CN218511282U - Horizontal refrigerator - Google Patents
Horizontal refrigerator Download PDFInfo
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- CN218511282U CN218511282U CN202222582011.8U CN202222582011U CN218511282U CN 218511282 U CN218511282 U CN 218511282U CN 202222582011 U CN202222582011 U CN 202222582011U CN 218511282 U CN218511282 U CN 218511282U
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- 238000005192 partition Methods 0.000 claims abstract description 21
- 238000000429 assembly Methods 0.000 claims description 9
- 230000000712 assembly Effects 0.000 claims description 9
- 238000005303 weighing Methods 0.000 claims 2
- 238000005286 illumination Methods 0.000 abstract description 12
- 238000013459 approach Methods 0.000 description 11
- 238000001816 cooling Methods 0.000 description 9
- 238000000034 method Methods 0.000 description 7
- 238000005057 refrigeration Methods 0.000 description 6
- 230000003760 hair shine Effects 0.000 description 3
- 230000006698 induction Effects 0.000 description 2
- 241000196324 Embryophyta Species 0.000 description 1
- 241001465382 Physalis alkekengi Species 0.000 description 1
- 238000000151 deposition Methods 0.000 description 1
- 238000001514 detection method Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 230000005855 radiation Effects 0.000 description 1
- 230000003313 weakening effect Effects 0.000 description 1
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Abstract
The utility model discloses a horizontal freezer, include: the refrigerator comprises a cabinet body with a storage compartment, a door body arranged on the cabinet body and used for opening or closing an opening of the storage compartment, a refrigerating unit and a partition arranged in the storage compartment; the partition is supported on two opposite inner walls of the storage chamber and extends along the opening direction of the storage chamber to divide the storage chamber into a first chamber and a second chamber; horizontal freezer still has the lighting components who sets up on the separator, and lighting components sets up and is close to storing room open-ended position on the separator, is provided with a plurality of first shot-light and a plurality of second shot-light on the lighting components, and the direction of first shot-light emergent light is greater than the direction of second shot-light emergent light and the contained angle of vertical direction with the contained angle of vertical direction. In this embodiment not only increased the illumination of storing room between the storing through setting up the shot-light, different shot-lights can be opened along with the change of the indoor storage article in storing to two sets of shot-lights moreover between the storing, realization that can be better is to the show of product.
Description
Technical Field
The utility model relates to a refrigeration plant technical field, especially horizontal freezer.
Background
The horizontal refrigerator is a refrigeration device which keeps constant low temperature, is a common electrical appliance for preserving articles at low temperature in life, and is widely applied to the commercial and household fields due to large storage capacity.
At present, the refrigeration of the horizontal refrigerator generally adopts a direct cooling mode, wherein a box body of the horizontal refrigerator adopting the direct cooling mode for supplying the cold generally comprises a shell and an inner container arranged on the shell, an evaporator is surrounded outside the inner container, and the cold energy is conducted to a storage compartment of the inner container in a natural radiation mode.
The space of the cabinet body of storing room is great relatively, in order to carry out better subregion management to storing room, generally sets up the separator in storing room, and the separator separates into a plurality of room with storing room, and the setting of separator has influenced the indoor daylighting of storing room. In addition, the storage space is large in space, and certain specific products cannot be well shown in a protruding mode.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a horizontal freezer to solve not enough among the prior art, it has increased indoor illumination between the storing through the shot-light that sets up two sets of different outgoing angles, thereby makes the shot-light can shine all the time on the product along with the change of product quantity, realization that can be better is to the show of product.
