Passenger service unit and related systems
10414499 ยท 2019-09-17
Assignee
Inventors
Cpc classification
F21V5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64D2011/0046
PERFORMING OPERATIONS; TRANSPORTING
B64D2231/025
PERFORMING OPERATIONS; TRANSPORTING
B60Q3/76
PERFORMING OPERATIONS; TRANSPORTING
B64D11/0015
PERFORMING OPERATIONS; TRANSPORTING
B64D2011/0053
PERFORMING OPERATIONS; TRANSPORTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64D2011/0038
PERFORMING OPERATIONS; TRANSPORTING
B64D13/00
PERFORMING OPERATIONS; TRANSPORTING
B64D47/02
PERFORMING OPERATIONS; TRANSPORTING
Y02T50/40
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B64D11/00
PERFORMING OPERATIONS; TRANSPORTING
F21V29/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B64D11/00
PERFORMING OPERATIONS; TRANSPORTING
B64D47/02
PERFORMING OPERATIONS; TRANSPORTING
B64D13/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A passenger service unit (PSU) for a transport vessel has a unitary chassis with a plurality of apertures extending therethrough. Each one of the apertures is independently sized to receive at least one of a plurality of different modules. Each one of the modules includes one or more PSU fixtures having components different from other ones of the plurality of modules. A representative vessel is a passenger aircraft. Representative modules include vent and passenger reading light module, speaker module, passenger oxygen supply module and display module.
Claims
1. A passenger service unit (PSU) for a transport vessel, comprising: a unitary chassis having a plurality of apertures extending therethrough with each aperture of the plurality of apertures independently sized to receive at least one of a plurality of different modules, wherein each one of the modules includes one or more PSU fixtures having components different from other ones of the plurality of modules; wherein one of the plurality of modules includes both a passenger reading light and a gasper; and wherein a second one of the plurality of modules includes an information display configured to receive an electromagnetic signal and to convert the electromagnetic signal to a human-recognizable display of information.
2. The passenger service unit of claim 1 wherein the information display communicates with sensors located in the vessel to display information useful to a passenger.
3. The passenger service unit of claim 1 wherein the information display includes at least one advertising icon.
4. A passenger service unit of claim 1 wherein a cabin sidewall washlight is disposed on an edge of the unitary chassis adjacent a sidewall of the vessel.
5. The passenger service unit of claim 4 wherein the cabin sidewall washlight is a light emitting diode (LED).
6. The passenger service unit of claim 4 wherein an edge of the unitary chassis opposite the sidewall of the vessel includes a multi-functional in-board lighting system.
7. The passenger service unit of claim 6 wherein the in-board lighting system is effective to simultaneously illuminate an attendant call light, illuminate a seat row marker and provide emergency exit lighting.
8. The passenger service unit of claim 1 wherein a light emitting projector extends from the unitary chassis and is effective to project information onto a sidewall of the vessel.
9. The passenger service unit of claim 1 wherein the information display is a touch screen display.
10. The passenger service unit of claim 9 wherein the touch screen display is configured to present information regarding available lavatories in response to a user input.
11. The passenger service unit of claim 9 wherein the touch screen display is configured to present a selectable attendant call icon.
12. A PSU for a commercial aircraft, comprising: a chassis; wherein the chassis has formed therein a plurality of receptacles configured to receive interchangeable modules; and a projector effective to, when the PSU is installed in a passenger cabin, project an image through one of the plurality of receptacles and onto a sidewall of the passenger cabin.
13. The PSU of claim 12 wherein the image is seat row information.
14. The PSU of claim 13 wherein the seat row information is displayed in response to an attendant call.
15. The PSU of claim 12 wherein the image is an arrow directed to the nearest exit of the passenger cabin.
16. The PSU of claim 12 wherein the image is a textual message.
17. The PSU of claim 16 wherein the textual message indicates that passengers should fasten their seat belts.
18. The PSU of claim 16 wherein the textual message conveys timing information regarding a flight.
19. The PSU of claim 12 wherein the image indicates that an attendant call has been made.
20. The PSU of claim 19 wherein the image is displayed in response in an input indicating an attendant call.
21. The PSU of claim 12 wherein a sidewall light emitting diode washlight is integrated in a periphery of the chassis and effective to, when the PUS PSU is installed in a passenger cabin, illuminate at least a part of a side wall of the passenger cabin.
