Patents Assigned to Solaredge Technologies Ltd.
-
Patent number: 10686402Abstract: A junction box used for making electrical connections to a photovoltaic panel. The junction box has two chambers including a first chamber and a second chamber and a wall common to and separating both chambers. The wall may be adapted to have an electrical connection therethrough. The two lids are adapted to seal respectively the two chambers. The two lids are on opposite sides of the junction box relative to the photovoltaic panel. The two lids may be attachable using different sealing processes to a different level of hermeticity. The first chamber may be adapted to receive a circuit board for electrical power conversion. The junction box may include supports for mounting a printed circuit board in the first chamber. The second chamber is configured for electrical connection to the photovoltaic panel. A metal heat sink may be bonded inside the first chamber.Type: GrantFiled: July 29, 2019Date of Patent: June 16, 2020Assignee: Solaredge Technologies Ltd.Inventors: Guy Sella, Lior Handelsman, Vadim Shmukler, Meir Adest, Meir Gazit, Yoav Galin
-
Patent number: 10680506Abstract: A multi-level inverter having one or more banks, each bank containing a plurality of low voltage MOSFET transistors. A processor configured to switch the plurality of low voltage MOSFET transistors in each bank to switch at multiple times during each cycle.Type: GrantFiled: June 24, 2019Date of Patent: June 9, 2020Assignee: Solaredge Technologies Ltd.Inventors: Ilan Yoscovich, Tzachi Glovinsky, Guy Sella, Yoav Galin
-
Patent number: 10680505Abstract: A multi-level inverter having one or more banks, each bank containing a plurality of low voltage MOSFET transistors. A processor configured to switch the plurality of low voltage MOSFET transistors in each bank to switch at multiple times during each cycle.Type: GrantFiled: June 14, 2019Date of Patent: June 9, 2020Assignee: Solaredge Technologies Ltd.Inventors: Ilan Yoscovich, Tzachi Glovinsky, Guy Sella, Yoav Galin
-
Patent number: 10673229Abstract: Methods for arc detection in a system including one or more photovoltaic generators, one or more photovoltaic power devices and a system power device and/or a load connectible to the photovoltaic generators and/or the photovoltaic power devices. The methods may measure voltage, current, and/or power delivered to the load or system power device, and the methods may measure voltage noise or current noise within the photovoltaic system. The methods may periodically, and/or in response to detecting noise, reduce an electrical parameter such as current or voltage in order to extinguish an arc. The methods may compare one or more measurements to one or more thresholds to detect arcing, and upon a comparison indicating that arcing is or was present, an alarm condition may be set.Type: GrantFiled: November 21, 2017Date of Patent: June 2, 2020Assignee: Solaredge Technologies Ltd.Inventors: Ilan Yoscovich, Guy Sella, Meir Gazit, Yoav Galin, David Braginsky, Lior Handelsman, Meir Adest, Yakir Loewenstern, Tzachi Glovinsky, Nadav Berkovitch, Ron Neuman, Amir Fishelov
-
Patent number: 10673222Abstract: Methods for arc detection in a system including one or more photovoltaic generators, one or more photovoltaic power devices and a system power device and/or a load connectible to the photovoltaic generators and/or the photovoltaic power devices. The methods measure voltage, voltage noise and/or power delivered to the load or system power device. The methods may compare one or more measurements, an aggregation of measurements and/or values estimated from the measurements to one or more thresholds, and upon a comparison indicating a potential arcing condition, an alarm condition may be set. Embodiments include an arrangement of photovoltaic generators and photovoltaic power devices for reduced-impedance voltage loops which may enhance arc-detection capabilities.Type: GrantFiled: January 17, 2017Date of Patent: June 2, 2020Assignee: Solaredge Technologies Ltd.Inventors: Ilan Yoscovich, Guy Sella, Meir Gazit, Yoav Galin, David Braginsky, Lior Handelsman, Meir Adest, Yakir Loewenstern, Tzachi Glovinsky
-
Patent number: 10673253Abstract: A system and method for digital management and control of power conversion from battery cells. The system utilizes a power management and conversion module that uses a CPU to maintain a high power conversion efficiency over a wide range of loads and to manage charge and discharge operation of the battery cells. The power management and conversion module includes the CPU, a current sense unit, a charge/discharge unit, a DC-to-DC conversion unit, a battery protection unit, a fuel gauge and an internal DC regulation unit. Through intelligent power conversion and charge/discharge operations, a given battery type is given the ability to emulate other battery types by conversion of the output voltage of the battery and adaptation of the charging scheme to suit the battery.Type: GrantFiled: January 22, 2019Date of Patent: June 2, 2020Assignee: Solaredge Technologies Ltd.Inventors: Meir Adest, Lior Handelsman, Yoav Galin, Amir Fishelov, Guy Sella
-
Patent number: 10666125Abstract: A photovoltaic power generation system, having a photovoltaic panel, which has a direct current (DC) output and a micro-inverter with input terminals and output terminals. The input terminals are adapted for connection to the DC output. The micro-inverter is configured for converting an input DC power received at the input terminals to an output alternating current (AC) power at the output terminals. A bypass current path between the output terminals may be adapted for passing current produced externally to the micro-inverter. The micro-inverter is configured to output an alternating current voltage significantly less than a grid voltage.Type: GrantFiled: November 28, 2017Date of Patent: May 26, 2020Assignee: Solaredge Technologies Ltd.Inventors: Ilan Yoscovich, Meir Gazit, Tzachi Glovinsky, Yoav Galin
