Modular appliance
The modular vacuum sealer appliance integrates a handheld sealer with a docking station, addressing the need for a single device that can function as both a standard and handheld sealer, enhancing usability and convenience.
Patent Information
- Application Number
- PCT/CN2024/109227
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-08-01
- Publication Date
- 2026-02-05
AI Technical Summary
Existing vacuum sealer appliances are large and difficult to store, necessitating the purchase of both a standard and handheld sealer to meet different needs, leading to the need for a modular appliance that can function as both.
A modular vacuum sealer appliance that integrates a handheld sealer with a docking station, allowing the handheld sealer to be used independently or attached to the main unit, powered by a battery or pass-through power from the main unit, and featuring a sealing mechanism for airtight containers.
Enables a single appliance to address both standard and handheld vacuum sealing needs, providing flexibility and convenience by allowing the handheld sealer to operate with or without its battery, and ensuring easy docking and charging.
Smart Images

Figure CN2024109227_05022026_PF_FP_ABST
Abstract
Description
MODULAR APPLIANCETechnical Field
[0001] The present disclosure generally relates to vacuum sealer appliances. More specifically, the disclosure relates to vacuum sealer appliance, which may include a modular vacuum sealer.Background
[0002] Vacuum sealer appliances have become increasingly popular in recent years to remove air from a container storing food (e.g., plastic bag, plastic container, etc. ) . Standard vacuum sealer appliances use a pump to remove air from the food container. Once the air is removed, standard vacuum sealer appliances use heat to seal the food container to form an airtight seal. The lack of air in the container increases the life of the food contained, as the food is not as impacted by exterior factors that may cause the food to spoil.
[0003] Currently existing vacuum sealer appliances are large and can be difficult to store. To address these issues, some consumers turn to existing handheld vacuum sealers. As such, many consumers must purchase two separate appliances –one large vacuum sealer and one handheld vacuum sealer –to address the different purposes and needs addressed from each. A need exists for an appliance that can be used as a standard vacuum sealer appliance and as a handheld sealer.Summary
[0004] The present disclosure overcomes many of the shortcomings and limitations of the devices discussed above. The disclosure herein includes several embodiments of a modular vacuum sealer appliance.
[0005] As mentioned above, there is a need for an appliance that may be used in a standard vacuum sealing space as well as in the handheld, modular space. Although integration of these components has been envisioned (see U.S. Pat. Pub. No. 2024 / 0101292) , the disclosure herein presents improvements to such systems.
[0006] The vacuum sealer appliance as described herein may include a vacuum sealer as well as a modular appliance which may be housed within the vacuum sealer appliance. The modular appliance may be used independently or may be attached to the vacuum sealer appliance and provide the pumping and sealing power to use the vacuum sealer appliance. The modular appliance may be charged by the vacuum sealer appliance and may be used for standard vacuum sealing needs when charging. As such, users may have a single appliance which may address the varying needs and uses of both a larger and a modular appliance.
[0007] According to a first aspect, the present disclosure includes a vacuum sealer appliance comprising: a modular vacuum sealer comprising a pump for removing air from a container and a battery; a sealing mechanism for sealing the container after the air has been removed; a power source; and a docking station configured to receive the modular vacuum sealer; wherein when the modular vacuum sealer is separated from the docking station, the battery powers the pump; and wherein when the modular vacuum sealer is received into the docking station, the power source powers the pump.
[0008] In a second aspect of the vacuum sealer appliance of the first aspect or any other aspect, further comprising one or more buttons configured to at least one of: turn on at least one of the pump and the sealing mechanism; turn off at least one of the pump and the sealing mechanism; and display information; wherein the modular vacuum sealer further comprises one or more buttons configured to at least one of: turn on at least one of the pump and the sealing mechanism; turn off at least one of the pump and the sealing mechanism; and display information.
[0009] In a third aspect of the vacuum sealer appliance of the second aspect or any other aspect, wherein when the modular vacuum sealer is received into the docking station of the vacuum sealer appliance, the one or more buttons of the modular vacuum sealer are adjacent to a surface of the vacuum sealer appliance, such that they are not visible to a user.
[0010] In a fourth aspect of the vacuum sealer appliance of the first aspect or any other aspect, wherein the modular vacuum sealer further comprises a bevel positioned on a first end, wherein the bevel is configured to be received into a receiving portion of the vacuum sealer appliance.
