Incubation dehumidification module and incubation equipment
By designing a dehumidifying hood, absorbent pad, and blower mechanism in the incubation equipment, the problems of complex structure and insufficient dehumidification capacity of the incubation dehumidification module were solved. This simplified the structure, reduced energy consumption, and improved the dehumidification effect, ensuring a dry environment for the reagent cards and improving the accuracy of the tests.
Patent Information
- Application Number
- CN202423320993.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The existing reagent card incubation equipment has a complex structure, large size, high energy consumption, and insufficient dehumidification capacity. Condensate tends to accumulate, affecting the accuracy of the test.
A temperature and humidity controlled space is formed by a dehumidifying hood and an incubation card slot. Combined with a water absorption mechanism and a blower mechanism, the water absorption pad quickly absorbs condensate and drains it through a drain hole and a water channel. The heat dissipation module dissipates heat to ensure that the temperature and humidity controlled space is dry.
The structure of the incubation dehumidification module has been simplified, reducing energy consumption, improving dehumidification effect, preventing condensate buildup, and ensuring the accuracy of detection and the stability of the instrument.
Smart Images

Figure CN223910932U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to reagent card incubation equipment field, concretely relates to an incubation dehumidification module and incubation equipment. BACKGROUND
[0002] In the process of immune analysis, the sample to be measured needs to be added to the reagent card, and then incubated in the reagent card before detection analysis. For example, in the core detection of various instruments such as fluorescence immune analyzer, the reagent card as the sample detection carrier needs to be incubated in a constant temperature and humidity environment for a period of time in advance, and then detected after stabilization. During the above incubation process, if the surrounding humidity is too large, condensation water droplets will be generated on the reagent card. If the condensation water droplets are generated in the sample biochemical reaction area, it will lead to inaccurate detection of the reagent card, or even invalid detection. Similarly, if the condensation water droplets are generated in the surrounding area of the sample reaction area, such as the reagent card shell, once the condensation water droplets fall into the detection reaction area, it will also lead to inaccurate detection and invalid detection. Therefore, the technical personnel in the field need to strictly ensure that the sample biochemical reaction area and the surrounding area of the reagent card are dry to avoid affecting the detection accuracy of the reagent card.
[0003] In the prior art, for example, a sample temperature adjusting device for an analysis device is disclosed in patent CN111492237B. It specifically discloses that in a heat-insulating sealed space, air cooled by a Peltier element is blown towards a sample located in the temperature adjusting space. The above-mentioned cooled air flows on the bottom side of the temperature adjusting space, so that the outer surface of the heat insulation layer covering the bottom side of the temperature adjusting space is prone to dew condensation. Finally, the condensation water droplets are dried by a hot plate arranged on the bottom side of the temperature adjusting space. The above-mentioned sample temperature adjusting device needs to dry the condensation water droplets by a hot plate, which causes the overall structure of the dehumidification device to be complex, the size to be large, and the energy consumption and cost to be high, making it difficult to promote the equipment. At the same time, the drying efficiency of the hot plate is limited, and the water droplets are also easily heated and vaporized to increase the humidity in the temperature adjusting space, which seriously affects the dehumidification effect of the equipment. Therefore, the technical personnel in the field urgently need a new incubation dehumidification module to effectively improve the dehumidification effect of the equipment, while simplifying the structure and reducing the production and use cost of the equipment. UTILITY MODEL CONTENT
[0004] Therefore, the technical problem to be solved by the utility model is how to solve the problem of the incubation dehumidification module of the reagent card incubation equipment in the prior art, which has a complex overall structure, a large size, high energy consumption and cost, insufficient dehumidification capacity, and air containing water vapor is easy to gather near the reagent card incubation plate, and condensation water is easy to generate in the inside of the incubation tank, which affects the detection accuracy of the instrument and the stability of the instrument in use. To this end, the utility model provides an incubation dehumidification module, which comprises:
[0005] A dehumidification cover, which, together with the incubation card slot, forms a temperature and humidity control space for accommodating a reagent card;
[0006] A water absorption mechanism, comprising a water absorption pad and a water absorption pad fixing frame for accommodating the water absorption pad; the water absorption pad is arranged below the incubation card slot and is used for absorbing condensate generated in the incubation and dehumidification module;
[0007] A blowing mechanism, which is in communication with the temperature and humidity control space in the dehumidification cover, drives the circulation of air at each position in the temperature and humidity control space; and the air flow generated by the circulating air fan flows through the upper and lower sides of the incubation card slot.
