WO2018132117A1 - Boîtier de téléphone mobile et chargeur intégrés - Google Patents
Boîtier de téléphone mobile et chargeur intégrés Download PDFInfo
- Publication number
- WO2018132117A1 WO2018132117A1 PCT/US2017/018224 US2017018224W WO2018132117A1 WO 2018132117 A1 WO2018132117 A1 WO 2018132117A1 US 2017018224 W US2017018224 W US 2017018224W WO 2018132117 A1 WO2018132117 A1 WO 2018132117A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- mobile phone
- charger
- integrated
- case body
- mobile device
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S7/00—Details of systems according to groups G01S13/00, G01S15/00, G01S17/00
- G01S7/02—Details of systems according to groups G01S13/00, G01S15/00, G01S17/00 of systems according to group G01S13/00
- G01S7/28—Details of pulse systems
- G01S7/285—Receivers
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S7/00—Details of systems according to groups G01S13/00, G01S15/00, G01S17/00
- G01S7/02—Details of systems according to groups G01S13/00, G01S15/00, G01S17/00 of systems according to group G01S13/00
- G01S7/28—Details of pulse systems
- G01S7/285—Receivers
- G01S7/32—Shaping echo pulse signals; Deriving non-pulse signals from echo pulse signals
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S13/00—Systems using the reflection or reradiation of radio waves, e.g. radar systems; Analogous systems using reflection or reradiation of waves whose nature or wavelength is irrelevant or unspecified
- G01S13/02—Systems using reflection of radio waves, e.g. primary radar systems; Analogous systems
- G01S13/06—Systems determining position data of a target
- G01S13/08—Systems for measuring distance only
- G01S13/10—Systems for measuring distance only using transmission of interrupted, pulse modulated waves
- G01S13/26—Systems for measuring distance only using transmission of interrupted, pulse modulated waves wherein the transmitted pulses use a frequency- or phase-modulated carrier wave
- G01S13/28—Systems for measuring distance only using transmission of interrupted, pulse modulated waves wherein the transmitted pulses use a frequency- or phase-modulated carrier wave with time compression of received pulses
- G01S13/284—Systems for measuring distance only using transmission of interrupted, pulse modulated waves wherein the transmitted pulses use a frequency- or phase-modulated carrier wave with time compression of received pulses using coded pulses
- G01S13/288—Systems for measuring distance only using transmission of interrupted, pulse modulated waves wherein the transmitted pulses use a frequency- or phase-modulated carrier wave with time compression of received pulses using coded pulses phase modulated
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S17/00—Systems using the reflection or reradiation of electromagnetic waves other than radio waves, e.g. lidar systems
- G01S17/02—Systems using the reflection of electromagnetic waves other than radio waves
- G01S17/06—Systems determining position data of a target
- G01S17/08—Systems determining position data of a target for measuring distance only
- G01S17/10—Systems determining position data of a target for measuring distance only using transmission of interrupted, pulse-modulated waves
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S7/00—Details of systems according to groups G01S13/00, G01S15/00, G01S17/00
- G01S7/48—Details of systems according to groups G01S13/00, G01S15/00, G01S17/00 of systems according to group G01S17/00
- G01S7/483—Details of pulse systems
- G01S7/486—Receivers
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S7/00—Details of systems according to groups G01S13/00, G01S15/00, G01S17/00
- G01S7/48—Details of systems according to groups G01S13/00, G01S15/00, G01S17/00 of systems according to group G01S17/00
- G01S7/483—Details of pulse systems
- G01S7/486—Receivers
- G01S7/487—Extracting wanted echo signals, e.g. pulse detection
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J7/00—Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
- H02J7/34—Parallel operation in networks using both storage and other DC sources, e.g. providing buffering
- H02J7/35—Parallel operation in networks using both storage and other DC sources, e.g. providing buffering with light sensitive cells
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01F—MAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
- H01F38/00—Adaptations of transformers or inductances for specific applications or functions
- H01F38/14—Inductive couplings
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J7/00—Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
- H02J7/00032—Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries characterised by data exchange
- H02J7/00034—Charger exchanging data with an electronic device, i.e. telephone, whose internal battery is under charge
Definitions
- This invention relates generally to mobile phone accessories and, more particularly, to a protective case for a mobile phone which includes an integrated solar cell for charging the mobile phone battery.
