Patents by Inventor Ori MOR
Ori MOR has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20260171852Abstract: A system for transmitting laser power to a remote receiver, comprising a laser diode, an optical system for collimating and focusing the laser beam onto the receiver, and a scanning system for directing the beam towards the receiver. The beam has a wavelength of 1150-1550 nm, has a power of >300 mW, has an emitter width of between 15 and 250 ?m, and is a spatial multimode beam, having >50% of its power in the TEM00 mode, and <15% of its power in higher order TEMnm modes having (n+m)>20. The lasing cavity has a Fresnel Number between 0.01 and 20, and a slow axis M2 of <15, and a fast axis M2 of <1.5, and a fast axis divergence of <60°. The collimated laser beam has a single lobe when imaged to a range of up to 10 meters.Type: ApplicationFiled: October 29, 2023Publication date: June 18, 2026Applicant: Wi-Charge Ltd.Inventors: Ori Mor, Ortal Alpert, Lior Golan, Omer Nahmias, Ilanit Shapir
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Patent number: 12584788Abstract: A system for measuring the power of a laser beam, comprising an essentially opaque enclosure, from which the laser beam is directed through an exit aperture. The enclosure contains a beam splitter configured to transmit a major part of the laser beam through the exit aperture, and to reflect a minor part of the laser beam; a diffuser element positioned such that the reflected minor part of the laser beam impinges thereon; at least one detector element in optical communication with the diffuser element, the detector element providing a signal in response to the diffused light of the minor part of the laser beam impinging thereon; and an absorber element positioned such that that part of any light entering the enclosure through the exit aperture and reflected by the beam splitter, impinges on the absorber element, and is essentially absorbed.Type: GrantFiled: November 1, 2020Date of Patent: March 24, 2026Assignee: Wi-Charge Ltd.Inventors: Eyal Conforti, Lior Golan, Omer Nahmias, Zohar Mills-Levin, Ran Sagi, Ortal Alpert, Ori Mor
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Publication number: 20260018847Abstract: A diagnostic system for a high power laser system, which detects and responds to malfunctions in interlocks of the laser safety system. A fault detected in any interlock circuit mandates a limitation in the operating conditions of the laser, or even a shutdown. In order to distinguish between transient faults, arising typically from ambient conditions, and more permanent faults, arising from faulty components or circuits, and which require external intervention to rectify, the system uses a database of possible fault classifications to determine the likely type of fault. If the fault is likely transient, the laser is maintained in a reduced power state, until one or more temporary interlocks are applied as backup for the failed interlocks, so that the system can be repeatedly tested for fault correction at full power output. Once the fault recovers, the backup interlocks may be disabled and the system returned to full operation.Type: ApplicationFiled: July 6, 2023Publication date: January 15, 2026Applicant: Wi-Charge Ltd.Inventors: Ortal Alpert, Lior Golan, Nir Simon, Ori Mor, Eli Zlatkin, Alexander Slepoy, Yan Rosh
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Publication number: 20250231105Abstract: A system for measuring levels of inflammable gases such as cooking gas, in a closed space, and for providing a warning when the gas levels exceed a safe threshold. The system uses a laser beam in order to determine the presence of the intruding inflammable gas. Laser beams provide a convenient method of determining the absorption of gases in the path of the beam, since the beam is generally collimated, traversing a well-defined path, which can cover a large extent of an area to be monitored for gas contamination. The absorption of the light of the laser beam in traversing the area is dependent on the gaseous content of the environment through which the beam passes. The wavelength of the laser beam used is chosen such that there is significant absorption of the beam by the gases which the system is intended to detect in the laser beam.Type: ApplicationFiled: March 31, 2023Publication date: July 17, 2025Applicant: Wi-Charge Ltd.Inventors: Ortal Alpert, Lior Golan, Omer Nahmias, Hen Markovitch, Ori Mor
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Publication number: 20250088280Abstract: New exemplary systems using a laser beam generated by a transmitter unit in abase station, for detecting, communicating with and controlling devices, typically battery-operated, installed in public spaces. Interaction between the laser beam and the device uses a laser detector module on the device, selected to emit a fluorescent signal when the laser beam impinges thereon. A fluorescence detector is installed on the base station, and it detects the incoherent fluorescence emitted by the device when the laser impinges on the device. A wireless data link can implement the exchange of information and instructions between the base station and the device, that may be needed following positive detection of the fluorescent emission from the device. The system may use a laser beam in the short wavelength infra-red (SWIR) region. The detector may provide the device with power for its operation and/or for keeping an installed battery charged.Type: ApplicationFiled: January 7, 2023Publication date: March 13, 2025Applicant: Wi-Charge Ltd.Inventors: Omer Nahmias, Ortal Alpert, Ori Mor, Oron Branitzky, Lior Golan, Simon Nir, Eli Zlatkin
