1. Technical Field
The present disclosure relates to testers and, particularly, to a universal serial bus (USB) component tester.
2. Description of Related Art
Today, USB components are broadly applied in serial communication solutions and become more and more important. A USB component generally includes USB ports and plugs. After manufacturing, the USB component needs to be tested. A general method for testing USB components uses some ordinary USB devices such as USB pointing devices, USB keyboards, USB hard disk drives, and/or a motherboard etc., to directly connect to the USB ports, and the plugs, and check if the USB ports and plugs work or not. However, this method requires plugging or unplugging the USB devices and/or the motherboard to or from the USB ports separately and frequently, which is unduly laborious and time-consuming. In addition, because this method utilizes USB pointing devices, keyboards, hard disk drives, etc. and the motherboard, it is costly.
What is needed, therefore, is to provide a USB component tester to overcome the above described shortcomings.
Referring to
In one embodiment, the LEDs D1 and D2 may be replaced by other types of indicators, such as buzzers, and so on.
The plug P1 of the USB component 100 defines two rows of holes. A row of holes including four holes are connected to a power terminal, a first data terminal, a second data terminal, and a ground terminal of the USB port P2, and the other row of holes including four holes are connected to a power terminal, a first data terminal, a second data terminal, and a ground terminal of the USB port P3. The plug P1 can be installed on a motherboard, and the USB ports P2 and P3 can serve as rear USB ports or front USB ports.
Referring to
In case some capacitors of an internal circuit of the USB component 100 are in a charged state, and when the plug P1 of the USB component 100 is engaged with the connector J1, the capacitors discharge via the resistors R1 and R4 to prevent errors that could be caused by the charged capacitors. The diodes Da and Db are configured for preventing the plug P1 of the USB component 100 from engaging with the connector J1 the wrong way.
In one embodiment, the resistors R1 and R4 are about 2000 ohm resistors, and the resistors R2 and R3 are about 200 ohm resistors. The power supply Vc is about 5V direct current power supply. In other embodiments, the number of the USB port Pa is not limited to one, and the connector J1 is not limited to eight pins, that is, the number and the structure of the USB port Pa and the connector J1 can be adjusted according to different structures of the plug P1 of the USB component 100.
Referring to
When the USB component 100 works normally, the power supply Vc provides current flowing through the power terminal V1 of the USB port Pa, the power pin V2 of the connector J1, the data pin Dat2+ of the connector J1, the data terminal Dat1+ of the USB port Pa, the resistor R2, the LED D1, the data terminal Dat1− of the USB port Pa, the data pin Dat2− of the connector J1, the ground pin GND2 of the connector J1, the ground terminal GND 1 of the USB port Pa to the ground. In this process, there is current flowing through the LED D1 to make the LED D1 emit light, indicating that the USB component 100 is in a normal work state.
When the USB component 100 does not work, there is no current flow, and the LED D1 does not emit light.
The test principle for testing the USB component 100, by connecting the USB plug 404 to the USB P3, is the same as by the USB plug 402 connecting to the USB port P2.
In other embodiments, the diode Da, the resistor R3, and the diode D2 can be omitted in order to reduce costs. In addition, if the USB component 100 includes only one USB port P2, the resistor R4 and the diode Db can be omitted.
It is to be understood, however, that even though numerous characteristics and advantages of the embodiments have been set forth in the foregoing description, together with details of the structure and function of the embodiments, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the embodiments to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
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200810305965.6 | Dec 2008 | CN | national |