- battery chargers which plug into a port on the mobile device and to an electrical outlet to facility the transfer of electrical power from the electrical outlet for storage in the battery.
- an integrated mobile phone case and charger which enables the battery of a mobile device to be recharged without being connected to a wall electrical outlet or otherwise tethering the mobile device to a fixed location. It would be helpful if such an integrated mobile phone case and charger was embodied as a case adapted to additionally provide protection for the mobile device from physical damage. It would be additionally desirable for such an integrated mobile phone case and charger to utilized solar cells which converted light to electricity to be used to recharge the battery on the mobile device. An added advantage of this would be to the stranded user who feels helpless to make a call because the battery is dead
- the Applicant's invention described herein provides for a mobile phone case and charger adapted to harvest ambient or supplied light energy and supply electricity therefrom to a mobile device as well as transfer heat away from the mobile device to facilitate more efficient operation.
- the primary components of Applicant's integrated mobile phone case and charger include a hard rubber mobile phone case having built in solar cells, a thermoelectric cooler, and an integrated microprocessor to control to the desired operations.
- the integrated mobile phone case and charger allows a mobile device on which it is disposed to become essentially self sustaining through improved efficiency and an ongoing conversion of light to electricity to be provided to the battery. As a result, many of the limitations imposed by the mobile device battery charging systems are removed.
- An integrated mobile phone case and charger for providing both a protective casing for a mobile device which includes an integrated solar cell for charging the battery of the mobile device therein.
- the integrated mobile phone case and charger comprises a case body, providing a cover means for encasing a mobile device, which includes solar cells, electrical wiring, and a charging port.
- the case body is defined by a front piece and a back piece, which are configured to be releasable attached through the operation of a plurality of fasteners to each other to form an enclosure in which a mobile phone or other mobile device is placed and secured.
- the solar cells enable the integrated mobile phone case and charger to generate its own electrical energy to be supplied to the battery of a mobile device disposed in the integrated mobile phone case and charger.
- the solar cells provide a cell means for converting light into electricity. Electricity generated by the solar cells is carried through electrical wires mounted on the inside surface of the back piece to a charging port, where it is provided to the mobile device.
- the charging port provides a port means for providing electricity to an encased mobile device and the electrical wires provide a means for directing electricity from the cell means to the port means.
- the charging port and the electrical wires are mounted on the inside surface of the back piece.
- thermoelectric cooler operative to cool a stored mobile device is additionally included on the inside surface of the back piece.
- an induction coil operative to enable wireless charging of a stored mobile device is included on the inside surface of the back piece, either in addition to or as opposed to the electrical wires and charging port.
- an integrated controller operative to control the supply of generated electricity to a stored mobile device or a thermoelectric cooler is additionally included on the inside surface of the back piece
- Figure la is a rear perspective view of an integrated mobile phone case and charger built in accordance with an embodiment of the present invention.
- Figure lb is a front elevational view of an integrated mobile phone case and charger built in accordance with an embodiment of the present invention.
- Figure lc is a side elevational view of an integrated mobile phone case and charger built in accordance with an embodiment of the present invention
- Figure 2 is a back perspective view of the back piece of an integrated mobile phone case and charger built in accordance with an embodiment of the present invention with electrical wiring and a phone port in shadow.
- Figure 3 is a front elevational view of the back piece of an integrated mobile phone case and charger built in accordance with an embodiment of the present invention.
- Figure 4 is a back perspective view of the back piece of an integrated mobile phone case and charger built in accordance with an electronic embodiment of the present invention.
- Figure 5 is a front elevational view of the back piece of an integrated mobile phone case and charger built in accordance with an electronic embodiment of the present invention.
