Portable power distribution unit for 400 hertz power
10938171 ยท 2021-03-02
Assignee
Inventors
Cpc classification
H01R31/08
ELECTRICITY
H01R13/53
ELECTRICITY
F42B35/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A portable power distribution unit for safely distributing high wattage power supplied from mobile generators to lower power test adapter units and systems. Embodiments disclosed include a structurally rigid housing shaped to facilitate secure holding by an operator's foot, a 400 Hz power connector adapted for connection to a mobile power generator, a circuit breaker matched to the rating of the system to be powered and connections for conversion of the six-pin output from the mobile generator to a three or four-pin input for the system to be powered.
Claims
1. A portable power distribution unit for distributing 3-phase, 400 Hz power from high wattage generators to low power equipment, comprising: a structurally ridged housing having a step portion defining an area configured to receive and support the force of an operator's foot to firmly secure the housing against the ground or other support surface and a 400 Hz power connection receptacle portion defining an opening configured to receive a 400 Hz power connector therein; a high wattage, 3-phase, 400 Hz, six-pin, male power connector mounted in the receptacle portion opening; a low wattage power receptacle extending from the housing for connection to low power equipment; and 30 amp or lower circuit breaker disposed in said housing, said circuit breaker being electrically connected between said high wattage, 3-phase, 400 Hz power connector and said low wattage power receptacle.
2. The portable power distribution unit of claim 1, wherein said low wattage power receptacle comprises a four-pin, 3-phase receptacle electrically connected through said circuit breaker to four pins of said six-pin male power connector, and two pins of said six-pin power connector are connected in an electrical loop within said housing.
3. The portable power distribution unit of claim 1, wherein said low wattage power receptacle comprises a three-pin receptacle electrically connected through said circuit breaker to three pins of said six-pin male power connector.
4. The portable power distribution unit of claim 1, wherein said receptacle portion extends above said step portion and said receptacle portion defines an upwardly extending side wall providing a raised edge on an inner side of said step portion.
5. The portable power distribution unit of claim 1, wherein said low wattage receptacle is disposed on a cable extending from said housing.
6. The portable power distribution unit of claim 1, further comprising a protective rubber coating surrounding the structurally rigid housing.
7. The portable power distribution unit of claim 1, further comprising a handle extending from one side of said housing.
8. The portable power distribution unit of claim 1, further comprising a cable connectable between the low power receptacle and the low power equipment.
9. The portable power distribution unit of claim 1, wherein said housing and low power receptacle together are configured to be contained within a space envelope approximately 8 inches wide and 10 inches deep.
10. A portable power distribution unit for distributing 3-phase, 400 Hz power from high wattage generators to equipment with low power requirements, comprising: a structurally ridged housing having a step portion defining an area configured to receive and support the force of an operator's foot to firmly secure the housing against the ground or other support surface and a 400 Hz power connection receptacle portion defining an opening configured to receive a 400 Hz power connector therein; a high wattage, 3-phase, 400 Hz, six-pin, male power connector mounted in the receptacle portion opening, and wherein two of said six pins are connected in an electrical loop within said housing; a 3-phase, four-line circuit breaker disposed in said housing, wherein each line of the circuit breaker is electrically connected to one pin of said 400 Hz power connector; and a low wattage, four-line, power receptacle connected to said circuit breaker opposite said high wattage 400 Hz connector and extending from the housing for connection to low power equipment.
11. The portable power distribution unit of claim 10, wherein said receptacle portion extends above said step portion and said receptacle portion defines an upwardly extending side wall providing a raised edge on an inner side of said step portion.
12. The portable power distribution unit of claim 10, wherein said circuit breaker is rated at about 20-30 amps.
13. The portable power distribution unit of claim 10, wherein said circuit breaker is disposed within a circuit breaker housing within the structurally ridged housing.
14. The portable power distribution unit of claim 13, wherein said circuit breaker housing is integrated into the structurally ridged housing.