[0011] In a fifth aspect of the vacuum sealer appliance of the first aspect or any other aspect, wherein the modular vacuum sealer further comprises a keyed feature, wherein the keyed feature is configured to receive a projection positioned on a docking plate in the docking station.
[0012] In a sixth aspect of the vacuum sealer appliance of the first aspect or any other aspect, wherein the docking station of the vacuum sealer appliance comprises a door mechanism for adjusting the modular vacuum sealer between at least a first position and a second position.
[0013] In a seventh aspect of the vacuum sealer appliance of the sixth aspect or any other aspect, wherein when the modular vacuum sealer is received in the docking station and a user presses a door tab of the door mechanism in a direction away from the docking station, the door mechanism lifts the modular vacuum sealer out of the docking station.
[0014] In an eighth aspect of the vacuum sealer appliance of the sixth aspect or any other aspect, further comprising a detent system, wherein the detent system comprises: a plurality of rotational arms positioned on a base of the door mechanism, wherein the plurality of rotational arms each comprise at least two cavities with a ramp therebetween; and a plurality of pin mechanisms each comprising a pin and a spring; wherein the pin translates between the at least two cavities along the ramp; wherein when a user adjusts the door mechanism, the pin translates from a first cavity of the at least two cavities to a second cavity of the at least two cavities; and wherein when in the first cavity, the door mechanism is open, and when in the second cavity, the door mechanism is closed.
[0015] According to a ninth aspect, the present disclosure includes a vacuum sealer appliance comprising: a modular vacuum sealer comprising a pump for removing air from a container and a battery; a sealing mechanism for sealing the container after the air has been removed; and a power source; wherein when the modular vacuum sealer is received into a docking station of the vacuum sealer appliance, the power source powers the pump.
[0016] In a tenth aspect of the vacuum sealer appliance of the ninth aspect or any other aspect, wherein when the modular vacuum sealer is separated from the docking station, the battery powers the pump.
[0017] In an eleventh aspect of the vacuum sealer appliance of the ninth aspect or any other aspect, wherein the modular vacuum sealer further comprises one or more buttons configured to at least one of: turn on at least one of the pump and the sealing mechanism; turn off at least one of the pump and the sealing mechanism; and display information.
[0018] In a twelfth aspect of the vacuum sealer appliance of the eleventh aspect or any other aspect, wherein when the modular vacuum sealer is received into the docking station of the vacuum sealer appliance, the one or more buttons of the modular vacuum sealer are adjacent to a surface of the vacuum sealer appliance, such that they are not visible to a user.
[0019] In a thirteenth aspect of the vacuum sealer appliance of the ninth aspect or any other aspect, wherein the modular vacuum sealer further comprises a bevel positioned on a first end, wherein the bevel is configured to be received into a receiving portion of the vacuum sealer appliance.
[0020] In a fourteenth aspect of the vacuum sealer appliance of the ninth aspect or any other aspect, wherein the modular vacuum sealer further comprises a keyed feature, wherein the keyed feature is configured to receive a projection positioned on a docking plate in the docking station.
[0021] In a fifteenth aspect of the vacuum sealer appliance of the ninth aspect or any other aspect, wherein the docking station of the vacuum sealer appliance comprises a door mechanism for adjusting the modular vacuum sealer between at least a first position and a second position.
[0022] In a sixteenth aspect of the vacuum sealer appliance of the fifteenth aspect or any other aspect, wherein when the modular vacuum sealer is received in the docking station and the user presses a door tab of the door mechanism in a direction away from the docking station, the door mechanism lifts the modular vacuum sealer out of the docking station.
[0023] According to a seventeenth aspect, the present disclosure includes a vacuum sealer appliance comprising: a modular vacuum sealer comprising a pump for removing air from a container; and a docking station configured to receive the modular vacuum sealer; wherein the pump is powered by at least one of a battery in the modular vacuum sealer and a power source supplied to the vacuum sealer appliance; and wherein when the modular vacuum sealer is received into the docking station, electricity from the power source passes through the vacuum sealer appliance to the modular vacuum sealer to power the pump.
[0024] In an eighteenth aspect of the vacuum sealer appliance of the seventeenth aspect or any other aspect, wherein the modular vacuum sealer further comprises a bevel positioned on a first end, wherein the bevel is configured to be received into a receiving portion of the vacuum sealer appliance.
