CN204232791U - Luminous energy thermostatic glass - Google Patents

Luminous energy thermostatic glass Download PDF

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Publication number
CN204232791U
CN204232791U CN201420761973.2U CN201420761973U CN204232791U CN 204232791 U CN204232791 U CN 204232791U CN 201420761973 U CN201420761973 U CN 201420761973U CN 204232791 U CN204232791 U CN 204232791U
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CN
China
Prior art keywords
cup
energy
storage battery
power generation
discharge controller
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Expired - Fee Related
Application number
CN201420761973.2U
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Chinese (zh)
Inventor
武湖月
杜忠安
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Hefei Three Is Pacified Tea Set And Is Managed Co Ltd
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Hefei Three Is Pacified Tea Set And Is Managed Co Ltd
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Priority to CN201420761973.2U priority Critical patent/CN204232791U/en
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Publication of CN204232791U publication Critical patent/CN204232791U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a kind of luminous energy thermostatic glass, comprise bowl cover, be incubated at the bottom of wall of cup, cup and base, described insulation wall of cup installs condensing glass body outward, described condensing glass body inwall posts monocrystalline silicon generating sheet, semiconductor heating module is glued with under described cup, described monocrystalline silicon generating sheet electric connection of power supply charge and discharge controller, described power supply charge and discharge controller is electrically connected described energy-storage battery, described energy-storage battery connects described semiconductor heating module by temperature detect switch (TDS), and energy-storage battery, power supply charge and discharge controller are arranged in described base.The utility model takes the linear focusing principle of photon, self power generation, certainly heating, the constant warm constant intelligent teacup of auto-control.There are sanitation and hygiene, safety and Health, the advantage of energy-conserving and environment-protective.

