Claims
- 1. A control circuit for controlling an in-rush current of a voltage regulator circuit having a pass transistor, where the pass transistor has a control terminal, a first current terminal that is coupled to an input terminal of the regulator circuit, and a second current terminal coupled to an output terminal of the regulator circuit, the control circuit comprising:a sense transistor having first and second current terminals and a control terminal, where the first current terminal of the sense transistor is coupled to the input terminal of the regulator circuit and the control terminal of the sense transistor is coupled to the control terminal of the pass transistor; a ramp voltage generator circuit for generating a ramp voltage signal responsive to a control signal received at an input terminal of the ramp voltage generator circuit; a first current source having first and second current terminals and a control terminal, the first current terminal of the first current source being coupled to the input terminal of the voltage regulator circuit and the second current terminal of the first current source being coupled to the control terminal of the pass transistor; an amplifier having first and second input terminals and an output terminal, where the first input terminal of the amplifier is configured to receive a first voltage signal derived from the sense current, the second input terminal of the amplifier is configured to receive the ramp voltage signal, and the output terminal of the amplifier being coupled to the control terminal of the first current source.
- 2. The control circuit of claim 1, where the first current source further comprises a current mirror circuit configured to operate from a low power supply voltage.
- 3. The control circuit of claim 1, the control circuit further comprising a limiting circuit having first and second current terminals, first and second input terminals, and an output terminal, the first current terminal of the limiting circuit being coupled to the control terminal of the current source, the second current terminal of the limiting circuit being coupled to the power supply terminal, the first input terminal of the limiting circuit being configured to receive a second voltage signal derived from the sense current, the second input terminal of the limiting circuit being configured to receive a predetermined threshold voltage, and the output terminal of the limiting circuit being coupled to the control terminal of the first current source, where the limiting circuit is configured to compare the second voltage signal derived from the sense current to the predetermined threshold voltage and generate a current limiting signal at the output terminal of the limiting circuit.
- 4. The control circuit of claim 3, the control circuit further comprising a divider circuit coupled between the second current terminal of the sense transistor and a power supply terminal, the voltage divider having a first circuit node and a second circuit node coupled to the sense transistor, where the voltage divider is configured to generate the first voltage signal derived from the sense current at the first circuit node and generate the second voltage signal derived from the sense current at the second circuit node.
- 5. The control circuit of claim 4, where the limiting circuit further comprises a transistor having first and second current terminals and a control terminal, where the control terminal of the transistor is coupled to the second circuit node, the first current terminal is coupled to the control terminal of the first current source, and the second current terminal is coupled to the power supply terminal.
- 6. The control circuit of claim 1, where the ramp voltage generator circuit further comprises:a first transistor having first and second current terminals and a control terminal, where the control terminal of the first transistor is coupled to the input terminal of the ramp voltage generator circuit; a second current source coupled between another power supply terminal and the first current terminal of the first transistor; a capacitor coupled between the power supply terminal and the second current terminal of the first transistor; and a second transistor having first and second current terminals and a control terminal, where the control terminal of the second transistor is coupled to the input terminal of the ramp voltage generator circuit, the first current terminal of the second transistor is coupled to the second current terminal of the first transistor, and the second current terminal of the second transistor is coupled to the power supply terminal, where the first and second transistors are configured to have a complementary response to the control signal such that the ramping voltage signal is generated at the first current terminal of the second transistor responsive to a control signal received at the input terminal of the ramp voltage generator circuit.
- 7. The control circuit of claim 6, where the another power supply terminal further comprises the input terminal of the voltage regulator circuit.
- 8. The control circuit of claim 1, where the first current source further comprises:a third transistor having first and second current terminals and a control terminal, where the first current terminal of the third transistor is coupled to the first current terminal of the first current source, and where the control terminal of the third transistor and the second current terminal of the third transistor are coupled to the control terminal of the first current source; and a fourth transistor having first and second current terminals and a control terminal, where the first current terminal of the fourth transistor is coupled to the first current terminal of the first current source, and where the control terminal of the fourth transistor is coupled to the control terminal of the first current source, and the second current terminal of the fourth transistor is coupled to the second current terminal of the first current source.
