JUNCTION BOX FOR SOLAR BATTERY
A junction box for a solar battery comprises a box body in which a plurality of connector bases are fixed, and a plurality of connection assemblies detachably connected with respective ones of the plurality of connector bases. Each connection assembly comprises a bracket and elastic member. The bracket is detachably connected with a respective connector base and configured to form an accommodating space with the respective connector base, and the elastic member is received within the accommodating space. The bracket comprises a first end connectable with an external cable, and a second end connectable with a connection cable of the solar battery. The brackets of immediately adjacent connection assemblies are formed with respective via-holes for insertion of pins of a diode to couple the diode between the respective immediately adjacent connection assemblies, with the pins being capable of being clamped between the respective immediately adjacent connection assemblies.
Latest BYD COMPANY LIMITED Patents:
- DC-DC converter, on-board charger, and electric vehicle
- Locking device, power assembly, power transmission system, and vehicle
- Method and apparatus for calculating SOH of battery power pack, and electric vehicle
- Power-driven system for vehicle and vehicle
- System and method for developing third-party application
This application claims the benefit of Chinese Patent Application No. 201020249667.2, filed on Jun. 30, 2010, the content of which is incorporated herein by reference in its entirety.
TECHNOLOGICAL FIELDEmbodiments of the present disclosure relate to a solar battery, and more particularly to a junction box for a solar battery.
BACKGROUNDWith the development of solar industry, requirements of solar battery subassemblies appear to increase. As a kind of solar battery subassembly, a junction box for a solar battery can export electric energy generated by the solar battery. Thus, the design and application of the junction box for a solar battery are rapidly and continuously changing. Generally, a solar battery assembly may comprise a backplate, a binder, some solar-cell arrays and a glass plate. The junction box is fixed to the backplate and connected to the solar-cell arrays via a connection cable. The junction box can provide power to outside as an output terminal.
Generally, a junction box comprises a box body and a cover coupled with the box body. A plurality of connector bases may be formed or disposed in the box body, and corresponding connection assemblies may be fixed on the connector bases. Connection cables of solar battery cells and external cables may be connected with respective ends of the connection assemblies, and the connection assemblies may function for current conduction between the connection cables and the external cables. The junction box may further comprise diodes connected between every two neighboring connection assemblies. Currently, the diodes may be welded to the connection assemblies. Thus, a long time may be required to assemble the diodes, and insufficient soldering may accidentally occur, which may create an issue with replacement of the damaged diode(s). Further, disassembly may not be convenient for the conventional junction box currently in use.
SUMMARYIn view of the foregoing background, embodiments of the present disclosure provide a junction box for a solar battery which may be easy for replacement and/or maintenance with low cost, and which may thereby solve one or more of the above-mentioned problems.
According to an embodiment of the present disclosure, a junction box for a solar battery may be provided. The junction box may comprise a box body in which a plurality of connector bases are fixed, and a plurality of connection assemblies detachably connected with respective ones of the plurality of connector bases. Each connection assembly may comprise a bracket and elastic member. The bracket is detachably connected with a respective connector base and configured to form an accommodating space with the respective connector base, and the elastic member is received within the accommodating space. The bracket comprises a first end connectable with an external cable, and a second end connectable with a connection cable of the solar battery. The brackets of immediately adjacent connection assemblies are formed with respective via-holes for insertion of pins of a diode to couple the diode between the respective immediately adjacent connection assemblies, with the pins being capable of being clamped between the respective immediately adjacent connection assemblies.
According to the junction box for a solar battery of the present disclosure, the diode may be easily inserted into the corresponding via-holes of the bracket, with the pins being tightly clamped between the elastic member and the bracket. When the diode may need to be replaced or checked, the diode may be plugged out and a new diode may be replaced instead, which is convenient for maintenance with low cost.
Having thus described embodiments of the present disclosure in general terms, reference will now be made to the accompanying drawings, which are not necessarily drawn to scale, and wherein:
The present disclosure now will be described more fully with reference to the accompanying drawings, in which some, but not all embodiments of the disclosure are shown. This disclosure may be embodied in many different forms and should not be construed as limited to the embodiments set forth; rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art. Like numbers refer to like elements throughout.
As shown in
As shown in
As shown in
In some embodiments, the elastic member 33 may be configured to have a U-shaped body with two free ends curved toward each other. As shown in
Returning to
As shown in
As shown in
As shown in
As shown in
As shown in
As shown in
As shown in
The σ-shaped elastic member 31 may be positioned inside the second end portion 303, and the U-shaped elastic member 32 may be positioned between the second end portion 303 and the connector base 10. A portion of the σ-shaped elastic member 31 may penetrate through the third positioning hole 3033 to push against the second arm portion 322 of the U-shaped elastic member 32 (to be described hereinafter). When in use, the connection cable of the solar battery may be clamped between the second vertical portion 302b of the bracket 30 and the second arm portion 322 of the U-shaped elastic member 32.
In some embodiments, the second positioning projection 105 may have a height adapted to elastically push against the curved portion 312 of the σ-shaped elastic member 31.
When assembling, as shown in
As shown in
As shown in
As shown in
The steps for installing the external cable 13 may as follows. The screwing nut 122, the claw-shaped cable gland 121 and the T-shaped stopper 120 may be fitted over the external cable 13. The T-shaped stopper 120 may then be placed in the screwing portion 11, the claw-shaped cable gland 121 may be inserted in the screwing portion 11 with the claw-shaped parts 1210 of the claw-shaped cable gland 121 facing outwardly. Lastly, the screwing nut 122 may be screwed onto the screwing portion 11. The claw-shaped parts 1210 may be tightened inwardly for sealing due to the forces applied to the claw-shaped cable gland 121 by the plastic nut 122.