- Figure 6 shows the process through which a sign in / log in proceeds in accordance with an electronic embodiment of the present invention.
- Figure 7 shows the process through which a mobile device communicates with a remote server over a network in accordance with an electronic embodiment of the present invention.
- an integrated mobile phone case and charger 10 having a case body 11 defined by a hard, canvassed rubber body having a front piece 11a and a back piece l ib.
- the front piece 11a and back piece l ib are configured to releasable attached to each other to form an enclosure in which a mobile phone 12 or other mobile device is placed and secured.
- the front piece 11a and the back piece are releasably attached to each other through the operation of a plurality of fasteners 13, defined in the preferred embodiment as a latch fastener having corresponding fastening portions on the front piece 11a and the back piece l ib.
- the case body 11 is structured to be secured over a mobile device in a manner substantially similar to mobile device cases in the prior art.
- the back piece 1 lb of the case body 11 additionally includes two solar cells 14 which are adapted to convert light energy into electrical energy. These solar cells 14 enable the integrated mobile phone case and charger 10 to generate its own electrical energy to be supplied to the battery of a mobile device disposed therein. While two solar cells 14 disposed on the back piece l ib are utilized in the preferred embodiment, it is contemplated that the integrated mobile phone case and charger 10 may alternatively operate with one solar cell 14 or three or more solar cells 14 disposed thereon.
- the charging port 17 is embodied as a conventional port through which the mobile device is configured to receive electrical power from a conventional battery charger.
- the charging port 17 is fixedly mounted on the inside surface 16. It is contemplated that as mobile devices are of many types of shapes and sizes, and are constructed with the outlets for a port through which electrical power is received in a variety of locations, the dimensions of the case body and the location of the charging port 17 of an integrated mobile phone case and charger 10 will differ for different models. But it is further contemplated that for mobile devices having a charging outlet at the bottom of the device, the charging port 17 for the integrated mobile phone case and charger 10 configured therefor will be disposed on the bottom of the inside surface 16.
- the solar cells 14 built in accordance with the present invention can be adapted to convert natural light and/or artificial light to electricity.
- the charging port 17 will be configured to swivel slightly to lessen pressure placed on the charging port 17 and the charging outlet of a mobile device when the back piece 1 lb is installed or removed from the mobile phone.
- an electronic embodiment of an integrated mobile phone case and charger 100 also includes a case body with a front piece and a back piece 110, just as the embodiment shown in Figures 1-3.
- the back piece 110 includes a section that is perforated 111.
- a solar cell component 114 that is adapted to covert light energy into electrical energy is disposed on the exterior side of the back piece 110 and an induction coil 101, a thermoelectric cooler 102, a heat sink 103, and an electronic control unit 104 disposed on the interior side of the back piece.
- the solar cell component 114 defines Perovskite solar cells in a tandem arrangement
- the thermoelectric cooler 102 defines a Peltier device
- the heat sink 103 defines an aluminum (elemental or an alloy) sheet.
- the control unit 104 is electrically connected to the solar cell component
- thermoelectric cooler 102 induction coil 101, thermoelectric cooler 102, and heat sink 103 and operative to selectively direct electricity generated by the solar cell component 114 to the induction coil 101 in order to facilitate inductive charging of the battery of a mobile device in the case body, the thermoelectric cooler 102 to enable cooling of such a mobile device, or to a physical charging port 117.
- the control unit 104 additionally includes a wireless transceiver which allows it to connect to and exchange data with a mobile device in the case body.
- the wireless transceiver defines a Bluetooth or Zigbee antenna.
- the control unit 104 is operative to monitor the status of, retrieve information from, and transmit commands to the mobile device and optimally direct the operation of the components of the integrated mobile phone case and charger 100 for charging and cooling.
- the control unit 104 may retrieve information related to the temperature of the mobile device and battery level and adjust the amount of generated electricity that is directed to the thermoelectric cooler 102 or the induction coil 101/charging port 117 based on the specifics retrieved.