The utility model provides a horizontal refrigerator, include: the refrigerator comprises a cabinet body with a storage compartment, a door body arranged on the cabinet body and used for opening or closing an opening of the storage compartment, a refrigerating unit and a partition arranged in the storage compartment;
the partition is supported on two opposite inner walls of the storage chamber and extends along the opening direction of the storage chamber so as to divide the storage chamber into a first chamber and a second chamber;
the horizontal freezer still has the setting and is in lighting assembly on the separator, lighting assembly sets up be close to on the separator storing room open-ended position, last a plurality of first shot-light and a plurality of second shot-light of being provided with of lighting assembly, the direction of first shot-light emergent light is greater than the direction of second shot-light emergent light and the contained angle of vertical direction with the contained angle of vertical direction.
Furthermore, the first spotlight and the second spotlight are arranged at intervals and arranged on the partition along the width direction of the cabinet body.
Furthermore, the lighting assemblies are provided with two groups, the two groups of lighting assemblies are arranged in series and are respectively arranged on two opposite sides of the partition, and the two groups of lighting assemblies respectively irradiate towards the first compartment and the second compartment.
Furthermore, a logo lamp is arranged on the partition, and the logo lamp is arranged at the top of the partition.
Furthermore, the front side of the cabinet body is also provided with a sensing module, and the sensing module is electrically connected with the lighting assembly.
Furthermore, the bottom of the storage compartment is provided with a weight sensor, the weight sensor is electrically connected with the control module, and the control module is electrically connected with the lighting assembly.
Further, the weight sensors are arranged in a plurality of positions, and the weight sensors are uniformly distributed at the bottom of the storage chamber.
Furthermore, the separator comprises a shell, an air inlet, an air outlet, an air duct and a fan assembly, wherein the shell is supported on two opposite inner walls of the storage compartment; the fan assembly is used for driving cold energy to be transmitted from the air inlet to the air outlet;
the air outlet is arranged at a position close to the opening of the storage chamber, the air inlet is arranged at a position close to the bottom of the storage chamber, and the air outlet comprises a first air outlet arranged towards the first chamber opening and a second air outlet arranged towards the second chamber opening.
Further, a gap portion is arranged between the shell and the bottom of the storage chamber, and the gap portion is communicated with the first chamber and the second chamber.
Furthermore, the shell is detachably mounted and fixed on the inner wall of the storage chamber.
Compared with the prior art, through the shot-light that sets up two sets of different exit angles in this embodiment, not only increased the illumination of storing room between the room, two sets of shot-lights can alternate different shot-lights along with the change of the indoor corresponding regional stored object between the storing moreover to make the shot-light can shine on the product along with the change of product quantity all the time, realization that can be better is to the show of product.
Drawings
Fig. 1 is a schematic structural view of a horizontal refrigerator disclosed in an embodiment of the present invention;
fig. 2 is a schematic structural view of a lighting assembly in the horizontal refrigerator disclosed in the embodiment of the present invention;
fig. 3 is a top view of the horizontal refrigerator disclosed in the embodiment of the present invention;
FIG. 4 is a cross-sectional view taken in the direction AA of FIG. 3;
fig. 5 is a schematic view of the internal structure of the partition in the horizontal refrigerator according to the embodiment of the present invention;
fig. 6 illustrates a control method of the horizontal freezer irradiation lamp disclosed in the present application;
description of reference numerals: 1-cabinet body, 10-storage chamber, 100-gap part, 101-first chamber, 102-second chamber, 2-logo lamp, 3-separator, 31-shell, 32-air inlet, 33-air outlet, 34-fan component,
4-lighting component, 41-first spotlight, 42-second spotlight, 5-induction module.
Detailed Description
The embodiments described below by referring to the drawings are exemplary only for explaining the present invention, and should not be construed as limiting the present invention.
The embodiment of the utility model provides a: as shown in fig. 1 to 5, disclosed is a horizontal refrigerator including: the refrigerator comprises a cabinet body 1 with a storage compartment 10, a door body which is arranged on the cabinet body 1 and opens or closes an opening of the storage compartment, a refrigerating unit and a partition 3 arranged in the storage compartment 10;
the partition 3 is supported on two opposite inner walls of the storage room 10 and extends along the opening direction of the storage room 10 to divide the storage room 10 into a first room 101 and a second room 102;
the setting of separator 10 can conveniently realize the indoor subregion management in horizontal freezer storing room, can be according to the better use horizontal freezer of actual use condition.