As shown in
As shown in
As shown in
The bottom of the box body 1 may be formed with via-holes 16 for heat dissipation, as shown in
According to an embodiment of the present disclosure, two diodes 4 may be coupled between two neighboring brackets 30 in parallel to ensure that the diodes are not damaged by the rated current, and the heat may not be locally generated, which may be optimal for heat dissipation inside the junction box. In such an instance, if one of the diodes connected in parallel is damaged, the current conduction may be maintained by the remaining diodes which are not damaged.
As shown in
According to the present disclosure, the junction box has a desirable appearance which may be convenient for assembly and/or disassembly. In addition, the junction box of the present disclosure may exhibit increased heat dissipating performance. And when the diodes are damaged, the junction box has a design that facilitates their easily replacement.
Many modifications and other embodiments set forth herein will come to mind to one skilled in the art to which these embodiments pertain having the benefit of the teachings presented in the foregoing descriptions and the associated drawings. Therefore, it is to be understood that the embodiments are not to be limited to the specific ones disclosed and that modifications and other embodiments are intended to be comprised within the scope of the appended claims. Moreover, although the foregoing descriptions and the associated drawings describe embodiments in the context of certain example combinations of elements and/or functions, it should be appreciated that different combinations of elements and/or functions may be provided by alternative embodiments without departing from the scope of the appended claims. In this regard, for example, different combinations of elements and/or functions other than those explicitly described above are also contemplated as may be set forth in some of the appended claims. Although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.
Claims
1. A junction box for a solar battery comprising:
- a box body in which a plurality of connector bases are fixed; and
- a plurality of connection assemblies detachably connected with respective ones of the plurality of connector bases, each connection assembly comprising: a bracket detachably connected with a respective connector base and configured to form an accommodating space with the respective connector base, with a first end thereof being connectable with an external cable and a second end thereof being connectable with a connection cable of the solar battery; and an elastic member received within the accommodating space,
- wherein the brackets of immediately adjacent connection assemblies are formed with respective via-holes for insertion of pins of a diode to couple the diode between the respective immediately adjacent connection assemblies, the pins being capable of being clamped between the respective immediately adjacent connection assemblies.
2. The junction box of claim 1, wherein the brackets of immediately adjacent connection assemblies are formed with respective pluralities of via-holes for insertion of pins of a plurality of diodes to couple the diodes in parallel between the respective immediately adjacent connection assemblies.
3. The junction box of claim 1, wherein the bracket comprises:
- a middle portion including an upper portion and two sides extending from the upper portion toward a respective connector base to form the accommodating space;
- a first end portion extending from the upper portion of the middle portion and configured to be connected with the external cable; and
- a second end portion extending from the upper portion of the middle portion oppose the first end portion, and configured to detachably fix the connection cable of the solar battery.
4. The junction box of claim 3, wherein the elastic member is configured to have a U-shaped body with two free ends curved toward each other.
5. The junction box of claim 3, wherein each connector base is formed with a first positioning projection that faces the middle portion of the bracket of a respective connection assembly, and
- wherein the elastic member of each connection assembly is formed with a first positioning hole configured to engage the first positioning projection of a respective connector base.
6. The junction box of claim 3, wherein the box body is formed therein with a plurality of bosses for respective ones of the plurality of connector bases,
- wherein the bracket is detachably connected with the respective connector base such that the first end portion of the bracket is adjacent a respective boss, and such that the first end portion is fixable to the respective boss by a screw.
7. The junction box of claim 6, wherein the second end portion comprises:
- a first vertical portion extending from the upper portion of the middle portion;
- a bottom portion connected with the first vertical portion and which is to be contacted with the respective connector base; and
- a second vertical portion extending upwardly from the bottom portion.
8. The junction box of claim 7, wherein each connector base is formed with a second positioning projection, and
- wherein the bottom portion is formed with a second positioning hole to be engaged with the second positioning projection of a respective connector base.
9. The junction box of claim 8, wherein the second vertical portion is formed with a third positioning hole, and wherein each connection assembly further comprises:
- a σ-shaped elastic member positioned inside the second end portion; and
- a U-shaped elastic member positioned between the second end portion and the respective connector base, wherein a portion of the σ-shaped elastic member penetrates through the third positioning hole to push against an arm portion of the U-shaped elastic member.
10. The junction box of claim 9, wherein the second positioning projection has a height adapted to elastically push against a curved portion of the σ-shaped elastic member.
11. The junction box of claim 7, wherein each connector base is formed with guide grooves, and
- wherein the second vertical portion is formed with guiding portions to be guided along the guide grooves as the bracket is fitted to the respective connector base.
12. The junction box of claim 6, wherein the box body comprises an external side wall on which a screwing portion is formed neighboring a boss of the plurality of bosses, and wherein an end of the external cable is penetrable through the screwing portion to be fixed on the respective boss.
13. The junction box of claim 12 further comprising:
- a T-shaped stopper placed inside the screwing portion;
- a claw-shaped cable gland fitted over a stem portion of the T-shaped plug; and
- a screwing nut threadedly coupled to the screwing portion so that the end of the external cable is fixable on the boss via the screwing nut, the claw-shaped cable gland, the T-shaped plug and the screwing portion fitted together.
14. The junction box of claim 1 further comprising:
- a cover to be coupled with the box body, wherein the cover is formed with a peripheral sealing groove into which a seal ring is coupled when the cover is coupled with the box body.
Type: Application
Filed: Jun 28, 2011
Publication Date: Jan 5, 2012
Applicant: BYD COMPANY LIMITED (Shenzhen)
Inventors: Jian Shu (Shenzhen), Yong Zhou (Shenzhen), Jinwen Liu (Shenzhen), Wenbiao Ren (Shenzhen), Xinyang Liu (Shenzhen)
Application Number: 13/170,966