Patents Assigned to POLARIS
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Publication number: 20200140000Abstract: A front fork assembly of a snow bike is disclosed having left and right legs, each having an upper leg portion and a lower leg portion. The left leg upper and lower leg portions are linearly movable relative to each other. A right leg has an upper leg portion and a lower leg portion, the right leg upper and lower leg portions are linearly movable relative to each other. A ski mount has a lower end for coupling to a ski and an upper end for coupling to the left and right leg. A linear force element is coupled to the left and right legs with a first end adjacent the first ends of the forks and seconds ends coupled to the ski, the linear force element has a different linear force characteristic than the left and right legs.Type: ApplicationFiled: January 3, 2020Publication date: May 7, 2020Applicant: Polaris Industries Inc.Inventors: Allen M. Mangum, Cody L. Telford
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Patent number: 10640101Abstract: A system and method for interfacing an autonomous or remote control drive-by-wire controller with a vehicle's control modules. Vehicle functions including steering, braking, starting, etc. are controllable by wire via a control network. A CAN architecture is used as an interface between the remote/autonomous controller and the vehicle's control modules. A CAN module interface provides communication between a vehicle control system and a supervisory, remote, autonomous, or drive-by-wire controller. The interface permits the supervisory control to control vehicle operation within pre-determined bounds and using control algorithms.Type: GrantFiled: December 12, 2018Date of Patent: May 5, 2020Assignee: Polaris Industries Inc.Inventors: Amber P. Malone, David J. Koenig, Kevin P. Blair, Patrick D. Weldon, Cole A. Sytsma
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Patent number: 10639985Abstract: A vehicle includes a plurality of ground-engaging members, a frame assembly supported by the ground-engaging members, and a powertrain assembly supported by the frame. The powertrain assembly includes at least an engine. The vehicle further includes a cooling assembly fluidly coupled to at least the engine and which includes a radiator and at least one fan positioned rearward of the radiator and angled relative to the radiator. A rear shroud is positioned between the radiator and fan and includes an air bypass assembly to exhaust air thought he rear shroud at higher speeds of the vehicle.Type: GrantFiled: November 8, 2018Date of Patent: May 5, 2020Assignee: Polaris Industries Inc.Inventors: Giancarlo Battaglini, Bret H. RempelEwert, Scott T. Mazour, Kristopher K. Biegler, Rickie A. Evenson
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Patent number: 10641025Abstract: A hinge including: a first leaf assembly accommodating a portion of a first panel having a first cut-out section, the first leaf assembly including a first insert component which is tight fittingly receivable within the first cut-out section; a second leaf assembly, hingedly coupled to the first leaf assembly, for accommodating a portion of a second panel having a second cut-out section; one or more biasing components to bias the hinge toward a closed position; and a dampener to slow movement of the first and second leaf assemblies to the closed position, a first portion of the dampener is located within the first insert component and a second portion is configured to at least partially retract within the first insert component when coining into contact with the second leaf assembly during movement, a second portion of the dampener extends and retracts along an axis coplanar with the first panel.Type: GrantFiled: February 16, 2017Date of Patent: May 5, 2020Assignee: Polaris IP Pty LtdInventor: Michael Christopher Stuart
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Patent number: 10641366Abstract: A continuously variable clutch (CVT) is disclosed which is operable in a first direction to transfer power from a power source to ground engaging members of a vehicle, and in a second direction where the ground engaging members brake and/or drive the engine. The CVT has a braking assembly having a thrust member positioned over a drive clutch shaft and adjacent an outer sheave of the drive clutch. A flanged sleeve is operatively coupled to the drive clutch shaft and generally positioned intermediate the inner and outer sheaves of the drive clutch, with a portion of the flanged sleeve being adjacent the thrust member. The flanged sleeve is fixed relative to the drive clutch shaft when operating in the first direction and is cooperable with the thrust member to move the flanged member axially relative to the drive clutch shaft and towards the inner sheave when operating in the second direction.Type: GrantFiled: December 22, 2016Date of Patent: May 5, 2020Assignee: Polaris Industries Inc.Inventors: Amery D. Kuhl, Anthony J. Ripley, Stephen L. Nelson
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Publication number: 20200130451Abstract: A suspension system for a vehicle and method for operating the same includes a shock absorber housing having a longitudinal axis, a spring disposed around the shock absorber housing and a retainer collar disposed around the shock absorber housing. An actuator coupled to the retainer housing moves at least a portion of the retainer housing to move the spring in a direction corresponding the longitudinal axis.Type: ApplicationFiled: October 29, 2018Publication date: April 30, 2020Applicant: Polaris Industries Inc.Inventors: Gordon J. STEINMETZ, Jonathon P. OAKDEN-GRAUS, David D. HELGESON
