Nova Patents
EP0639655A1

Method and apparatus for sputtering.

Abstract

A sputtering method comprises applying a negative voltage intermittently in a constant periodic cycle to a cathode disposed in a vacuum chamber, wherein the negative voltage is intermittently applied so that a time during which the negative voltage is not applied includes a time during which the voltage is controlled to be zero volt in a range of from 10 µs to 10 ms, and the zero voltage time is equal to or longer than the time required by one arcing from its generation to extinction.

EP0639655A1, drawing sheet 1
Sheet 1 of 16

Term

Term ended

Projected expiry passed 26 July 2014, 12.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

19 claims: 6 independent, 13 dependent

  1. 1
    A sputtering method which comprises applying a negative voltage intermittently in a constant periodic cycle to a cathode disposed in a vacuum chamber, wherein the negative voltage is intermittently applied so that a time during which the negative voltage is not applied includes a time during which the voltage is controlled to be zero volt in a range of from 10 as to 10 ms, and the zero voltage time is equal to or longer than the time required by one arcing from its generation to extinction.
  2. 5
    A sputtering apparatus comprising a cathode disposed in a vacuum chamber, a sputtering power generating portion and a power processing portion, the cathode being applied with a intermittent negative voltage, wherein the wherein the negative voltage is intermittently applied so that a time during which the negative voltage is not applied includes a time during which the voltage is controlled to be zero volt in a range of from 10 us to 10 ms, and the zero voltage time is equal to or longer than the time required by one arcing from its generation to extinction.
  3. 8
    A power processing portion for a sputtering apparatus having a cathode to which a negative voltage is intermittently applied, wherein;the power processing portion comprises a first switching circuit, a second switching circuits, a control circuit for a switching element and a circuit for measuring current, voltage or power for sputtering;the first and the second switching circuits are respectively formed of a semiconductor switching device and a protection circuit for protecting the device;the first switching circuit is connected in series between the negative pole of the sputtering power generating portion and the cathode electrode;the second switching circuit is connected in series between the cathode electrode and a DC power source, other than the sputtering power generating portion, for supplying a positive potential to the cathode electrode;the control circuit for the semiconductor switching device is capable of controlling a turning-on time of 5 us or more for the first switching circuit and a turning-off time of 5 us or more for the same, and capable of turning-on the second switching circuit for less than the time of turning-off the first switching circuit and within a range of from 1 us to 20 us when the first switching circuit is turned off;andthe circuit for measuring current, voltage or power for sputtering has a function to measure a current value, a voltage value or a power value effective to sputtering and a function to compare the measured values with predetermined reference values to detect arcing.
  4. 10
    A film-deposition method by sputtering a thin film composed mainly of silicon oxide by applying a negative voltage intermittently in a constant periodic cycle to a cathode composed mainly of silicon in a vacuum chamber and using oxygen and/or inert gas as sputtering gas, wherein the negative voltage is intermittently applied so that a time during which the negative voltage is not applied includes a time during which the voltage is controlled to be zero volt in a range of from 10 as to 10 ms, and the zero voltage time is equal to or longer than the time required by one arcing from its generation to extinction.
  5. 11
    A film-deposition method by sputtering a thin film composed mainly of silicon nitride by applying a negative voltage intermittently in a constant periodic cycle to a cathode composed mainly of silicon in a vacuum chamber and using nitrogen and/or inert gas as sputtering gas, wherein the negative voltage is intermittently applied so that a time during which the negative voltage is not applied includes a time during which the voltage is controlled to be zero volt in a range of from 10 as to 10 ms, and the zero voltage time is equal to or longer than the time required by one arcing from its generation to extinction.
  6. 13
    The film-deposition method by sputtering a transparent conductive thin film composed mainly of oxide by using a sputtering target capable of forming a transparent conductive film, disposed in a vacuum chamber, applying a negative voltage intermittently and using oxygen and/or inert gas as sputtering gas, wherein the negative voltage is intermittently applied so that a time during which the negative voltage is not applied includes a time during which the voltage is controlled to be zero volt in a range of from 10 us to 10 ms, and the zero voltage time is equal to or longer than the time required by one arcing from its generation to extinction.