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US20140070613A1 - Electric power supply and related methods - Google Patents

Electric power supply and related methods
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Publication number
US20140070613A1
US20140070613A1US14/081,143US201314081143AUS2014070613A1US 20140070613 A1US20140070613 A1US 20140070613A1US 201314081143 AUS201314081143 AUS 201314081143AUS 2014070613 A1US2014070613 A1US 2014070613A1
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United States
Prior art keywords
module
coupled
electrical
power
node
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US14/081,143
Inventor
Jeffrey W. Garb
Matthew S. Reynolds
Timothy Brewer
Joshua Seal
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Belkin International Inc
Original Assignee
Belkin International Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from PCT/US2009/041476external-prioritypatent/WO2009132160A1/en
Priority claimed from PCT/US2011/020286external-prioritypatent/WO2011085048A1/en
Application filed by Belkin International IncfiledCriticalBelkin International Inc
Priority to US14/081,143priorityCriticalpatent/US20140070613A1/en
Assigned to BELKIN INTERNATIONAL, INC.reassignmentBELKIN INTERNATIONAL, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: REYNOLDS, MATTHEW S., BREWER, TIMOTHY, GARB, JEFFREY W., SEAL, JOSHUA
Assigned to WELLS FARGO BANK, NATIONAL ASSOCIATION, AS AGENTreassignmentWELLS FARGO BANK, NATIONAL ASSOCIATION, AS AGENTSUPPLEMENT NO. 9 TO PATENT SECURITY AGREEMENTAssignors: BELKIN INTERNATIONAL, INC.
Publication of US20140070613A1publicationCriticalpatent/US20140070613A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

Electric power supplies are described herein. Other examples, systems, and related methods are also disclosed herein.

Description

Claims (22)

