Foldable power strip
09843149 · 2017-12-12
Assignee
Inventors
Cpc classification
International classification
H01R25/00
ELECTRICITY
H01R27/02
ELECTRICITY
H01R31/00
ELECTRICITY
H01R33/00
ELECTRICITY
Abstract
A foldable power strip having a pair of housing members having one or more outlets thereon and being rotationally connected together about a hinge or vertical axis. A power cord housing is also connected about the hinge or vertical axis to permit the housing members and power cord to be independently rotated relative to one another. The inside walls of the housing members may include side members that define a recess for receiving and protecting the power cord when the housing members are in the closed position.
Claims
1. A foldable power strip comprising: a first power strip housing member having at least one outlet and a pivotable connector for rotating about a vertical axis; a second power strip housing member having at least one outlet and a pivotable connector for rotating about the vertical axis, the power strip housing members rotated between a fully open and a closed position; a power cord; and a power cord connector for rotationally connecting the power cord about the vertical axis relative to the first and second power strip housing members, the power cord extending in between the power strip housing members in the closed position; wherein the first power strip housing member, the second power strip housing member and the power cord connector are all independently rotatable relative to one another about the vertical axis.
2. The foldable power strip of claim 1 wherein the power cord connector comprises an annular ring and a tubular member extending therefrom.
3. The foldable power strip of claim 1 wherein the first and second housing members are rotated through a series of set positions.
4. The foldable power strip of claim 3 wherein the set positions are 12.5 degrees apart.
5. The foldable power strip of claim 1 wherein each of the first and second housing members comprises at least two outlets.
6. The foldable power strip of claim 1 wherein the power cord comprises a live wire, a neutral wire and a ground wire and wherein the foldable power strip further comprises three terminal connectors having an input for receiving the live, neutral and ground wires and a first output for connecting to the at least one outlet of the first power strip housing member and a second output for connecting to the at least one outlet of the second power strip housing member.
7. The foldable power strip of claim 6 wherein the terminal connectors are vertically stacked relative to one another and which further comprises an insulator positioned between adjacent terminal connectors.
8. A foldable power strip comprising: a first power strip housing member having at least one outlet and a pivotable connector for rotating about a vertical axis; a second power strip housing member having at least one outlet and a pivotable connector for rotating about the vertical axis; a power cord; and a power cord connector for rotationally connecting the power cord about the vertical axis relative to the first and second power strip housing members; wherein the first and second power strip housing members further comprise inside walls and side members extending from the inside walls to define a passageway for retaining the power cord between the housing members when the housing members are in the closed position; wherein the first power strip housing member, the second power strip housing member and the power cord connector are all independently rotatable relative to one another about the vertical axis; and wherein the first and second housing members are rotated between a fully open and a closed position.
9. A foldable power strip comprising: a first power strip housing member having at least one outlet and a pivotable connector for rotating about a vertical axis; a second power strip housing member having at least one outlet and a pivotable connector for rotating about the vertical axis, the first and second power strip housing members rotated between an open and a closed position and wherein the first and second power strip housing members further comprise inside walls with side members extending from the insides walls to define a passageway; a power cord; and a power cord connector for rotationally connecting the power cord about the vertical axis relative to the first and second power strip housing members, the power cord connector comprising an annular ring and a tubular member extending therefrom; wherein the first power strip housing member, the second power strip housing member and the power cord connector are all independently rotatable relative to one another about the vertical axis; and wherein the power cord may be retained within the passageway when the first and second housing members are rotated into the closed position.
10. The foldable power strip of claim 9 wherein the first and second housing members are rotated through a series of set positions.
11. The foldable power strip of claim 10 wherein the set positions are 12.5 degrees apart.
12. The foldable power strip of claim 9 wherein each of the first and second housing members comprises at least two outlets.
13. The foldable power strip of claim 9 wherein the power cord comprises a live wire, a neutral wire and a ground wire and wherein the foldable power strip further comprises three terminal connectors having an input for receiving the live, neutral and ground wires and a first output for connecting to the at least one outlet of the first power strip housing member and a second output for connecting to the at least one outlet of the second power strip housing member.
14. The foldable power strip of claim 13 wherein the terminal connectors are vertically stacked relative to one another and which further comprises an insulator positioned between adjacent terminal connectors.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(8) While this invention is susceptible of embodiment in many different forms, there is shown in the drawings and will herein be described in detail several specific embodiments, with the understanding that the present disclosure is to be considered merely an exemplification of the principles of the invention and the application is limited only to the appended claims.
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(10) Each of the housing members 12, 14 includes a lower portion 16 and an upper portion 18 that may be attached to one another to form the housing. The lower and upper portions may be made out of a variety of materials including, but not limited to, Acrylonitrile Butadiene Styrene (“ABS”). Referring to
(11) The upper portions 18 include a series of slots 38 and holes 36 for receiving one or more female plugs for electrical devices or appliances. While the power strip shown in the drawings is capable of receiving five 3-prong plugs (three on the first housing member and two on the second housing member), it is appreciated that the power strip may accommodate a different number of and/or types of plugs and not depart from the scope of the present invention.