[0008] Optionally, the water absorption pad is arranged adjacent to the refrigeration component to absorb condensate generated near the refrigeration component; and / or,
[0009] The water absorption pad fixing frame is further provided with a drain hole for discharging the condensate absorbed by the water absorption pad.
[0010] Optionally, the incubation card slot is arranged on a card slot fixing frame, and the card slot fixing frame and / or the incubation card slot is provided with a water passing hole for the condensate to flow onto the water absorption pad.
[0011] Optionally, a guide groove is formed below the incubation card slot for air flow; and / or,
[0012] The refrigeration component is a refrigeration fin arranged below the incubation card slot, and the refrigeration fin is embedded in the water absorption pad; and / or,
[0013] The bottom surface of the water absorption pad fixing frame is provided with a water guide channel for introducing condensate into the drain hole; and / or,
[0014] The outer periphery of the card slot fixing frame is provided with a heat insulation limiting rubber frame, the dehumidification cover is connected with the heat insulation limiting rubber frame, and the temperature and humidity control space is surrounded by the dehumidification cover, the heat insulation limiting rubber frame and the card slot fixing frame; and / or,
[0015] The refrigeration component is a plurality of components arranged uniformly below the incubation card slot.
[0016] Optionally, the incubation card slot is arranged on a card slot fixing frame; the blowing mechanism comprises a circulating air fan, which is arranged at one end of the card slot fixing frame in the length direction and blows air towards the dehumidification cover.
[0017] Optionally, the incubation and dehumidification module further comprises a heat dissipation module and a heat dissipation module support member, the heat dissipation module is connected with the heating component on the refrigeration component, and is used for guiding the heat generated by the incubation device out;
[0018] The heat dissipation module support member comprises: an elastic element and a support seat for accommodating the elastic element, the elastic element is used for driving the heat dissipation module, the refrigeration component, the water absorption pad fixing frame and the incubation card slot, and sequentially abuts and connects from bottom to top in the vertical direction.
[0019] Optionally, the heat dissipation module comprises: a heat conduction component, a heat dissipation component connected with the heat conduction component, and a heat dissipation fan blowing towards the heat dissipation component.
[0020] Optionally, the incubation and dehumidification module further comprises: a front plate, a side plate and a heat dissipation fan support arranged between the two side plates; the heat conduction component is installed on the front plate and the side plate through an intermediate fixing plate;
[0021] The heat dissipation fan is installed on the heat dissipation fan support and blows towards the heat dissipation component to lead out heat from the bottom opening of the space surrounded by the front plate and the side plate.
[0022] Optionally, the intermediate fixing plate is further provided with a drainage funnel arranged opposite to the drainage hole; the drainage funnel is further provided with a drainage interface for communicating with a water connection pipeline; and / or,
[0023] The intermediate fixing plate and the water absorption pad fixing frame are further provided with a heat dissipation airflow sealing element; the heat dissipation airflow sealing element is in an annular structure and is used for blocking heat emitted by the heat generating component and the heat conduction component from overflowing between the intermediate fixing plate and the water absorption pad fixing frame; and / or,
[0024] The heat conduction component is a heat dissipation copper pipe connected with the heat generating component; the heat dissipation component is a heat dissipation fin; and / or,
[0025] The heat dissipation fan is a plurality of heat dissipation fans uniformly arranged towards the heat dissipation component through the heat dissipation fan support.
[0026] Optionally, the dehumidification cover is further provided with an elastic sealing gasket; a light seat in the incubation equipment is connected with a driving equipment transmission through the elastic sealing gasket, and the elastic sealing gasket dynamically seals the opening on the dehumidification cover.
