The present invention relates generally to a personal communication device, and more particularly to a personal sound receiving device configured as an ear cuff decoration article.
Hearing aids are well known and are useful for a variety of pathologies, including sensorineural hearing loss, conductive hearing loss and single-sided deafness. Typically, hearing aid candidacy is determined by a licensed individual (such as an audiologist or hearing instrument specialist) who examines the patient to determine the type of hearing loss and fits the hearing aid device to the patient based on the nature and degree of the hearing loss. This is important because the amount of benefit experienced by the user of the hearing aid is multi-factorial, depending on the type, severity, and etiology of the hearing loss, the technology and fitting of the device, and on the motivation, personality, lifestyle, and overall health of the user. It should be appreciated that hearing aids are incapable of correcting hearing loss. Rather, they are used to make sounds more audible so that the sounds can reach the cochlea and auditory nerve, where the cochlea and auditory nerve are able to transmit signals to the brain normally.
Currently, there are many different devices to make sounds more audible to hearing loss patients and they range from body-worn devices to behind-the-ear devices to in-the-ear devices to devices that include a directional microphone. One such example is a personal sound amplification device which is a simple device that amplifies sound for a wearer. These devices are typically used for individuals that have some degree of hearing loss, but whose hearing loss is not severe enough for a hearing aid. The FDA has not approved these devices as a medical device and classifies these devices as wearable electronic products for occasional, recreational use by consumers who are not hearing impaired. Other examples include medical devices, or hearing aids, of which there are several different types. Referring to
A Personal Communication Device (PCD) is provided and includes a microphone, a speaker, and a PCD body, wherein the PCD body is configured as an ear cuff and includes a body first end, a body second end and a body middle portion, wherein the body first end is associated with the body second end via the body middle portion. The body first end includes a body structure which defines a component cavity for containing a power source, and sound processing electronics, and wherein the body second end includes the speaker and the microphone, and wherein the speaker and the microphone are communicated with the power source and the sound processing electronics, such that when a sound is received by the microphone, the sound processing electronics process the sound to generate a processed sound and communicates the processed sound to the speaker. Moreover, the PCD is configured to be securely associated with an ear of a user such that when the PCD is associated with the ear of the user, the speaker is located proximate an ear canal of the user and the body structure is located behind the user's ear and wherein the PCD is configured for wireless connectivity.
A Personal Communication Device (PCD) is provided and includes a microphone, a speaker, and a PCD body, wherein the PCD body is configured as an ear cuff and includes a body first end, a body second end and a body middle portion. The PCD body further includes sound processing electronics, such that when a sound is received by the microphone, the sound processing electronics process the sound to generate a processed sound and communicates the processed sound to the speaker and outputs the processed sound into the user's ear canal, wherein the PCD is configured to be securely associated with an ear of a user such that when the PCD is associated with the ear of the user, the speaker is located proximate an ear canal of the user and wherein the PCD is configured for wireless connectivity.
The foregoing and other features and advantages of the present invention will be more fully understood from the following detailed description of illustrative embodiments, taken in conjunction with the accompanying drawings in which like elements are numbered alike in the several Figures:
In accordance with the present invention, a Personal Communication System (PCS) is provided and includes one or more Personal Communication Devices (PCD) 100 that are configured having a ‘cuff’ design to be worn as jewelry on the ear of a person. The cuff of the PCD 100 is configured to securely associate with the outer ear of the wearer by wrapping around the ear helix/antihelix such that one end of the cuff is proximately located behind the ear pinna and the other end of the cuff is proximately located within the ear concha cavum. The unique and novel design of the invention allows the speaker to be strategically located within the external auditory canal proximate the opening of the ear canal. This allows the speaker to be located close to the opening of the ear canal and for a direct path for any sound emanating from the speaker to flow into the opening of the ear canal. It should be appreciated that the cuff may define a cuff cavity which is configured to include the processing elements necessary to receive sound, process the received sound and deliver the received sound through wireless communication, an external speaker, a bone oscillator and/or a sound tube (and/or other delivery method as desired). It is contemplated that embodiments of the PCD 100 also may incorporate a unique and novel microphone system which allows the microphone to be located within the concha cymba to reduce wind noise and to create a gap between the speaker and the microphone which advantageously allows for localization of sound and for a reduction/elimination in feedback. Additionally, in other embodiments of the invention, the PCD 100 may include one or more microphones, wherein a microphone may be located in front of the pinna, behind the pinna and/or both. Moreover, among the many other advantages over the prior art, the unique and novel cuff design allows for the processing and power components to be naturally hidden from view and for a decorative cover to be attached to the PCD 100 via a variety of ways, such as via a mechanical clip, a magnetic clip, etc.
