The present disclosure relates to a connector, and, more particularly, to a connector of an electrical measurement device using a four-wire measurement method.
When the resistance value of the object to be measured is much smaller than the resistance value of the wire (e.g., the resistance value of the object to be measured is about 1/10 of the resistance value of the wire), the four-wire measurement method can avoid the influence of the resistance value of the wire comparing with the two-wire measurement method. Therefore, four-wire I-V measurement equipment is often used to measure the electrical properties of solar power modules.
Referring to
Therefore, there is a need for a connector that can accurately measure the resistance to be measured of a solar power module via a four-wire measurement method to avoid errors caused by aging of the connector.
According to an embodiment disclosed by the present disclosure, the present disclosure provides a connector, including: a first female connector and a first male connector. The first female connector includes a first male sleeve, and a probe is disposed on the first male sleeve. The first male connector includes a first female sleeve, in which an elastic structure is disposed in the first female sleeve. The probe passes through a hole on the first male sleeve and is electrically connected to a second female sleeve in a second male connector. The elastic structure is electrically connected to a second male sleeve in a second female connector.
According to the embodiment disclosed by the present disclosure, the present disclosure provides a connector, in which the probe is electrically connected to a voltage positive electrode of an electrical measurement device, and the elastic structure is electrically connected to a voltage negative electrode of the electrical measurement device.
According to the embodiment disclosed by the present disclosure, the present disclosure provides a connector, in which the first male sleeve is electrically connected to a current positive electrode of the electrical measurement device, and the first female sleeve is electrically connected to a current negative electrode of the electrical measurement device.
According to the embodiment disclosed by the present disclosure, the present disclosure provides a connector, in which the second female sleeve is electrically connected to a positive electrode of a test object, and the second male sleeve is electrically connected to a negative electrode of the test object.
The present disclosure can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
Technical terms of the present disclosure are based on general definition in the technical field of the present disclosure. If the present disclosure describes or explains one or some terms, definition of the terms is based on the description or explanation of the present disclosure. Each of the disclosed embodiments has one or more technical features. In possible implementation, a person skilled in the art would selectively implement all or some technical features of any embodiment of the present disclosure or selectively combine all or some technical features of the embodiments of the present disclosure.
In each of the following embodiments, the same reference number represents the same or similar element or component.
Referring to
A probe P is provided in the first male sleeve Smale, and an elastic structure SP is provided in the first female sleeve Sfemale. The probe P penetrates a hole on the first male sleeve Smale and is electrically connected to a second female sleeve S′female in a second male connector MC′male. The elastic structure SP is electrically connected to the second male sleeve S′male in the second female connector MC′female.
According to the embodiment disclosed by the present disclosure, the embodiment provides a connector, in which the probe P is electrically connected to a voltage positive electrode V+ of the 4-wire I-V measurement equipment, and the elastic structure SP is electrically connected to a voltage negative electrode V− of the 4-wire I-V measurement equipment.
According to the embodiment disclosed by the present disclosure, the embodiment provides a connector, in which the first male sleeve Smale is electrically connected to a current positive electrode I+ of the 4-wire I-V measurement equipment, and the first female sleeve Sfemale is electrically connected to a current negative electrode I− of the 4-wire I-V measurement equipment.
According to the embodiment disclosed by the present disclosure, the embodiment provides a connector, in which the second female sleeve S′female in the second male connector MC′male is electrically connected to a positive electrode of a test object (i.e., the solar power module), and the second male sleeve Smale in the second female connector MC′ female is electrically connected to a negative electrode of the test object.
While the present disclosure has been described by way of examples and in terms of the embodiments, it should be understood that the present disclosure is not limited to the disclosed embodiments. On the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
Number | Date | Country | |
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62928413 | Oct 2019 | US |