Claims
- 1. A method for manufacturing single crystals comprising:
- a first step of pulling a single crystal from a melt within a vessel holding a melt and a liquid encapsulant;
- a second step of measuring a weight of the single crystal pulled in said first step;
- a third step of comparing a weight signal obtained in said second step with a reference weight signal to provide a weight deviation signal;
- a fourth step of differentiating the weight deviation signal obtained in said third step;
- a fifth step of converting a buoyancy of said liquid encapsulant influencing the single crystal pulling into a weight/time signal corresponding thereto and outputting the weight/time signal as a buoyancy correction signal;
- a sixth step of subtracting the buoyancy correction signal obtained in said fifth step from a differentiation output signal obtained in said fourth step to provide a signal corresponding to a true diameter fluctuation of the single crystal;
- a seventh step of differentiating the signal obtained in said sixth step;
- an eighth step of adding a differentiation output signal obtained in said seventh step and the signal obtained in said sixth step;
- a ninth step of generating a heating control signal for the melt in response to the signal obtained in said eighth step; and
- a tenth step of heating the solution in response to the heating control signal obtained in said ninth step.
- 2. The method according to claim 1, wherein said tenth step comprises a first heating step of heating the melt in response to the heating control signal; and a second heating step of supplementarily heating the melt in response to a heating control signal from a separate heating device.
- 3. A method for maufacturing single crystals comprising:
- a first step of pulling a single crystal from a melt within a vessel holding a melt and a liquid encapsulant;
- a second step of measuring a weight of the single crystal pulled in said first step;
- a third step of comparing a weight signal obtained in said second step with a reference weight signal to provide a weight deviation signal;
- a fourth step of differentiating the weight deviation signal obtained in said third step;
- a fifth step of converting a buoyancy of said liquid encapsulant influencing the single crystal pulled into a weight/time signal corresponding thereto and outputting the weight/time signal as a buoyancy correction signal;
- a sixth step of subtracting the buoyancy correction signal obtained in said fifth step from a differentiation output signal obtained in said fourth step to provide a signal corresponding to a true diameter fluctuation of the single crystal;
- a seventh step of differentiating the signal obtained in said sixth step;
- an eighth step of adding a differentiation output signal obtained in said seventh step and the signal obtained in said sixth step;
- a ninth step of phase-compensating a signal obtained in said eighth step to provide a phase-compensated signal to make a thermal response of the melt early;
- a tenth step of generating a heating control signal for the melt in response to the phase-compensated signal obtained in said ninth step; and
- an eleventh step of heating the solution in response to the heating control signal obtained in said tenth step.
- 4. A method according to claim 3, wherein said eleventh step comprises a first heating step of heating the melt in response to the heating control signal; and a second heating step of supplementarily heating the melt in response to a heating control signal from a separate heating device.
Priority Claims (1)
Number |
Date |
Country |
Kind |
56-4596 |
Jan 1981 |
JPX |
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Parent Case Info
This is a division of application Ser. No. 336,708, filed Jan. 4, 1982 now U.S. Pat. No. 4,397,813 issued Aug. 9, 1983.
US Referenced Citations (5)
Number |
Name |
Date |
Kind |
3934983 |
Bardsley et al. |
Jan 1976 |
|
4008387 |
Green et al. |
Feb 1977 |
|
4207293 |
Scholl et al. |
Jun 1980 |
|
4258003 |
Hurle et al. |
Mar 1981 |
|
4397813 |
Washizuka et al. |
Aug 1983 |
|
Foreign Referenced Citations (4)
Number |
Date |
Country |
2752308 |
May 1978 |
DEX |
131683 |
Oct 1975 |
JPX |
1478192 |
Jun 1977 |
GBX |
1494342 |
Dec 1977 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Bardsley et al., Slot Crystal Growth 24/25 1974, pp. 369-373. |
Divisions (1)
|
Number |
Date |
Country |
Parent |
336708 |
Jan 1982 |
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