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公开(公告)号:US20180116039A1
公开(公告)日:2018-04-26
申请号:US15789666
申请日:2017-10-20
Applicant: Lutron Electronics Co., Inc.
Inventor: Matthew V. Harte , Jeffrey S. Hayes , Stephen M. Luwig, JR. , Robert C. Newman, JR. , Jaykrishna A. Shukla
CPC classification number: H05B37/0272 , G06F1/3246 , G06F1/325 , G08C17/02 , H01H3/02 , H01H2300/03 , H05B37/0227
Abstract: Provided herein are examples of a remote control device that provides a retrofit solution for an existing switched control system. The remote control device may comprise a control circuit, a rotatable portion, a magnetic ring coupled to the rotatable portion, and first and second Hall-effect sensor circuits configured to generate respective first and second sensor control signals in response to magnetic fields generated by the magnetic elements. The control circuit may operate in a normal mode when the rotatable portion is being rotated, and in a reduced-power mode when the rotatable portion is not being rotated. The control circuit may disable the second Hall-effect sensor circuit in the reduced-power mode. The control circuit may detect movement of the rotatable portion in response to the first sensor control signal in the reduced-power mode and enable the second Hall-effect sensor circuit in response to detecting movement of the rotatable portion.
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公开(公告)号:US09888535B2
公开(公告)日:2018-02-06
申请号:US15355230
申请日:2016-11-18
Applicant: Lutron Electronics Co., Inc.
Inventor: Venkatesh Chitta , Jeffrey S. Hayes , Robert D. Stevens, Jr.
CPC classification number: H05B33/0818 , H02M1/08 , H02M3/33507 , H02M3/33569 , H02M2001/0009 , H02M2001/0035 , H02M2001/0058 , H05B33/08 , H05B33/0812 , H05B33/0815 , H05B33/0851 , H05B33/089 , Y02B70/1491 , Y02B70/16
Abstract: A method for controlling an amount of power delivered to an electrical load may include controlling an average magnitude of a load current towards a target load current that ranges from a maximum rated current to a minimum rated current in a normal mode, and controlling the average magnitude of the load current below the minimum rated current in a burst mode. The burst mode may include at least one burst mode period that comprises a first time period associated with an active state and a second time period associated with an inactive state. During the burst mode, the method may include regulating a peak magnitude of the load current towards the minimum rated current during the active state, and stopping the generation of at least one drive signal during the inactive state to control the average magnitude of the load current to be less than the minimum rated current.
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3.
公开(公告)号:US09538600B2
公开(公告)日:2017-01-03
申请号:US14974853
申请日:2015-12-18
Applicant: Lutron Electronics Co., Inc.
Inventor: Venkatesh Chitta , Jeffrey S. Hayes , Robert D. Stevens, Jr.
CPC classification number: H05B33/0818 , H02M1/08 , H02M3/33507 , H02M3/33569 , H02M2001/0009 , H02M2001/0035 , H02M2001/0058 , H05B33/08 , H05B33/0812 , H05B33/0815 , H05B33/0851 , H05B33/089 , Y02B70/1491 , Y02B70/16
Abstract: A load control device for controlling the amount of power delivered to an electrical load is able to operate in a burst mode to adjust the amount of power delivered to the electrical load to low levels. The load control device comprises a control circuit that operates in a normal mode to regulate an average magnitude of a load current conducted through the load to a target load current that ranges from a maximum rated current to a minimum rated current. The control circuit operates in the burst mode to regulate the average magnitude of the load current below the minimum rated current. During the burst mode, the control circuit regulates a peak magnitude of the load current to the minimum rated current during a first time period, and stops regulating the load current during a second time period, such that the average magnitude of the load current is below the minimum rated current.
Abstract translation: 用于控制传送到电负载的功率量的负载控制装置能够以突发模式操作,以将输送到电负载的功率量调整到低水平。 负载控制装置包括控制电路,其以正常模式操作,以将通过负载传导的负载电流的平均幅度调节到从最大额定电流到最小额定电流的目标负载电流。 控制电路以突发模式工作,以调节低于最小额定电流的负载电流的平均幅度。 在突发模式期间,控制电路在第一时间段期间将负载电流的峰值幅度调节到最小额定电流,并且在第二时间段期间停止调节负载电流,使得负载电流的平均幅度低于 最小额定电流。
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4.