-
Patent number: 10658833Abstract: Various implementations described herein are directed to a method for detecting, by a device, an increase in temperature at certain parts of an electrical system, and taking appropriate responsive action. The method may include measuring temperatures at certain locations within the system and estimating temperatures at other locations based on the measurements. Some embodiments disclosed herein include an integrated cable combining electrical conduction and heat-detection capabilities, or an integrated cable or connector combining electrical conduction with a thermal fuse.Type: GrantFiled: August 4, 2017Date of Patent: May 19, 2020Assignee: Solaredge Technologies Ltd.Inventors: Yoav Galin, Meir Adest, Israel Gershman, Guy Sella
-
Patent number: 10651647Abstract: A bypass mechanism for a photovoltaic module which switches out the electronics and switches in a bypass mechanism.Type: GrantFiled: October 2, 2017Date of Patent: May 12, 2020Assignee: Solaredge Technologies Ltd.Inventors: Meir Gazit, Israel Gershman, Ehud Kirmayer, Leon Kupershmidt, Meir Adest
-
Patent number: 10644589Abstract: A distributed power system wherein a plurality of power converters are connected in parallel and share the power conversion load according to a prescribed function, but each power converter autonomously determines its share of power conversion. Each power converter operates according to its own power conversion formula/function, such that overall the parallel-connected converters share the power conversion load in a predetermined manner.Type: GrantFiled: April 20, 2018Date of Patent: May 5, 2020Assignee: Solaredge Technologies Ltd.Inventors: Meir Adest, Guy Sella, Lior Handelsman, Yoav Galin, Amir Fishelov, Meir Gazit, Tzachi Glovinski, Yaron Binder
-
Patent number: 10637393Abstract: A distributed power harvesting system including multiple direct current (DC) power sources with respective DC outputs adapted for interconnection into a interconnected DC power source output. A converter includes input terminals adapted for coupling to the interconnected DC power source output. A circuit loop sets the voltage and current at the input terminals of the converter according to predetermined criteria. A power conversion portion converts the power received at the input terminals to an output power at the output terminals. A power supplier is coupled to the output terminals. The power supplier includes a control part for maintaining the input to the power supplier at a predetermined value. The control part maintains the input voltage and/or input current to the power supplier at a predetermined value.Type: GrantFiled: November 30, 2016Date of Patent: April 28, 2020Assignee: Solaredge Technologies Ltd.Inventors: Guy Sella, Lior Handelsman, Yoav Galin, Amir Fishelov, Meir Adest
-
Patent number: 10630342Abstract: A power line communication device including a current path provided between a first terminal and a second terminal. A coupling circuit includes a first circuit of a first inductor connected in parallel with a first capacitor and a first resistor, wherein the coupling circuit is connected between the first and second terminals. A sensor is configured to sense a communication parameter of the coupling circuit. The communication parameter may be a resonance of the first circuit, the quality (Q) factor of the resonance, the bandwidth (BW) of the coupling circuit, the resistance of the first resistor, or the impedance of the first circuit. A transceiver is adapted to couple to the first and second terminal to transmit a signal onto the current path or receive a signal from the current path responsive to the parameter of the coupling circuit and a level of current in the current path sensed by the sensor.Type: GrantFiled: December 19, 2018Date of Patent: April 21, 2020Assignee: Solaredge Technologies Ltd.Inventor: Ofir Bieber
-
Patent number: 10628897Abstract: Various implementations described herein are directed to systems, apparatuses and methods for operating stand-alone power systems. The systems may include power generators (e.g., photovoltaic generators and/or wind turbines), storage devices (e.g., batteries and/or flywheels), power modules (e.g., power converters) and loads. The methods may include various methods for monitoring, determining, controlling and/or predicting system power generation, system power storage and system power consumption.Type: GrantFiled: January 4, 2018Date of Patent: April 21, 2020Assignee: Solaredge Technologies Ltd.Inventors: Ilan Yoscovich, Meir Gazit, Yoav Galin
-
Patent number: 10622939Abstract: A device for attaching a junction box to a photovoltaic. The photovoltaic panel has a photovoltaic side and a non-photovoltaic side. The device includes a bracket with a first side attachable to the junction box and a second side attachable to the non-photovoltaic surface of the photovoltaic panel. A central fastener is attachable at one end to the bracket and a plate is adapted for connecting to the other end of the central fastener and for mounting on the photovoltaic side of the photovoltaic panel. One or more rotatable spacers, connectible to the central fastener, may be located on the non-photovoltaic side of the photovoltaic panel. One or more fixed spacers may be located on the non-photovoltaic side connectible to the bracket.Type: GrantFiled: August 19, 2019Date of Patent: April 14, 2020Assignee: Solaredge Technologies Ltd.Inventors: Vadim Shmukler, Lior Handelsman, Nir Armony
