Blower filter device and blower filter system

Integrating display and operating elements within a gap-free housing addresses reprocessing challenges in blower filter devices, enhancing operational efficiency and maintenance simplicity.

EP4596054A1Pending Publication Date: 2025-08-06DRAGER SAFETY AG & CO KAAA
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Patent Information

Application Number
EP2025153691
Authority / Receiving Office
EP · EP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-02-02
Filing Date
2025-01-24
Publication Date
2025-08-06

AI Technical Summary

Technical Problem

Existing blower filter devices are difficult to reprocess due to gaps and cavities created by display and operating elements, which hinder efficient cleaning and maintenance.

Method used

Integrating display and operating elements within a gap-free housing of the blower filter device, allowing for a seamless and integrated design that simplifies reprocessing.

Benefits of technology

Enhances reprocessability by eliminating gaps and cavities, improving operational efficiency and ease of maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a blower filter device and a blower filter system. According to the invention, a blower filter device comprising a housing is provided, wherein at least one display element and / or at least one control element is integrated into the housing without any opening.
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Description

[0001] The present invention relates to a blower filter device and a blower filter system.

[0002] Powered air filter devices are a type of respiratory protection device. Respiratory protection devices are divided into filter devices (filtering, operating dependently on the ambient atmosphere) and isolation devices (supplying breathing gas, operating independently of the ambient atmosphere) based on their mode of operation, as well as their design and function.

[0003] The various device types are specified in corresponding German or European standards. The designation of individual components of respiratory protective devices is defined in DIN EN 134.

[0004] Filtering devices can be equipped with a fan to create a flow of ambient air through a filter unit toward the user. Filtering devices of this type are called powered air-purifying respirators (PAPRs). Powered air-purifying respirators typically have low inhalation resistance and also provide a particularly favorable microclimate in the facepiece.

[0005] Such a blower filter device is known from DE 10 2012 013 656 A1.

[0006] Filter devices may also not have fans, in which case the user must generate a flow of ambient air through a filter unit through their own breathing effort. This type of filter device is also known as an APR (Air-Purifying Respirator) and is not the subject of the present invention.

[0007] A blower filter device is designed to accommodate a filter unit to filter the ambient air for solid, liquid and / or gaseous pollutants and to provide the filtered ambient air to the user of the filter device.

[0008] Blower filter devices form a blower filter system with a breathing connection, a filter unit and, if necessary, other components.

[0009] A facepiece provides a fluid connection between the powered air purifier and the user, allowing the user to breathe filtered ambient air. Examples of common facepieces include a mouthpiece, a quarter mask, a half mask, a full face mask, a respirator hood, a respirator helmet, and a respirator suit.

[0010] Frequently, a line such as a hose (also called a breathing tube) is provided between the powered air filter device and the facepiece – either as part of the facepiece or separately – which indirectly connects the facepiece to the powered air filter device. Alternatively, the facepiece and the powered air filter device are connected directly, i.e., without any additional line.

[0011] Blower filter devices must be reconditioned, i.e., at least cleaned, after use. This requires that the blower filter device can be reconditioned.

[0012] The present invention is therefore based on the object of providing a blower filter device and corresponding blower filter system which are particularly easy to reprocess.

[0013] These and other problems are solved by the subject matter of the independent claim.

[0014] The dependent claims, description and figures provide advantageous embodiments of the invention.

[0015] According to the invention, a blower filter device comprising a housing is provided, wherein at least one display element and / or at least one operating element is integrated into the housing without an opening.

[0016] The invention is based on the idea that the reprocessability of the blower filter device can be improved if its at least one display element and / or its at least one operating element is integrated into the housing without a breakthrough, since in this way gaps and / or cavities that are disadvantageous for the processing can be avoided.

[0017] An aperture is understood to be an opening in the housing in, in front of, or behind which a display element and / or an operating element is arranged. In other words, the invention provides a gap-free housing surface in the region of the at least one display element and / or the at least one operating element.

[0018] At least one element (ie display elements or control element) is understood to mean exactly one element or a plurality of elements.

[0019] The housing can be constructed in one piece or in multiple parts. For example, the blower filter device can comprise a plurality of modules that can be connected via corresponding interfaces. Each of the modules can comprise a housing that represents a housing element with respect to the entire housing of the blower filter device, so that the housing of the blower filter device can be obtained by connecting the modules and thus the housing elements.

[0020] The blower filter device can be configured to accommodate a filter unit via a corresponding interface. A filter unit is understood to be a component that can comprise one or more filters. The filter unit can be configured to (temporarily) remove predetermined pollutants from the ambient air that can be conveyed through it. These pollutants can be liquid, solid, and / or gaseous substances. A filter unit can be designed, for example, as a particle filter, gas filter, combination filter, in particular as an AX filter, SX filter, and / or a CO filter.