Horizontal freezer still has the setting and is in lighting assembly 4 on the separator 3, lighting assembly 4 sets up be close to on the separator 3 storing room open-ended position, be provided with a plurality of first shot-light 41 and a plurality of second shot-light 42 on the lighting assembly 4, the direction of first shot-light 41 emergent light and the contained angle alpha 1 of vertical direction are greater than the direction of second shot-light 42 emergent light and the contained angle alpha 2 of vertical direction.
Through the shot-light that sets up two sets of different exit angles in this embodiment, can alternate different shot-lights along with the change of the indoor corresponding regional storage article in storing room to make the shot-light can shine on the product all the time along with the change of product quantity, realization that can be better is to the show of product.
It should be noted that the first spotlight 41 and the second spotlight 42 are both used for highlighting a specific product, and both the first spotlight 41 and the second spotlight 42 illuminate a specific area, in which a product to be highlighted is arranged. The position of the cabinet opening part of the horizontal refrigerator is also provided with a common illuminating lamp which is only used for providing illumination for the storage compartment 10, and the arrangement of the first spotlight 41 and the second spotlight 42 does not influence the use of the common illuminating lamp.
Because lighting assembly 4 sets up in the position that is close to the storing room opening, first shot-light 41 and second shot-light 42 are all shining towards the below that inclines, in this embodiment set up the direction of first shot-light 41 emergent light and vertical direction's contained angle alpha 1 to be greater than the direction of second shot-light 42 emergent light and vertical direction's contained angle alpha 2, then instructed first shot-light 41 to compare in second shot-light 42 and shine towards the position that is closer to the storing room opening, second shot-light 42 then mainly shines towards the position that is close to the storing room bottom.
The first spot light 41 and the second spot light 42 are spaced apart from each other and arranged on the partition 3 along the width direction of the cabinet 1.
The cabinet body 1 has a length direction and a width direction, the first compartment 101 and the second compartment 102 are arranged in parallel in the length direction, and the first spotlight 41 and the second spotlight 42 are arranged in the width direction of the cabinet body 1 to cover the storage compartment 10 in the whole width direction.
In the present embodiment, the lighting assemblies 4 are provided in two sets, two sets of lighting assemblies 4 are arranged in series and are respectively arranged on two opposite sides of the partition 3, and two sets of lighting assemblies 4 respectively irradiate towards the first compartment 101 and the second compartment 102.
All be provided with the first shot-light 41 and the second shot-light 42 that a plurality of intervals set up on each lighting assembly 4, the lighting assembly 4 that sets up two sets of series connection settings can realize shining two indoor article of depositing between.
Further, in the present embodiment, a logo lamp 2 is further disposed on the partition 3, and the logo lamp 2 is disposed on the top of the partition 3. The Logo lamp 2 can also play a role in indoor illumination of the storage room.
In this embodiment, the front side of the cabinet body 1 is further provided with an induction module 5, and the induction module 5 is electrically connected with the lighting assembly 4. The sensing module 5 is arranged at the front side of the cabinet body 1 and used for sensing whether a person approaches in the front side direction or not, and controls the lighting assembly 4 according to the storage condition in the storage compartment 10 when the person approaches.
The bottom of storing room 10 is provided with weight sensor, weight sensor and control module electric connection, control module with lighting components 4 electric connection. The weight sensors are used for acquiring the quantity of commodities in the storage room and transmitting the quantity of the commodities to the control module, and the control module adjusts the type of the irradiation lamps on the illumination assembly 4 to be turned on according to the quantity of the weight sensors.