It should be appreciated that one of the unique and novel characteristics of the present invention is that the PCD 100 of the present invention provides a new and unique category of ear worn hearing devices due to the location on the ear that the PCD 100 is worn. The embodiments of the present invention provide a PCD 100 where the microphone is located in the concha cymba and the cuff of the PCD 100 is associated with at least one of the antihelix, scaphoid fossa, antihelical fold, antihelix tail, helix tail, and antihelix body.
It should be appreciated that jewelry covers may be used to decorate the PCD, wherein the covers may be able to be produced in unlimited designs that can help inspire the wearer to use them without the stigma of traditional hearing aid devices. Furthermore, it is contemplated that embodiments of the PCD also may be automatically and/or manually programmable and may incorporate an adjustment system (for example, in one embodiment a switch) which allows the PCD to adjust various features, such as the tone and/or volume of the sound based on user preference and/or via an algorithm. For example, in one embodiment, the PCD may include a processor with advanced noise reduction and may provide the wearer with the ability to set the sound characteristics to their personal preference with either a preference wand, a user control button, and/or via a smart phone app. Moreover, the PCD may be worn on a part time or as needed basis, for example, restaurants, business meetings, theater, social events, etc. It is further contemplated that the PCS may include one or more PCDs depending upon the needs of the wearer, wherein each of the PCDs may be separately programmable. For example, for a person that has hearing loss in only one ear, then only one PCD may be required for the deficient ear, while a ‘dummy’ earring may be used for the normal hearing ear. While for a person that has hearing loss in both ears, two PCDs may be required, one for each ear. It is contemplated that each of the PCDs may be adjustable as a pair and/or they may be independently adjustable to allow people that have greater hearing loss in one ear to adjust each PCD as required. It is further contemplated that other embodiments of the PCD may be configured to wirelessly transmit the microphone signal from one ear to the other ear thereby creating a contralateral routing of signal (CROS) to be used for persons with single sided deafness.
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Additionally, it is contemplated that the speaker tube 122 and/or the microphone tube 124 may be configured to be flexible in position and expandable in length to allow the speaker tube 122 and/or the microphone tube 124 to be positionably configurable as well as lengthwise configurable. Accordingly, when the PCD 100 is associated with a user's ear, the flexible configurability of the speaker tube 122 and microphone tube 124 advantageously allows the PCD speaker 118 to be placed proximate the user's ear canal opening and the PCD microphone 120 to be placed proximate the ear's concha cymba. Additionally, the lengthwise configurability of the speaker tube 122 and microphone tube 124 advantageously allows the PCD speaker 118 to be placed farther into the user's ear canal opening and the PCD microphone 120 to be placed farther onto the ear's concha cymba. This would advantageously allow the placement of the PCD microphone 120 to be adjustably located on the ear's concha cymba to account for wind noise and acoustic performance and placement of the PCD speaker 118 farther into the user's ear canal to allow for a more direct injection of sound into the user's ear. It is contemplated that in one or more embodiments, the PCD speaker 118 may be a directional speaker configured to focus the emitted sounds at an intended target, which in this case would be the ear canal of a wearer. Additionally, it is contemplated that the location and/or separation of the PCD speaker 118 and the PCD microphone 120 are configured to be separated to reduce the chance of feedback and to increase the localization of sound.
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Additionally, it is contemplated that the speaker tube 322 and/or the microphone tube 324 may be configured to be flexible in position and expandable in length to allow the speaker tube 322 and/or the microphone tube 324 to be positionably configurable as well as lengthwise configurable. Accordingly, when the PCD 300 is associated with a user's ear, the flexible configurability of the speaker tube 322 and microphone tube 324 advantageously allows the PCD speaker 318 to be placed proximate the user's ear canal opening and the PCD microphone 320 to be placed proximate the ear's concha cymba. Additionally, the lengthwise configurability of the speaker tube 322 and microphone tube 324 advantageously allows the PCD speaker 318 to be placed farther into the user's ear canal opening and the PCD microphone 320 to be placed farther onto the ear's concha cymba. This would advantageously allow the placement of the PCD microphone 320 to be adjustably located on the ear's concha cymba to account for wind noise and acoustic performance and placement of the PCD speaker 318 farther into the user's ear canal to allow for a more direct injection of sound into the user's ear. It is contemplated that in one or more embodiments, the PCD speaker 318 may be a directional speaker configured to focus the emitted sounds at an intended target, which in this case would be the ear canal of a wearer. Additionally, it is contemplated that the location and/or separation of the PCD speaker 318 and the PCD microphone 320 are configured to be separated to reduce the chance of feedback and to increase the localization of sound.