Description

Light energy constant temperature cup
Technical Field
The utility model relates to a vacuum cup, in particular to a light energy constant temperature cup which utilizes light energy constant temperature to automatically heat water in the cup.
Background
At present, most of vacuum cups frequently used by people in the market are double-layer vacuum cups or vacuum cups, have a heat preservation function, the heat preservation time is more than 45 degrees within 4-6 hours, and the temperature curve kept by the vacuum cups is gradually reduced. The initial temperature is particularly high and not suitable for immediate consumption. Therefore, there is a lack of a functional cup that can keep the temperature of water in the cup constant.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that a constant temperature cup is provided, overcome current thermos cup and can not last heat retaining defect for a long time.
For solving the technical problem, the utility model provides a light energy constant temperature cup, including the bowl cover, thermos cup wall, bottom of cup and base, the external installation spotlight glass body of thermos cup wall, the monocrystalline silicon electricity generation piece has been pasted on the spotlight glass internal wall, the bottom of cup is hugged closely semiconductor heating module, monocrystalline silicon electricity generation piece electricity connection power charge-discharge controller, power charge-discharge controller electricity is connected energy-storage battery, energy-storage battery passes through temperature detect switch and connects semiconductor heating module, energy-storage battery, power charge-discharge controller install in the base.
The further optimized scheme is that the light-gathering glass body is formed by connecting a plurality of semi-cylinders with 120 radians.
Preferably, the number of the semi-cylinders with 120 radians is 18.
The monocrystalline silicon power generation piece is 125mm long, 10mm wide, 0.5V, 500mA in specification.
Every 9 silicon crystal power generation pieces in the 18 silicon crystal power generation pieces are connected in series to generate two power generation units, and the two power generation units are connected in parallel to form a 1000mA4.5V light energy power generation source. The two light power supplies are arranged to avoid the defect that a cup cannot generate electricity when facing to backlight, 18 linear focuses can be divided into two power generation units for normal power generation when the cup is placed at will, the density of linearly focused photons is 10 times of that of normal light, and the purpose of continuously charging a 3.7V battery with the rated 4.5V can be achieved only by energy storage charging voltage.
The cup bottom is a vacuum heat-preservation ridge bottom, and the semiconductor heating module is tightly attached to the top of the vacuum heat-preservation ridge bottom.
The utility model has the advantages of light energy constant temperature cup is that vertical prism glass ware specifically makes into inside and outside three-layer as an organic whole, the halfcylinder of 120 radians, the general response negative light of needle, refraction light, the focus of the weak light source that can see usually is a line, with reinforcing voltage, make the interior tea of cup, beverage or milk keep 45 ℃ warm water not to scald the mouth for a long time, it is not ice-cold, it is comfortable to drink in the mouth, the cluster official working that suits especially, long-distance driving, outdoor tourism, the student reads early, the old man, child, sick and weak patient, sanitation and sanitation, safety and health, energy saving and environmental protection.
Drawings
The technical solution of the present invention will be further specifically described below with reference to the accompanying drawings and the detailed description.
Fig. 1 is a schematic diagram of the overall structure of the components of the constant temperature cup.
Fig. 2 is a schematic cross-sectional view of the light energy thermostatic cup of the present invention. Wherein,
1-the constant temperature cup cover is 30mm high and 4mm thick, the sealing gasket is 1mm, and the outer diameter is 140 mm.
2-the diameter of the upper opening of the thermostatic cup is 52mm, the thickness is 3.3mm, and the distance between the rotary threads is 14 mm.
3-the diameter of the vacuum heat-preservation ridge bottom is 40mm, the ridge height is 30mm, and the glass thickness is 1.2 mm.
4-the convex radian of the vertical prism of the thermostatic cup is 120 arcs and total 18, the average linear focusing photon density is 10 times of that of normal induction light, and the average linear focusing photon density is transmitted to a power generation silicon crystal semiconductor to increase voltage.
5-the thickness of the semiconductor heating module is 3mm, the diameter of the circular surface is 36mm, the heating power is 3.7V4A14.8W, the body temperature is 240 ℃, the diving temperature is 40-100 ℃, the heating is oriented, and the refrigeration is carried out.
6-14.8W of series connection line of the cathode of the semiconductor heating element and the temperature control switch at 45 ℃.
And 7, connecting the positive electrode of the power supply of the semiconductor heating module with the positive electrode of the power supply controller into a whole.
A temperature control switch at 8-45 ℃; 9-manual switch of battery power supply; 10-rectifier diode;
11-silicon crystal focusing photon power negative line; 12-power supply charge and discharge controller;
13-bottom protuberance diameter 38 mm; 14-the depth of the base groove is 4 mm;
15-the base is internally provided with an energy storage battery of 3.7V, 4400 mA; 16-LED indicator light.
20-constant temperature cup outer ring vertical prism; 21-vacuum insulation layer.
Detailed Description
As shown in fig. 1 and 2, the light energy constant temperature cup is characterized by mainly comprising a constant temperature cup cover 1, a vertical prism glass utensil 4, a semiconductor heating module 5, an energy storage battery 15 and a monocrystalline silicon power generation piece, wherein the constant temperature cup cover 1 is made of metal or engineering plastic materials, a hot air sealing gasket is arranged in the cup cover, the height of the cup cover is 30mm, the thickness of the cup cover is 4mm, the sealing gasket is 1mm, and the outer diameter of the cup cover is 74mm, a cup opening is the vertical prism glass utensil 4 formed by sintering an inner layer cup and an outer layer lighting cup into a three-piece set, the diameter of an upper opening of the constant temperature cup is 2mm, the thickness of the cup is 3.3mm, an inter-spinning path is 14mm, the diameter of a real heat preservation bottom is 40mm, the height of a bump is 30mm, the thickness of the glass is 1.2mm, the inner layer and the outer layer are sintered into. The outermost periphery is a vertical semi-cylinder 20 with 120 radians, the vertical semi-cylinder 20 with 120 radians can improve the density of focused photons of an amplified light receiving area, and mainly focuses general induced negative light, refracted light and a general visible weak light source into a line to enhance the light power; the number of the vertical semi-cylinders with 120 radians is 18, the back of each semi-cylinder is provided with a monocrystalline silicon power generation piece with the length of 125mm and the width of 10mm, the voltage of 0.5V and the current of 500mA, every 9 monocrystalline silicon power generation pieces are mutually connected in series, and two power generation units generating the voltage of 4.5V and the current of 500mA are connected in parallel to form a 1000 mAN 4.5V light energy power generation source which is connected with the energy storage battery 15. The light energy constant temperature cup is provided with two light power supplies so as to avoid the defect that the cup does not generate electricity towards back light, 18 linear focuses can be divided into two power generation units for normal power generation in any placement mode, the density of linear focused photons is multiple times of that of normal light, and the purpose that the 3.7V battery is connected and charged by the energy storage charging voltage can be achieved only when the rated voltage is 4.5V. The semiconductor heating module 5 is 3mm in thickness, 36mm in diameter and 14.8W in power, is stuck to the inner layer of the vacuum heat-insulating cup bottom 2 by heat-conducting silica gel, is connected with the temperature control switch 8 in series through the negative lead 6 of the semiconductor heating module, and the other end of the temperature control switch 8 is connected with the energy storage battery switch 9. The energy storage battery switch 9 can turn off a heating power supply when no water exists in the cup, the temperature control switch 8 attached to the vacuum side surface of the raised bottom is used as a water temperature test probe, the temperature control switch 8 automatically switches on the energy storage battery 15 to supply power when the water temperature is lower than 40 ℃, the temperature control switch 8 automatically cuts off the energy storage battery 15 to stop supplying power when the water temperature is higher than 45 ℃, the anode lead 7 of the semiconductor heating module 5 is connected with the control power supply charge-discharge controller 12 and the anode of the energy storage battery 15, the power supply charge-discharge controller 12 is a protector for preventing overcharge and overdischarge, the cathode of the monocrystalline silicon wafer and the rectifier diode 10 are connected with the energy storage battery 15 through the power supply charge-discharge controller 12 via the anode of the monocrystalline silicon power generation sheet, the cavity 13 of the cup bottom raised protrusion 3 is connected with the annular groove 14 of the cup base, the diameter of the cavity 13 of the cup bottom raised protrusion is 38mm, the diameter of, the water containing volume of the inner container is 200 milliliters, the TED indicating lamp 16 displays blue to indicate that the battery is charged sufficiently and stopped, and the TED indicating lamp displays red when the voltage is reduced from 4.2V to 2.8V, which indicates that the power utilization is stopped to close the energy storage battery switch 9 when the over-discharge protection limit is reached.
Finally, it should be noted that the above embodiments are only used for illustrating the technical solutions of the present invention and not for limiting, and although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention can be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, which should be covered by the scope of the claims of the present invention.