22. The PSU of claim 21 wherein the sidewall washlight is a white light suitable for low level lighting.
23. The PSU of claim 21 wherein the sidewall washlight is a colored light.
24. The PSU of claim 1 wherein the passenger reading light and the gasper are concentrically aligned with the passenger reading light circumscribing the gasper.
25. The PSU of claim 24 wherein the passenger reading light and the gasper are independently moveable relative to each other.
26. The PSU of claim 25 wherein the passenger reading light is a light emitting diode.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings show embodiments of various aspects of the innovations disclosed herein, unless expressly identified as illustrating a feature from the prior art.
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DETAILED DESCRIPTION
(17) The following describes various principles related to PSUs and associated systems, as well as associated components and subsystems. One or more of the disclosed principles can be incorporated in various system configurations to achieve any of a variety of desired system characteristics. Principles described in relation to particular applications, arrangements, or uses, are merely examples incorporating the innovative principles disclosed herein and are used to illustrate one or more aspects of the various innovative principles. Accordingly, applications, arrangements, uses, and configurations different from those shown in the accompanying drawings and described herein can embody such innovative principles or can be used in applications not described herein in detail, such as, for example, in automobile passenger compartments, railway passenger compartments, as well as in building interiors, or even in outdoor, unprotected environments. Accordingly, such alternative embodiments also fall within the scope of this disclosure.
(18) Some innovative passenger service units (PSUs) have a chassis. Some chassis have a unitary construction. Disclosed PSU chassis can have a unitary construction. The PSU chassis can be affixed to or otherwise structurally coupled to a portion of an airframe.
(19) Referring to
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(21) The PSU 10 has a reduced weight compared to conventional PSU's. As shown in Table 1, there may be up to a 24% weight savings. On an average sized commercial jet, this could represent a 260 pound reduction in weight.
(22) TABLE-US-00001 TABLE 1 PSU Concept Reduction in Weight Advanced Resin Technology 2% Unitary Design 4% Reading Light/Gasper Integration 2% Replace overhead Electronics Unit (OEU) 3% with Individual Printed Circuit Board Eliminate Gap Seals 1% High Efficiency 22-Minute Oxygen Generators 12% Combine Functionality of Sidewall Washlight TBD Wireless Reading Light Switching TBD Energized PSU Rails to Eliminate Wiring TBD Total Estimated PSU Weight Savings ~24% (~260 pounds)
(23) Some disclosed chassis define at least one aperture sized to receive any of a plurality of interchangeable modules. For example, some interchangeable modules have a respective arrangement of one or more PSU fixtures. Some interchangeable modules are arranged differently from each of the other interchangeable modules in the plurality of modules.
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(25) The projector 36 may project an image 38 on the cabin wall 30. During passenger boarding, the seat row may be projected as shown in
(26) The projector 36 may also project an indicator that a passenger has made an attendant call. Such an indicator may be projected onto the cabin wall 30 and may be an image or text. Optionally, a unique indicator graphic is displayed. The seat and/or row information of the passenger who made an attendant call may additionally or alternatively be displayed. The indicator may be projected in response to a passenger input that they desire the attention of an attendant, for instance by pushing an attendant call button, be it on a touch screen or physical in nature. The projection can serve to highlight for the attendant summoned where attention is requested or required.
(27) As but one example, one of the plurality of interchangeable modules can have a vent and a light, and another of the plurality of modules can have an information display. Such an information display can be configured to receive an electromagnetic signal and to convert the electromagnetic signal to a human-recognizable display of information.