- 9. The control circuit of claim 1, where the amplifier further comprises:a second current source configured to provide a first predetermined current; a fifth transistor having first and second current terminals and a control terminal, where the first current terminal of the fifth transistor is coupled to the second current source and the control terminal of the fifth transistor is coupled to the first input terminal of the arnplifier; a sixth transistor having first and second current terminals and a control terminal, where the first current terminal of the fifth transistor is coupled to the second current source and the control terminal of the fifth transistor is coupled to the second input terminal of the amplifier; a third current source configured to provide a second predetermined current; a seventh transistor having first and second current terminals and a control terminal, where the first current terminal of the seventh transistor is coupled to the third current source, the second current terminal of the seventh transistor is coupled to the power supply terminal, and the control terminal of the seventh transistor is coupled to the second current terminal of the fifth transistor; an eighth transistor having first and second current terminals and a control terminal, where the first current terminal of the eighth transistor is coupled to the second current terminal of the fifth transistor, the second current terminal of the eighth transistor is coupled to the power supply terminal, and the control terminal of the eighth transistor is coupled to the first current terminal of the seventh transistor; and a ninth transistor having first and second current terminals and a control terminal, where the first current terminal of the ninth transistor is coupled to the control terminal of the first current source, the second current terminal of the ninth transistor is coupled to the power supply terminal, and the control terminal of the ninth transistor is coupled to the control terminal of the eighth transistor.
- 10. The control circuit of claim 9, where the second and third current sources source current from one of another power supply terminal and the input terminal of the voltage regulator circuit.
- 11. A current control device for controlling an in-rush current through a pass transistor of a voltage regulator circuit, where the pass transistor has a control terminal and a first current terminal that are coupled to an input terminal of the regulator circuit and a second current terminal coupled to an output terminal of the regulator circuit, the current control device comprising:current sensing means having first and second current terminals and a control terminal, where the first current terminal of the current sensing means is coupled to the input terminal of the regulator circuit and the control terminal of the current sensing means is coupled to the control terminal of the pass transistor; ramp voltage generating means for generating a ramping voltage signal responsive to a control signal received at an input terminal of the ramp voltage generating means; a first current source having first and second current terminals and a control terminal, the first current terminal of the first current source being coupled to the input terminal of the voltage regulator circuit and the second current terminal of the first current source being coupled to the control terminal of the pass transistor; and amplifier means having first and second input terminals and an output terminal, the first input terminal of the amplifier means being configured to receive a first voltage signal derived from the sense current, the second input terminal of the amplifier means being configured to receive the ramping voltage signal, and the output terminal of the amplifier means being coupled to the control terminal of the first current source.
- 12. The current control device of claim 11, where the first current source further comprises a current mirror.
- 13. The current control device of claim 11, the current control device further comprising current limiting means having first and second current terminals, first and second input terminals, and an output terminal, the first current terminal of the current limiting means being coupled to the control terminal of the first current source, the second current terminal of the current limiting means being coupled to the power supply terminal, the first input terminal of the current limiting means being configured to receive a second voltage signal derived from the sense current, the second input terminal of the current limiting means being configured to receive a predetermined threshold voltage, and the output terminal of the current limiting means being coupled to the control terminal of the first current source, where the current limiting means is configured to compare the second voltage signal derived from the sense current to the predetermined threshold voltage and generate a current limiting signal at the output terminal of the current limiting means.
- 14. The current control device of claim 13, where the current control device further includes sense current conversion means for converting the sense current to the first voltage signal derived from the sense current and the second voltage signal derived from the sense current.
- 15. A method for controlling an in-rush current through a pass transistor of a voltage regulator circuit, the method comprising the steps of:providing a sense transistor that mirrors the pass transistor; converting a sense current of the sense transistor into a first voltage signal; generating a ramp voltage signal responsive to a control signal; comparing the first voltage signal to the ramp voltage signal to generate an in-rush current control signal; and sourcing current to control terminals of the sense transistor and the pass transistor under control of the in-rush current control signal.
- 16. The method of claim 15, where the step of converting a sense current of the sense transistor into a first voltage signal includes converting the sense current of the sense transistor into a second voltage signal and the method further includes the step of limiting the in-rush current control signal when the second voltage signal reaches a predetermined threshold.
- 17. The method of claim 15, where the step of sourcing current to control terminals of the sense transistor and the pass transistor under control of the in-rush current control signal further comprises:driving a first transistor with the in-rush current control signal; mirroring a current in the first transistor with a current in a second transistor; and sourcing current to the control terminals of the sense transistor and the pass transistor with the second transistor.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application claims the benefit of U.S. provisional patent application No. 60/295,069 filed Jun. 1, 2001, herein incorporated by reference in its entirety.
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Provisional Applications (1)
|
Number |
Date |
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|
60/295069 |
Jun 2002 |
US |