[0025] In a nineteenth aspect of the vacuum sealer appliance of the seventeenth aspect or any other aspect, wherein the modular vacuum sealer further comprises a keyed feature, wherein the keyed feature is configured to receive a projection positioned on a docking plate in the docking station.
[0026] In a twentieth aspect of the vacuum sealer appliance of the seventeenth aspect or any other aspect, wherein the modular vacuum sealer further comprises a keyed feature, wherein the keyed feature is configured to receive a projection positioned on a docking plate in the docking station.Brief Description of Drawings
[0027] FIG. 1 is a first perspective view of a vacuum sealer appliance constructed according to the teachings of the present disclosure;
[0028] FIG. 2 is a perspective view of an interior of the vacuum sealer appliance of FIG. 1;
[0029] FIG. 3 is a first perspective view of a handheld sealer for use with the vacuum sealer appliance of FIG. 1;
[0030] FIG. 4 is a cross-sectional view of the vacuum sealer appliance of FIG. 1 taken across line 4-4 of FIG. 1;
[0031] FIG. 5 is a second perspective view of the handheld sealer of FIG. 3;
[0032] FIG. 6 is a second perspective view of the vacuum sealer appliance of FIG. 1;
[0033] FIG. 7 is a perspective view of a shell of the handheld sealer of FIG. 3;
[0034] FIG. 8 is a perspective view of a docking plate of the vacuum sealer appliance of FIG. 1;
[0035] FIG. 9 is a perspective view of the handheld sealer of FIG. 3 placed in a docking station of the vacuum sealer appliance of FIG. 1;
[0036] FIG. 10 is a perspective view of the handheld sealer of FIG. 3 being removed from the vacuum sealer appliance of FIG. 1;
[0037] FIG. 11 is a perspective view of the docking station of FIG. 9;
[0038] FIG. 12 is a perspective bottom view of a portion of a detent system on the docking station of FIG. 9; and
[0039] FIG. 13 is a perspective view of pin mechanisms in the docking station of FIG. 9.
[0040] While the disclosure is susceptible to various modifications and alternative forms, a specific embodiment thereof is shown by way of example in the drawings and will herein be described in detail. It should be understood, however, that the drawings and detailed description presented herein are not intended to limit the disclosure to the particular embodiment disclosed, but to the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the present disclosure as defined by the appended claims.Detailed Description
[0041] Embodiments of the present disclosure will now be described with reference to the drawing figures, in which like reference numerals refer to like parts throughout. For purposes of clarity in illustrating the characteristics of the present disclosure, proportional relationships of the elements have not necessarily been maintained in the drawing figures.
[0042] Turning first to FIG. 1, a vacuum sealer appliance 1 may be include a handheld (or modular) sealer 5 that may be connected to or attached within the vacuum sealer appliance 1. The vacuum sealer appliance 1 may include a sealing mechanism, and the handheld sealer 5 may include a pump and a sealing mechanism. The pump may draw out air from a bag, container, etc. (hereinafter referred to as a “container” ) , such as in a manner as described with reference to the handheld vacuum sealer shown and described in U. S. Pat. Pub. No. 2024 / 0199254, the disclosure of which is incorporated by reference herein as if set forth in its entirety. The sealing mechanism may seal the container as airtight such that air and / or gas may not enter or escape the container. The pump and sealing mechanism may be similar to pumps and sealing mechanisms used in existing sealing appliances. The handheld sealer 5 may function in any suitable manner, including in a manner common in existing handheld sealers.
[0043] The handheld sealer 5 may be modular such that it may be separated or detached from the vacuum sealer appliance 1. When the handheld sealer 5 is attached or connected to the vacuum sealer appliance 1, the pump of the handheld sealer 5 may be “passed through” to be used as the pump to operate the vacuum sealer appliance 1. The vacuum sealer appliance 1 may be similar to a standard vacuum sealer appliance and may include any suitable or desirable characteristics.
[0044] To use the vacuum sealer appliance 1, a user may turn a latch 10, which may be positioned on a side or any other suitable area of the vacuum sealer appliance 1. As provided in FIG. 2, when the latch 10 is turned, the latch 10 may be unlocked such that the vacuum sealer appliance 1 may be opened for use. The user may then place a container in a sealing portion 15 of the vacuum sealer appliance 1 to seal the container. The vacuum sealer appliance 1 may operate in any suitable manner, including in a standard manner similar to other existing vacuum sealer appliances, such as the vacuum sealing appliance shown and described in U.S. Pat. No. 11,174,088, the disclosure of which is incorporated by reference herein as if set forth in its entirety.