Claims (5)

1. The utility model provides a light energy constant temperature cup, includes the bowl cover, thermos cup wall, bottom of cup and base, its characterized in that, the outer spotlight glass body of installation of thermos cup wall, paste monocrystalline silicon electricity generation piece on the spotlight glass body inner wall, the bottom of cup is hugged closely semiconductor heating module, monocrystalline silicon electricity generation piece electricity connection power charge-discharge controller, power charge-discharge controller electricity connection energy storage battery, energy storage battery passes through temperature detect switch and connects semiconductor heating module, energy storage battery, power charge-discharge controller install in the base.
2. The light energy constant temperature cup according to claim 1, wherein the light condensing glass body is formed by connecting a plurality of semi-cylinders with 120 radians.
3. The light energy thermostatic cup of claim 2, wherein the number of the 120 arc semi-cylinders is 18.
4. The optical energy thermostatic cup according to claim 3, wherein every 9 silicon crystal power generation plates of the 18 silicon crystal power generation plates are connected in series to generate two power generation units, and the two power generation units are connected in parallel to form the optical energy power generation source.
5. The optical energy thermostatic cup according to claim 1, wherein the cup bottom is a vacuum thermal insulating bottom, and the semiconductor heating module is tightly attached to the top of the vacuum thermal insulating bottom.
CN201420761973.2U 2014-12-06 2014-12-06 Luminous energy thermostatic glass Expired - Fee Related CN204232791U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420761973.2U CN204232791U (en) 2014-12-06 2014-12-06 Luminous energy thermostatic glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420761973.2U CN204232791U (en) 2014-12-06 2014-12-06 Luminous energy thermostatic glass

Publications (1)

Publication Number Publication Date
CN204232791U true CN204232791U (en) 2015-04-01

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104622193A (en) * 2014-12-06 2015-05-20 合肥三安茶具经营有限公司 Optical energy constant-temperature cup
CN106618073A (en) * 2016-11-09 2017-05-10 郑州仁宏医药科技有限公司 Intelligent cup for instant drinking

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104622193A (en) * 2014-12-06 2015-05-20 合肥三安茶具经营有限公司 Optical energy constant-temperature cup
CN104622193B (en) * 2014-12-06 2017-01-04 合肥三安茶具经营有限公司 Luminous energy thermostatic glass
CN106618073A (en) * 2016-11-09 2017-05-10 郑州仁宏医药科技有限公司 Intelligent cup for instant drinking

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20150401

Termination date: 20161206

CF01 Termination of patent right due to non-payment of annual fee