[0027] Optionally, the elastic sealing gasket comprises: two strip-shaped elastic pieces connected in opposition and abutment and forming a V-shaped structure, and the strip-shaped elastic pieces are arranged on the light seat movement path.
[0028] An incubation equipment comprises: an incubation and dehumidification module; and an incubation device.
[0029] The technical scheme of the utility model has the following advantages:
[0030] 1. The incubation and dehumidification module comprises:
[0031] The dehumidification cover and the incubation card slot form a temperature and humidity control space for accommodating the reagent card.
[0032] The water absorption mechanism comprises a water absorption pad and a water absorption pad fixing frame for accommodating the water absorption pad.
[0033] In the utility model, the water absorption pad fixing frame containing the water absorption pad is arranged in the incubation and dehumidification module, so that the water absorption pad can quickly absorb the condensate water generated near the refrigeration component of the incubation and dehumidification module.
[0034] The dehumidification cover and the incubation card slot cooperate to form a temperature and humidity control space for accommodating the reagent card.
[0035] 2. The incubation and dehumidification module comprises:
[0036] In the utility model, the water absorption pad fixing frame containing the water absorption pad is arranged in the incubation and dehumidification module, so that the water absorption pad can quickly absorb the condensate water generated near the refrigeration component of the incubation and dehumidification module.
[0037] 3. The incubation and dehumidification module comprises:
[0038] In the utility model, through arranging the water passing hole on the card slot fixing frame and / or the incubation card slot, the condensed water can be effectively guided to flow to the water absorption pad position from the water passing hole, the condensed water is avoided from gathering near the card slot fixing frame or the incubation card slot, and the problems of the condensed water drop falling into the detection reaction area, the inaccurate reagent card detection and invalidity are caused.
[0039] 4. The utility model provides an incubation and dehumidification module, the refrigeration component is refrigeration piece, is embedded in the water absorption pad. So that refrigeration piece and water absorption pad are connected by sticking together, improve the adsorption effect of water absorption pad to the condensed water bead near the refrigeration piece.
[0040] 5. The utility model provides an incubation and dehumidification module, the bottom surface of water absorption pad fixed frame is provided with the water diversion channel for introducing the condensed water into the drain hole. In the utility model, by forming the water diversion channel with high and low difference on the bottom surface of water absorption pad fixed frame, the condensed water can be effectively introduced into the water diversion channel and then discharged through the above-mentioned drain hole.
[0041] 6. The utility model provides an incubation and dehumidification module further comprising: a blowing mechanism, in communication with the temperature and humidity control space in the dehumidification cover, drives the air circulation at each position in the temperature and humidity control space, and the air flow generated by the circulating air fan flows through the upper and lower sides of the incubation card slot.
[0042] In the utility model, the blowing mechanism blows towards the temperature and humidity control space in the dehumidification cover, thereby realizing the air circulation at each position in the temperature and humidity control space. The air flow flows through the upper and lower sides of the incubation card slot, ensuring the air flow at the upper and lower sides of the incubation card slot and maintaining a dry environment.
[0043] 7. The utility model provides an incubation and dehumidification module, a heat dissipation module and a heat dissipation module support member, the heat dissipation module is connected with the heating component on the refrigeration component, used for guiding the heat emitted by the incubation equipment out.
[0044] The heat dissipation module support member comprises: an elastic element and a support seat for accommodating the elastic element, the elastic element is used for driving the heat dissipation module, the refrigeration component, the water absorption pad fixed frame and the incubation card slot, and they are connected in sequence by abutting from bottom to top in the vertical direction.
[0045] In the utility model, the heat dissipation module guides the heat emitted by the incubation equipment out, thereby ensuring the normal work of the refrigeration component and the dry effect of the refrigeration component. Moreover, the elastic element on the heat dissipation module support member drives the heat dissipation module, the refrigeration component, the water absorption pad fixed frame and the incubation card slot, and they are connected in sequence by abutting from bottom to top in the vertical direction, which can also effectively ensure that the water absorption pad is connected with the incubation card slot and effectively adsorb and discharge the condensed water flowing out of the drain hole on the incubation card slot.
