Patents Assigned to TIGO ENERGY
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Publication number: 20130026842Abstract: Apparatuses and methods for configuring and managing solar panels to form strings of photovoltaic energy generators with improved performance and reduced cost. The photovoltaic energy generators are connected via one or more combined local management units (CLMUs), each having a plurality of direct current converters connected to and configured to receive direct current power from a respective solar panel. A controller unit shared by the CLMU's direct current converters is utilized to separately control the operation of each converter such that the power extracted from the solar panels is maximized. A communications unit coupled with the controller unit is utilized to facilitate communications between the controller unit and a system unit remote from the CLMU to report measurements and receive control signals.Type: ApplicationFiled: March 12, 2012Publication date: January 31, 2013Applicant: TIGO ENERGYInventors: Shmuel Arditi, Ron Hadar
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Publication number: 20130026843Abstract: Apparatuses and methods include a solar array having one or more strings of series-connected local management units (LMUs). Each LMU is parallel-connected to one of a plurality of solar modules. The strings are connected in parallel via a parallel bus. Local string management units (LSMUs) can increase or decrease an output voltage of the solar array by upconverting or downconverting string output voltages from each string. LSMUs can also operate in a bypass mode to increase overall power output.Type: ApplicationFiled: September 26, 2012Publication date: January 31, 2013Applicant: TIGO ENERGYInventor: Tigo Energy
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Publication number: 20120255591Abstract: Apparatuses and methods include a solar array having one or more string buses of series-connected solar modules. The current outputs from the solar modules on each string bus can be balanced along with the voltage output from the string buses. Local management units coupled between the solar modules and the string buses are configured to control the voltage output from each solar module. When the solar modules on each string are balanced, and when the string buses are balanced (or before the solar modules and string buses are balanced), an inverter or other device connected to the solar array can find the array's maximum power point via a maximum power point tracking algorithm.Type: ApplicationFiled: November 4, 2009Publication date: October 11, 2012Applicant: TIGO ENERGYInventors: Shmuel Arditi, Maxym Makhota
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Publication number: 20120253533Abstract: An arc detection and intervention system for a solar energy system. One or more arc detectors are strategically located among strings of solar panels. In conjunction with local management units (LMUs), arcs can be isolated and affected panels disconnected from the solar energy system.Type: ApplicationFiled: March 29, 2011Publication date: October 4, 2012Applicant: TIGO ENERGYInventors: Daniel Eizips, Shmuel Arditi
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Publication number: 20120253541Abstract: Apparatuses and methods include a solar array having one or more strings of series-connected local management units (LMUs). Each LMU is parallel-connected to one of a plurality of solar modules. The strings are connected in parallel via a parallel bus. Local string management units (LSMUs) can increase or decrease an output voltage of the solar array by upconverting or downconverting string output voltages from each string. LSMUs can also operate in a bypass mode to increase overall power output.Type: ApplicationFiled: January 21, 2010Publication date: October 4, 2012Applicant: TIGO ENERGYInventors: Shmuel ARDITI, Ron HADAR, Maxym MAKHOTA, Mordechay AVRUTSKY
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Publication number: 20110260866Abstract: Solar panel theft protection system operable both during daytime and nighttime. Power is feed into a solar array system sufficient to operate local management units. The units monitor solar panels; in the event that a panel is disconnected, an alarm is set off.Type: ApplicationFiled: April 21, 2011Publication date: October 27, 2011Applicant: TIGO ENERGYInventors: Mordechay Avrutsky, Ron Hadar, Shmuel Arditi
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Publication number: 20110245989Abstract: Provided are a system and method for determining a connectivity topology of local management units (LMUs) in a solar photovoltaic power generation (SPVPG) system. Each of the LMUs is connected within the SPVPG between a solar panel and a set of power lines of the SPVPG. The set of power lines connects the LMUs to form a network. The connectivity topology of LMUs in the network is determined using, for example, indirect indications of connections of an LMU and the SPVPG and indications of the physical location of the LMU with respect to other elements of the SPVPG.Type: ApplicationFiled: October 14, 2010Publication date: October 6, 2011Applicant: TIGO ENERGYInventors: Maxym Makhota, Shmuel Arditi, Ron Hadar