[0045] Turning now to FIG. 3, the handheld sealer 5 may be removed from the vacuum sealer appliance 1 (not illustrated in FIG. 3) and may be used independently from the vacuum sealer appliance 1. The handheld sealer 5 may include buttons 20 to toggle between operations. As one example, the buttons 20 may include an “on” button and an “off” button, each of which may be used to turn the pump and / or the sealing mechanism on and off, respectively. The buttons 20 may include a “function” button which may be selected to display certain information. The handheld sealer 5 may include a power source (e.g., any suitable power source or battery) which may be used to power the handheld sealer 5. The handheld sealer 5 may include electrical ports 25, which, as discussed in greater detail below, may engage with a power or charging port located on the vacuum sealer appliance 1.
[0046] The handheld sealer 5 may include a bevel 30 on a first end 35 of the handheld sealer 5, which may be useful when placing the handheld sealer 5 into the vacuum sealer appliance 1. The bevel 30 may slope downwardly and inwardly toward a middle 40 of the first end 35 of the handheld sealer 5. In one embodiment, at a top end 45 of the bevel 30, the bevel 30 may be substantially level with the first end 35 of the handheld sealer 5, and at a bottom end 50 of the bevel 30, the bevel 30 may be lower than the height of the bevel 30 at the top end 45. The handheld sealer 5 may include a seal 55, which may be used to attach to a container being vacuum sealed and / or to mate with the vacuum sealer appliance 1.
[0047] Turning to FIG. 4, when the handheld sealer 5 is placed in the vacuum sealer appliance 1, the bevel 30 of the handheld sealer 5 is received within a receiving portion 60 of the vacuum sealer appliance 1. The receiving portion 60 may be shaped such that the bevel 30 may mate with or couple to the receiving portion 60. According to various embodiments, the seal 55 of the handheld sealer 5 may abut an interior wall 65 of the receiving portion 60. When abutted, the seal 55 of the handheld sealer 5 may form a tight seal between the vacuum sealer appliance 1 and the handheld sealer 5. In one embodiment, the receiving portion 60 may include a seal 70, which may be used to mate with the handheld sealer 5 in the vacuum sealer appliance 1. As illustrated in FIG. 5, the seal 70 of the receiving portion 60 may mate with the seal 55 of the handheld sealer 5. The seal 55 on the handheld sealer 5 may be concentric with the seal 70 on the receiving portion 60. In one embodiment, the seals 55, 70 do not touch but do “mate” to create a tight seal between the vacuum sealer appliance 1 and the handheld sealer 5, when the handheld sealer 5 is docked.
[0048] Turning now to FIG. 6, the vacuum sealer appliance 1 may be powered in any suitable manner. In one embodiment, the vacuum sealer appliance 1 may include a power cable 75 to power the vacuum sealer appliance 1. The power cable 75 may be any suitable power cable to provide electricity or power to the vacuum sealer appliance 1. When the handheld sealer 5 is docked in the vacuum sealer appliance 1, the electrical ports 25 on the handheld sealer 5 may be coupled to power and / or charging ports located on the vacuum sealer appliance 1. Such coupling may transfer electricity from the vacuum sealer appliance 1 to the handheld sealer 5. In various embodiments, when the vacuum sealer appliance 1 is plugged in, the battery incorporated in the handheld sealer 5 may charge. The battery in the handheld sealer 5 may be charged in any other suitable manner, including via a separate charging port.
[0049] Even when the battery in the handheld sealer 5 is not charged, the vacuum sealer appliance 1 may still operate. This may serve as an improvement to current systems, as the pump incorporated in the handheld sealer 5 may be used as the pump for the vacuum sealer appliance 1 even when the battery in the handheld sealer 5 is drained. This may be accomplished by relying on the power provided, for example, via the power cable 75, directly to the vacuum sealer appliance 1. As such, the power provided to the vacuum sealer appliance 1 may be “passed through” to the handheld sealer 5, and the pump of the handheld sealer 5 may be used to operate the vacuum sealer appliance 1. When the handheld sealer 5 is received into or docked to the vacuum sealer appliance 1, the pass-through function may be initiated, such that the vacuum sealer appliance 1 may operate even if the battery of the handheld sealer 5 is dead (i.e., at a zero power level) . Further, when the handheld sealer 5 is received into or docked to the vacuum sealer appliance 1, the pass-through function may charge the handheld sealer 5 even while the pump and / or sealing mechanism is in use.