[0046] 8. The incubation and dehumidification module provided by the utility model, the heat dissipation module comprises: a heat conduction component, a heat dissipation component connected with the heat conduction component, and a heat dissipation fan blowing towards the heat dissipation component. The heat conduction component is installed on the front plate and the side plate through the intermediate fixing plate; the heat dissipation fan is installed on the heat dissipation fan support and blows towards the heat dissipation component, leading the heat out of the incubation equipment from the bottom opening of the space surrounded by the front plate and the side plate.
[0047] In the utility model, the heat dissipation fan blows towards the heat dissipation component from the rear side of the incubation equipment, and the wind taking away the heat leads out of the incubation equipment from the bottom opening of the incubation equipment, so that the heat on the heat dissipation component is discharged in time, and the heat dissipation effect of the heat dissipation module is guaranteed.
[0048] 9. The incubation and dehumidification module provided by the utility model, the intermediate fixing plate is further provided with a water drainage funnel opposite to the water drainage hole; the water drainage funnel is further provided with a water drainage interface for being connected with a water drainage pipeline.
[0049] In the utility model, the water drainage funnel on the intermediate fixing plate can effectively collect the condensed water drained from the water drainage hole of the incubation slot. Moreover, the condensed water is drained through the pipeline connected with the water drainage interface on the intermediate fixing plate.
[0050] 10. The incubation and dehumidification module provided by the utility model, the intermediate fixing plate and the water absorption pad fixing frame are further provided with a heat dissipation airflow sealing piece; the heat dissipation airflow sealing piece is annular in structure and is used for blocking the heat emitted by the heat generating component and the heat conduction component from overflowing between the intermediate fixing plate and the water absorption pad fixing frame.
[0051] In the utility model, the heat dissipation airflow sealing piece arranged between the intermediate fixing plate and the water absorption pad fixing frame can effectively block the heat emitted by the heat generating component and the heat conduction component from overflowing, and the heat is effectively led out of the incubation equipment through the heat conduction component.
[0052] 11. The incubation and dehumidification module provided by the utility model, the dehumidification cover is further provided with an elastic sealing pad; the optical seat in the incubation equipment is connected with a driving equipment transmission through the elastic sealing pad, and the elastic sealing pad realizes dynamic sealing on the opening on the dehumidification cover.
[0053] In the utility model, the elastic sealing pad arranged on the dehumidification cover can effectively dynamically seal the optical seat moving in the incubation equipment, so that the dehumidification cover is always in a sealed state during the movement of the optical seat connected with the driving equipment transmission, and the dry environment in the temperature and humidity control space is further guaranteed.
[0054] 12. The incubation device, comprising: an incubation dehumidification module; and an incubation device. BRIEF DESCRIPTION OF DRAWINGS
[0055] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the drawings needed in the specific embodiments or prior art description will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.
[0056] Figure 1 The explosion schematic diagram of the incubation dehumidification module provided by the present application is shown in the figure.
[0057] Figure 2 The three-dimensional structure schematic diagram of the incubation device provided by the present application is shown in the figure.
[0058] Figure 3 The explosion schematic diagram of the incubation device provided by the present application is shown in the figure.
[0059] Figure 4 The flow direction schematic diagram of the air generated by the circulating air fan on the upper and lower sides of the incubation slot is shown in the figure.
[0060] Figure 5 The internal structure schematic diagram of the incubation device provided by the present application is shown in the figure.
[0061] Figure 6 The connection structure schematic diagram of the incubation slot with water holes, the water absorption pad fixing frame provided with water absorption pads, and the intermediate fixed plate provided by the present application is shown in the figure.
[0062] Figure 7 The enlarged schematic diagram of the communication structure of the condensate water absorbed by the water absorption pad and the drainage funnel on the intermediate fixed plate provided by the present application is shown in the figure.
[0063] Figure 8 The local enlarged schematic diagram of the water absorption pad fixing frame provided with water absorption pads and refrigeration components provided by the present application is shown in the figure.
