EP0194530A2

Method for controlling the plating rate in an electroless plating process.

Abstract

Method for controlling plating in an electroless plating process. The plating rate is continuously monitored. The plating rate is compared with a set point plating rate. A control voltage is derived proportional to the difference in .plating rate and the desired plating rate, the integral of the difference, and the derivative of the difference. The control voltage is applied to a replenishment control for controlling the replenishment rate of a constituent chemical of the plating process.

EP0194530A2, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Projected expiry passed 28 February 2006, 20.6 years ago.

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9 claims: 3 independent, 6 dependent

  1. 1
    A method for controlling plating in an electroless plating process for plating with an additive bath, said bath having a replenishment control for establishing a replenishment rate of a selected bath component characterized by continuously monitoring the plating rate of said additive bath and generating an electrical current representing said monitored rate;comparing said monitored rate with a selected rate;deriving a control voltage from the difference between said measured rate and desired rate;and replenishing said additive bath with said selected bath component as a function of said control voltage.
  2. 4
    A method for controlling plating in an electroless plating process for copper plating with an additive bath, said bath having a replenishment control for establishing a concentration of a selected bath component characterized by continuously monitoring the plating rate of said additive bath and generating an electrical current representing said mon- i tored level;generating a first feedback control term from said electrical current proportional to the difference between the present plating rate and a desired rate;generating a second feedback control term proportional to the integral of said first feedback control term;generating a third feedback term proportional to minus the time derivative of said first feedback control term;generating a control voltage from said first, second and third feedback control terms;and applying said control voltage to said replenishment control, whereby said concentration is maintained at a predetermined level.
  3. 7
    A method for controlling the concentrated chemical constituent replenished from a reservoir to an electroless plating bath, characterized by measuring at regular intervals the plating rate of said plating bath;computing over a plurality of said intervals a running average of a plurality of plating rate measurements;subtracting a predetermined plating rate set point from the running plating rate to obtain a plating rate deviation;forming the summation of said plating rate deviations whereby an integral of said plating rate deviation is obtained;subtracting the previous value of a determined deviation to a present value of said deviation whereby a derivative of said deviation is determined;combining said present deviation, integral of said plating rate deviations and derivative of said deviation to obtain a control parameter for said chemical constituent of an electroless plating bath;generating a control signal proportional to said control parameter;and replenishing said electroless plating bath with said chemical constituent at a rate controlled by said control signal.