Power distribution box assembly with terminal tower
10667413 ยท 2020-05-26
Assignee
Inventors
Cpc classification
H05K2201/10272
ELECTRICITY
H01R9/226
ELECTRICITY
H05K5/0052
ELECTRICITY
H05K1/18
ELECTRICITY
B60R16/0238
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60R16/023
PERFORMING OPERATIONS; TRANSPORTING
H05K1/18
ELECTRICITY
Abstract
A power distribution box assembly is provided. The power distribution box assembly includes an upper housing assembly having a top cover and a lower cover having an upper substrate and an upper terminal housing. The lower cover including a pair of gaps. A bottom cover includes a lower terminal housing and a pair of towers, each of the pair of towers having a terminal support disposed on a top surface of the corresponding pair of towers, wherein each of the terminal support is registered to a corresponding one of the pair of gaps. A bus bar assembly is configured to direct power to the upper housing assembly and the bottom cover.
Claims
1. A power distribution box assembly comprising: an upper housing assembly having a top cover and a lower cover having an upper substrate and an upper terminal housing, the lower cover including a pair of gaps; and a bottom cover, the bottom cover having a lower terminal housing and a pair of towers, each of the pair of towers having a terminal support disposed on a top surface of the corresponding pair of towers, wherein each of the terminal support is registered to a corresponding one of the pair of gaps; and wherein the upper terminal housing is disposed between the pair of gaps and the lower terminal housing is disposed between the pair of towers.
2. The power distribution box assembly of claim 1, wherein each of the pair of towers includes a slanted wall.
3. The power distribution box assembly of claim 2, wherein each of the pair of towers includes an outer wall open to an exterior of the bottom cover, the outer wall having a slot extending along a height of the bottom cover, the lower cover including a pair of ribs configured to be seated within each of the slots.
4. The power distribution box assembly of claim 3, further including a lower bus bar, the lower bus bar having a base portion and a pair of prongs, the base portion disposed on a lower substrate of the bottom cover and the pair of prongs are configured to be disposed on a corresponding one of the pair of towers, wherein each of the pair of prongs include an engagement end, each of the engagement ends are mounted on a corresponding one of the pair of terminal supports the lower bus bar providing an electrical path to both the bottom cover and the upper housing assembly.
5. The power distribution box assembly of claim 4, wherein the pair of prongs are angled with respect to the base portion.
6. The power distribution box assembly of claim 5, further including a printed circuit board and a pair of upper bus bars, the printed circuit board mounted to the lower cover and each of the pair of upper bus bars are electrically connected to a corresponding one of the pair of engagement ends of the pair of prongs.
7. The power distribution box assembly of claim 6, wherein the bottom cover is configured to house a connector assembly.
8. The power distribution box assembly of claim 7, wherein the connector assembly is a pair of connector assemblies.
9. The power distribution box of claim 8, wherein a lower bus bar electrically connects the lower terminal housing to an electric component disposed on a bottom surface of the bottom cover.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The embodiments set forth in the drawings are illustrative and exemplary in nature and not intended to limit the subject matter defined by the claims. The following description of the illustrative embodiments can be understood when read in conjunction with the following drawings, where like structure is indicated with like reference numerals and in which:
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(7) Referring generally to the figures, embodiments of the present disclosure directed towards a powered distribution box assembly are provided. The power distribution box assembly may be disposed in an automotive vehicle so as to provide power to various vehicle functions. For instances, the power distribution box assemble may be disposed in an engine bay under a hood of the vehicle so as to distribute power to various vehicle components such as wind shield wipers, head lamps, cameras, side mirrors, and the light.
(8) The power distribution box assembly includes an upper housing assembly and a bottom cover. The upper housing assembly is configured to hold electric components regulating voltage to various vehicle components. The bottom cover is configured to house a connector assembly. The connector assembly is configured to direct power to various vehicle components such as the windshield wipers, side mirror and other various components described above. The bottom cover includes a pair of towers having a terminal support disposed on a top surface of the towers. The upper housing assembly includes a lower cover having an upper substrate and upper terminal housing. The lower cover includes a pair of gaps. The towers are registered to each of the gaps and a lower bus bar is configured to provide power to both the upper housing assembly and the bottom cover. Accordingly, the power distribution box assembly reduces the surface area of the bus bar relative to current power distribution box assemblies and provides electric power to the upper housing assembly and the bottom cover.
(9) With reference now to
(10) The upper housing assembly 12 includes a top cover 16 mounted to a lower cover 18. Conventional fasteners may be disposed on the top cover 16 and the lower cover 18 so as to releasably secure the top cover 16 to the lower cover 18. Any conventional fastener currently used or later developed may be used herein without deviating from the scope of the appended claims.
(11) The upper housing assembly 12 is configured to cover the bottom cover 14. Conventional fasteners may be disposed on the upper housing assembly 12 and the bottom cover 14 so as to releasably secure the upper housing assembly 12 to the bottom cover 14. Any conventional fastener currently used or later developed may be used herein without deviating from the scope of the appended claims. The bottom cover 14 includes a lower terminal housing 20 and the upper housing assembly 12 includes an upper terminal housing 22.