[0050] As one example, even when the power status of the handheld sealer 5 is at a low power level (e.g., when a power status of the battery is less than 10%charged, less than 5% charged, less than 1%charged, etc. ) , the vacuum sealer appliance 1 may still operate through power passed through the vacuum sealer appliance 1 to the vacuum sealer 5. As another example, when the handheld sealer 5 is separated or detached from the vacuum sealer appliance 1, the battery may power the pump of the handheld sealer 5, such that the handheld sealer 5 may be used. As yet another example, when the power status of the handheld sealer 5 is at a non-zero or non-low level (e.g., a non-zero power configuration) , the pump, even when used in the vacuum sealer appliance 1, may be powered using the battery of the handheld sealer 5. In various embodiments, the handheld sealer 5 may be charged by the vacuum sealer appliance 1 (via the power cable 75 or other suitable means) when docked or received by the vacuum sealer appliance 1, including when the pump of the handheld sealer 5 is being used by the vacuum sealer appliance 1.
[0051] The handheld sealer 5 may include a light indicator 80 (e.g., LED light) which may indicate the charging status and / or power status of the handheld sealer 5. When the handheld sealer 5 is docked in the vacuum sealer appliance 1, the light indicator 80 may flash when the battery is charging and turns to a solid light (i.e., no flashing) when the battery is fully charged. When the handheld sealer 5 is undocked and / or removed from the vacuum sealer appliance 1, a user may select the “function” button to cause the light indicator 80 to display a power status of the battery of the handheld sealer 5. As one example, the light indicator 80 may display a power status of the battery at the start of a sealing cycle and display a power status of the battery after completing the sealing cycle. Such display may occur for any period of time; in one embodiment, the power status of the battery may display for five seconds. In various embodiments, the display of the power status may be green, yellow, or red, depending on the amount of battery left. As one example, green may be associated with a high battery remaining, yellow may be associated with a medium battery remaining, and red may be associated with a low battery remaining.
[0052] As shown in FIG. 6, when placed in the vacuum sealer appliance 1, the buttons 20 may be positioned such that the buttons 20 are not showing. This may aid in preventing a user from pressing the buttons 20 on the handheld sealer 5 when the handheld sealer 5 is docked. The user may use buttons 85 on the vacuum sealer appliance 1 to operate certain functions. In various embodiments, the buttons 85 on the vacuum sealer appliance 1 may be similar to the buttons 20 on the handheld sealer 5. The buttons 85 on the vacuum sealer appliance 1 may include an “on” button and an “off” button, each of which may be used to turn the pump and / or sealing mechanism on and off, respectively. The buttons 85 may include a “function” button which may be selected to display certain information. When the handheld sealer 5 is removed from the vacuum sealer appliance 1, the buttons 20 on the handheld sealer 5 may be viewable and accessible.
[0053] Turning now to FIG. 7, the handheld sealer 5 and / or the vacuum sealer appliance 1 may be keyed or otherwise configured to aid in ensuring that the handheld sealer 5 is positioned correctly within the vacuum sealer appliance 1. In this regard, according to embodiments of the present disclosure, the handheld sealer 5 is configured or adapted to dock with or connect to vacuum sealer 1 when the handheld sealer 5 is in a particular alignment or positioning in relation to the vacuum sealer 1. For example, as indicated in FIG. 7, a shell 90 of the handheld sealer 5 may include a keyed feature 95. The keyed feature 95 may be an indent into the shell 90, as illustrated, or may be any other suitable keyed feature. The keyed feature 95 on the shell 90 may mate with, as illustrated in FIG. 8, a projection 100 positioned on a docking plate 105 of the vacuum sealer appliance 1. The projection 100 may be placed into the keyed feature 95 (not illustrated in FIG. 8) , and a user may be able to determine that the handheld sealer 5 has been positioned correctly into the docking plate 105 when the projection 100 is received within the keyed feature 95.