[0064] BRIEF DESCRIPTION OF DRAWINGS
[0065] 1 - dehumidification cover; 2 - incubation slot; 3 - refrigeration component; 4 - water absorption pad; 5 - water absorption pad fixing frame; 6 - drainage hole; 7 - slot fixing frame; 8 - water passing hole; 9 - water guide channel; 10 - circulating air fan; 11 - heat dissipation module; 12 - heat dissipation module support member; 13 - elastic sealing pad; 14 - heat conduction component; 15 - heat dissipation component; 16 - heat dissipation fan; 17 - front plate; 18 - side plate; 19 - heat dissipation fan support; 20 - middle fixing plate; 21 - drainage funnel; 22 - drainage interface; 23 - heat dissipation airflow sealing piece; 24 - light seat; 25 - heat insulation limiting rubber frame; 26 - flow guide groove. DETAILED DESCRIPTION
[0066] The technical solutions of the present application will be described clearly and completely below in conjunction with the drawings. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0067] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0068] Embodiment 1
[0069] Referring to Figure 2 and Figure 3 , Figure 2 shows a three-dimensional structure schematic diagram of the incubation equipment in the embodiment of the present application. Figure 3 is an explosion schematic diagram of the incubation equipment in the embodiment of the present application.
[0070] The incubation dehumidification module provided in the embodiment includes:
[0071] The dehumidification cover 1, referring to Figure 5 The incubation slot 2 is arranged on the slot fixing frame 7, and the outer periphery of the slot fixing frame 7 is provided with a heat insulation limiting rubber frame 25, the dehumidification cover 1 is connected with the heat insulation limiting rubber frame 25, and a temperature and humidity control space is formed by the dehumidification cover 1, the heat insulation limiting rubber frame 25 and the slot fixing frame 7;
[0072] The cooling component 3 is disposed below the incubation slot 2;
[0073] A water-absorbing mechanism is used to collect and discharge water droplets condensed by the cooling component 3. (See also...) Figure 1 The exploded view of the incubation dehumidification module shown above indicates that the water absorption mechanism includes: a water absorption pad 4 and a water absorption pad fixing frame 5 for accommodating the water absorption pad 4; the water absorption pad 4 is disposed adjacent to the refrigeration component 3 to absorb condensate droplets generated near the refrigeration component 3; the water absorption pad fixing frame 5 is provided with a drain hole 6 for draining the condensate absorbed by the water absorption pad 4.
[0074] The blower mechanism is connected to the temperature and humidity control space within the dehumidification hood 1, driving the air circulation within the temperature and humidity control space at various locations; such as Figure 4 As shown, the airflow generated by the circulating air fan 10 flows through the upper and lower sides of the incubation slot 2, so that the airflow generates condensed moisture near the cooling component 3; in this embodiment, in order to facilitate the airflow through the upper and lower sides of the incubation slot 2, a guide groove 26 is provided below the incubation slot 2 for the airflow to pass through.
[0075] Heat dissipation module 11 and heat dissipation module support component 12, such as Figure 5 As shown, the heat dissipation module 11 is connected to the heat-generating component on the cooling component 3 to dissipate the heat emitted by the incubation equipment; the heat dissipation module support member 12 includes: an elastic element and a support seat for accommodating the elastic element, the elastic element is used to drive the heat dissipation module 11, the cooling component 3, the water-absorbing pad fixing frame 5 and the incubation slot 2 to abut and connect sequentially from bottom to top in the vertical direction.
[0076] In this invention, to ensure that the absorbent pad 4 can absorb condensate in a timely manner, thereby ensuring the dryness of the temperature-controlled humidity space, the following design features are implemented:
[0077] 1. For example Figure 8 As shown, the aforementioned cooling component 3 is a cooling element, embedded within the absorbent pad 4, allowing the absorbent pad 4 to more quickly and effectively absorb condensate near the cooling element. Furthermore, in this embodiment, multiple cooling elements are evenly arranged below the incubation slot 2. This improves the drying effect of the cooling elements, ensuring that all areas of the incubation slot 2 remain dry.
