1. Technical Field
The present disclosure generally relates to a voltage testing device and method for a memory.
2. Description of Related Art
After a computer is manufactured, an overall test is required to check the quality. The memory test is one of the most important tests. A common method for testing the memory is to use a conventional device to test the memory and to record corresponding data manually, which is inefficient.
Many aspects of the embodiments can be better understood with references to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the embodiments. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
The disclosure is illustrated by way of example and not by way of limitation in the figures of the accompanying drawings in which like references indicate similar elements. It should be noted that references to “an” or “one” embodiment in this disclosure are not necessarily to the same embodiment, and such references mean “at least one.”
The computer 10 includes a setting module 11, a control module 13, an adjusting module 15, a storing module 17, and a display module 19.
The oscillograph 30 includes a control unit 31, an obtaining unit 33, a storing unit 35, and a voltage wave producing unit 37.
The signal producer 50 includes a sub-control unit 51, a signal producing unit 53, and a sub-storing unit 55.
The setting module 11 is used for setting initial setting parameters of the oscillograph 30, such as time reference, initial voltage offset, signal name, triggering reference, testing items, and initial voltage undulating value, for example, and storing the initial setting parameters to the storing module 17. The setting module 11 is used for setting initial setting parameters of the signal producer 50, such as pulse frequency, high level voltage, and low level voltage, and storing the initial setting parameters of the signal producer 50 to the storing module 17. The control module 13 is used for sending the initial setting parameters of the oscillograph 30 to the control unit 31 and sending the initial setting parameters of the signal producer 50 to the sub-control unit 51. The control unit 31 is used for storing the initial setting parameters of the oscillograph 30 to the storing unit 35. The sub-control unit 51 is used for storing the initial setting parameters of the signal producer 50 to the sub-storing unit 55.
The obtaining unit 33 is used for obtaining the initial voltage value of the input terminal of the memory 70 and initial testing parameters of the output terminal of the memory 70 when the signal producing unit 53 sends a pulse signal to the input terminal of the memory 70. The initial testing parameters includes a voltage maximize value and a voltage minimal value during a period of time. The control unit 31 is used for sending the initial testing parameters and the initial voltage value to the adjusting module 15. The adjusting module 15 is used for sending a current voltage offset and a current voltage undulating value to the control unit 31 of the oscillograph 30 according to the initial testing parameters, sending a current voltage value to the sub-control unit 51 of the signal producer 50 according to the initial voltage value, and storing the current voltage offset, the current voltage undulating value, and the current voltage value to the storing module 17. The control unit 31 is used for storing the current voltage offset and the current voltage undulating value in the storing unit 35. The sub-control unit 51 is used for storing the current voltage value in the sub-storing unit 55.
The obtaining unit 33 is further used for obtaining voltage values during a period of time of the input terminal and the output terminal after the storing unit 35 stores the current voltage offset and the current voltage undulating value, and sending the voltage values during the period of time to the voltage wave producing unit 37. The voltage wave producing unit 37 is used for producing two voltage waves according to the voltage values during the period of time and sending the two voltage waves and the voltage values during the period of time to control module 13 of the computer via the control unit 31. The control module 13 is further used for displaying the two voltage waves and the voltage values during the period of time on the display module 19.
S201, the setting module 11 sets the initial setting parameters of the oscillograph 30 and the signal producer 50 and stores the initial setting parameters to the storing module 17; the control module 13 sends the initial setting parameters of the oscillograph 30 to the control unit 31; the control module 13 sends the initial setting parameters of the signal producer 50 to the sub-control unit 51; the control unit 31 stores the initial setting parameters of the oscillograph 30 in the storing unit 35; and the sub-control unit 51 stores the initial setting parameters of the signal producer 50 in the sub-storing unit 55.
S202, the obtaining unit 33 obtains the initial voltage value of the input terminal of the memory 70 and initial testing parameters of the output terminal of the memory 70 when the signal producing unit 53 sends a pulse signal to the input terminal of the memory 70. The control unit 31 sends the initial testing parameters and the initial voltage value to the adjusting module 15; the adjusting module 15 sends a current voltage offset and a current voltage undulating value to the control unit 31 of the oscillograph 30 according to the initial testing parameters, sends a current voltage value to the sub-control unit 51 of the signal producer 50 according to the initial voltage value, and stores the current voltage offset, the current voltage undulating value, and the current voltage value to the storing module 17. The control unit 31 stores the current voltage offset and the current voltage undulating value in the storing unit 35. In addition, the sub-control unit 51 stores the current voltage value in the sub-storing unit 55,
S203, the signal producing unit 53 of the signal producer 50 produces a current pulse signal to the input terminal of the memory 70 according to the current voltage value.
S204, the obtaining unit 33 obtains voltage values of the input terminal and the output terminal of the memory 70 during a period of time, and sends the voltage values to the voltage wave producing unit 37; the voltage wave producing unit 37 produces two voltage waves according to the voltage values and sends the two voltage waves and the voltage values to the control module 13 via the control unit 31; and the control module 13 displays the two voltage waves and the voltage values on the display module 19.
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 the matters of shape, size, and arrangement of parts within the principles of the present disclosure 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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2013100018797 | Jan 2013 | CN | national |