This application claims the priority benefit of Taiwan application serial no. 105215456, filed on Oct. 12, 2016. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
The invention is directed to an electrical apparatus and more particularly, to a vehicle electrical apparatus with a protection and detection mechanism for reverse power connection, which is capable of detecting whether power input terminals of the vehicle electrical apparatus are normally or reversely connected with an external power supply and accordingly enabling corresponding functions.
In a general scenario, power input terminals of a vehicle electrical apparatus must be normally (or correctly) connected with an external power supply (i.e., a positive power supply terminal of the external power supply is coupled to a positive power input terminal of the vehicle electrical apparatus, and a negative power supply terminal of the external power supply is coupled to a negative power input terminal of the vehicle electrical apparatus), such that the vehicle electrical apparatus can be operated normally in this way. In case the external power supply and the power input terminals of the vehicle electrical apparatus are reversely connected, the vehicle electrical apparatus may be probably burned out.
In addition, the vehicle electrical apparatus can provide various additional functions. However, different consumers (or purchasers of the vehicle electrical apparatus) have different demands for the additional functions of the vehicle electrical apparatus. Therefore, how to provide different consumers with the additional functions on demand by the same vehicle electrical apparatus to achieve a purpose of customization is an important subject to the technicians of the art.
Accordingly, the invention provides a vehicle electrical apparatus with a protection and detection mechanism for reverse power connection. The vehicle electrical apparatus is capable of detecting whether power input terminals thereof are reversely connected with an external power supply and accordingly enabling different functions of the vehicle electrical apparatus, so as to achieve a purpose of customization.
A vehicle electrical apparatus of the invention includes a power pin, a ground pin, a conversion circuit, a polarity detection circuit and an electrical device. The conversion circuit is coupled to the power pin to receive a first voltage signal and coupled to the ground pin to receive a second voltage signal, so as to generate a system voltage to a power path and generate a ground voltage to a ground path. The polarity detection circuit is configured to detect a polarity of at least one of the first voltage signal and the second voltage signal and accordingly generate a polarity detection signal. The electrical device has a power terminal, a ground terminal and a control terminal. The power terminal is coupled to the power path to receive the system voltage, the ground terminal is coupled to the ground path to receive the ground voltage, and the control terminal is coupled to the polarity detection circuit to receive the polarity detection signal. The electrical device enables a first function when determining that according to the polarity detection signal, the polarity of the first voltage signal and a polarity of the power pin are different, and the polarity of the second voltage signal and a polarity of the ground pin are different.
In an embodiment of the invention, the electrical device does not enable the first function when determining that according to the polarity detection signal, the polarities of the first voltage signal and the power pin are the same, and the polarities of the second voltage signal and the ground pin are the same.
In an embodiment of the invention, the electrical device enables a second function when determining that according to the polarity detection signal, the polarities of the first voltage signal and the power pin are the same, and the polarities of the second voltage signal and the ground pin are the same, wherein the first function and the second function are different.
To sum up, the vehicle electrical apparatus can be normally operated no matter whether the power input terminals (i.e., the power pin and the ground pin) of the vehicle electrical apparatus are normally (i.e., correctly) or reversely connected with the external power supply. In addition, the vehicle electrical apparatus can further detect whether the power input terminals of the vehicle electrical apparatus are normally or reversely connected with the external power supply and accordingly provide corresponding vehicle electrical functions, so as to achieve the purpose of customization.
In order to make the aforementioned and other features and advantages of the invention more comprehensible, several embodiments accompanied with figures are described in detail below.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
In order to make the content of the invention clearer, the following embodiments are illustrated as examples that can be truly implemented by the invention. Wherever possible, elements/members using the same reference numbers in the drawings and the description refer to the same or like parts.
Referring to
In an embodiment of the invention, the vehicle electrical apparatus 100 may be any electrical product used in a vehicle. For example, the vehicle electrical apparatus 100 may be, for example, a driving recorder host, a vehicle camera, a vehicle navigation system or a vehicle audio and a video playback apparatus and so on, which construes no limitations to the invention. The type of the vehicle electrical apparatus 100 is not limited in the invention.
Furthermore, as illustrated in
In the embodiment illustrated in
The electrical device 160 has a power terminal TP, a ground terminal TG and a control terminal TC. The power terminal TP is coupled to the power path PP to receive the system voltage VP. The ground terminal TG is coupled to the ground path PG to receive the ground voltage VG. The control terminal TC is coupled to the polarity detection circuit 140 to receive the polarity detection signal PDS. The electrical device 160 enables a first function when determining that the polarities of the first voltage signal V1 and the power pin EP are different and the polarities of the second voltage signal V2 and the ground pin EG are different according to the polarity detection signal PDS. That is, when the power pin EP and the ground pin EG of the vehicle electrical apparatus 100 are reversely connected with the external power supply, the electrical device 160 enables the first function.
By contrast, in an embodiment of the invention, the electrical device 160 does not enable the first function when determining that the polarities of the first voltage signal V1 and the power pin EP are the same and the polarities of the second voltage signal V2 and the ground pin EG are the same according to the polarity detection signal PDS. That is, when the power pin EP and the ground pin EG of the vehicle electrical apparatus 100 are normally connected with the external power supply, the electrical device 160 does not enable the first function.