(28) With reference to
(29) TABLE-US-00002 TABLE 2 Display Property Features Mechanical Physically interchangeable module Active Display Area Up to 20 mm 150 mm Resolution 64 (RGB) 256 pixels typical Color Palette 256-16M depending on bandwidth of interface and end use requirements Display Technology Thin Film Transistor (TFT) LCD Contrast Ratio 200 typical Backlight Type LCD Display Luminance 100 candles/m.sup.2 (nits) Module Power 1 Watt maximum View Angles 45 normal to surface Operating Temperature 0 C.-40 C. Storage Temperature 20 C.-60 C. Interface ARINC 629 or similar databus Weight Similar to existing information sign assemblies Environmental Radio Technical Commission for Aeronautics (RTDC) Document DO-160, environmental conditions and test procedures for airborne equipment Controller and Interface Integral to information sign assembly
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(31) With reference to
(32) With reference to
(33) As shown in
(34) The gasper 54 is centrally disposed within the ring formed by passenger reading light 56. A second gimbal 70 enables rotation of the gasper independently of rotation of the light 56. In some instances, the first gimbal 64 and the second gimbal 70 are configured to permit the gasper 54 and the passenger reading light 56 to orbit through substantially similar solid angles of between about 10 and 30. The first gimbal and the second gimbal can be configured to permit the air vent and the passenger reading light, respectively, to orbit through a corresponding solid angle of up to about 30 degrees. In some instances, the first gimbal 64 and the second gimbal 70 are configured to provide different degrees of movement through a solid angle. In some embodiments, such a solid angle measures up to about 20 degrees, such, for example, up to between about 10 degrees and about 15 degrees.
(35) The gasper 54 includes an air restrictor 72 that is moveable by rotation of finger grips 74 to adjust the vent aperture 76.
(36) The adjustable passenger reading light 56 as disclosed herein can have the annular lens 60 positioned radially outwardly of the gasper 54. In some instances, an annular frame member 78 is positioned between the gasper 56 and the lens 60. The adjustable passenger reading light 56 may also be the sole component of a module, without inclusion of a gasper.
(37) In addition, some disclosed passenger service unit have one or more of a lens for a cabin lighting system, a cabin sidewall wash light, a vent configured to discharge air from an environmental control system for a passenger cabin. Some disclosed PSUs have a projector configured to project a media display on a sidewall of a passenger cabin.
(38) Methods are also disclosed. For example, a method of providing service to one or more occupants of an aircraft can include operating an aircraft having an air vent and a light. A flow of air can be provided through the vent. Power can be provided to the light. The light and the vent can be arranged as set forth herein.
(39) Other methods include providing access to an interior region of an aircraft by an occupant and projecting a display of information onto a wall of the interior region. For example, an aircraft can have a projector positioned in a passenger service unit. The act of projecting a display can include operating the projector.
(40) Also disclosed are aircraft. For example, an aircraft can include any PSU arranged as disclosed herein. Also disclosed are other forms of transit, such as space craft, automobiles, trains, and boats. Such other forms of transit can include any one or more features of technologies disclosed herein.
(41) Thus, incorporating the principles disclosed herein, it is possible to provide a wide variety of embodiments of the innovative principles described herein.
(42) Directions and references (e.g., up, down, top, bottom, left, right, rearward, forward, etc.) may be used to facilitate discussion of the drawings but are not intended to be limiting. For example, certain terms may be used such as up, down,, upper, lower, horizontal, vertical, left, right, and the like. These terms are used, where applicable, to provide some clarity of description when dealing with relative relationships, particularly with respect to the illustrated embodiments. Such terms are not, however, intended to imply absolute relationships, positions, and/or orientations. For example, with respect to an object, an upper surface can become a lower surface simply by turning the object over. Nevertheless, it is still the same surface and the object remains the same. As used herein, and/or means and as well as and and or. Moreover, all patent and non-patent literature cited herein is hereby incorporated by references in its entirety for all purposes.
(43) The principles described above in connection with any particular example can be combined with the principles described in connection with any one or more of the other examples. The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the disclosed innovations. Various modifications to those embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of this disclosure. Thus, the claimed inventions are not intended to be limited to the embodiments shown herein, but are to be accorded the full scope consistent with the language of the claims, wherein reference to an element in the singular, such as by use of the article a or an is not intended to mean one and only one unless specifically so stated, but rather one or more. All structural and functional equivalents to the elements of the various embodiments described throughout the disclosure that are known or later come to be known to those of ordinary skill in the art are intended to be encompassed by the features described and claimed herein. Moreover, nothing disclosed herein is intended to be dedicated to the public regardless of whether such disclosure is explicitly recited in the claims. No claim element is to be construed under the provisions of 35 USC 112, sixth paragraph, unless the element is expressly recited using the phrase means for or step for.
(44) Thus, in view of the many possible embodiments to which the disclosed principles can be applied, it should be recognized that the above-described embodiments are only examples and should not be taken as limiting in scope. We therefore reserve all rights to the subject matter disclosed herein, including the right to claim all that comes within the scope and spirit of the following paragraphs.