1. An electrical system comprising:
an electrical input module configured to receive input electricity;
an electrical output module configured to provide output electricity;
a switch module coupled to the electrical input module;
a startup module coupled to the switch module; and
a power conservation module coupled to the switch module;
wherein:
the electrical system is powered by operational electricity derived from the input electricity;
the electrical system is configured to operate in:
a startup state; and
a run state following the startup state;
during the startup state, the switch module couples the electrical input module to the startup module;
during the run state, the switch module couples the electrical input module to the power conservation module and to the electrical output module; and
the operational electricity is greater during the startup state than during the run state.
4. The electrical system ofclaim 2, further comprising:
a toggle module coupled to the standby actuator and configured to output a toggle signal;
wherein:
the standby actuator is configurable between:
a default condition; and
an actuated condition;
if the electrical system is in the standby state:
the default condition of the standby actuator is configured to:
maintain the electrical input module electrically isolated from at least one of the startup module or the power conservation module;
if the electrical system is in the run state and the standby actuator is in the default condition:
an electrical path exists between the electrical input module and the toggle module;
and
if the electrical system is in the run state and the standby actuator is set to actuated condition:
the electrical path between the electrical input module and the toggle module is decoupled to interrupt the toggle signal for toggling the electrical system from the run state to the standby state.
14. A method for providing an electrical system, the method comprising:
providing an electrical input module configured to receive input electricity;
providing an electrical output module configured to provide output electricity;
providing a switch module coupled to the electrical input module;
providing a startup module coupled to the switch module; and
providing a power conservation module coupled to the switch module;
wherein:
the electrical system is configured to be powered by operational electricity derived from the input electricity;
the electrical system is configurable to:
a startup state; and
a run state following the startup state;
the switch module is configured to couple the electrical input module to the startup module during the startup state;
the switch module is configured to couple the electrical input module to the power conservation module and to the electrical output module during the run state; and
the electrical system is configured such that the operational electricity is greater during the startup state than during the run state.
16. The method ofclaim 15, further comprising:
providing a toggle module coupled to the standby actuator and configured to output a toggle signal;
wherein:
the standby actuator is configurable between:
a default condition; and
an actuated condition;
if the electrical system is in the startup state:
the electrical input module is:
coupled to the startup module via the switch module; and
decoupled from the electrical output module;
and
the operational electricity is routed through the startup module;
if the electrical system is the run state:
the electrical input module is:
coupled to the power conservation module via the switch module; and
coupled to the electrical output module;
and
the operational electricity is routed through the power conservation module;
if the electrical system is in the standby state:
the default condition of the standby actuator is configured to:
maintain the electrical input module electrically isolated from at least one of the startup module or the power conservation module;
if the electrical system is in the run state and the standby actuator is in the default condition:
an electrical path exists between the electrical input module and the toggle module;
and
if the electrical system is in the run state and the standby actuator is set to the actuated condition:
the electrical path between the electrical input module and the toggle module is decoupled to interrupt the toggle signal for toggling the electrical system from the run state to the standby state.
18. The method system ofclaim 15, further comprising:
providing a toggle module coupled to the standby actuator and configured to output a toggle signal; and
providing an electricity-supply module configured to generate a DC voltage;
wherein:
the standby actuator comprises:
a first standby actuator terminal coupled to the startup module;
a second standby actuator terminal coupled to the switch module; and
a third standby actuator terminal coupled to the toggle module;
the standby actuator is configurable between:
a default condition comprising the first standby actuator terminal coupled to the third standby actuator terminal; and
an actuated condition comprising the first standby actuator terminal coupled to the second standby actuator terminal;
the startup module is coupled between the first standby actuator terminal and the electricity-supply module;
the power conservation module is coupled between the switch module and the electricity-supply module;
the electricity-supply module is configured to receive, via the power conservation module, at least a portion of the input electricity to generate the operational electricity therefrom;
the switch module comprises:
a relay comprising:
a first relay terminal coupled to the electrical input module;
a second relay terminal coupled to the standby actuator; and
a third relay terminal coupled to the power conservation module and to the electrical output module;
the switch module is configurable between:
a switch first condition comprising the first relay terminal coupled to the second relay terminal; and
a switch second condition comprising the first relay terminal coupled to the third relay terminal;
when the electrical system is in either of the standby state or the startup state, the switch module is in the switch first condition; and
when the electrical system is in the run state, the switch module is in the switch second condition.
20. An electrical system comprising:
a power supply circuit, the power supply circuit being configured to receive an input AC power signal and to condition the input AC power signal to produce an output AC power signal;
a control circuit coupled to the power supply circuit, the control circuit comprising a switching circuit, and the switching circuit comprising a first switched state and a second switched state;
a command input device coupled to the power supply circuit and the control circuit; and
a controlled electrical outlet selectively electrically coupled with the control circuit by the switching circuit;
wherein:
the power supply circuit is further configured:
(i) to produce a first DC power signal,
(ii) to produce a second DC power signal, the first DC power signal being higher than the second DC power signal,
(iii) to electrically power at least part of the control circuit with the first DC power signal,
(iv) to electrically power at least part of the command input device with the second DC power signal, and
(v) to provide the output AC power signal to the control circuit;
the control circuit is configured (a) to provide the output AC power signal to the controlled electrical outlet when the switching circuit is configured in the first switched state and (b) to withhold the output AC power signal from the controlled electrical outlet when the switching circuit is configured in the second switched state; and
the command input device is configured to determine when the switching circuit is configured in the first switched state and when the switching circuit is configured in the second switched state.
US14/081,1432008-04-222013-11-15Electric power supply and related methodsAbandonedUS20140070613A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US14/081,143US20140070613A1 (en)2008-04-222013-11-15Electric power supply and related methods

Applications Claiming Priority (10)

Application NumberPriority DateFiling DateTitle
US4707008P2008-04-222008-04-22
US15546809P2009-02-252009-02-25
PCT/US2009/041476WO2009132160A1 (en)2008-04-222009-04-22Improved power supply
US12/428,468US8232683B2 (en)2008-04-222009-04-22Relocatable power tap
US29249010P2010-01-052010-01-05
PCT/US2011/020286WO2011085048A1 (en)2010-01-052011-01-05Improved power supply and method related thereto
US12/985,339US8890372B2 (en)2010-01-052011-01-05Power supply and method related thereto
US201161498807P2011-06-202011-06-20
US13/528,791US8587148B2 (en)2008-04-222012-06-20Electric power supply and related methods
US14/081,143US20140070613A1 (en)2008-04-222013-11-15Electric power supply and related methods

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
US13/528,791ContinuationUS8587148B2 (en)2008-04-222012-06-20Electric power supply and related methods

Publications (1)

Publication NumberPublication Date
US20140070613A1true US20140070613A1 (en)2014-03-13

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US13/528,791Expired - Fee RelatedUS8587148B2 (en)2008-04-222012-06-20Electric power supply and related methods
US14/081,143AbandonedUS20140070613A1 (en)2008-04-222013-11-15Electric power supply and related methods

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US13/528,791Expired - Fee RelatedUS8587148B2 (en)2008-04-222012-06-20Electric power supply and related methods

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WO (1)WO2012177810A2 (en)

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US8587148B2 (en)2013-11-19
WO2012177810A3 (en)2013-02-28
US20120293153A1 (en)2012-11-22

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