[0021] A filter unit may, for example, comprise one or more filter materials, which may be enclosed by a filter housing that forms an air inlet on an upstream side of the filter unit and an air outlet on a downstream side of the filter unit. As part of the housing or separately, the filter unit may comprise a filter connection for connection to the blower filter device, i.e., a mechanical interface for coupling to the blower filter device.

[0022] A filter unit may have additional and / or different components than those mentioned above.

[0023] The blower filter device can have a blower unit (also simply referred to as a blower), which can have a fan wheel driven by an electric motor and a fan housing adapted to the fan wheel (e.g., a spiral housing). The drive energy for the blower unit and an associated control unit can be provided by an energy storage device, which can preferably have rechargeable batteries (accumulators or secondary cells). The control unit can also be configured to process user inputs via the at least one control element. These inputs can include, for example, switching the blower unit on and off or adjusting the power of the blower unit. Furthermore, the control unit can be configured to adapt the power of the motor (or the blower unit) to the user's requirements.This is particularly important when the user requires more breathing air due to increased physical exertion, or when the breathing resistance increases due to the filter after extended use. The blower unit, the control unit, and the energy storage device are usually enclosed in the housing. The filter unit described above can be connected to the housing. Furthermore, the breathing tube described above or the breathing connection can be connected directly to the housing. During operation, air is drawn through the filter unit into the housing of the blower unit by the blower device and then (directly or indirectly) to the breathing connection.

[0024] Preferably, the at least one operating element is configured to be operated by voice input and / or touch input and / or gesture input.

[0025] In this way, the operation of the blower filter device can be improved and operation can be simplified by the housing section that is closed in the area of the control element, i.e. an input area.

[0026] Preferably, the housing has a translucent region, wherein the at least one display element is configured to shine through the translucent region to effect a display.

[0027] In this way, the display can be simplified by the housing section being closed in the area of the display element, i.e. the translucent area.

[0028] Preferably, the blower filter device further comprises an energy storage device, wherein the energy storage device is arranged entirely within the housing.

[0029] In the event that the blower filter device comprises several modules, it is preferred that the energy storage device is completely accommodated in one of the modules, so that it is arranged completely within the housing by assembling the housing elements to form the housing.

[0030] This also reduces the presence of gaps in relation to the energy storage.

[0031] Preferably, the blower filter device further comprises an energy interface for charging the energy storage device, wherein the energy interface is arranged entirely within the housing.

[0032] In the event that the blower filter device comprises several modules, it is preferred that the energy-related interface is completely accommodated in one of the modules, so that it is arranged completely within the housing by assembling the housing elements to form the housing.

[0033] The energy interface can, for example, be an inductive interface, which can be integrated into the housing without any opening, in particular without any gaps.

[0034] Preferably, the blower filter device further comprises a mechanical interface for connection to a support structure for carrying the blower filter device by a user, wherein the mechanical interface is configured as an interface extending away from the housing.

[0035] If a mechanical interface is provided, gaps and / or undercuts are hardly avoidable, but the reprocessability of the blower filter device can be improved in this way.

[0036] A suitable mechanical interface can be designed, for example, as a magnetic closure, as known from EP 3 652 399 A1.

[0037] The carrying structure can be designed, for example, as a backpack, hip belt and / or a carrying strap.

[0038] According to the invention, a blower filter system is further provided, the blower filter system comprising a blower filter device as described above and a support structure for carrying the blower filter device by a user, wherein the blower filter device is fully integrated into the support structure.

[0039] These and other features and advantages of the invention will become apparent from the following description of the figures. These show: Fig. 1 an embodiment of a blower filter system and blower filter device according to the invention, Fig. 2 an embodiment of a blower filter device according to the invention, Fig. 3 an embodiment of a blower filter device according to the invention, and Fig. 4 an embodiment of a blower filter system and blower filter device according to the invention.

[0040] In Fig. 1 an embodiment of a blower filter system 1000 according to the invention with a blower filter device 100 according to the invention is shown.

[0041] The blower filter system 1000 comprises a breathing connection 300, exemplified as a breathing hood including a breathing hose, a blower filter device 100 according to the invention and a support structure 200 for carrying the blower filter device 100 by a user B.

[0042] In Fig. 2 and 3 Two different embodiments of blower filter devices 100 according to the invention (hereinafter also referred to jointly as "the blower filter device 100") are shown.

[0043] The blower filter device 100 has a housing 10, wherein at least one display element 20 and / or at least one operating element 30 is integrated into the housing 10 without any opening.