[0078] 2. A water passage hole 8 is provided on the incubation card slot 2 and the card slot fixing frame 7 for accommodating the incubation card slot 2, so that the condensate near the incubation card slot 2 can flow quickly to the water-absorbing pad 4.
[0079] Meanwhile, in the utility model, in order to guarantee that the condensed water absorbed by the water absorption pad 4 is discharged in time, and then guarantee that the temperature control humid space is dry, the following design is made: the bottom surface of the water absorption pad fixing frame 5 is provided with a water guide channel 9 for guiding the condensed water into the drain hole 6, thereby forming a height difference on the bottom surface of the water absorption pad fixing frame 5, and the condensed water flows into the water guide channel 9. Then, the drain hole 6 for discharging the condensed water absorbed by the water absorption pad 4 is arranged in the water guide channel 9, thereby guaranteeing the discharge efficiency of the condensed water in the water absorption pad fixing frame 5.
[0080] In the embodiment, referring to Figure 6 and Figure 7 , Figure 6 The utility model discloses incubation card slot with water passing hole and water absorption pad fixing frame installed with water absorption pad and the connecting structure schematic diagram of intermediate fixed plate. Figure 7 It is the enlarged schematic diagram of the water absorption pad of the utility model embodiment and the water drainage funnel communication structure on the intermediate fixed plate. The intermediate fixed plate 20 is also provided with a water drainage funnel 21 arranged opposite to the drain hole 6, and the water drainage funnel 21 is also provided with a water drainage interface 22 for being communicated with a water receiving pipeline. In order to effectively block the heat overflow of the heat generating component and the heat conducting component 14, and guarantee that the heat conducting component 14 effectively conducts heat out of the incubation equipment, the intermediate fixed plate 20 and the water absorption pad fixing frame 5 are also provided with a heat dissipation airflow sealing piece 23, and the heat dissipation airflow sealing piece 23 is annular structure, which is used for blocking the heat overflow of the heat generating component and the heat conducting component 14 between the intermediate fixed plate 20 and the water absorption pad fixing frame 5.
[0081] In the embodiment, referring to Figure 1 and Figure 4 , Figure 2 The utility model discloses incubation dehumidification module explosion schematic diagram. Figure 3 It is the wind flow direction schematic diagram of the wind generated by the circulating air fan on the upper and lower sides of the incubation card slot. The incubation card slot 2 is arranged on the card slot fixing frame 7, and the air blowing mechanism comprises a circulating air fan 10, which is arranged at one end of the card slot fixing frame 7 in the length direction and blows air towards the dehumidification cover 1.
[0082] In the embodiment, referring to Figure 5 The incubation equipment internal structure schematic diagram. The heat dissipation module 11 comprises: heat conducting component 14, with the heat conducting component 14 is connected to the heat dissipation component 15, and the heat dissipation fan 16 of the heat dissipation component 15 is blown towards. The heat conducting component 14 is a heat dissipation copper pipe connected with the heat generating component, and the heat dissipation component 15 is a heat dissipation fin. Figure 3As shown, the incubation dehumidification module further includes: a front panel 17, side panels 18, and a cooling fan bracket 19 disposed between the two side panels 18; the heat-conducting component 14 is mounted on the front panel 17 and the side panels 18 via a middle fixing plate 20; the cooling fan 16 is mounted on the cooling fan bracket 19, blowing air towards the heat dissipation component 15 and drawing heat out of the incubation device from the bottom opening of the space enclosed by the front panel 17 and the side panels 18. Multiple cooling fans 16 are evenly arranged towards the heat dissipation component 15 via the cooling fan bracket 19.
[0083] In this embodiment, as Figure 3 and Figure 5 As shown, the dehumidification hood 1 is also provided with an elastic sealing gasket 13; the light seat 24 inside the incubation equipment is connected to the drive device through the elastic sealing gasket 13, and the elastic sealing gasket 13 dynamically seals the opening on the dehumidification hood 1. The aforementioned elastic sealing gasket 13 includes: two strip-shaped elastic sheets that abut against each other and form a V-shaped structure, and the strip-shaped elastic sheets are arranged on the moving path of the light seat 24.