The weight sensor may be placed in a specific area of the storage compartment 10 where a particular product to be displayed is displayed, and the spot light on the illumination assembly 4 is used to illuminate the area. When weight sensor senses this regional weight in the storing room 10 great, indicate that article are accumulational more relatively, control first shot-light 41 and open this moment, when weight sensor senses this regional weight in the storing room 10 less, indicate that article are accumulational less relatively, control second shot-light 42 and open this moment, second shot-light 42 is compared in first shot-light 41 and shines more towards the bottom of storing room 10 to can shine on the article of waiting to demonstrate.
In this embodiment the weight sensor is provided with a plurality ofly, and a plurality of weight sensor equipartitions are in the bottom of storing compartment. The plurality of weight sensors are arranged to acquire data more accurately, and the acquired data are analyzed and processed by the control unit and then are judged.
In this embodiment, the partition 3 includes a housing 31 supported on two opposite inner walls of the storage compartment 10, an air inlet 32, an air outlet 33 disposed on the housing 31, an air duct communicating the air inlet 32 and the air outlet 33, and a fan assembly 34 disposed in the air duct; the fan assembly 34 is used for driving the cold energy to be transmitted from the air inlet 32 to the air outlet 33;
the air outlet 33 is arranged at a position close to the opening of the storage chamber, the air inlet 32 is arranged at a position close to the bottom of the storage chamber 10, and the air outlet 33 comprises a first air outlet arranged towards the opening of the first chamber 101 and a second air outlet arranged towards the opening of the second chamber 102.
In the prior art, the cold energy is transferred from the inner wall (namely the inner container) of the storage chamber 10 to the middle position of the storage chamber 10, and the size of the storage chamber 10 is generally large, so that the large size inevitably causes uneven cold energy in the storage chamber 10. Specifically, the more the cold is generated at a position closer to the inner wall of the storage compartment 10.
In addition, because the storage chamber 10 is arranged with an upward opening, and the upper side of the whole storage chamber 10 is an opening, the cold quantity at the opening position of the storage chamber 10 is seriously dissipated outwards, and the difference between the cold quantity at the position of the storage chamber 10 close to the opening and the cold quantity at the bottom of the storage chamber 10 close to the bottom can be caused. The specific expression is that the cold quantity is more sufficient in the area closer to the bottom of the storage compartment 10, and the cold quantity is relatively insufficient at the opening position of the storage compartment 10.
In the present embodiment, in order to make the cooling capacity in the direct-cooling refrigeration equipment more uniform, the fan assembly 34 is provided on the partition 3, and the fan assembly 34 transmits the cooling capacity near the bottom region in the storage compartment 10 to the storage compartment opening position, and substantially transmits the cooling capacity in the region with sufficient cooling capacity in the storage compartment to the region with insufficient cooling capacity.
A gap portion 100 is disposed between the housing 31 and the bottom of the storage compartment 10, and the gap portion 100 communicates the first compartment 101 and the second compartment 102.
In order to facilitate the installation and fixation of the partition 3, the housing 31 is detachably installed and fixed on the inner wall of the storage compartment 10.
The application further discloses a control method of the horizontal refrigerator illuminating lamp, which is mainly used for controlling the illuminating lamp on the horizontal refrigerator to illuminate the storage compartment. The irradiation lamp of the horizontal refrigerator is generally arranged on a mouth piece of the horizontal refrigerator or on a partition piece arranged in the storage chamber, the irradiation direction of the irradiation lamp points to a certain specific area in the storage chamber to display a certain specific commodity in the storage chamber, and of course, the irradiation lamp can also be independently used for providing illumination for the storage chamber.
