The present disclosure relates to a portable power supply, and, in particular, a portable power supply with an outlet panel that is removable.
A portable power supply may include many different types of electrical outlets for connecting a variety of connectors of power cords. The connector type used by a specific power tool or light equipment apparatus often depends on the region in the world in which the tool is sold. The present disclosure provides a power supply to which an outlet panel with an appropriate electrical outlet can be removably connected.
The disclosure provides, in one aspect, a portable power supply with a removable outlet panel connected thereto. The portable power supply has a housing with a recess and a cavity. Inside the cavity are a plurality of battery cells. An electrical sensor is electrically coupled to the battery cells. An inverter is also disposed in the cavity and is electrically connected to the battery cells. A receptacle is also disposed in the housing and electrically coupled to the battery cells. An outlet panel with an outlet is electrically coupled to the inverter, with the outlet panel being removably coupled to the housing. The outlet panel covers a majority of the recess and detects the sensor. Also disposed in the housing is a junction box that has a recess and perimeter.
The disclosure provides, in another aspect, a portable power supply to which a removable outlet panel can be connected. The portable power supply has a housing with a cavity, a junction box, and a receptacle. The junction box has a plurality of walls that define a recess, and a hole is defined in at least one of the walls that allows fluid communication between the recess and the cavity. A plurality of batteries are disposed in the cavity. A sensor adjacent at least one of the walls of the junction box is electrically coupled to the plurality of battery cells. The receptacle is electrically coupled to the battery cells. An inverter is also disposed in the cavity and is electrically coupled to the battery cells.
The disclosure provides, in another aspect, a portable power supply with a removable outlet panel connected thereto. The portable power supply includes a housing, a plurality of battery cells, an inverter, a junction box, and removable outlet panel, a plurality of wires, a display, and a frame. The housing defines a cavity. The battery cells are disposed in the cavity. An inverter is also disposed in the cavity and is electrically coupled to the plurality of battery cells. The junction box has a plurality of walls with a hole in at least one of the walls. The walls define a recess. The hole fluidly communicates the recess of the junction box with the cavity. The removable outlet panel is removably connected to the junction box by a plurality of fasteners. A plurality of wires electrically couple the outlet panel to the inverter. The frame surrounds the housing.
Other features and aspects of the disclosure will become apparent by consideration of the detailed description and accompanying drawings.
Before any embodiments of the disclosure are explained in detail, it is to be understood that the subject matter is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the following drawings. The subject matter is capable of other embodiments and of being practiced or of being carried out in various ways. Also, it is to be understood that the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting.
A sensor 34 is electrically coupled to the battery cells 30. As illustrated in
An inverter 38 is also disposed in the cavity 26 of the housing 18. The inverter 38 is electrically coupled to the plurality of battery cells 30 for converting the direct current provided by the battery cells 30 to an alternating current that can be used to operate AC-powered tools that would typically require a connection to a mains electric power supply.
The modular outlet panel 14 is removably coupled to the housing 18. In the present embodiment as illustrated in
Returning to
The portable power supply 10 may also include a USB outlet 68, disposed in the housing 18. The USB outlet 68 is connected to the battery cells 30 and can provide DC power to a device, such as a cellular phone, an auxiliary battery charger, or the like when connected to the USB outlet 68. The portable power supply 10 can provide DC power to the USB outlet 68 while concurrently providing AC power to the modular outlet panel 14.
With reference now to
With reference to
With reference now to
A plurality of battery cells 30 is also disposed in the cavity 26 of the housing 18. The battery cells 30 are capable of being recharged when the amount of power the battery cells 30 can provide is depleted. The housing 18 includes a receptacle 32 to which an external power supply such as mains electric power could be connected. The receptacle 32 is electrically coupled to the battery cells 30 to charge the battery cells 30.
An inverter 38 is disposed in the cavity 26 and is coupled to the housing 18. The inverter 38 is electrically coupled to the plurality of battery cells 30. The inverter 38 converts the direct current supplied by the battery cells 30 to an alternating current that can be used to power AC tools such as a corded drill that typically relies on power from mains power from a standard electrical outlet found in a house or business. The inverter 38 may be provided with a plurality of wires 50 for connection to an outlet panel 14 that may be removably connected to the housing 18 of the portable power supply 10.
A sensor 34 is electrically coupled to the battery cells 30. The sensor 34 is disposed adjacent at least one of the plurality of walls 92. In the present embodiment, the sensor 34 is located below and adjacent the lower wall 92a of the junction box 54, approximately equidistant the two vertical side walls 92b, 92c. The sensor 34 may be connected to the junction box 54, housing 18, or another appropriate location.