[0054] Turning to FIG. 9, the handheld sealer 5 may be docked into a docking station 110, which may include the docking plate 105 and a door mechanism 115. The docking station 110 may be positioned in any suitable manner within the vacuum sealer appliance 1, and the docking station 110 may be connected to or integrated with the vacuum sealer appliance 1. According to various embodiments, the door mechanism 115 may be used to release the handheld sealer 5 from the docking station 110. To release and remove the handheld sealer 5 from the docking station 110 (and thus, from the vacuum sealer appliance 1) , a user may press a door tab 120 in a direction away from the handheld sealer 5. When pressed, the door tab 120 may cause the door mechanism 115 to adjust in a direction as illustrated in FIG. 10. When the door mechanism 115 adjusts in such a manner, the handheld sealer 5 may be lifted out of the docking station 110 and may be removed from the vacuum sealer appliance 1.
[0055] More specifically, and as provided in FIG. 11, the door mechanism 115 may be rotated in order to lift the handheld sealer 5 out of the docking station 110 using a detent system 125. The detent system 125 may include cavities 130 positioned on rotational arms 135 on the base 140 of the door mechanism 115. According to various embodiments, there are two rotational arms 135; however, there may be any number of rotational arms 135 to achieve certain purposes. In one embodiment, there are at least two cavities 130 on each of the rotational arms 135. Although two cavities 130 are illustrated in FIG. 11, it should be understood that any number of cavities 130 may be used to allow for any number of positions of the door mechanism 115. The detent system 125 may include a pin mechanism 145 positioned on the docking plate 105. The pin mechanism 145 may include a pin 150 and a spring 155. In one embodiment, there are two pin mechanisms 145 that engage with the two rotational arms 135.
[0056] The springs 155 may bias the pins 150 inwardly, such that the pins 150 auto-locate into one of the cavities 130. When force is applied to the door mechanism 115 via the door tab 120, the force may overcome the force of the springs 155, causing the pins 150 to translate along ramps 160 between the cavities 130. The pins 150 may adjust until auto-locating into the next cavity. For example, when the door mechanism 115 is in its closed position, the pin 150 is positioned within the uppermost cavity 130, and when the door mechanism 115 is in its open-most position, the pin 150 is positioned within the lowermost cavity 130. The detent system 125 may adjust in order to adjust the door mechanism 115.
[0057] As illustrated in FIG. 12, the cavities 130 and ramps 160 may be designed in a suitable manner to engage with the pins 150. In one embodiment, the ramps 160 are angled such that the pins 150 may translate along the ramps 160 to move between cavities 130. Turning to FIG. 13, the springs 155 of the pin mechanism 145 may surround the pins 150 such that the springs 155 bias the pins 150 in an inward direction to position the pins 150 in the cavities 130. When the handheld sealer 5 is successfully placed into the docking station 110, the docking station 110 may latch and lock the handheld sealer 5 into place, unless and until the door mechanism 115 is opened by a user.
[0058] As is evident from the foregoing description, certain aspects of the present disclosure are not limited by the particular details of the examples illustrated herein, and it is therefore contemplated that other modifications, applications, variations, or equivalents thereof, will occur to those skilled in the art. Many such changes, modifications, variations, and other uses and applications of the present constructions will, however, become apparent to those skilled in the art after considering the specification and the accompanying drawings. In addition, unless mention was made above to the contrary, it should be noted that all of the accompanying drawings are not to scale. All such changes, modifications, variations, and other uses and applications which do not depart from the spirit and scope of the disclosure embodiments are deemed to be covered by the disclosures which are limited only by the claims which follow.