-
Patent number: 10615594Abstract: Distributed maximum power point tracking systems, structures, and processes are provided for power generation structures, such as for but not limited to a solar panel arrays. In an exemplary solar panel string structure, distributed maximum power point tracking (DMPPT) modules are provided, such as integrated into or retrofitted for each solar panel. The DMPPT modules provide panel level control for startup, operation, monitoring, and shutdown, and further provide flexible design and operation for strings of multiple panels. The strings are typically linked in parallel to a combiner box, and then toward and enhanced inverter module, which is typically connected to a power grid. Enhanced inverters are controllable either locally or remotely, wherein system status is readily determined, and operation of one or more sections of the system are readily controlled. The system provides increased operation time, and increased power production and efficiency, over a wide range of operating conditions.Type: GrantFiled: October 2, 2017Date of Patent: April 7, 2020Assignee: Solaredge Technologies Ltd.Inventors: Argil E. Shaver, II, Ronald M. Newdoll
-
Patent number: 10608624Abstract: A switching device includes a first leg having a plurality of transistors connected in series. The switching device also includes a second leg having a transistor, connected in parallel to the first leg. The switching device further includes a controller controlling the plurality of transistors and the transistor. The controller is configured to turn the switching device from a first state to a second state by first turning the transistor from the first state to the second stat and then turning the plurality of transistors from the first state to the second state.Type: GrantFiled: May 21, 2018Date of Patent: March 31, 2020Assignee: Solaredge Technologies Ltd.Inventors: Daniel Zmood, Tzachi Glovinsky
-
Patent number: 10608553Abstract: A power harvesting system including multiple parallel-connected photovoltaic strings, each photovoltaic string includes a series-connection of photovoltaic panels. Multiple voltage-compensation circuits may be connected in series respectively with the photovoltaic strings. The voltage-compensation circuits may be configured to provide respective compensation voltages to the photovoltaic strings to maximize power harvested from the photovoltaic strings. The voltage-compensation circuits may be include respective inputs which may be connected to a source of power and respective outputs which may be connected in series with the photovoltaic strings.Type: GrantFiled: September 29, 2017Date of Patent: March 31, 2020Assignee: Solaredge Technologies Ltd.Inventor: Ilan Yoscovich
-
Patent number: 10599113Abstract: Various implementations described herein are directed to a method for determining an order of power devices connected in a serial string. A command is transmitted, to at least one first power device of a plurality of power devices, to change an output electrical parameter. At least one electrical signal is caused to be transmitted from at least one second power device of the plurality of power devices. At least one measured value responsive to the electrical signal is received from at least one of the plurality of power devices. A determination is made, by analyzing the at least one measured value, which ones of the plurality of power devices are ordered in the serial string between the at least one first power device and the at least one second power device.Type: GrantFiled: December 12, 2018Date of Patent: March 24, 2020Assignee: Solaredge Technologies Ltd.Inventors: Ilan Yoscovich, Yoav Galin, Amir Fishelov, Yakir Loewenstern, David Braginsky, Lior Handelsman, Ohad Gidon, Guy Sella, Gil Litmanovitch
-
Patent number: 10587118Abstract: Various implementations described herein are directed to systems, apparatuses and methods for managing one or more loads connected to one or more power sources using one or more smart outlets. Apparatuses described herein may include smart outlets configured to communicate with one or more controllers and responsively connect and disconnect electrical loads connected thereto. Methods described herein may include signaling and/or controlling one or more loads from a group of loads to connect to or disconnect from one or more power sources.Type: GrantFiled: November 14, 2017Date of Patent: March 10, 2020Assignee: Solaredge Technologies Ltd.Inventors: Yoav Galin, Guy Sella, Ilan Yoscovich, Amir Fishelov
-
Patent number: 10554149Abstract: A method and a system sense at least one phase difference between at least two phases of a group of parallel connected three phase AC output terminals (e.g., a first phase AC output terminal, a second phase AC output terminal, or a third phase AC output terminal). The parallel connected AC output terminals may be three parallel connected DC to AC three phase inverters. Features of the parallel connected three phase AC output terminals enable wiring of conductors to one phase of an AC output terminal to be swapped with wiring of conductors of one phase of another phase AC output terminal. A sign of at least one phase difference is verified different from signs of other phase differences thereby the system determining the lateral position of the at least one three phase inverters relative to at least one other of the three phase inverters.Type: GrantFiled: November 16, 2018Date of Patent: February 4, 2020Assignee: Solaredge Technologies Ltd.Inventors: Omer Aloni, Alon Zohar, Tzachi Glovinsky, Menashe Walsh