The sensor 34 may detect the presence or absence of a modular outlet panel 14. When the outlet panel 14 is not attached to the housing 18, the sensor 34 does not provide a signal to indicate the outlet panel 14 is present. When no signal is provided, electrical power is not provided to the plurality of wires 50 that could attach to an outlet panel 14. The housing 18 or junction box 54 may include an aperture 78 through which a boss 70 on an outlet panel 14 may protrude for detecting the sensor 34. A sensor 34 disposed adjacent the aperture 78 may be detected by the boss 70. Activation of the sensor 34 provides a signal indicating the presence of an outlet panel 14. The sensor 34 may be a mechanical switch, with a base 82 and a switch arm 86. The sensor 34 is provides an electrical signal when the switch arm 86 is depressed by the boss 70.
With reference to
Disposed in the cavity 26 are a plurality of battery cells 30. The battery cells 30 are capable of being recharged by an external power source, such as an extension cord from an electrical outlet providing mains power. The battery cells 30 may be lithium ion battery cells or another appropriate battery cell construction that is capable of being recharged.
An inverter 38 is also disposed in the cavity 26. The inverter 38 is electrically coupled to the plurality of battery cells 30. Power is provided from the battery cells 30 to the inverter 38. The power from the battery cells 30 is provided as a direct current, which the inverter 38 converts to an alternating current for use by AC powered tools or other equipment that can be plugged into an outlet 46.
The portable power supply 10 also includes a junction box 54. The junction box 54 has a plurality of walls 92 that define a recess 58. A hole 56 is provided in at least one of the plurality of walls 92. The hole 56 allows fluid communication between the recess 58 and the cavity 26. The junction box 54 may be made of a metallic material, durable plastic, or the like.
The portable power supply 10 also includes an outlet panel 14. The outlet panel 14 is electrically coupled to the plurality of battery cells 30. The outlet panel 14 is removably coupled to the junction box 54 by a plurality of fasteners 42. The fasteners 42 may be screws, bolts, or the like, which correspond with a plurality of fastening locations 66 in the junction box 54. The present embodiment includes ten fasteners 42 to removably connect the outlet panel 14 to the junction box 54, but another quantity that sufficiently secures the outlet panel 14 can be used.
The outlet panel 14 may include at least one outlet 46 to which a power tool or other electrically powered device can be connected. The outlet 46 may be a NEMA outlet 46 such as a NEMA 5-15R outlet commonly found in residential and commercial settings in the United States. Other NEMA standard compliant outlets commonly found in the United States may also be used. Alternatively, outlets 46 that are common in other regions of the world, such as a CEE 7/3 outlet, may be used as well. The outlet panel 14 could also include different outlets 46, such as an outlet with a maximum current rating of fifteen amps and another outlet having a maximum current rating of twenty amps. The outlet 46 is coupled to the outlet panel 14 by screws, clips, or other joining methods.
The portable power supply 10 also includes a plurality of wires 50 that electrically couple the outlet panel 14 to the plurality of battery cells 30. The plurality of wires 50 are connected to the outlet panel 14 at a screw terminal 52 of the outlet 46. The plurality of wires 50 electrically couple the outlet panel 14 to the battery cells 30 via the inverter 38. A grommet may be coupled to the hole 56 of the junction box 54. The grommet provides an interface at the hole 56, through which a wire or plurality of wires 50 could be fed for electrically coupling the inverter 38 with the outlet panel 14. The plurality of wires 50 extend from the inverter 38 in the cavity 26 and pass through the hole 56 in the junction box 54, with an interface through the grommet, and extend through the recess 58 of the junction box 54. When the modular outlet panel 14 is installed, additional length of the plurality of wires 50 may be disposed in the cavity 26 or may be disposed in the recess 58 of the junction box 54 behind the outlet panel 14.
Surrounding the housing 18 of the portable power supply 10 is a frame 100. The frame 100 consists of rectangular or circular tubular members. It may consist of a plurality of members that are welded together to form a single, tubular structure. Alternatively, the tubular members may be connected by threaded fasteners, rivets, or other appropriate joining techniques. The frame 100 is coupled to the housing 18 such that it at least partially surrounds the housing 18 and provides support and protection for the housing 18. The frame 100 may have a plurality of elastomeric members 104 attached thereto for providing a reduced-skid interface. The elastomeric members may be attached to the bottom of the frame 100. The frame 100 is connected to the housing 18 by threaded fasteners or other joining members.
This application claims priority to co-pending U.S. Provisional Patent Application No. 63/257,644, filed on Oct. 20, 2021, the entire contents of which are incorporated herein by reference.
Number | Date | Country | |
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63257644 | Oct 2021 | US |