Claims
- 1. A method of calculating a capacity component in a multi-chamber tool, said tool comprising a plurality of process chambers in an up or down state, the method comprising the steps of:
(a) querying a database to retrieve the total amount of time each chamber is in an up or down state during a predetermined time period; (b) calculating the capacity component by using the formula 3T i m e(N)+[(N-1)/N]*Time(N-1) …[(N-(N-1))/N]*T i m e(1)T o t a l T i m ewhere N is the number of chambers in the multi-chamber tool and the Time function represents the time the proscribed number of chambers in are in an up or down state for that capacity component.
- 2. The method of claim 1 where the capacity component is tool availability.
- 3. The method of claim 2 also comprising the step of factoring in a handler downtime into the time each chamber is available.
- 4. The method of claim 1 where the capacity component is idle-no-operator.
- 5. The method of claim 1 where the capacity component is idle-no-WIP.
- 6. The method of claim 1 where the capacity component is production.
- 7. The method of claim 1 where the capacitiy component is tool unavailable.
- 8. The method of claim 6 comprising the additional steps of caculating tool unavailable and idle-no-operator capacity components; and determining the idle-no-WIP in progress capacity omponent through the equation:
- 9. A method of calculating parts per unit of time of a multi-chamber tool, said tool comprising a plurality of process chambers in an up or down state, the method comprising the steps of:
(a) querying a database to retrieve the total amount of production time in each chamber state; (b) calculating a production component by weighing said total amount of production time in each chamber state by the fraction of the chambers in that state and dividing by the total time; (c) calculating parts per unit time as the result of total parts processed in a total time period divided by the product of said production component multiplied by said total time period.
- 10. The method of calculating the capacity components of a multi-chamber tool, said tool comprising a plurality of process chambers in an up or down state, the method comprising the steps of:
(a) querying a database to retrieve the total amount of time in each chamber state; (b) modifying the chamber states based on a handler state; (c) calculating a tool availability component by weighting said total amount of time in each chamber state by the fraction of the chambers in that state and dividing by the total time; (d) querying a database to retrieve the total amount of production time in each chamber state; (e) calculating a production component by weighting said total amount of production time in each chamber state by the fraction of the chambers in that state and dividing by the total time; (f) determining an idle-no-operator state by querying a lot state database and a chamber states database; (g) modifying said chamber states based on said idle-no-operator state; (h) calculating a total amount of time in each modified chamber state; (i) calculating an operator availability component by weighting said total amount of time in each modified chamber state by the fraction of the chambers in that state and dividing by the total time, and subtracting from said tool availability component; (j) calculating an idle-no-wip component by subtracting from 1 the sum of said production component, said operator availability component and said tool availability component.
- 11. A program storage device readable by machine, tangibly embodying a program of instructions executable by machine to perform method steps for determining a capacity component in a multi-chamber tool, said method steps comprising:
(a) querying a database to retrieve the total amount of time each chamber is in an up or down state during a predetermined time period; (b) calculating the capacity component by using the formula 4T i m e(N)+[(N-1)/N]*Time(N-1) …[(N-(N-1))/N]*T i m e(1)T o t a l T i m ewhere N is the number of chambers in the multi-chamber tool and the Time function represents the time the proscribed number of chambers in are in an up or down state for that capacity component.
- 12. The program storage device of claim 11 where the capacity component is tool availability.
- 13. The program storage device of claim 12 also comprising the step of factoring in a handler downtime into the time each chamber is available.
- 14. The program storage device of claim 11 where the capacity component is idle-no-operator.
- 15. The program storage device of claim 11 where the capacity component is production.
- 16. The program storage device of claim 11 where the capacitiy component is tool unavailable.
- 17. The program storage device of claim 15, comprising the additional steps of caculating tool unavailable and idle-no-operator capacity components; and determining the idle-no-WIP in progress capacity omponent through the equation:
- 18. A computerized system for determining the capacity components of a multi-chamber tool, which comprises:
(a) an interface which feeds chamber state information into a database (b) a program loaded onto a computer for querying the database to retrieve the total amount of time each chamber is in an up or down state during a predetermined time period; (c) a processor which according to the program calculates the capacity component by using the formula 5T i m e(N)+[(N-1)/N]*Time(N-1) …[(N-(N-1))/N]*T i m e(1)T o t a l T i m ewhere N is the number of chambers in the multi-chamber tool and the Time function represents the time the proscribed number of chambers in are in an up or down state for that capacity component.
- 19. The computerized system of claim 18 in which the interface receives information from a semiconductor production environment.
- 20. The computerized system of claim 18 in which the state information is provided directly from the multi-chamber tool.
Parent Case Info
[0001] This invention claims priority based on the provisional Patent Application Serial No. 60/231,268, filed on Sep. 8, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60231268 |
Sep 2000 |
US |