Claims
- 1. A semiconductor integrated circuit for a drive control apparatus of a polyphase brushless motor having a plurality of field coils, comprising:a phase current output circuit for-generating a current to pass through respective field coils of said motor; output terminals for outputting a current to pass through field coils of respective phases of said motor, said current being generated by said phase current output circuit; a phase switching control circuit capable of controlling said phase current output circuit to switch a current to pass from one pair of field coils to another pair of field coils of said motor for constant-speed rotation thereof and, when starting said motor, capable of controlling said phase current output circuit to conduct a pulse current, having such a duration as not to cause the rotor to react, to each of a plurality of field coil pairs of said motor alternately in first and second, mutually opposite, directions sequentially; an induced voltage detecting circuit, connected to said phase current output circuit, for detecting first and second voltages induced in each of said field coils of a non-conducting phase by said pulse current in said two directions; an integrating circuit for generating a rotor position signal by integrating said first induced voltage by said pulse current in said first direction and then integrating said second induced voltage by said pulse current in said second direction at each of said field coils of the non-conducting phase; a polarity detecting circuit for generating a polarity signal representing a polarity of a rotor position signal generated by said integrating circuit at each of said field coils of the non-conducting phase; a memory circuit for storing polarity data representing a plurality of polarity signal generated by said polarity detecting circuit; and a discriminating circuit for determining a field coil pair for current conduction to start said motor on the basis of multiple pieces of polarity data stored in said memory circuit and generating a phase selection setting signal to be supplied to said phase switching control circuit, each of said circuits and said output terminals being formed on a single semiconductor chip.
- 2. A semiconductor integrated circuit according to claim 1, wherein said integrating circuit includes a capacitor element connected as an externally-mounted element to an external terminal provided on said semiconductor chip.
- 3. A semiconductor integrated circuit according to claim 1, further comprising a timing circuit, mounted on said semiconductor chip, for generating control signals on the basis of a clock signal for operating said phase switching control circuit, said induced voltage detecting circuit, said integrating circuit, said memory circuit and said discriminating circuit respectively at predetermined timing.
- 4. A semiconductor integrated circuit according to claim 1, further comprising a back e.m.f detecting circuit, mounted on said semiconductor chip and connected to said phase current output circuit, for detecting zero cross points generated in the field coils of the non-conducting phase and generating a phase switching timing signal, wherein said phase switching control circuit switches a current from one field coil pair to another according to said phase switching timing signal from said back e.m.f. detecting circuit after the motor is started and said phase current output circuit supplies the motor with a current of a larger amplitude than that of said pulse current sent to determine a field coil pair for current conduction to start the motor.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-090037 |
Mar 2000 |
JP |
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Parent Case Info
This is a continuation application of U.S. Ser. No. 09/818,511, filed Mar. 28, 2001.
US Referenced Citations (13)
Foreign Referenced Citations (3)
Number |
Date |
Country |
63-69489 |
Mar 1988 |
JP |
3-207250 |
Sep 1991 |
JP |
7-274585 |
Oct 1995 |
JP |
Continuations (1)
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Number |
Date |
Country |
Parent |
09/818511 |
Mar 2001 |
US |
Child |
09/893549 |
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US |