The present invention relates to a heat-shrink tube; more particularly, relates to a heat-shrink tube with transparency and heat-resistance covered over a joint of wires to be used in a concentration photovoltaic module.
On wiring in a concentration photovoltaic module, extra wire is usually used for prolonging connection. In
The main purpose of the present invention is to provide a heat-shrink tube with transparency and heat-resistance covered over a joint of two wires to be used in a concentration photovoltaic module.
To achieve the above purpose, the present invention is a wire heat-shrink tube for concentration photovoltaic module, comprising two connected wires; and a heat-shrink tube, where the heat-shrink tube is covered over a joint of the wires, the wires are wires in a concentration photovoltaic module; and the heat-shrink tube is transparent and is made of a heatproof material. Accordingly, a novel wire heat-shrink tube for concentration photovoltaic module is obtained.
The present invention will be better understood from the following detailed description of the preferred embodiment according to the present invention, taken in conjunction with the accompanying drawings, in which
The following description of the preferred embodiment is provided to understand the features and the structures of the present invention.
Please refer to
Therein, the heat-shrink tube 2 can be covered over the whole wire 1; then, a section of the heat-shrink tube 2 can be cut to be covered over a joint of the connected wires 1. Thus, a novel wire heat-shrink tube for concentration photovoltaic module is obtained.
The wire 1 used in the concentration photovoltaic module comprises a wire core 11 and a wire material 12, where the wire core conducts current; the wire material 12 is a transparent or white material; and the wire material 12 is covered over the wire core 11 for isolation. The wire material 12 at the joint of the wires 1 is stripped off. The two wires 1 are connected at the joint through soldering and then the heat-shrink tube 2 is covered over the joint. Thus, when current is conducted, short circuiting and leakage will not be caused by the bare wire cores 11 of the wires 1.
On using the present invention, an inlet light is shone on the heat-shrink tube 2 over the joint of the wires 1. The inlet light then passes through the heat-shrink tube 2 and is shone on the wires 1. Thus, energy of the light is not gathered in the heat-shrink tube 2 to burn the heat-shrink tube 2. Furthermore, the wire materials 12 of the wires 1 are transparent or white materials, so the light energy gathered on the wire material 12 by the concentration photovoltaic module is directly reflected. Hence, the wires 1 will not be burnt on gathering energy.
The heat-shrink tube used in the present invention is transparent and heat-resistant and is covered over the joint of the wires. Thus, the production cost is reduced and reliability and quality of the concentration photovoltaic module is improved.
To sun up, the present invention is a wire heat-shrink tube for concentration photovoltaic module, where a heat-shrink tube with transparency and heat-resistance is covered over a joint of wires; and, thus, production cost is reduced and reliability and quality of a concentration photovoltaic module is improved.
The preferred embodiment herein disclosed is not intended to unnecessarily limit the scope of the invention. Therefore, simple modifications or variations belonging to the equivalent of the scope of the claims and the instructions disclosed herein for a patent are all within the scope of the present invention.
Number | Date | Country | Kind |
---|---|---|---|
098115081 | May 2009 | TW | national |