Nova Patents
EP0407029A2

Method for a below a minute burn-in.

Abstract

An electronic component test procedure which can employ a combination of stress, test, and sort techniques useful for consolidating package test, burn-in test and qualification tests. The process can be automated to avoid batch process and virtually eliminate manual handling. Components are sorted according to initial values and mathematical stress models.

EP0407029A2, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Projected expiry passed 29 May 2010, 16.3 years ago.

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33 claims: 6 independent, 27 dependent

  1. 1
    A method for testing electronic components having a normal operating temperature, at a test operating temperature, for reducing infant mortality rates and for providing a cost effective timely procedure to sort out bad components and pass good components, the method comprising the steps of:stabilizing the component at a first temperature different than the normal operating temperature and at a predetermined temperature difference from the test operating temperature;placing the component in a test means for testing component;measuring a first value of a parameter of the component at the first temperature;calculating an expected second temperature parameter value;calculating a range of the expected second temperature parameter value;ramping the temperature of the component;measuring a second value of the parameter of the component at a second temperature;comparing the first value to the second value;determining whether measured first parameter value is within a predetermined range of the expected second temperature parameter value.
  2. 10
    A method for testing electronic components having a normal operating input voltage bias, to reduce infant mortality rates and provide for a cost effective timely procedure to sort out bad components and pass good components, the method comprising the steps of:placing the component in a test means for testing component;biasing the component to a specified set of input voltage levels;measuring a first value of a parameter of the component at a first test operating input bias voltage;calculating an expected second value of the parameter;calculating a range of the expected second parameter value;biasing the component to a second set of input voltage levels;measuring a second parameter of the component;comparing the measured second parameter to the expected second parameter value;determining whether measured second parameter value is within the predetermined range of the expected second parameter value.
  3. 19
    A method for burn-in of electronic components having a nominal operating temperature, the method allows consolidation of package test, burn-in, and post burn-in test, the method eliminating lengthy burn-in batch processing, the method comprising the steps of:stabilizing the component at a first temperature different than the nominal operating temperature and at a predetermined temperature difference from the test operating temperature;placing the component in a test means for A.C. parametric testing of the component;measuring a first value of a parameter of the component at the first temperature;ramping the temperature of the component;measuring a second value of the parameter of the component at a second temperature;comparing the first value to the second value.
  4. 22
    A method for burn-in of electronic components having a nominal operating temperature, the method allows consolidation of package test, burn-in, and post burn-in test, the method eliminating lengthy burn-in batch processing, the method comprising the steps of:stabilizing the component at a first temperature different than the nominal operating temperature and at a predetermined temperature difference from the test operating temperature;placing the component in a test means for high frequency parametric testing of the component;measuring a first value of a parameter of the component at the first temperature;ramping the temperature of the component;measuring a second value of the parameter of the component at a second temperature;comparing the first value to the second value.
  5. 26
    A method for testing electronic components, having a die and a package, having a normal operating temperature, at a test operating temperature, for reducing infant mortality rates and for providing a cost effective timely procedure to sort out bad components and pass good components, the method comprising the steps of:a. stabilizing the component at a first temperature below the absolute normal operating temperature and at a predetermined temperature difference from the test operating temperature;b. placing the component in a test means for testing component;c. biasing the component to a specified set of input voltage levels d. measuring a first value of a parameter of the component at the first temperature;e. calculating an expected second temperature parameter value;f. calculating a range of the expected second temperature parameter value;g. ramping the temperature of the component to a larger absolute temperature;h. biasing the component to a second set of input voltage levels i. measuring a second value of the parameter of the component at a second temperature;j. comparing the first value to the second value;k. determining whether measured first parameter value is within a predetermined range of the expected second temperature parameter value: 1. repeating steps c-k a plurality of times until the die temperature and the package temperature are within a predetermined thermal time constant of a predetermined test operating temperature;m. waiting a predetermined time period;n. repeating steps c-ma plurality of times until a predetermined final above normal test operating temperature is reached in step 1 for the predetermined test operating temperature;
  6. 31
    A method for testing an electronic component in wafer form, the wafer having a plurality of components called die, having a normal operating temperature, at a test operating temperature, for reducing infant mortality rates and for providing a cost effective timely procedure to sort out bad components and pass good components, the method comprising the steps of:a. stabilizing the component at a first temperature below the absolute normal operating temperature and at a predetermined temperature difference from the test operating temperature;b. placing the component in a test means for testing component;c. biasing the component to a specified set of input voltage levels d. measuring a first value of a parameter of the component at the first temperature;e. calculating an expected second temperature parameter value;f. calculating a range of the expected second temperature parameter value;g. ramping the temperature of the component to a larger absolute temperature;h. biasing the component to a second set of input voltage levels i. measuring a second value of the parameter of the component at a second temperature;j. comparing the first value to the second value;k. determining whether measured first parameter value is within a predetermined range of the expected second temperature parameter value: 1. repeating steps c-k a plurality of times until the die temperature is within a predetermined thermal time constant of a predetermined test operating temperature;m. waiting a predetermined time period;n. repeating steps c-ma plurality of times until a predetermined final above normal test operating temperature is reached in step 1 for the predetermined test operating temperature;