Claims
- 1. An electronic circuit for providing drive to a driven element, said driven element having a first lead and having a second lead connected to a first power source, said electronic circuit comprising:
- a driving terminal connected to said first lead of said driven element;
- a second terminal connected to a second power source;
- means for carrying current from said driving terminal to said second terminal;
- means for sensing the impedance of said driven element; and
- means for providing that for a given different between voltage levels of said first and second power sources, the average value of current flowing between said driving terminal and said second terminal remains approximately constant for a range of said impedance of said driven element, comprising:
- switch means connected between said driving terminal and said second terminal; and
- means for operating said switch means in response to said impedance of said driven element such that said switch means is closed for a duty cycle proportional to said impedance of said driven element, said means for operating comprising:
- means for providing a sense signal having a sense voltage lower than the voltage of said first power source by an amount approximately proportional to said impedance of said driven element; and
- means responsive to said sense signal for controlling said duty cycle of said switch means to be proportional to said sense voltage comprising:
- means for generating a ramp voltage; and
- means for comparing said sense voltage to said ramp voltage and providing to said switch means a drive signal when said ramp voltage is greater than said sense voltage.
- 2. An electronic circuit for providing drive to a driven element, said driven element having a first lead and having a second lead connected to a first power source, said electronic circuit comprising:
- a driving terminal connected to said first lead of said driven element;
- a second terminal connected to a second power source;
- means for carrying current from said driving terminal to said second terminal;
- means for sensing the impedance of said driven element; and
- means for providing that for a given difference between voltage levels of said first and second power sources, the average value of current flowing between said driving terminal and said second terminal remains approximately constant for a range of said impedance of said driven element, said means for providing comprising:
- switch means connected between said driving terminal and said second terminal; and
- means for operating said switch means in response to said impedance of said driven element such that said switch means is closed for a duty cycle proportional to said impedance of said driven element, said means for operating comprising:
- means for providing a sense signal having a sense voltage lower than the voltage of said first power source by an amount approximately proportional to said impedance of said driven element; and
- means responsive to said sense signal for controlling said duty cycle of said switch means to be proportional to said sense voltage comprising:
- a first clock input terminal receiving a first clock input signal;
- a NOR gate having a first input terminal connected to said first clock input terminal, a second input terminal, and an output terminal connected to said means for said operating said switch means; and
- a comparator having a non-inverting input terminal provided with said sense voltage, an inverting input terminal provided with a voltage which ramps from the voltage of said first power source toward the voltage of said second power source during the time when said first clock input signal is in a first state, and an output terminal connected to said second terminal of said NOR gate.
- 3. An electronic circuit as in claim 2 where said voltage which ramps smoothly is provided by a structure comprising:
- a storage means having a first terminal connected to said first power source and a second terminal connected to said inverting input terminal and through a resistance means to said second power source; and
- switch means having a first current carrying terminal connected to said first power source, a second current carrying terminal connected to said inverting input terminal, and a first control terminal connected to said first clock input terminal.
- 4. An electronic circuit as in claim 2 where said sense voltage is provided by:
- a storage means having a first terminal connected to said non-inverting input terminal and a second terminal connected to said second power source;
- a second clock input terminal having a second clock input signal; and
- second switch means having a first current carrying terminal connected to said means for providing a sense signal, a second current carrying terminal connected to said first terminal, and a control terminal connected to said second clock input terminal.
- 5. An electronic circuit for providing drive to a driven element, said driven element having a first lead and having a second lead connected to a first power source, said electronic circuit comprising:
- a driving terminal connected to said first lead of said driven element;
- a second terminal connected to a second power source;
- means for carrying current from said driving terminal to said second terminal;
- means for sensing the impedance of said driven element, comprising:
- a first transistor having a first current carrying terminal connected to said driving terminal and a second current carrying terminal connected to said second power source,
- resistance means having a first terminal connected to said driving terminal and having a second terminal connected to a control terminal of said first transistor,
- a second transistor having a first current carrying terminal connected to said control terminal of said first transistor and a second current carrying terminal connected to said second power source,
- a third transistor having a first current carrying terminal connected to said first power source and having a control terminal connected to said driving terminal, and
- a fourth transistor having a first current carrying terminal connected to a second current carrying terminal of said third transistor, a second current carrying terminal connected to said second power source, and a control terminal connected to said control terminal of said first transistor,
- the output of said means for sensing being taken from said first current carrying terminal of said fourth transistor, said output providing a sense voltage lower than the voltage of said first power source by an amount approximately proportional to said impedance of said driven element; and
- means for providing that in response to said sense voltage the average value of current flowing between said driving terminal and said second terminal remains constant for a range of values of said sense voltage comprising:
- switch means connected between said driving terminal and said second terminal, and means for operating said switch means such that said switch means is closed for a duty cycle proportional to said sense voltage.
- 6. An electronic circuit as in claim 5 in which said means for operating said switch means comprises:
- means for generating a ramp voltage; and
- means for comparing said sense voltage to said ramp voltage and providing to said switch means a drive signal when said ramp voltage is greater than said sense voltage.
BACKGROUND OF THE INVENTION
This is a continuation-in-part of patent application Ser. No. 06/618,615, filed June 8, 1984, now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
162122 |
Dec 1980 |
JPX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
618615 |
Jun 1984 |
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