As shown in fig. 6, the method for controlling a horizontal freezer lighting lamp disclosed in this embodiment specifically includes the following steps:
s200: obtaining the storage amount of the storage chamber; the storage quantity of the storage room represents the quantity of the articles stored in the storage room, and it can be understood that the positions and directions of the illumination required by the storage room are different according to the quantity of the articles stored in the storage room, and if the storage room is filled with the articles, the storage room can be arranged indoors without arranging lighting equipment, and the requirements can be met by using the illumination provided by the lighting lamp of the environment; if few articles are stored in the storage chamber, the horizontal refrigerator needs to irradiate towards the inside of the storage chamber, so that the irradiation condition of the irradiation lamp is important to obtain the amount of the stored articles in the storage chamber and adjust;
s400: judging whether the storage quantity of the storage chamber is in a control interval, wherein the control interval refers to a certain interval range, and the end points of the control interval in the embodiment comprise a first threshold value and a second threshold value; the first threshold value and the second threshold value are only used for indicating the specific condition of articles stored in the storage room, and how much storage space is occupied by the articles; the storage quantity of the storage chamber can be measured by weight or volume, and when the storage quantity is measured by weight, the first threshold value and the second threshold value represent a specific weight value; the first threshold and the second threshold represent the particular volume value when measured by volume;
s600: when the storage quantity of the storage chamber is lower than a first threshold value, judging whether the storage quantity of the storage chamber is lower than a second threshold value; wherein the first threshold is greater than the second threshold;
when the storage amount of the storage chamber is lower than a second threshold value, the second spotlight 42 is controlled to be turned on; otherwise, the first spot light 41 is controlled to be turned on, wherein an included angle α 1 between the direction of the emergent light of the first spot light 41 and the vertical direction is greater than an included angle α 2 between the emergent light of the second spot light 42 and the vertical direction.
The first threshold value being greater than the second threshold value indicates that when the number of articles stored in the storage compartment is greater than the second threshold value at the time of the first threshold value, the stacked articles are located close to the opening of the storage compartment due to the large number of articles stored in the storage compartment at the time of the first threshold value, and therefore, the irradiation lamp is required to irradiate towards the opening of the storage compartment.
Accordingly, at the time of the second threshold value, since the number of the articles stored in the storage compartment 10 is small, it means that the stacked articles are located near the bottom of the storage compartment, and thus, the required illumination lamp illuminates the bottom of the storage space.
It can be seen that, when the angle between the light direction emitted from the first spot lamp 41 and the vertical direction needs to be larger than the second threshold value at the first threshold value, the angle between the light direction emitted from the second spot lamp 42 and the vertical direction needs to be larger than the second threshold value.
Through setting up the multiunit shot-light in this embodiment, the outgoing direction of different shot-lights is different to can be according to opening of how much different shot-lights of control of storing indoor storage volume between the storing, can make the irradiation direction and the storing room storage volume phase-match between the shot-light shines, thereby better satisfy the lighting demands, also avoided the use of unnecessary irradiation lamp.
It can be understood that after "obtaining the storage amount of the storage compartment", the following is included: s300: and judging whether the storage quantity of the storage chamber is higher than a third threshold value, and controlling the first spotlight 41 and the second spotlight 42 to be in a closed state when the storage quantity of the storage chamber is higher than the third threshold value, wherein the third threshold value is larger than the first threshold value.
The third threshold value is larger than the first threshold value, which indicates that the storage capacity of the storage compartment is in a high state, if the storage capacity of the storage compartment reaches the opening position of the storage compartment, the first spotlight 41 and the second spotlight 42 can be completely lighted by the common lighting lamp at the position of the cabinet opening without being turned on, and therefore, the first spotlight 41 and the second spotlight 42 are controlled to be in a turn-off state under the condition. Of course the first lamp 41 can be switched on if the product is to be presented for better highlighting.
In this embodiment, the third threshold value may represent that the storage amount of the storage compartment is located at a position close to the opening of the storage compartment, the second threshold value represents that the storage amount of the storage compartment is located at a position close to the bottom of the storage compartment, and the first threshold value represents that the storage amount of the storage compartment is located at a position in the middle of the storage compartment.