[0044] In the examples shown, this is achieved by arranging the at least one display element 20 entirely within the blower filter device 100, and the housing 10 having a translucent region 11. The at least one display element 20 is configured to shine through the translucent region 11 to provide a display. This is indicated by schematic rays 21.

[0045] In the example shown, the translucent region is formed integrally with the housing 10 in order to be connected to the housing 10 without a gap.

[0046] Furthermore, the at least one operating element 30 is configured to be operated by voice input and / or touch input and / or gesture input. In the examples shown, this is achieved by arranging the at least one operating element 30 entirely within the blower filter device 100, and the housing 10 has an input area 12 through which the at least one operating element 30 can detect the input.

[0047] In the illustrated embodiments, the blower filter device 100 may comprise a blower unit 70, which is fluidly connected via a line 71 upstream to a filter receptacle 90 and / or a filter unit (not shown) and downstream to a breathing connection receptacle 80. The blower filter device 100 may further comprise a control unit 60 for controlling the blower unit 70, for processing the inputs, and for providing display information.

[0048] The blower filter device 100 can be connected to a breathing connection interface 310 of the breathing connection 300 via the breathing connection receptacle 80.

[0049] The blower filter device 100 may further comprise an energy storage device 40, wherein the energy storage device 40 is arranged entirely within the housing 10, as shown in both embodiments.

[0050] It is possible for the blower filter device 100 to comprise a plurality of modules, each of which is defined by a housing element and can thus be assembled to form the blower filter device 100. For this purpose, the blower filter device 100, as shown, can comprise a first housing element 10a and a second housing element 10b, which can be mechanically connected to one another via a housing interface 13 and optionally also connected to one another via data and / or power technology.

[0051] In the embodiment according to Fig. 2the energy storage device 40 can be arranged in a first module of the blower filter device 100, which can be delimited by the first housing element 10a.

[0052] In the embodiment according to Fig. 3 the energy storage device 40 can be arranged in a second module of the blower filter device 100, which can be delimited by the second housing element 10b.

[0053] The blower filter device 100 can have an energy interface 41 for charging the energy storage device 40, wherein the energy interface 41 in this case is arranged entirely within the housing 10 or entirely within one of the housing elements 10a, 10b.

[0054] In the embodiment according to Fig. 2 the energy interface 41 can be arranged in the first module of the blower filter device 100, which can be delimited by the first housing element 10a.

[0055] In the embodiment according to Fig. 3 the energy interface 41 can be arranged in the second module of the blower filter device 100, which can be limited by the second housing element 10b.

[0056] The blower filter device 100 may have a mechanical interface 50 for connection to a support structure 200 for supporting the blower filter device 100 by a user B, wherein the mechanical interface 50 is configured as an interface extending away from the housing 10, as shown.

[0057] In Fig. 4 An embodiment of a blower filter system 1000 and blower filter device 100 according to the invention is shown, in which the blower filter device 100 is fully integrated into the support structure 200. This blower filter device 100 has a translucent area 11 visible from the outside and an input area 12 operable from the outside. List of reference symbols

[0058] 10 Housing 10a First housing element 10b Second housing element 11 Translucent area 12 Input area 13 Housing interface 20 Display element 21 Beams 30 Operating element 40 Energy storage 41 Energy interface 50 Mechanical interface 60 Control unit 70 Blower unit 71 Cable 80 Breathing connection receptacle 90 Filter receptacle 100 Blower filter device 200 Support structure 300 Breathing connection 310 Breathing connection interface 1000 Blower filter system BUser

Claims

1. Blower filter device (100), comprising a housing (10), wherein at least one display element (20) and / or at least one operating element (30) is integrated into the housing (10) without an opening.

2. Blower filter device (100) according to claim 1, wherein the at least one operating element (30) is configured to be operated by voice input and / or touch input and / or gesture input.

3. Blower filter device (100) according to claim 1 or 2, wherein the housing (10) has a translucent region (11), and wherein the at least one display element (20) is configured to shine through the translucent region (11) to effect a display.

4. Blower filter device (100) according to one of the preceding claims, further comprising an energy storage device (40), wherein the energy storage device (40) is arranged entirely within the housing (10).

5. Blower filter device (100) according to claim 4, further comprising an energy interface (41) for charging the energy storage device (40), wherein the energy interface (41) is arranged entirely within the housing (10).

6. Blower filter device (100) according to one of the preceding claims, further comprising a mechanical interface (50) for connection to a support structure (200) for carrying the blower filter device (100) by a user (B), wherein the mechanical interface (50) is designed as an interface extending away from the housing (10).

7. Blower filter system (1000), comprising - a blower filter device (100) according to one of claims 1 to 5, and - a support structure (200) for carrying the blower filter device (100) by a user (B), wherein the blower filter device (100) is fully integrated into the support structure (200).

Citation Information

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