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Publication number: 20200131010Abstract: A winch and method for operating the winch includes a winch body having a first drum support, a second drum support and a drum rotatably coupled to the first drum support and the second drum support. The winch further comprises a plurality of gears coupled to the second drum support and the drum. A motor is coupled to the drum through the plurality of gears. A motor cover is coupled to the first drum support. A gear cover is coupled to the second drum support and houses the plurality of gears therein. A supplemental cover covers at least a portion of the motor cover or a portion of the gear cover or both.Type: ApplicationFiled: October 30, 2018Publication date: April 30, 2020Applicant: Polaris Industries Inc.Inventors: Glen L. KUKULA, Hitesh R. PATEL
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Publication number: 20200122776Abstract: In one embodiment, a utility vehicle includes a plurality of ground-engaging members configured to contact a ground surface, and a powertrain assembly operably coupled to the ground-engaging members. The utility vehicle also includes a frame supported by the ground-engaging members and extending along a longitudinal axis of the utility vehicle. The utility vehicle further includes a tunnel member coupled to the frame and extending along the longitudinal axis. The tunnel member is positioned at a first height from the ground surface. Additionally, the utility vehicle includes a cargo portion supported by the frame and positioned generally rearward of the tunnel member. The cargo portion has a cargo surface substantially aligned with the tunnel member and positioned at a second height from the ground surface. The first height is approximately equal to the second height.Type: ApplicationFiled: November 18, 2019Publication date: April 23, 2020Applicant: Polaris Industries Inc.Inventors: Adam J. Schlangen, Jason K. Raska, Aaron D. Deckard
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Patent number: 10619615Abstract: An engine is disclosed having a starter clutch ring gear, and a crank case having an integral starter pinion accepting member defining a through bore, and a gear assembly having an exterior surface configured to engage a flywheel and an surface engaging the second of the shaft. A starter pinion shaft is disposed through the through bore. The integral starter pinion accepting member defines a surface coupled to an engine mount.Type: GrantFiled: October 3, 2017Date of Patent: April 14, 2020Assignee: Polaris Industries Inc.Inventors: Chad A. Dale, Lawrence J. Hosaluk
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Patent number: 10618430Abstract: A latch system for selectively coupling an object such as a seat or an accessory to a vehicle is disclosed having an object having a pair of rear legs each having a latch and a pair of front legs, each of the legs having a floor-engaging member having an upper surface and a pair of side surfaces. The floor has a pair of forward-front integral coupling members configured to slidably accept and engage the pair of front legs floor-engaging members, and two pair of rear-side integral coupling members positioned adjacent to both of the rear legs floor engaging members. Each latch positioned on each of the rear legs is configured to releasably engage two of the rear-side integral coupling members.Type: GrantFiled: May 9, 2018Date of Patent: April 14, 2020Assignee: Polaris Industries Inc.Inventor: Boris Rubanovich
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Publication number: 20200110022Abstract: A method for detecting the presence of foreign fluids on surface comprises estimating an expected polarization response for a foreign fluid desired to be detected. Oil from an oil spill is one such foreign fluid. A polarimeter records raw image data of a surface (e.g., the surface of water) to obtain polarized images of the surface. IR and polarization data products are computed from the polarized images. The IR and polarization data products are converted to multi-dimensional data set to form multi-dimensional imagery. Contrast algorithms are applied to the multi-dimensional imagery to form enhanced contrast images, from which foreign fluids can be automatically detected.Type: ApplicationFiled: July 30, 2019Publication date: April 9, 2020Applicant: Polaris Sensor Technologies, Inc.Inventor: David B. Chenault
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Publication number: 20200112831Abstract: A technique for developing a stack-effect compensation model that is representative of a structure, such as a particular building, and of generating an estimate of the elevation of a wireless terminal inside the structure by using the model. The technique includes estimating information related to one or more neutral pressure planes within the structure, at which the difference between the indoor barometric pressure and the outdoor barometric pressure is essentially zero. The technique leverages pressure and temperature measurements that are provided by one or more wireless terminals that are regularly present in the building. The stack-effect compensation model includes a parameter that represents, for each of a plurality of uncompensated elevations, the height of the particular uncompensated elevation above a neutral pressure plane. The location engine uses this height-information parameter from the compensation model, in order to develop the estimate of the elevation of the wireless terminal.Type: ApplicationFiled: October 5, 2018Publication date: April 9, 2020Applicant: Polaris Wireless, Inc.Inventors: Jerome Arthur Blaha, JR., Scot Douglas Gordon, Jonathan Shiao-en Lu, Jeffrey Noel Wu, Jian Zhu
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Patent number: 10614638Abstract: A diagnostic system of a vehicle for diagnosing a drive belt of a continuously variable transmission. A diagnostic circuit detects or predicts a fault of the drive belt based on an operating parameter received from a sensor associated with the vehicle during a predetermined diagnostic period.Type: GrantFiled: January 22, 2018Date of Patent: April 7, 2020Assignee: Polaris Industries Inc.Inventors: Ryan D. Carlson, Brian R. Gillingham, Amery D. Kuhl, John F. Kallis, Bruce E. Herrala, Karl J. Grajkowski, Jonathon P. Oakden-Graus, Stephen L. Nelson