In the present embodiment, S200: the method for acquiring the storage amount of the storage chamber comprises the following steps:
s201: acquiring pressure sensor data P at the bottom of the storage chamber;
s202: judging whether the pressure sensing data P is lower than a first pressure value P1 or not, and judging whether the pressure sensing data P is lower than a second pressure value P2 or not when the pressure sensing data P is lower than the first pressure value P1; when the pressure sensing data P is lower than a second pressure value P2, the storage quantity of the storage chamber is judged to be lower than a second threshold value, and when the pressure sensing data P is larger than the second pressure value P2 but lower than a first pressure value P1, the storage quantity of the storage chamber is judged to be lower than a first threshold value; wherein, the first pressure value P1 is greater than the second pressure value P2.
In this embodiment, the storage amount of the storage compartment is actually determined by the weight of the articles stored in the storage compartment, which indicates that there are relatively more articles stored in the storage compartment when the weight is larger, and indicates that there are relatively less articles stored in the storage compartment when the weight is smaller.
In order to better acquire the weight of the articles stored in the storage chamber, a pressure sensor is arranged at the bottom of the storage chamber, and the pressure sensor can directly acquire the weight of the articles stored in the storage chamber.
And after the pressure sensor data P at the bottom of the storage chamber is obtained, judging whether the pressure data P is higher than a third pressure value P3, and when the pressure sensor data P is higher than the third pressure value P3, judging that the storage amount of the storage chamber is higher than a third threshold value, wherein the third pressure value P3 is greater than the first pressure value P1. The third pressure value P3 indicates that the storage compartment is fully loaded, and therefore, the corresponding pressure value is the maximum.
In the present embodiment, "the second spot light 42 is controlled to be turned on", and the first spot light 41 is controlled to be turned off. The second light 42 is turned on to indicate that the height of the stack of items has been lowered to a position close to the bottom of the storage compartment, so that the first light 41 does not contribute much to the illumination of the items and the first light 41 can be turned off.
Of course, if the brightness of the storage compartment 10 is simply increased, the first lamp 41 may be turned on.
The method comprises the following steps before the first spotlight is controlled to be turned on and before the second spotlight is controlled to be turned on:
judging whether a user approaches the horizontal refrigerator or not;
when the user approaches, acquiring the distance L between the user and the horizontal refrigerator;
and judging whether the distance L is smaller than the first distance L1, and controlling the first spotlight 41 to be turned on or controlling the second spotlight 42 to be turned on when the distance L is smaller than the first distance L1.
In order to more intelligently realize control and better enable the lamps to play a display role, the first spotlight 41 and the second spotlight 42 are both in a closed state under the condition that no person approaches, and when the situation that a person approaches is detected, the lamps are actually turned on. The embodiment acquires a signal indicating whether a person approaches through the sensing module 5. The sensing module 5 can be a radar module, the radar module senses and detects that the user sends out an instruction when entering a detection range, and the control module controls the logo lamp to be turned on. When the sensing module detects that the object approaches further, the first light 41 or the second light 42 is controlled to be turned on according to the amount of the current object.
Therefore, the following method is adopted in the process of judging whether a user approaches the horizontal refrigerator: and judging whether the user enters a sensing area of the sensing module, if so, judging that the user approaches.
And when the user is judged to approach, controlling a logo lamp of the horizontal refrigerator to be turned on.
The following steps are also included after "controlling the first spot lamp 41 to be turned on" and after "controlling the second spot lamp 42 to be turned on":
acquiring the current air outlet quantity of the air door;
and judging whether the current air output is in the maximum air output state, if so, controlling the first spotlight 41 and the second spotlight 42 to be in the off state, and simultaneously controlling the logo lamp 2 to be in the off state.
If current air door air output is great relatively, it is higher to have instructed indoor temperature between the storing, needs rapid cooling, in order to avoid the influence of lamp to indoor temperature between the storing, consequently closes lighting assembly 4 earlier.
Judging whether the current air output is in a normal air output state, if so, weakening the brightness of the first spotlight 41, the second spotlight 42 and the logo lamp 2;
and judging whether the current air output quantity is in the minimum air output state, if so, controlling the first spotlight 41, the second spotlight 42 and the logo lamp 2 to work at normal brightness.