(12) A case 24 is fitted between the top cover 16 and the lower cover 18. The case 24 is configured to hold various electric components for the distribution and regulation of power such as relay switches, fuses, capacitors, and alike. The case 24 may be secured to the lower cover 18 using a conventional threaded stud 26.
(13) The lower cover 18 includes an upper substrate 28 configured to support a printed circuit board 30. For illustrative purposes, the upper terminal housing 22 is shown disposed on the front end of the lower cover 18. The upper terminal housing 22 is illustratively shown as supporting four (4) electric terminals (not shown).
(14) With reference now to
(15) The lower terminal housing 20 is adjacent the bottom storage space 36, separated by a portion of the bottom wall 32. The bottom cover 14 further includes a pair of towers 38. The towers 38 are disposed on opposite sides of the lower terminal housing 20 so as to be generally axially aligned with the lower terminal housing 20. The towers 38 include a back wall 38a. The back wall 38a is illustratively shown as being slanted however, it should be appreciated that the back walls 38a may be orthogonal to the lower substrate 34. The top surface of each of the towers 38 have a U-shaped wall which is open to the back of the lower cover 18 so as to define a terminal support 38b. The terminal support 38b is configured to receive an electric terminal, as illustratively shown in
(16) With reference now to
(17) The upper substrate 28 includes a plurality of partitions 44 configured to hold various electronic components (not shown). A portion of the upper substrate 28 is configured to be seated with a pair of terminal connector assemblies (not shown). The printed circuit board 30 is fitted onto the upper substrate 28 and includes a plurality of pin-holes for accommodating electric terminals.
(18) The power distribution box assembly 10 further includes a bus bar assembly 46. The bus bar assembly 46 includes a pair of upper bus bars 46a and a lower bus bar 46b. The upper bus bars 46a are configured to be seated onto the printed circuit board 30. The upper bus bars 46a are illustratively shown as having different dimensions. Each of the upper bus bars 46a is configured to be coupled to a respective tower 38. The lower bus bar 46b (shown in
(19) The lower cover 18 includes a pair of ribs 50. The ribs 50 are disposed within a respective gap 28a of the upper substrate 28. The ribs 50 are fixed to the lower wall 44 and are disposed adjacent the front end of the lower cover 18. The ribs 50 include an elongated finger 50a having a pair of fins 50b. The ends of the ribs 50 are angled so as to facilitate mounting the lower cover 18 onto the bottom cover 14.
(20) With reference again to
(21) The slots 52a further includes a pair of guide ribs 54 are configured to be generally centered between the pair of elongated members 54a. The guide ribs 54 work in concert with the ribs 50 of the lower cover 18 to help retain the lower cover 18 to the bottom cover 14. In particular as the lower cover 18 is fitted onto the bottom cover 14. The ribs 50 are slid into respective slots 54 of the towers 38 and the guide rib 56 of the slots 54 cooperate with the fins 50a of the ribs 50 so as to generate a pinch fit engagement and help secure the lower cover 18 to the bottom cover 14.
(22) With reference again to
(23) The terminal cavities 22a are general shown as having a U shape partition. The U shape partitions are open to the front end of the lower cover 18 and are positioned axially with respect to each other. A plurality of separating ribs 56 are disposed on a front wall of the lower cover 18. The separating ribs 56 are spaced apart from each other so as to accommodate the eyelet terminal 100 and limits the rotation of the eyelet terminals 100 and prevent a short circuit from occurring.
(24) With reference now again to
(25) With reference now to
(26) Power is supplied to the lower bus bar 46b. The power is routed through the legs of the lower bus bar 46b and is coupled to respective electric terminals which are seated within the terminal cavities of the lower terminal housing 20. The lower bus bar 46b is electrically connected to the upper housing assembly 12 by the pair of prongs 62 which extends upwardly into the gaps of the lower cover 18 as illustratively shown in
(27) The upper bus bars 46a are coupled to the pair of prongs 48 which are seated on the terminal support of the towers 38, accordingly power is distributed from the power source to the pair of upper bus bars 46a, which directs power to the connector assemblies. The power is regulated by the various electronic components mounted to the printed circuit board 30. Thus power is provided to the printed circuit board 30.
(28)
(29) Accordingly, a power distribution box assembly 10 assembly is provided having a bottom cover 14 and a lower cover 18 configured to distribute power to electric components disposed both within the upper housing assembly 12 and the bottom cover 14 as well as to route power to an underside of the bottom cover 14 of the power distribution box assembly 10 allowing a switch to switch between the first and second power source and wherein eyelet terminals mounted to the upper and lower terminal housing 20 may distribute power to other vehicle functions.
(30) While particular embodiments have been illustrated and described herein, it should be understood that various other changes and modifications may be made without departing from the spirit and scope of the claimed subject matter. Moreover, although various aspects of the claimed subject matter have been described herein, such aspects need not be utilized in combination. It is therefore intended that the appended claims cover all such changes and modifications that are within the scope of the claimed subject matter.