- control unit 104 may determine whether to use the induction coil 101 or the charging port 117 to charge a contained mobile device by determining whether the contained mobile device includes an operational receiver induction coil. It is contemplated that this could be determined by providing generated electricity to the induction coil 101 while simultaneously retrieving from the contained mobile device an indication of whether the mobile device is charging. If it was, electricity would be continued to be supplied to the induction coil 101 while if it was not, electricity would alternatively be supplied to the charging port.
- the charging port 117 is similar to the charging port described with Figures 1-3, in some embodiments, it may include additionally an external female outlet 105 that is accessible from the exterior of the case body and can receive a male charger connector (not shown) from a discrete device to allow a mobile device in the case body to be charged through a conventional wired charger without removing the mobile device from the mobile phone case and charger 100 or the removing the charging port 117 from the charging outlet on the mobile device.
- control unit 104 includes software stored thereon which includes instructions which allow the processor to perform the operations of creating/managing a user profile and automatically contacting emergency alerts to designated contacts in a user profile when a mobile device turns off due to loss of battery power.
- the creation/management of a user profile is controlled through an automatic contacting in emergency ("ACE") software application.
- ACE automatic contacting in emergency
- the ACE software application defines in some embodiments software that is downloadable to a mobile device and which operates on the mobile device.
- the ACE software application Upon launching, the ACE software application requires a user to either register an account and ultimately designate at least one emergency contact or log in to an existing account and make additions, deletions or modification to previously designated emergency contacts.
- emergency contacts would typically define contacts stored on the mobile device that a user desires to receive an alert in the event of an emergency.
- the ACE software application enables the mobile device to a communicate data with a remote server that could assist in solar charging and in contacting emergency contacts.
- the mobile device housing the ACE software begins communicating information to the remote server concerning matters relating the mobile device.
- this information includes the devices temperature, location, irradiance, network connection type, battery level, and time to server.
- the contact information for the designated emergency contacts had not been previously provided or was changed, the up to date information for the designated emergency contacts would be sent to the server.
- the server may communicate information relating to the favorability of solar charging and the optimization of the same.
- the integrated mobile phone case and charger includes a thermoelectric cooler and induction coil that are wired such that current passing through the induction coil also passes the Peltier device. In such an embodiment, cooling and charging functions are performed at the same time.
- control unit the once the control unit has been bonded with and connects with a particular a mobile device in the case body, it becomes permanently associated with that particular mobile device. Accordingly, in such an embodiment, the features of the control unit on the integrated mobile phone case and charger become disabled if it is attempted to use the integrated mobile phone case and charger on another mobile device.
- Piezoelectric material may be used on both sides of the case to generate Piezoelectricity through hand vibration to charge the mobile device sufficiently to make at least an emergency call. It is appreciated that the piezoelectric effect is the ability of certain materials to generate an AC (alternating current) voltage when subjected to mechanical stress or vibration.
- Piezoelectric material on the case may be coated with a malleable gel or clay to give it slight softness, similar to conventional stress balls.
- the Piezoelectric material not only operates to charge the phone, but also acts as a stress reliever (person in an emergency is obviously in stress). It may further (a) boost blood circulation, (b) help with the treatment of carpal-tunnel syndrome (used as a tool for meditation), and (c) help strengthen the muscles of the hand and wrist.
- the instant invention has been shown and described herein in what is considered to be the most practical and preferred embodiment. It is recognized, however, that departures may be made therefrom within the scope of the invention and that obvious modifications will occur to a person skilled in the art.