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Publication number: 20110218687Abstract: A system and method for automated shutdown, disconnect, or power reduction of solar panels. A system of solar panels includes one or more master management units (MMUs) and one or more local management units (LMUs). The MMUs are in communication with the LMUs with the MMUs and LMUs “handshaking” when the system is in operation. The MMUs are connected to one or more controllers which in turn are connected to emergency detection sensors. Upon a sensor detection of an emergency, the associated MMU is notified which in turn instructs associated LMUs to take appropriate action. In the event that communication with the MMUs has been cut off, the LMUs take the initiative to shutdown, disconnect, or reduce the output of associated string(s) of solar panels.Type: ApplicationFiled: April 22, 2011Publication date: September 8, 2011Applicant: TIGO ENERGYInventors: Ron Hadar, Shmuel Arditi, James Bickford
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Publication number: 20110172842Abstract: Systems and methods for shut-down of a photovoltaic system. In one embodiment, a method implemented in a computer system includes: communicating, via a central controller, with a plurality of local management units (LMUs), each of the LMUs coupled to control a respective solar module; receiving, via the central controller, a shut-down signal from a user device (e.g., a hand-held device, a computer, or a wireless switch unit); and in response to receiving the shut-down signal, shutting down operation of the respective solar module for each of the LMUs.Type: ApplicationFiled: March 28, 2011Publication date: July 14, 2011Applicant: TIGO ENERGYInventors: Maxym Makhota, Daniel Eizips, Dan Kikinis
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Publication number: 20110173276Abstract: Systems and methods for local and master management units in a photovoltaic energy system. In one embodiment, a method implemented in a computer system includes sending a first identification code from a local management unit to a master management unit. The first identification code is associated with the first local management unit, and the local management unit controls a solar module. An authentication of the first identification code is received from the master management unit. In response to receiving the authentication, active operation of the local management unit is continued (e.g., for a set time period).Type: ApplicationFiled: January 6, 2011Publication date: July 14, 2011Applicant: TIGO ENERGYInventors: Daniel Eizips, Shmuel Arditi, Ron Hadar, Maxym Makhota
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Publication number: 20110161722Abstract: Systems and methods for local management units in a photovoltaic energy system. In one embodiment, a method implemented in a computer system includes: attempting to communicate on a first active channel with a master management unit from a local management unit that controls a solar module; if communication with the master management unit on the first active channel has not been established, attempting to communicate on a second active channel with the master management unit.Type: ApplicationFiled: September 30, 2010Publication date: June 30, 2011Applicant: TIGO ENERGYInventors: Maxym Makhota, Daniel Eizips, Shmuel Arditi, Ron Hadar
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Publication number: 20110061713Abstract: Apparatuses and methods to reduce safety risks associated with photovoltaic systems by providing a safety switch on a photovoltaic panel. In one embodiment, a photovoltaic panel includes: at least one photovoltaic cell; a connector to output energy from the photovoltaic panel; and a switch coupled between the at least one photovoltaic cell and the connector. The switch is configured to disconnect the at least one photovoltaic cell from the connector during installation of the photovoltaic panel, and to connect the at least one photovoltaic cell with the connector after installation of the photovoltaic panel.Type: ApplicationFiled: November 17, 2010Publication date: March 17, 2011Applicant: TIGO ENERGYInventors: Earl G. Powell, Ron Hadar, Dan Kikinis, Shmuel Arditi
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Publication number: 20100139743Abstract: Systems and methods are disclosed for removing charge buildup/leakage from solar modules. A discharge controller may be coupled between a solar module and a string bus of a solar array. The discharge controller may be configured to disconnect the solar module from the string bus, and to connect a grounded frame to solar cells of the solar module. Since the grounded frame of the solar module may be grounded, connecting the grounded frame and the solar cells allows charge buildup/leakage to discharge into ground.Type: ApplicationFiled: December 1, 2009Publication date: June 10, 2010Applicant: TIGO ENERGYInventors: Ron HADAR, Shmuel ARDITI, Dan KIKINIS
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Publication number: 20100139734Abstract: Systems and methods are disclosed for automatically or remotely rendering a solar array safe during an emergency or maintenance. A watchdog unit is disclosed for monitoring a signal from a central controller. If the signal is lost, interrupted, or becomes irregular, or if a shutdown signal is received, then the watchdog unit can shutdown one or more solar modules. Shutting down a solar module can mean disconnecting it from a power bus of the solar array or lowering the solar module voltage to a safe level.Type: ApplicationFiled: December 1, 2009Publication date: June 10, 2010Applicant: TIGO ENERGYInventors: Ron HADAR, Shmuel ARDITI