The lamps and lanterns can be adjusted luminance according to the air outlet to better matching current refrigeration requirement has promoted refrigeration efficiency, and what need to explain is that the judgement of the air output of air door can be confirmed through the size of air door opening angle.
The structure, features and effects of the present invention have been described in detail above according to the embodiment shown in the drawings, and the above description is only the preferred embodiment of the present invention, but the present invention is not limited to the implementation scope shown in the drawings, and all changes made according to the idea of the present invention or equivalent embodiments modified to the same changes should be considered within the protection scope of the present invention when not exceeding the spirit covered by the description and drawings.
Claims (10)
1. A horizontal freezer, comprising: the refrigerator comprises a cabinet body with a storage chamber, a door body which is arranged on the cabinet body and opens or closes an opening of the storage chamber, a refrigerating unit and a partition arranged in the storage chamber;
the partition is supported on two opposite inner walls of the storage chamber and extends along the opening direction of the storage chamber so as to divide the storage chamber into a first chamber and a second chamber;
horizontal freezer still has the setting and is in lighting assembly on the separator, lighting assembly sets up be close to on the separator storing room open-ended position, last a plurality of first shot-light and the a plurality of second shot-light of being provided with of lighting assembly, the direction of first shot-light emergent light is greater than the direction of second shot-light emergent light and the contained angle of vertical direction with the contained angle of vertical direction.
2. The horizontal refrigerator of claim 1 wherein: the first spotlight and the second spotlight are arranged at intervals and arranged on the separator along the width direction of the cabinet body.
3. The horizontal freezer of claim 2, wherein: the lighting assemblies are provided with two groups, the two groups of lighting assemblies are connected in series and are respectively arranged on two opposite sides of the separating piece, and the two groups of lighting assemblies respectively irradiate towards the first compartment and the second compartment.
4. The horizontal freezer of claim 1, wherein: and a logo lamp is arranged on the separator and arranged at the top of the separator.
5. The horizontal refrigerator of claim 1 wherein: the front side of the cabinet body is further provided with a sensing module, and the sensing module is electrically connected with the lighting assembly.
6. The horizontal freezer of claim 5, wherein: the bottom of storing room is provided with weighing transducer, weighing transducer and control module electric connection, control module with lighting component electric connection.
7. The horizontal freezer of claim 6, wherein: the weight sensors are arranged in a plurality of positions, and the weight sensors are uniformly distributed at the bottom of the storage chamber.
8. The horizontal freezer of claim 1, wherein: the separator comprises a shell, an air inlet, an air outlet, an air duct and a fan assembly, wherein the shell is supported on two opposite inner walls of the storage compartment; the fan assembly is used for driving cold energy to be transmitted from the air inlet to the air outlet;
the air outlet is arranged at a position close to the opening of the storage chamber, the air inlet is arranged at a position close to the bottom of the storage chamber, and the air outlet comprises a first air outlet arranged towards the first chamber opening and a second air outlet arranged towards the second chamber opening.
9. The horizontal refrigerator of claim 8 wherein: a gap part is arranged between the shell and the bottom of the storage chamber and communicated with the first chamber and the second chamber.
10. The horizontal freezer of claim 9, wherein: the shell is detachably installed and fixed on the inner wall of the storage chamber.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222582011.8U CN218511282U (en) | 2022-09-28 | 2022-09-28 | Horizontal refrigerator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222582011.8U CN218511282U (en) | 2022-09-28 | 2022-09-28 | Horizontal refrigerator |
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CN218511282U true CN218511282U (en) | 2023-02-21 |
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Family Applications (1)
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CN202222582011.8U Active CN218511282U (en) | 2022-09-28 | 2022-09-28 | Horizontal refrigerator |
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- 2022-09-28 CN CN202222582011.8U patent/CN218511282U/en active Active
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