Claims
1.A vacuum sealer appliance comprising:a modular vacuum sealer comprising:a pump for removing air from a container; anda battery;a sealing mechanism for sealing the container after the air has been removed;a power source; anda docking station configured to receive the modular vacuum sealer;wherein when the modular vacuum sealer is separated from the docking station, the battery powers the pump; andwherein when the modular vacuum sealer is received into the docking station, the power source powers the pump.2.The vacuum sealer appliance of claim 1, further comprising one or more buttons configured to at least one of:turn on at least one of the pump and the sealing mechanism;turn off at least one of the pump and the sealing mechanism; anddisplay information;wherein the modular vacuum sealer further comprises one or more buttons configured to at least one of:turn on at least one of the pump and the sealing mechanism;turn off at least one of the pump and the sealing mechanism; anddisplay information.3.The vacuum sealer appliance of claim 2, wherein when the modular vacuum sealer is received into the docking station of the vacuum sealer appliance, the one or more buttons of the modular vacuum sealer are adjacent to a surface of the vacuum sealer appliance, such that they are not visible to a user.4.The vacuum sealer appliance of claim 1, wherein the modular vacuum sealer further comprises a bevel positioned on a first end, wherein the bevel is configured to be received into a receiving portion of the vacuum sealer appliance.5.The vacuum sealer appliance of claim 1, wherein the modular vacuum sealer further comprises a keyed feature, wherein the keyed feature is configured to receive a projection positioned on a docking plate in the docking station.6.The vacuum sealer appliance of claim 1, wherein the docking station of the vacuum sealer appliance comprises a door mechanism for adjusting the modular vacuum sealer between at least a first position and a second position.7.The vacuum sealer appliance of claim 6, wherein when the modular vacuum sealer is received in the docking station and a user presses a door tab of the door mechanism in a direction away from the docking station, the door mechanism lifts the modular vacuum sealer out of the docking station.8.The vacuum sealer appliance of claim 6, further comprising a detent system, wherein the detent system comprises:a plurality of rotational arms positioned on a base of the door mechanism, wherein the plurality of rotational arms each comprise at least two cavities with a ramp therebetween; anda plurality of pin mechanisms each comprising a pin and a spring;wherein the pin translates between the at least two cavities along the ramp;wherein when a user adjusts the door mechanism, the pin translates from a first cavity of the at least two cavities to a second cavity of the at least two cavities; andwherein when in the first cavity, the door mechanism is open, and when in the second cavity, the door mechanism is closed.9.A vacuum sealer appliance comprising:a modular vacuum sealer comprising:a pump for removing air from a container; anda battery;a sealing mechanism for sealing the container after the air has been removed; anda power source;wherein when the modular vacuum sealer is received into a docking station of the vacuum sealer appliance, the power source powers the pump.10.The vacuum sealer appliance of claim 9, wherein when the modular vacuum sealer is separated from the docking station, the battery powers the pump.11.The vacuum sealer appliance of claim 9, wherein the modular vacuum sealer further comprises one or more buttons configured to at least one of:turn on at least one of the pump and the sealing mechanism;turn off at least one of the pump and the sealing mechanism; anddisplay information.12.The vacuum sealer appliance of claim 11, wherein when the modular vacuum sealer is received into the docking station of the vacuum sealer appliance, the one or more buttons of the modular vacuum sealer are adjacent to a surface of the vacuum sealer appliance, such that they are not visible to a user.13.The vacuum sealer appliance of claim 9, wherein the modular vacuum sealer further comprises a bevel positioned on a first end, wherein the bevel is configured to be received into a receiving portion of the vacuum sealer appliance.14.The vacuum sealer appliance of claim 9, wherein the modular vacuum sealer further comprises a keyed feature, wherein the keyed feature is configured to receive a projection positioned on a docking plate in the docking station.15.The vacuum sealer appliance of claim 9, wherein the docking station of the vacuum sealer appliance comprises a door mechanism for adjusting the modular vacuum sealer between at least a first position and a second position.16.The vacuum sealer appliance of claim 15, wherein when the modular vacuum sealer is received in the docking station and the user presses a door tab of the door mechanism in a direction away from the docking station, the door mechanism lifts the modular vacuum sealer out of the docking station.17.A vacuum sealer appliance comprising:a modular vacuum sealer comprising a pump for removing air from a container; anda docking station configured to receive the modular vacuum sealer;wherein the pump is powered by at least one of a battery in the modular vacuum sealer and a power source supplied to the vacuum sealer appliance; andwherein when the modular vacuum sealer is received into the docking station, electricity from the power source passes through the vacuum sealer appliance to the modular vacuum sealer to power the pump.18.The vacuum sealer appliance of claim 17, wherein the modular vacuum sealer further comprises a bevel positioned on a first end, wherein the bevel is configured to be received into a receiving portion of the vacuum sealer appliance.19.The vacuum sealer appliance of claim 17, wherein the modular vacuum sealer further comprises a keyed feature, wherein the keyed feature is configured to receive a projection positioned on a docking plate in the docking station.20.The vacuum sealer appliance of claim 17, wherein the docking station of the vacuum sealer appliance comprises a door mechanism for adjusting the modular vacuum sealer between at least a first position and a second position.
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