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Patent number: 12244156Abstract: A system for ensuring the integrity of the enclosure of a wireless power transmitter. The enclosure of the transmitter comprises a window in order to allow a high-power beam to exit the transmitter. The window is equipped with an area which reflects at least a portion of the beam, and directs the reflected beam onto a detector. Thus the system can ascertain whether the window is undamaged, since if the detector is receiving a satisfactory portion of the beam, then it is indicative of an undamaged window. This advantageously prevents dangerous beam generated damage which may be caused if the exit window of the transmitter is damaged. The laser beam is preferably circularly polarized before exiting the transmitter to prevent dangerous laser damage caused by the reflections of the maximum of the P or S polarization components, which may occur with linearly polarized beams.Type: GrantFiled: January 17, 2020Date of Patent: March 4, 2025Assignee: Wi-Charge Ltd.Inventors: Ortal Alpert, Yoav Biderman, Ori Mor, Omer Nahmias, Lior Golan, Ran Sagi, Zohar Levin, Alexander Slepoy, Yan Rosh, Eyal Conforti
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Publication number: 20250015639Abstract: Systems for the aiming of a laser beam of wireless power towards the photovoltaic cell of a receiver, using an adjustable beam deflection unit, enabling accurate orientation of the mirror used to deflect the laser beam. Insufficient aiming accuracy may result in the spilling over of beam energy intended for absorption by the photovoltaic cell, into the surroundings. The criteria of accuracy and stability required of an electronically controlled beam aiming mirror must be such that the angular deviation of a beam, from the direction intended by the electronic control, is such that the level of optical power transferred into the surroundings, when a beam having the maximum power which the system can transmit is aimed at the target, does not exceed that allowed by a regulatory requirement. One common regulation limits the allowed dissipated power to the power of a class 3B laser.Type: ApplicationFiled: November 9, 2022Publication date: January 9, 2025Applicant: Wi-Charge Ltd.Inventors: Omer Nahmias, Ortal Alpert, Ilanit Shapir, Lior Golan, Alexander Slepoy, Yan Rosh, Ori Mor, Eli Zlatkin, Nir Simon
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Publication number: 20240429752Abstract: A system for transmitting wireless power from multiple sources to multiple receivers, in which the safety of the system is maintained in spite of the possibility that two beams may intersect in the transmission space, thereby generating power or power density levels which exceed those at which the safety mechanisms of the system were designed to operate. The paths of the beams are known from the transmission positions and directions, and from the positions and orientations of the receivers, as measured by positioning devices on them. When an intersection, or near intersection of beams is determined, the system is triggered to reduce the safety risk by attenuating or turning off, or by diverting, one or more of the beams. In addition, since a reflected beam's path may not be readily discernable, the system can ascertain if one of the beams has undergone a reflection, by looking for displayed mirror images.Type: ApplicationFiled: September 3, 2024Publication date: December 26, 2024Applicant: Wi-Charge Ltd.Inventors: Yoav Biderman, Ortal Alpert, Omer Nahmias, Lior Golan, Ran Sagi, Zohar Levin, Ori Mor, Alexander Slepoy, Yan Rosh, Eyal Conforti
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Patent number: 12081039Abstract: A system for transmitting wireless power from multiple sources to multiple receivers, in which the safety of the system is maintained in spite of the possibility that two beams may intersect in the transmission space, thereby generating power or power density levels which exceed those at which the safety mechanisms of the system were designed to operate. The paths of the beams are known from the transmission positions and directions, and from the positions and orientations of the receivers, as measured by positioning devices on them. When an intersection, or near intersection of beams is determined, the system is triggered to reduce the safety risk by attenuating or turning off, or by diverting, one or more of the beams. In addition, since a reflected beam's path may not be readily discernable, the system can ascertain if one of the beams has undergone a reflection, by looking for displayed mirror images.Type: GrantFiled: August 13, 2021Date of Patent: September 3, 2024Assignee: Wi-Charge Ltd.Inventors: Yoav Biderman, Ortal Alpert, Omer Nahmias, Lior Golan, Ran Sagi, Zohar Levin, Ori Mor, Alexander Slepoy, Yan Rosh, Eyal Conforti
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Publication number: 20220364915Abstract: A system for measuring the power of a laser beam, comprising an essentially opaque enclosure, from which the laser beam is directed through an exit aperture. The enclosure contains a beam splitter configured to transmit a major part of the laser beam through the exit aperture, and to reflect a minor part of the laser beam; a diffuser element positioned such that the reflected minor part of the laser beam impinges thereon; at least one detector element in optical communication with the diffuser element, the detector element providing a signal in response to the diffused light of the minor part of the laser beam impinging thereon; and an absorber element positioned such that that part of any light entering the enclosure through the exit aperture and reflected by the beam splitter, impinges on the absorber element, and is essentially absorbed.Type: ApplicationFiled: November 1, 2020Publication date: November 17, 2022Applicant: Wi-Charge Ltd.Inventors: Eyal Conforti, Lior Golan, Omer Nahmias, Zohar Mills-Levin, Ran Sagi, Ortal Alpert, Ori Mor
