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Testing apparatus, and testing method
   
Document Number
US Patent 7301359
Issued Date
November 27, 2007
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Abstract
Here is provided a testing apparatus for judging whether or not a device-under-test is defect-free based on static power-supply current of the device-under-test, having a power supply for supplying power for driving the device-under-test to the device-under-test, a pattern generating section for supplying setting vectors for setting a circuit of the device-under-test into a predetermined state to the device-under-test, a power-supply current measuring section for measuring the static power-supply current supplied from the power supply to the device-under-test when the device-under-test is set into the predetermined state by the setting vectors and a judging section for obtaining temperature of the device-under-test from a temperature sensor provided within the device-under-test to judge whether or not the device-under-test is defect-free based on the static power-supply current measured by the power-supply current measuring section and the temperature of the device-under-test.
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Number of Claims:
4
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Owner
Published
November 27, 2007
Application Number
11/418,576
Filed
May 5, 2006
US Classification
324/765   324/754 324/760 324/763
Int'l Classification
G01R   31/26   (20060101)   G01R   31/28   (20060101)   G01R   31/02   (20060101)  
Examiner
Assistant Examiner
Attorney/Law Firm
Priority Data
May 11, 2005 [JP] 2005-138065
USPTO Field of Search
324/754   324/755   324/756   324/757   324/758   324/759   324/760   324/761   324/762   324/763   324/764   324/765  
Related Patents
7482829 - Electric power applying circuit and test apparatus - Owned by Advantest Corporation (Tokyo,JP)

There is provided an electric power applying circuit for applying a direct current power to a load. The electric power applying circuit includes an output buffer that (i) is supplied with, as power source voltages, positive and negative high voltages which are determined in accordance with a range of an applied voltage which is to be applied to the load, (ii) generates a voltage in accordance with an input voltage, within a range defined by the power source voltages, and (iii) applies the generated voltage to the load, a main amplifier that amplifies a voltage input thereto to generate the input voltage, and inputs the generated input voltage into the output buffer, wherein the main amplifier exhibits a higher accuracy in terms of voltage generation than the output buffer, and a floating power source that generates positive and negative floating voltages by using, as a reference, a voltage determined in accordance with a voltage output from the output buffer, and supplies the generated positive and negative floating voltages to the main amplifier as power source voltages thereof, wherein a difference in voltage between the positive and negative floating voltages is smaller than a difference in voltage between the positive and negative high voltages.

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Description
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