15. A portable power distribution unit for distributing 3-phase, 400 Hz power from high wattage generators to equipment with low power requirements, comprising: a structurally ridged housing having an upper surface with a lower step portion and an upper connection receptacle portion, wherein said lower step portion defines an area bounded by a raised edge on one side configured to receive and support the force of an operator's foot to firmly secure the housing against the ground or other support surface, and wherein the connection receptacle portion defines an opening configured to receive a 400 Hz power connector therein, said receptacle portion extending above said step portion with an upwardly extending side wall defining said raised edge on an inner side of said step portion; a high wattage, 3-phase, 400 Hz, six-pin, male power connector mounted in the receptacle portion opening, and wherein two of said six pins are connected in an electrical loop within said housing; a 3-phase, four-line, 20-30 amp circuit breaker disposed in said housing, wherein each line of the circuit breaker is electrically connected to one pin of said 400 Hz power connector, one said line being an unbroken ground connection line; and a 3-phase, 20-30 amp rated power receptacle disposed on a cable extending from the structurally ridged housing connected to the four lines of said circuit breaker opposite said high wattage 400 Hz connector.
16. The portable power distribution unit of claim 15, wherein said circuit breaker is disposed within a circuit breaker housing within the structurally ridged housing.
17. The portable power distribution unit of claim 16, wherein said circuit breaker housing is integrated into the structurally ridged housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For the purpose of illustrating the present disclosure, the drawings show aspects of one or more embodiments. However, it should be understood that the present disclosure is not limited to the precise arrangements and instrumentalities shown in the drawings, wherein:
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DETAILED DESCRIPTION
(6) In the following description, references are made to illustrative embodiments for carrying out inventions as defined in the appended claims. It is understood that other embodiments may be utilized without departing from the scope of invention defined in the claims. For purposes of clarity, the same reference numbers are used in the drawings to identify similar elements. Unless otherwise indicated, drawing elements are not shown to scale.
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(8) Because in this example input connector 108 includes six conductors, whereas output connector 110 includes only four conductors, two of the input conductors (E, F) are looped within PDU housing 104. Selection of conductors A, B and C for connection through to connector 110 provides for 115 VAC power from the 72 kW power source. The neutral conductor (N) passes through without being broken by the circuit breaker switches. In one embodiment, circuit breaker 106 may comprise a magnetic breaker so as not to be subject to overheating and may be rated at between 15-30 amps. In a more specific embodiment, circuit breaker 106 is rated at 20 amps.
(9) An example of a system for mobile testing or programing operations utilizing an embodiment of PDU 100 is schematically depicted in
(10) Referring to
(11) As previously mentioned, due to the insertion force required by specifications for 400 Hz six-pin connectors, the male and female halves of such connectors can be very difficult to separate. This is especially true when one-half of the connector is not fixed to a substantial structure, such as an aircraft. In order to provide support for insertion and separation, housing 104 has a lower portion/step area 112 on its upper surface to facilitate an operator placing a foot on the top of the PDU while it is resting securely on the ground or other substantial flat surface. Male 400 Hz connector 108 is positioned in an opening 120 defined in an upper, raised portion 122 of housing 104. Side wall 124 of upper portion 122 faces lower portion 112 and creates an effective edge to assist the operation in locating a foot on lower portion 112. Raised portion 122 also protects the pins of connector 108 and creates a receptacle for insertion of the female 400 Hz connector. If needed, a second operator can plug the female connector-half of supply cable 16 (
(12) In certain applications, the size of PDU 100 may be important or specific sizes may be required by specification. In one embodiment, PDU 100 is designed to fit in a space envelop approximately 8 inches wide and 10 inches deep. Example dimensions for such an embodiment of PDU 100 that is so designed are shown below in Table I.
(13) TABLE-US-00001 TABLE I Example Dimensions (approximate) A 5.75 B 8.00 C 4.38 D 2.38
Also, handle 114 (
(14) Embodiments of PDU 100 as disclosed herein provide long-needed solutions to the various problems encountered in the past in distributing power from 400 Hz mobile power generators to test adapter units, such as CMBRE units as described above.
(15) Various modifications and additions can be made without departing from the spirit and scope of the inventions defined by the appended claims. Features of each of the various embodiments described above may be combined with features of other described embodiments as appropriate in order to provide a multiplicity of feature combinations in associated new embodiments. Furthermore, while the foregoing describes different features or embodiments, what has been described herein is merely illustrative of the application of the principles of the present disclosure. Additionally, although particular methods herein may be illustrated and/or described as being performed in a specific order, the ordering is highly variable within ordinary skill to achieve aspects of the present disclosure. Accordingly, this description is meant to be taken only by way of example, and not to otherwise limit the scope of the inventions as defined by the claims below.