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(13) Referring now to
(14) In order to help protect against children sticking objects within the sockets, the sockets may be tamper resistant. For example, referring to
(15) The power strip 10 may include a buzzer 100 such as a piezo electric buzzer that can provide an auditory warning for unsafe conditions such as, but not limited to, the power strip 10 not being properly grounded. If a buzzer 100 is utilized, a speaker cover 102 may be used to allow the buzzer 100 to be readily heard outside the power strip 10. In one embodiment, the speaker for the buzzer may produce audible sound in the range of 68-74 decibels. The power strip 10 may also include one or more lights 104 visible from the outside of the power strip housing members 12, 14 to provide information on the status of the power strip 10 and the sockets or outlets 80. For example, 3-5 mm green light emitting diodes (“LEDs”) may be used to indicate that power is flowing to a particular outlet, while 3-5 mm red LEDs may be used to warn of potential dangers.
(16) The lower portions 16 and upper portions 18 of the first and second housing members 12, 14 includes circular connectors 110, 112 about adjacent corners to allow the housing members 12, 14 to be rotationally moved relative to one another about a hinge or vertical axis 120. In one embodiment, the circular connector 110, 112 of one of the lower portions 16 and upper portions 18 may include a raised wall 114 that is sized to fit in the opening 116 defined by the other of the circular connector 110, 112 to allow the connectors to be attached to one another. A series of circumferentially spaced-apart nodes 130 or other raised surfaces may be located on one of the outer side of the raised inner wall 114 and the respective inner wall 122 of the other of the circular connectors 110, 112 that may engage detents, slots or other openings or members 132 on the other of the circular connector 110, 112 to permit the housing members 12, 14 to be selectively rotated through and maintained in a series of specific angular positions (e.g., every 12.5 degrees between 0 and 180 degrees).
(17) Referring to
(18) Caps or covers 190, 192 may be placed on the bottom and top of the circular connectors 110, 112 to protect the wires and internal components of the power strip. Side members 200 may be attached or extend from the inside walls 210 of the lower and upper members 16, 18 of the first and second housing members 12, 14. Each of the side members 200 includes support members 202 that have a concave or arcuate surface 204 that are aligned with corresponding support members 202 on the other of the upper or lower housing members 16, 18 to define a recess or groove for receiving the power cord 150 when the first and second housing members 12, 14 are rotated into the closed position.
(19) An electrical schematic diagram of a power strip of the present invention is shown in
(20) Output 301 of breaker switch 300 is coupled to the live terminals of each socket 80, and to the live inputs of line conditioner 310 and buzzer controller 320. Neutral conductor 152n is coupled to the neutral terminals of each socket 80, and to the neutral inputs of line conditioner 310 and buzzer controller 320. Ground conductor 152g is coupled to the ground terminals of each socket 80.
(21) Line conditioner 110 may include conventional surge suppression and/or Electromagnetic interference/radio frequency interference (“EMI/RFI”) filtering circuitry, to protect electrical appliances, equipment or devices plugged into any of sockets 80 from anomalies in the source power received by power cord 150. Buzzer controller 320 may include sensors to detect one or more alarm conditions. Upon the detection of such a condition, buzzer controller activates buzzer 100, which may be, for example, a piezoelectric speaker, via conductors 321 and 322. In one embodiment of the invention, buzzer controller 320 may include a sensor disposed within or proximate the male plug of power cord 150, sensing an improperly grounded power connection. In another embodiment of the invention, buzzer controller 320 may include a sensor disposed within or proximate the male plug of power cord 150, sensing excess heat proximate the male plug of the power cord in excess of a predetermined alarm threshold, such as, for example, approximately 125° Fahrenheit. Regardless of the type of abnormal condition sensed, the sensing of an abnormal condition by buzzer controller 320 will cause activation of buzzer 100 via conductors 321 and 322. Buzzer controller may cause buzzer 100 to emit a continuous sound upon the detection of an alarm condition. Alternatively, buzzer controller may cause buzzer 100 to be activated in a pulsed manner, or in a manner that rises, falls, or alternates in frequency. Furthermore, buzzer 100 may instead be a higher fidelity speaker, and buzzer controller may include a voice synthesizer or stored speech, enabling one or more spoken warnings to be emitted upon the detection of an alarm condition.
(22) In operation, the housing members 12, 14 and power cord assembly 140 may be rotated independent of one another about the vertical axis 120 to allow them to be positioned in a variety of positions relative to one another to allow the power strip 10 to be adjusted for more efficient use in a variety of locations. When the power strip 10 is in the fully closed or folded position, the power cord 150 will extend along the length of the inside walls 210 of the power strip housing members 12, 14 and be retained therein through support members 202 to protect the power cord housing 142 during use.
(23) It will be understood that modifications and variations may be effected without departing from the spirit and scope of the present invention. It will be appreciated that the present disclosure is intended as an exemplification of the invention and is not intended to limit the invention to the specific embodiment illustrated and described. The disclosure is intended to cover, by the appended claims, all such modifications as fall within the scope of the claims.