Furthermore, the first function may be a specific auxiliary or additional function of the electrical device 160 which is desired by a customer. For example, if it is assumed that the vehicle electrical apparatus 100 is a driving recorder, the first function may be, for example, displaying an auxiliary line for backing a vehicle on a screen, compensating an environment light source during driving to render a captured image clearer or the like, which depends on an actual application or demand, but the invention is not limited thereto.
In another embodiment of the invention, the electrical device 160 enables a second function when determining that the polarities of the first voltage signal V1 and the power pin EP are the same and the polarities of the second voltage signal V2 and the ground pin EG are the same according to the polarity detection signal PDS, where the second function is different from the aforementioned first function. That is, when the power pin EP and the ground pin EG of the vehicle electrical apparatus 100 are normally connected with the external power supply, the electrical device 160 enables the second function different from the first function. For example, if it is assumed that the vehicle electrical apparatus 100 is the driving recorder, the aforementioned first function may be, for example, displaying the auxiliary line for backing the vehicle on the screen, and the second function may be, for example, enabling a white balance function of a vehicle camera, which depends on the actual application or demand, but the invention is not limited thereto.
Referring to
If it is assumed herein that the first voltage signal V1 (which is provided to the power pin EP by the external power supply) and the system voltage VP on the power path PP are 5 volts (V), and the second voltage signal V2 (which is provided to the ground pin EG by the external power supply) and the ground voltage VG on the ground path PG are 0 V, the power pin EP and the ground pin EG are normally connected with the external power supply. In this circumstance, the diode D1 illustrated in
On the other hand, if it is assumed that the second voltage signal V2 (which is provided to the ground pin EG by the external power supply) and the system voltage VP on the power path PP are 5 V, and the first voltage signal V1 (which is provided to the power pin EP by the external power supply) and the ground voltage VG on the ground path PG are 0 V, the power pin EP and the ground pin EG are reversely connected with the external power supply. In this circumstance, the diode D1 illustrated in
Referring to
If it is assumed herein that the first voltage signal V1 (which is provided to the power pin EP by the external power supply) and the system voltage VP on the power path PP are 5 V, and the second voltage signal V2 (which is provided to the ground pin EG by the external power supply) and the ground voltage VG on the ground path PG are 0 V, the power pin EP and the ground pin EG are normally connected with the external power supply. In this circumstance, the diode D2 illustrated in
On the other hand, if it is assumed that the second voltage signal V2 (which is provided to the ground pin EG by the external power supply) and the system voltage VP on the power path PP are 5 V, and the first voltage signal V1 (which is provided to the power pin EP by the external power supply) and the ground voltage VG on the ground path PG are 0 V, the power pin EP and the ground pin EG are reversely connected with the external power supply. In this circumstance, the diode D2 illustrated in
Referring to
By being compared with the polarity detection circuit 140 illustrated in
Referring to
If it is assumed herein that the first voltage signal V1 (which is provided to the power pin EP by the external power supply) and the system voltage VP on the power path PP are 5 V, and the second voltage signal V2 (which is provided to the ground pin EG by the external power supply) and the ground voltage VG on the ground path PG are 0 V, the power pin EP and the ground pin EG are normally connected with the external power supply. In this circumstance, the diode D4 illustrated in
On the other hand, if it is assumed that the second voltage signal V2 (which is provided to the ground pin EG by the external power supply) and the system voltage VP on the power path PP are 5 V, and the first voltage signal V1 (which is provided to the power pin EP by the external power supply) and the ground voltage VG on the ground path PG are 0 V, the power pin EP and the ground pin EG are reversely connected with the external power supply. In this circumstance, the diode D4 illustrated in
Referring to
If it is assumed herein that the first voltage signal V1 (which is provided to the power pin EP by the external power supply) and the system voltage VP on the power path PP are 5 V, and the second voltage signal V2 (which is provided to the ground pin EG by the external power supply) and the ground voltage VG on the ground path PG are 0 V, the power pin EP and the ground pin EG are normally connected with the external power supply. In this circumstance, the diode D5 illustrated in
On the other hand, if it is assumed that the second voltage signal V2 (which is provided to the ground pin EG by the external power supply) and the system voltage VP on the power path PP are 5 V, and the first voltage signal V1 (which is provided to the power pin EP by the external power supply) and the ground voltage VG on the ground path PG are 0 V, the power pin EP and the ground pin EG are reversely connected with the external power supply. In this circumstance, the diode D5 illustrated in
Referring to
By being compared with the polarity detection circuit 140 illustrated in
In light of the foregoing, no matter whether the power input terminals of the vehicle electrical apparatus provided by the embodiments of the invention are normally or reversely connected with the external power supply, the vehicle electrical apparatus can be normally operated. Moreover, the vehicle electrical apparatus can further detect whether the power input terminals thereof are normally or reversely connected with the external power supply, so as to provide corresponding vehicle electrical functions to achieve the purpose of customization.
Although the invention has been described with reference to the above embodiments, it will be apparent to one of the ordinary skill in the art that modifications to the described embodiment may be made without departing from the spirit of the invention. Accordingly, the scope of the invention will be defined by the attached claims not by the above detailed descriptions.
Number | Date | Country | Kind |
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105215456 | Oct 2016 | TW | national |