[0084] Of course, this embodiment does not specifically limit how the temperature and humidity control space is formed. In other embodiments, the dehumidification cover 1 is directly connected to the card slot fixing frame 7 on the incubation card slot 2 to form a temperature and humidity control space for accommodating reagent cards.
[0085] Of course, the specific structure of the water guiding and drainage mechanism is not specifically limited in this embodiment. In other embodiments, the water guiding and drainage mechanism can absorb the condensate droplets generated near the cooling component 3 through the water absorption pad 4. When there is a lot of condensate in the water absorption pad 4, the water absorption pad 4 can be manually removed by pulling out the drawer to drain the condensate.
[0086] Of course, the specific location of the water passage hole 8 is not limited in this embodiment. In other embodiments, only the incubation card slot 2 is provided with water passage holes 8 for condensate to flow to the water absorption pad 4.
[0087] Of course, this embodiment does not specifically limit whether the incubation dehumidification module is equipped with the above-mentioned blower mechanism. In other embodiments, there is no air circulation in the temperature and humidity control space inside the dehumidification hood 1, and the drying work of the temperature and humidity control space can be completed by the above-mentioned refrigeration component 3.
[0088] Of course, this embodiment does not specifically limit the specific structure and location of the blower mechanism. In other embodiments, the blower mechanism can also be located outside the temperature and humidity control space and blow air towards the temperature and humidity control space to achieve the air flow effect within the temperature and humidity control space.
[0089] Of course, the specific structure of the heat dissipation module 11 is not limited in the embodiment, and in other embodiments, the heat dissipation module 11 comprises: a heat conduction component 14, and a heat dissipation component 15 connected with the heat conduction component 14, and the heat dissipation component 15 can be cooled by a cooling liquid.
[0090] Of course, the specific structure of the elastic sealing gasket 13 used for dynamic sealing during the movement of the optical seat 24 is not limited in the embodiment, and in other embodiments, the elastic sealing gasket 13 can also be a dynamic sealing structure composed of dense and elastic hairs similar to a brush structure.
[0091] Embodiment 2
[0092] An incubation device comprises the incubation and dehumidification module disclosed in Embodiment 1, and an incubation device.
[0093] Obviously, the above embodiments are only examples for clearly illustrating, and are not limitation to the embodiments. Based on the above description, other different forms of changes or variations can be made by those skilled in the art. Here, all the embodiments are not required to be exhausted, and the obvious changes or variations derived therefrom are still within the protection scope of the present application.
Claims
1. An incubation dehumidification module, comprising: The application relates to an incubation device for reagent cards. The incubation device comprises: a dehumidification cover (1) which, together with an incubation card slot (2), forms a temperature and humidity control space for accommodating reagent cards; a water absorption mechanism which comprises a water absorption pad (4) and a water absorption pad fixing frame (5) for accommodating the water absorption pad (4); the water absorption pad (4) is arranged below the incubation card slot (2) and is used for absorbing condensed water generated in the incubation dehumidification module; a blowing mechanism which is connected with the temperature and humidity control space in the dehumidification cover (1) and drives air in the temperature and humidity control space to flow circularly; and the air flow generated by a circulating air fan (10) flows through the upper and lower sides of the incubation card slot (2). The water absorption pad (4) is arranged at a position adjacent to a refrigeration component (3) and is used for absorbing condensed water generated near the refrigeration component (3); and / or A drain hole (6) for draining the condensed water absorbed by the water absorption pad (4) is further arranged on the water absorption pad fixing frame (5). The incubation card slot (2) is arranged on a card slot fixing frame (7), and the card slot fixing frame (7) and / or the incubation card slot (2) is / are provided with a water passing hole (8) for allowing condensed water to flow onto the water absorption pad (4).