公开(公告)号:US09247608B2
公开(公告)日:2016-01-26
申请号:US14536491
申请日:2014-11-07
Applicant: Lutron Electronics Co., Inc.
Inventor: Venkatesh Chitta , Jeffrey S. Hayes , Robert D. Stevens, Jr.
CPC classification number: H05B33/0818 , H02M1/08 , H02M3/33507 , H02M3/33569 , H02M2001/0009 , H02M2001/0035 , H02M2001/0058 , H05B33/08 , H05B33/0812 , H05B33/0815 , H05B33/0851 , H05B33/089 , Y02B70/1491 , Y02B70/16
Abstract: A load control device for controlling the amount of power delivered to an electrical load is able to operate in a burst mode to adjust the amount of power delivered to the electrical load to low levels. The load control device comprises a control circuit that operates in a normal mode to regulate an average magnitude of a load current conducted through the load to a target load current that ranges from a maximum rated current to a minimum rated current. The control circuit operates in the burst mode to regulate the average magnitude of the load current below the minimum rated current. During the burst mode, the control circuit regulates a peak magnitude of the load current to the minimum rated current during a first time period, and stops regulating the load current during a second time period, such that the average magnitude of the load current is below the minimum rated current.
Abstract translation: 用于控制传送到电负载的功率量的负载控制装置能够以突发模式操作,以将输送到电负载的功率量调整到低水平。 负载控制装置包括控制电路,其以正常模式操作,以将通过负载传导的负载电流的平均幅度调节到从最大额定电流到最小额定电流的目标负载电流。 控制电路以突发模式工作,以调节低于最小额定电流的负载电流的平均幅度。 在突发模式期间,控制电路在第一时间段期间将负载电流的峰值幅度调节到最小额定电流,并且在第二时间段期间停止调节负载电流,使得负载电流的平均幅度低于 最小额定电流。
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公开(公告)号:US20190150252A1
公开(公告)日:2019-05-16
申请号:US16245027
申请日:2019-01-10
Applicant: Lutron Electronics Co., Inc.
Inventor: Matthew V. Harte , Jeffrey S. Hayes , Stephen M. Ludwig, JR. , Robert C. Newman, JR. , Jaykrishna A. Shukla
IPC: H05B37/02 , H01H3/02 , G06F1/3246 , G08C17/02 , G06F1/3234
Abstract: Provided herein are examples of a remote control device that provides a retrofit solution for an existing switched control system. The remote control device may comprise a control circuit, a rotatable portion, a magnetic ring coupled to the rotatable portion, and first and second Hall-effect sensor circuits configured to generate respective first and second sensor control signals in response to magnetic fields generated by the magnetic elements. The control circuit may operate in a normal mode when the rotatable portion is being rotated, and in a reduced-power mode when the rotatable portion is not being rotated. The control circuit may disable the second Hall-effect sensor circuit in the reduced-power mode. The control circuit may detect movement of the rotatable portion in response to the first sensor control signal in the reduced-power mode and enable the second Hall-effect sensor circuit in response to detecting movement of the rotatable portion.
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公开(公告)号:US10136484B2
公开(公告)日:2018-11-20
申请号:US15864662
申请日:2018-01-08
Applicant: Lutron Electronics Co., Inc.
Inventor: Venkatesh Chitta , Jeffrey S. Hayes , Robert D. Stevens, Jr.
Abstract: A method for controlling an amount of power delivered to an electrical load may include controlling an average magnitude of a load current towards a target load current that ranges from a maximum rated current to a minimum rated current in a normal mode, and controlling the average magnitude of the load current below the minimum rated current in a burst mode. The burst mode may include at least one burst mode period that comprises a first time period associated with an active state and a second time period associated with an inactive state. During the burst mode, the method may include regulating a peak magnitude of the load current towards the minimum rated current during the active state, and stopping the generation of at least one drive signal during the inactive state to control the average magnitude of the load current to be less than the minimum rated current.
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公开(公告)号:US20180132318A1
公开(公告)日:2018-05-10
申请号:US15864662
申请日:2018-01-08
Applicant: Lutron Electronics Co., Inc.