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Patent number: 10616399Abstract: A location engine that estimates the barometric pressure measurement bias of a pressure station reference, such as an airport pressure station, resulting in an improved estimate of the elevation of a wireless terminal. The location engine generates the estimate of bias of barometric pressure by comparing i) the outdoor barometric pressure measured by the airport pressure station at its unknown height above mean sea level (MSL) and ii) the expected outdoor barometric pressure derived from the pressure measurements from an already-calibrated pressure station, while accounting for the known height of the already-calibrated pressure station. The expected outdoor measurements correspond to a derived height above MSL of the airport pressure station. Subsequently, the location engine generates an estimate of the elevation of the wireless terminal by accounting for the estimate of measurement bias of the airport pressure station.Type: GrantFiled: October 1, 2019Date of Patent: April 7, 2020Assignee: Polaris Wireless, Inc.Inventors: Jerome Arthur Blaha, Jr., Scot Douglas Gordon, Jonathan Shiao-en Lu, Jeffrey Noel Wu, Jian Zhu
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Patent number: 10603997Abstract: A vehicle is provided including a frame assembly. The frame assembly includes a front frame module, a middle frame module, and a rear frame module. The front frame module is fastened to a front portion of the middle frame module. The rear frame module is fastened to a rear portion of the middle frame module. The middle frame module is interchangeable with at least one other middle frame module to change a length of the vehicle.Type: GrantFiled: January 20, 2016Date of Patent: March 31, 2020Assignee: Polaris Industries Inc.Inventors: Mark P. Bergstrom, Brian T. Hertzberg, Brent D. Raske, Gary V. Owen, Benjamin M. Johnson, David D. Helgeson, Jeffrey G. Jepsen, Alyssa D. Johnson
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Patent number: 10602326Abstract: A technique for detecting the occurrence of an event, and for estimating other event-related information, by analyzing the barometric pressure in the vicinity of one or more wireless terminals. The disclosed detection technique is based on the recognition that the barometric sensor on various wireless terminals, such as smartphones, is capable of measuring very subtle changes in the atmospheric pressure. The disclosed detection technique is also based on the additional recognition of how some of the changes in the atmospheric pressure, as measured by a wireless terminal, correlate to various events that occur within a building or other defined area. For example, the disclosed technique can detect an entry door opening or closing by analyzing a resultant pressure wave having a particular transient that is perceptible by one or more wireless terminals in the area and analyzed by a detection engine.Type: GrantFiled: October 23, 2017Date of Patent: March 24, 2020Assignee: Polaris Wireless, Inc.Inventor: Jerome Arthur Blaha, Jr.
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Patent number: 10602477Abstract: A technique for the estimation of the location of a wireless terminal. The disclosed technique considers boundaries that are represented in a geographic information system (GIS) database in combination with a first, unenhanced estimate of location, in order to generate a second, enhanced estimate of location. To do so, the technique generates a point cloud based on the first estimate of location. At least some of the data points in the point cloud are then removed, depending on their positions in relation to certain boundaries stored in the GIS database, such as the exterior walls of buildings and other structures. By considering these boundaries, the disclosed technique can increase the probability that the estimated location is within an area that is occupiable by a person, thereby providing a more reasonable result. The technique generates the second, enhanced estimate based on the distribution of the remaining data points.Type: GrantFiled: March 14, 2019Date of Patent: March 24, 2020Assignee: Polaris Wireless, Inc.Inventors: Jerome Arthur Blaha, Jr., Scot Douglas Gordon, Jonathan Shiao-en Lu, Jeffrey Noel Wu, Jian Jet Zhu
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Patent number: 10591003Abstract: A brake assembly for a wheel on a vehicle includes a brake disc, a caliper assembly operably coupled to the brake disc, a brake line fluidly coupled to the caliper assembly, and a brake shield positioned adjacent a portion of the caliper assembly. The brake shield includes a first arm positioned on a first side of a portion of the brake disc and a second arm positioned on a second side of the portion of the brake disc. The brake disc further includes a recess configured to receive a portion of the brake line.Type: GrantFiled: June 16, 2017Date of Patent: March 17, 2020Assignee: Polaris Industries Inc.Inventors: R. Marcus Mansfield, Michael D. Schneider
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Patent number: 10590833Abstract: A coolant bottle defines a first chamber and a second chamber fluidly coupled to the first chamber at a valve seat. The first chamber is fluidly coupled to a source of heated engine cooling fluid, while the second chamber is fluidly coupled to an engine water pump. A thermally responsive actuator is disposed within the first chamber, and has a thermally actuated sliding member having a valve seat engaging surface. The thermally actuated sliding member is movable from a first open position to a second closed position when the coolant is above a first temperature. The thermally responsive actuator is disposed within the first chamber.Type: GrantFiled: October 3, 2017Date of Patent: March 17, 2020Assignee: Polaris Industries Inc.Inventors: Darren J. Hedlund, Oliver J. Young
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Patent number: D878268Type: GrantFiled: December 21, 2018Date of Patent: March 17, 2020Assignee: Polaris Industries Inc.Inventor: Garth H. Bracy