cover 36 comprises a light guide sleeve 361 with openings at two ends, the light guide sleeve 361 is sleeved outside the control module 32 and the power supply module 31, a light guide edge 362 extends from the periphery of the opening of the light guide sleeve 361 close to the bottom of the mounting groove 11, and the light guide edge 362 is pressed on the surface of the LED lamp 35; the supporting plate 21 is fixed on the opening of the light guide sleeve 361 far away from the bottom of the installation groove 11 and used for sealing the opening. Wherein, the light guide edge pressing 362 is in sealing fit with the bottom of the installation groove 11, and the supporting plate 21 is in sealing fit with the opening of the light guide sleeve 361.
During the use, directly place the cup on layer board 2, temperature sensing probe 33 and cup bottom butt this moment can carry out accurate temperature measurement, then temperature sensing probe 33 passes through wire 34 with detecting signal conduction to control module 32, and control module 32 controls the luminous of LED lamp 35. In this embodiment, a negative temperature coefficient thermistor is disposed in the temperature sensing probe 33 as a temperature sensing element, and when the temperature detected by the temperature sensing probe 33 increases, the resistance of the thermistor decreases, so that the current passing through the circuit of the control module 32 increases, and at this time, the brightness of the LED lamp 35 increases, thereby indicating that the temperature of the cup is too high. Therefore, the user can intuitively judge the temperature of the cup according to the brightness of the LED lamp 35.
The temperature sensing cup holder can be used independently, namely, various cups commonly seen in life can be directly placed on the supporting plate. In other embodiments, as shown in fig. 4, the temperature sensitive cup holder may also be assembled with the cup body 5 into a cup, preferably the cup body 5 is a transparent glass. The side wall of the lower part of the cup body 5 is provided with threads 51, and the cup body 5 is in threaded connection with the temperature sensing cup seat. When the temperature-sensing cup is used, the temperature-sensing cup seat and the cup body 5 form a whole, the temperature-sensing cup seat can accurately sense the temperature of the cup body 5, the user is prompted through the display module, and the temperature-sensing cup is convenient to carry and move. When the power module 31 needs to be cleaned or replaced, the cup body 5 can be detached to be cleaned independently, so that the temperature sensing assembly is protected better. It should be noted that the cup body 5 and the temperature sensing cup holder can also adopt a plug-in fit.
In this embodiment, the control module 32 is used for receiving the temperature signal from the temperature sensing probe 33, analyzing the temperature signal, and outputting a corresponding display signal, so as to control the LED lamp to display a corresponding temperature. For example, when the temperature sensing probe 33 senses that the temperature is below 50 ℃, a green light is displayed; when the sensed temperature is within the range of 50-70 ℃, displaying a yellow lamp; when the temperature is above 70 ℃, a red light is displayed. For those skilled in the art, what type of temperature sensing probe 33 and control module 32 can be adopted is a conventional choice, and therefore, the detailed description is omitted.
Example two: the difference from the first embodiment is that the supporting plate 2 is not provided with the through hole 21, and the temperature sensing probe 33 is located below the supporting plate 2 and closely attached to the supporting plate 2, so as to accurately sense the temperature of the cup on the supporting plate 2.
Example three: as shown in fig. 5, the difference from the first embodiment is the structure of the base 1 and the light guide 36. The base 1 is further provided with a light guide cover 36, the light guide cover 36 is covered outside the temperature sensing assembly, the supporting plate 1 and the light guide cover 36 are of an integrated structure, namely, the top surface of the light guide cover 36 is used as the supporting plate 2. During the use, directly place the cup on light guide 36 top surface, then through the temperature sensing subassembly sensing cup's temperature and send cue signal.
The temperature sensing cup holder can be used independently, various cups commonly seen in life can be directly placed on the supporting plate, and the cup holder can be assembled with a cup body to form a cup. In some embodiments, threads may be provided on the cup body and the side wall of the light guide cover such that the cup body is threadedly connected to the temperature sensing cup holder. In other embodiments, the cup body and the temperature sensing cup seat can also be matched in a plugging way.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides a temperature sensing cup, includes the base, its characterized in that, the layer board is installed to the base top, installs temperature sensing assembly between this layer board and base, and this temperature sensing assembly includes:
the temperature sensing probe is used for sensing the temperature of the supporting plate and generating a corresponding temperature signal;
the control module is used for receiving the temperature signal from the temperature sensing probe and generating a corresponding display signal;
the display module is used for receiving the display signal from the control module and making corresponding visual display;
and the power supply module is used for supplying power to the control module.
2. The temperature sensing cup holder according to claim 1, wherein the display module is a plurality of LED lamps, each LED lamp being disposed around the periphery of the supporting plate and electrically connected to the control module.
3. The temperature sensing cup holder according to claim 2, wherein the base has a mounting groove for the temperature sensing assembly to be mounted therein, a light guide cover for supporting the support plate and refracting light is further disposed in the mounting groove, and the LED lamp is mounted at the bottom of the mounting groove and disposed adjacent to the light guide cover.
4. The temperature sensing cup holder according to claim 3, wherein the light guide cover includes a light guide sleeve with openings at both ends, the light guide sleeve is sleeved outside the control module and the power module, and a light guide edge is extended from a periphery of the opening of the light guide sleeve near the bottom of the mounting groove, and the light guide edge is pressed on the surface of the LED lamp;
the supporting plate is fixed at an opening of the light guide sleeve, which is far away from the bottom of the mounting groove, and is used for sealing the opening;
the supporting plate is made of heat conducting materials.
5. The temperature sensing cup holder according to claim 4, wherein the light guiding bead is in sealing engagement with the bottom of the mounting groove, and the support plate is in sealing engagement with the opening of the light guiding sleeve.
6. The temperature sensing cup holder according to claim 1, wherein a light guide is further installed on the base, the light guide is disposed outside the temperature sensing assembly, and the support plate and the light guide are integrally formed.
7. The temperature-sensing cup holder according to claim 6, wherein the light guide is in sealing engagement with a surface of the base and is adapted to seal the temperature-sensing assembly to the base.
8. The temperature sensing cup holder according to claim 1, wherein the supporting plate has a through hole, and the temperature sensing probe is mounted at the through hole.
9. The temperature-sensitive cup holder according to claim 1, wherein the supporting plate is made of a heat conductive material.
10. A cup, which comprises a cup body and is characterized by further comprising a temperature sensing cup holder according to any one of claims 1 to 9, wherein the cup body is detachably mounted on the temperature sensing cup holder, and a temperature sensing probe on the temperature sensing cup holder is arranged adjacent to or abutted against the bottom of the cup body.
CN202022176125.3U 2020-09-28 2020-09-28 Temperature sensing cup holder and cup Active CN213820892U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022176125.3U CN213820892U (en) 2020-09-28 2020-09-28 Temperature sensing cup holder and cup

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022176125.3U CN213820892U (en) 2020-09-28 2020-09-28 Temperature sensing cup holder and cup

Publications (1)

Publication Number Publication Date
CN213820892U true CN213820892U (en) 2021-07-30

Family

ID=77007198

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022176125.3U Active CN213820892U (en) 2020-09-28 2020-09-28 Temperature sensing cup holder and cup

Country Status (1)

Country Link
CN (1) CN213820892U (en)

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