Moreover, it should be appreciated that the cuff second end 310 of the PCD 300 may include a PCD component structure 309 which defines a PCD component cavity 326 having a PCD component cavity opening 328 and a PCD component cavity cover 330 which is similar to the PCD component structure 109. The PCD component cavity 326 is sized to include a power source (i.e., power supply/battery) 333 and one or more electronic components, which may include a processing device, that are in signal connection (electrically and/or electromagnetically) with the PCD microphone 320 and/or the PCD speaker 318 to receive a sound signal from the PCD microphone 320, process the sound signal to generate a processed sound signal (i.e., such as filter, volume level adjust, strength level adjust, etc.) and communicate the processed sound signal to the PCD speaker 318 for output by the PCD speaker 318. Moreover, it is contemplated that at least one of the one or more elongated rings 307 may be configurably flexible and hollow to allow for the electronic components to be electrically connected to at least one of the PCD receiver module 304 and the PCD speaker module 306 via wires 512. Additionally, the elongated rings 307 may be any shape desired suitable to the desired end purpose, such as cylindrical, rectangular, triangular, octagonal, etc.
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Referring to the Figures, it should be appreciated that in one embodiment that the PCD body 102, 302 and/or any part of the PCD 100, 300, may be constructed, in whole or in part, from any material, or combination of materials, suitable to the desired end purpose, such as plastic, composite, metal, silver, gold, platinum, stainless steel, etc. For example, if the PCD 100, 300 is configured as high-end jewelry, then the PCD body 102, 302 may be constructed from a metal such as silver, gold and/or platinum and/or may contain decorative features such as precious gems/stones. Moreover, the cuff middle portion 112, 312 may be hollow to allow for connection wires 512 between the processing circuitry and the PCD speaker 118, 318 and the PCD microphone 120, 320. Additionally, the cuff middle portion 112, 312 may include one or more body notches 136 configured to engage with a jewelry cover to allow the jewelry cover to be held in place on the cuff middle portion 112, 312. Moreover, although it is contemplated that in one or more embodiments, the PCD 100, 300 may be available as an ‘off-the-shelf’ product, it is contemplated that in other embodiments the PCD 100, 300 may be specifically designed or ‘fitted’ to the user.
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In accordance with another embodiment and referring again to
It should be noted that the PCD 100, 300 may be equipped with stock speaker tips of various sizes and/or a custom earpiece which may be attached to the end of the speaker module 106/306 to accommodate different degrees of hearing loss. For example, for someone with mild hearing loss, the speaker tip may have vents or openings to keep the ear canal less occluded. While for some with a moderate or severe hearing loss, the speaker tip may be solid and/or occlude a greater portion (or perhaps the entire portion) of the ear canal. It is also contemplated that in some cases, the use of a custom molded ear tip and/or earmold may be utilized. Moreover, it is further contemplated that the PCD 100, 300 may be configured such that one or more components of the PCD microphone module 104, 304 (i.e., microphone tip, etc.), the PCD speaker module 106, 306 (i.e., speaker tip, bone oscillation device 350B, etc.) may be replaceable as desired. It should be appreciated that the PCD 100, 300 may be configured to wirelessly communicate with remote devices via any method suitable to the desired end purpose, such as Bluetooth®, WiFi, etc. Accordingly, the PCD 100, 300 may be configured to wirelessly communicate with a communication system (such as a television, a telephone system, a music system and/or a computer system) such that sound from the communication system can be wirelessly communicated to the PCD 100, 300 such the PCD 100, 300 will receive sound data directly from the communication system (music, phone sound, television sound, etc.). This will advantageously allow the PCD 100, 300 to communicate this sound data to a user of the PCD 100, 300 in a more controlled, clear and noise free manner.
Moreover, in still yet another embodiment, the PCD 100, 300 may be configured to interact with remote sound receiving sources via wired and/or wireless communication (Bluetooth, WIFI, NFC), such as a remotely located speaker and/or a cell phone. This capability would advantageously allow a user to place a cell phone close to a sound source (i.e., a person who is speaking) and have the sound from the sound source be transmitted to the PCD 100, 300 where the sound may be transmitted directly out of the PCD speaker 118, 318 or the sound may be processed for feedback and/or other conditioning prior to being transmitted out of the PCD speaker 118, 318. Additionally, the PCD 100, 300 may be configured to receive sound data (i.e., music and or voice) from a user's cell phone, television, radio and/or laptop. This would advantageously allow a user to listen and/or interact with gaming platforms, music platforms, audio tapes, podcasts, movies, etc. without the use of additional sound receiving devices.
While the invention has been described with reference to an exemplary embodiment, it should be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention. Moreover, the embodiments or parts of the embodiments may be combined in whole or in part as desired without departing from the scope of the invention. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the invention without departing from the scope thereof. Therefore, it is intended that the invention not be limited to the particular embodiment disclosed as the best mode contemplated for carrying out this invention, but that the invention will include all embodiments falling within the scope of the appended claims. Moreover, unless specifically stated any use of the terms first, second, etc. do not denote any order or importance, but rather the terms first, second, etc. are used to distinguish one element from another.
This application claims the benefit of priority of the filing date of U.S. Provisional Patent Application Ser. No.: 63/361,603, filed on Jan. 10, 2022, the contents of which are incorporated by reference herein in its entirety.
Number | Date | Country | |
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63361603 | Jan 2022 | US |