Claims
- 1. A burner motor control apparatus for a fuel burner system comprising:
- an input portion for receiving a plurality of key input signals and signals from peripheral equipment of the system;
- a microprocessor, coupled to the input portion and having a comparison signal input and a zero-crossing signal input, for generating a control signal for controlling operation of the fuel burner system;
- a system controller for controlling peripheral equipment according to the control signal from the microprocessor; and
- a signal generating portion for generating a zero-crossing signal that is asserted in correspondence with positive assertion of the power source voltage, and a comparison signal having a comparison time delay, defined as a time period between assertion of the zero-crossing signal and the rising edge of the comparison signal, that varies in inverse correspondence with amplitude of the rectified power source voltage, the comparison signal and the zero-crossing signal both to be input into the microprocessor, the signal generating portion including:
- rectifying means for full-wave rectifying a power source voltage applied to the fuel burner system;
- comparison signal generating means, coupled to an output of said rectifying means, for generating said comparison signal; and
- zero-crossing signal generating means, coupled to the power source voltage, for generating said zero-crossing signal,
- wherein the microprocessor judges whether the power source voltage is higher or lower than a normal voltage based on the comparison signal and the zero-crossing signal, and wherein the microprocessor generates a compensating signal according to the voltage fluctuation.
- 2. A burner motor control apparatus for a fuel burner system as claimed in claim 1, wherein the comparison signal generating means comprises:
- at least one predetermined voltage dividing resistor network having an input connected to the output from said rectifying means; and
- a transistor having an input connected to an output of the predetermined voltage dividing resistor network, and an output producing the comparison signal corresponding to the amplitude of the power source voltage.
- 3. A burner motor control apparatus or a fuel burner system as claimed in claim 1, wherein:
- the microprocessor determines fluctuation of the power source voltage by measuring the comparison time delay of the comparison signal and comparing it with a reference time delay of a reference signal.
- 4. The burner motor control apparatus for a fuel burner system as claimed in claim 3, wherein the comparison signal generating means comprises:
- at least one predetermined voltage dividing resistor network having an input connected to the output from said rectifying means; and
- a transistor having an input connected to an output of the predetermined voltage dividing resistor network, and an output producing the comparison signal corresponding to the amplitude of the power source voltage.
- 5. A burner motor control method for a fuel burner system comprising the steps of:
- generating a comparison signal corresponding to the amplitude of a power source voltage, and generating a zero-crossing signal corresponding to the period of the power source voltage;
- determining whether the amplitude of the power source voltage is higher or lower than an amplitude of a reference voltage based on the comparison signal and the zero-crossing signal; and
- outputting a signal for controlling the phase angle of the power source voltage applied to a burner motor according to the result of the step of determining,
- wherein the step of generating the comparison signal comprises the steps of:
- applying the power source voltage to a voltage dividing resistor network; and
- applying the output of the voltage dividing resistor network to an input of a transistor, wherein an output of the transistor is the comparison signal, and
- wherein the generated comparison signal has a comparison time delay, defined as a time period between assertion of the zero-crossing signal and the rising edge of the comparison signal, that varies in inverse correspondence with amplitude of the power source voltage, and
- wherein the step of determining further includes the step of measuring the comparison time delay of the comparison signal and comparing it with a reference time delay of a reference signal.
Priority Claims (1)
Number |
Date |
Country |
Kind |
90-13239 |
Aug 1990 |
KRX |
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Parent Case Info
This application is a continuation of application Ser. No. 07/750,310, filed Aug. 27, 1991, now abandoned.
US Referenced Citations (11)
Continuations (1)
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Number |
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Parent |
750310 |
Aug 1991 |
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