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- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Radar, Positioning & Navigation (AREA)
- Remote Sensing (AREA)
- Computer Networks & Wireless Communication (AREA)
- General Physics & Mathematics (AREA)
- Electromagnetism (AREA)
- Power Engineering (AREA)
- Charge And Discharge Circuits For Batteries Or The Like (AREA)
Abstract
L'invention concerne un boîtier de téléphone mobile et un chargeur intégrés pour réaliser à la fois une enveloppe de protection pour un dispositif mobile qui comprend une cellule solaire intégrée destinée à charger la batterie du dispositif mobile à l'intérieur de celui-ci. L'objet de l'invention comprend un corps de boîtier défini par une pièce avant et une pièce arrière, la pièce arrière comprenant des cellules solaires, un câblage électrique et un orifice de charge. La pièce avant et la pièce arrière sont configurées pour être fixées de manière amovible l'une à l'autre afin de former une enceinte dans laquelle un téléphone mobile ou un autre dispositif mobile est placé et fixé. L'électricité générée par les cellules solaires peut être fournie à la batterie d'un dispositif mobile disposé dans le boîtier intégré de téléphone mobile et de chargeur. Un refroidisseur thermoélectrique et une unité de commande électronique peuvent en outre être inclus dans le corps de boîtier pour permettre une charge et un refroidissement sélectifs d'un dispositif mobile avec l'électricité générée.
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US201662320159P | 2016-04-08 | 2016-04-08 | |
US15/406,113 US10656244B2 (en) | 2016-04-08 | 2017-01-13 | Reconfigurable correlator (pulse compression receiver) and beam former based on multi-gigabit serial transceivers (SERDES) |
US15/406,113 | 2017-01-13 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2018132117A1 true WO2018132117A1 (fr) | 2018-07-19 |
Family
ID=63580882
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/US2017/018224 Ceased WO2018132117A1 (fr) | 2016-04-08 | 2017-02-16 | Boîtier de téléphone mobile et chargeur intégrés |
Country Status (1)
Country | Link |
---|---|
WO (1) | WO2018132117A1 (fr) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20220352741A1 (en) * | 2021-04-30 | 2022-11-03 | Nucurrent, Inc. | Wirelessly Powered Battery Pack For Retrofit In Legacy Devices |
Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20080141681A1 (en) * | 2004-02-10 | 2008-06-19 | Its Kool, Llc | Personal Heat Control Device and Method |
US20140021909A1 (en) * | 2012-07-19 | 2014-01-23 | Barnesandnoble.Com Llc | Charging case for electronic devices |
US20150207360A1 (en) * | 2014-01-22 | 2015-07-23 | Michael Adams | Integrated mobile phone case and charger |
US20160248028A1 (en) * | 2013-12-19 | 2016-08-25 | Nutech Ventures | Method for single crystal growth of photovoltaic perovskite material and devices |
WO2016191423A1 (fr) * | 2015-05-28 | 2016-12-01 | Nike Innovate C.V. | Appareil de transport avec chargeur à nfc |
-
2017
- 2017-02-16 WO PCT/US2017/018224 patent/WO2018132117A1/fr not_active Ceased
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20080141681A1 (en) * | 2004-02-10 | 2008-06-19 | Its Kool, Llc | Personal Heat Control Device and Method |
US20140021909A1 (en) * | 2012-07-19 | 2014-01-23 | Barnesandnoble.Com Llc | Charging case for electronic devices |
US20160248028A1 (en) * | 2013-12-19 | 2016-08-25 | Nutech Ventures | Method for single crystal growth of photovoltaic perovskite material and devices |
US20150207360A1 (en) * | 2014-01-22 | 2015-07-23 | Michael Adams | Integrated mobile phone case and charger |
WO2016191423A1 (fr) * | 2015-05-28 | 2016-12-01 | Nike Innovate C.V. | Appareil de transport avec chargeur à nfc |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20220352741A1 (en) * | 2021-04-30 | 2022-11-03 | Nucurrent, Inc. | Wirelessly Powered Battery Pack For Retrofit In Legacy Devices |
US11742687B2 (en) * | 2021-04-30 | 2023-08-29 | Nucurrent, Inc. | Wirelessly powered battery pack for retrofit in legacy devices |
US12155259B2 (en) | 2021-04-30 | 2024-11-26 | Nucurrent, Inc. | Wirelessly powered battery pack for retrofit in legacy devices |
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