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Publication number: 20220123601Abstract: A system for ensuring the integrity of the enclosure of a wireless power transmitter. The enclosure of the transmitter comprises a window in order to allow a high-power beam to exit the transmitter. The window is equipped with an area which reflects at least a portion of the beam, and directs the reflected beam onto a detector. Thus the system can ascertain whether the window is undamaged, since if the detector is receiving a satisfactory portion of the beam, then it is indicative of an undamaged window. This advantageously prevents dangerous beam generated damage which may be caused if the exit window of the transmitter is damaged. The laser beam is preferably circularly polarized before exiting the transmitter to prevent dangerous laser damage caused by the reflections of the maximum of the P or S polarization components, which may occur with linearly polarized beams.Type: ApplicationFiled: January 17, 2020Publication date: April 21, 2022Applicant: Wi-Charge Ltd.Inventors: Ortal Alpert, Yoav Biderman, Ori Mor, Omer Nahmias, Lior Golan, Ran Sagi, Zohar Levin, Alexander Slepoy, Yan Rosh, Eyal Conforti
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Publication number: 20210384776Abstract: A system for transmitting wireless power from multiple sources to multiple receivers, in which the safety of the system is maintained in spite of the possibility that two beams may intersect in the transmission space, thereby generating power or power density levels which exceed those at which the safety mechanisms of the system were designed to operate. The paths of the beams are known from the transmission positions and directions, and from the positions and orientations of the receivers, as measured by positioning devices on them. When an intersection, or near intersection of beams is determined, the system is triggered to reduce the safety risk by attenuating or turning off, or by diverting, one or more of the beams. In addition, since a reflected beam's path may not be readily discernable, the system can ascertain if one of the beams has undergone a reflection, by looking for displayed mirror images.Type: ApplicationFiled: August 13, 2021Publication date: December 9, 2021Applicant: Wi-Charge Ltd.Inventors: Yoav Biderman, Ortal Alpert, Omer Nahmias, Lior Golan, Ran Sagi, Zohar Levin, Ori Mor, Alexander Slepoy, Yan Rosh, Eyal Conforti
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Patent number: 11095166Abstract: A system for transmitting wireless power from multiple sources to multiple receivers, in which the safety of the system is maintained in spite of the possibility that two beams may intersect in the transmission space, thereby generating power or power density levels which exceed those at which the safety mechanisms of the system were designed to operate. The paths of the beams are known from the transmission positions and directions, and from the positions and orientations of the receivers, as measured by positioning devices on them. When an intersection, or near intersection of beams is determined, the system is triggered to reduce the safety risk by attenuating or turning off, or by diverting, one or more of the beams. In addition, since a reflected beam's path may not be readily discernable, the system can ascertain if one of the beams has undergone a reflection, by looking for displayed mirror images.Type: GrantFiled: January 2, 2019Date of Patent: August 17, 2021Assignee: Wi-Charge Ltd.Inventors: Yoav Biderman, Ortal Alpert, Omer Nahmias, Lior Golan, Ran Sagi, Zohar Levin, Ori Mor, Alexander Slepoy, Yan Rosh, Eyal Conforti
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Publication number: 20210075269Abstract: A system for transmitting wireless power from multiple sources to multiple receivers, in which the safety of the system is maintained in spite of the possibility that two beams may intersect in the transmission space, thereby generating power or power density levels which exceed those at which the safety mechanisms of the system were designed to operate. The paths of the beams are known from the transmission positions and directions, and from the positions and orientations of the receivers, as measured by positioning devices on them. When an intersection, or near intersection of beams is determined, the system is triggered to reduce the safety risk by attenuating or turning off, or by diverting, one or more of the beams. In addition, since a reflected beam's path may not be readily discernable, the system can ascertain if one of the beams has undergone a reflection, by looking for displayed mirror images.Type: ApplicationFiled: January 2, 2019Publication date: March 11, 2021Applicant: Wi-Charge Ltd.Inventors: Yoav Biderman, Ortal Alpert, Omer Nahmias, Lior Golan, Ran Sagi, Zohar Levin, Ori Mor, Alexander Slepoy, Yan Rosh, Eyal Conforti
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Publication number: 20190119543Abstract: Embodiments relate to formulations comprising sodium acetate trihydrate and other components. In addition, embodiments further relate to methods of preparing such formulations. Furthermore, embodiments relate to products including such formulations.Type: ApplicationFiled: December 14, 2018Publication date: April 25, 2019Inventors: Nick HARDING, Philip PEARSON, Joe ROBINSON, Ori MOR, Michael LAWSON
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Publication number: 20160168438Abstract: Embodiments relate to formulations comprising sodium acetate trihydrate and other components. In addition, embodiments further relate to methods of preparing such formulations. Furthermore, embodiments relate to products including such formulations.Type: ApplicationFiled: July 4, 2014Publication date: June 16, 2016Inventors: Nick HARDING, Philip PEARSON, Joe ROBINSON, Ori MOR, Michael LAWSON