Inventor: Venkatesh Chitta , Jeffrey S. Hayes , Robert D. Stevens, JR.
CPC classification number: H05B33/0818 , H02M1/08 , H02M3/33507 , H02M3/33569 , H02M2001/0009 , H02M2001/0035 , H02M2001/0058 , H05B33/08 , H05B33/0812 , H05B33/0815 , H05B33/0851 , H05B33/089 , Y02B70/1491 , Y02B70/16
Abstract: A method for controlling an amount of power delivered to an electrical load may include controlling an average magnitude of a load current towards a target load current that ranges from a maximum rated current to a minimum rated current in a normal mode, and controlling the average magnitude of the load current below the minimum rated current in a burst mode. The burst mode may include at least one burst mode period that comprises a first time period associated with an active state and a second time period associated with an inactive state. During the burst mode, the method may include regulating a peak magnitude of the load current towards the minimum rated current during the active state, and stopping the generation of at least one drive signal during the inactive state to control the average magnitude of the load current to be less than the minimum rated current.
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公开(公告)号:US20160113086A1
公开(公告)日:2016-04-21
申请号:US14974853
申请日:2015-12-18
Applicant: Lutron Electronics Co., Inc.
Inventor: Venkatesh Chitta , Jeffrey S. Hayes , Robert D. Stevens, JR.
IPC: H05B33/08
CPC classification number: H05B33/0818 , H02M1/08 , H02M3/33507 , H02M3/33569 , H02M2001/0009 , H02M2001/0035 , H02M2001/0058 , H05B33/08 , H05B33/0812 , H05B33/0815 , H05B33/0851 , H05B33/089 , Y02B70/1491 , Y02B70/16
Abstract: A load control device for controlling the amount of power delivered to an electrical load is able to operate in a burst mode to adjust the amount of power delivered to the electrical load to low levels. The load control device comprises a control circuit that operates in a normal mode to regulate an average magnitude of a load current conducted through the load to a target load current that ranges from a maximum rated current to a minimum rated current. The control circuit operates in the burst mode to regulate the average magnitude of the load current below the minimum rated current. During the burst mode, the control circuit regulates a peak magnitude of the load current to the minimum rated current during a first time period, and stops regulating the load current during a second time period, such that the average magnitude of the load current is below the minimum rated current.
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公开(公告)号:US10375781B2
公开(公告)日:2019-08-06
申请号:US16179774
申请日:2018-11-02
Applicant: Lutron Electronics Co., Inc.
Inventor: Venkatesh Chitta , Jeffrey S. Hayes , Robert D. Stevens, Jr.
Abstract: A method for controlling an amount of power delivered to an electrical load includes controlling an average magnitude of a load current towards a target load current that ranges from a maximum rated current to a minimum rated current in a normal mode, and controlling the average magnitude of the load current below the minimum rated current in a burst mode. The burst mode includes at least one burst mode period that comprises a first time period associated with an active state and a second time period associated with an inactive state. During the burst mode, the method includes regulating a peak magnitude of the load current towards the minimum rated current during the active state, and stopping the generation of at least one drive signal during the inactive state to control the average magnitude of the load current to be less than the minimum rated current.
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公开(公告)号:US10219359B2
公开(公告)日:2019-02-26
申请号:US15789666
申请日:2017-10-20
Applicant: Lutron Electronics Co., Inc.
Inventor: Matthew V. Harte , Jeffrey S. Hayes , Stephen M. Ludwig, Jr. , Robert C. Newman, Jr. , Jaykrishna A. Shukla
Abstract: A remote control device may provide a retrofit solution for an existing switched control system. The remote control device may comprise a control circuit, a rotatable portion, a magnetic ring coupled to the rotatable portion, and first and second Hall-effect sensor circuits configured to generate respective first and second sensor control signals in response to magnetic fields generated by the magnetic elements. The control circuit may operate in a normal mode when the rotatable portion is being rotated, and in a reduced-power mode when the rotatable portion is not being rotated. The control circuit may disable the second Hall-effect sensor circuit in the reduced-power mode. The control circuit may detect movement of the rotatable portion in response to the first sensor control signal in the reduced-power mode and enable the second Hall-effect sensor circuit in response to detecting movement of the rotatable portion.
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