2. The incubation dehumidification module of claim 1, wherein, A guide groove (26) for allowing air flow to pass through is arranged below the incubation card slot (2); and / or The refrigeration component (3) is a refrigeration fin which is arranged below the incubation card slot (2) and is embedded in the water absorption pad (4); and / or 3. The incubation dehumidification module of claim 2, wherein, A water guide channel (9) for guiding condensed water into the drain hole (6) is arranged on the bottom surface of the water absorption pad fixing frame (5); and / or 4. The incubation dehumidification module of claim 3, wherein, A heat insulation limiting rubber frame (25) is arranged on the outer periphery of the card slot fixing frame (7), the dehumidification cover (1) is connected with the heat insulation limiting rubber frame (25), the temperature and humidity control space is formed by the dehumidification cover (1), the heat insulation limiting rubber frame (25) and the card slot fixing frame (7); and / or The refrigeration component (3) is a plurality of refrigeration components which are uniformly arranged below the incubation card slot (2). The incubation card slot (2) is arranged on the card slot fixing frame (7); the blowing mechanism comprises a circulating air fan (10) which is arranged at one end of the card slot fixing frame (7) in the length direction and blows air towards the dehumidification cover (1). The application further comprises: a heat dissipation module (11) and a heat dissipation module support component (12), the heat dissipation module (11) is connected with a heating component on the refrigeration component (3) and is used for guiding heat generated by the incubation device outwards; the heat dissipation module support component (12) comprises an elastic element and a support seat for accommodating the elastic element, the elastic element is used for driving the heat dissipation module (11), the refrigeration component (3), the water absorption pad fixing frame (5) and the incubation card slot (2) to abut against each other in a vertical direction from bottom to top; the heat dissipation module (11) comprises a heat conduction component (14), a heat dissipation component (15) connected with the heat conduction component (14) and a heat dissipation fan (16) which blows air towards the heat dissipation component (15). 5. The incubation dehumidification module of claim 1, wherein, 6. The incubation dehumidification module according to any one of claims 1 to 4, characterized in that, 7. The incubation dehumidification module of claim 6, wherein, The incubation dehumidification module further comprises a front plate (17), a side plate (18), and a heat dissipation fan bracket (19) arranged between the two side plates (18); the heat conduction component (14) is installed on the front plate (17) and the side plate (18) through an intermediate fixing plate (20); The heat dissipation fan (16) is installed on the heat dissipation fan bracket (19) and blows air towards the heat dissipation component (15) to lead heat out of the bottom opening of the space surrounded by the front plate (17) and the side plate (18) to the incubation device.
8. The incubation dehumidification module of claim 7, wherein, The intermediate fixing plate (20) is further provided with a drainage funnel (21) arranged opposite to the drainage hole (6) on the water absorption pad fixing frame (5); the drainage funnel (21) is further provided with a drainage interface (22) for communicating with a water receiving pipeline; and / or, The intermediate fixing plate (20) and the water absorption pad fixing frame (5) are further provided with a heat dissipation airflow sealing piece (23); the heat dissipation airflow sealing piece (23) is in an annular structure and is used for blocking heat emitted by the heat generating component and the heat conduction component (14) from overflowing between the intermediate fixing plate (20) and the water absorption pad fixing frame (5); and / or, The heat conduction component (14) is a heat dissipation copper pipe connected with the heat generating component; the heat dissipation component (15) is a heat dissipation fin; and / or, The heat dissipation fan (16) is a plurality of heat dissipation fans uniformly arranged towards the heat dissipation component (15) through the heat dissipation fan bracket (19).
9. The incubation dehumidification module according to any one of claims 1 to 4, wherein, The dehumidification cover (1) is further provided with an elastic sealing pad (13); a light seat (24) in the incubation device is connected with a driving device transmission through the elastic sealing pad (13), and the elastic sealing pad (13) realizes dynamic sealing on the opening of the dehumidification cover (1); The elastic sealing pad (13) comprises two strip-shaped elastic sheets connected in opposition and in abutment, forming a V-shaped structure, and the strip-shaped elastic sheets are arranged on the moving path of the light seat (24).
10. An incubation apparatus, characterized in that The incubation dehumidification module comprises: The incubation dehumidification module according to any one of claims 1 to 9; and The incubation device.
Citation Information
Patent Citations
Sample temperature control device for analytical apparatus
CN111492237B