Claims
- 1. A very low dropout dual supply voltage regulator circuit comprising:
- a control input node that receives control power;
- a power input node that receives output power, said power input node being isolated from said control input node;
- an output node;
- a drive circuit that provides drive current in response to said control power, said drive circuit being coupled to said control node, said drive circuit comprising a driver transistor;
- an output circuit coupled between said power input node and said output node, said output circuit comprising an output transistor coupled to said driver transistor; and
- a power-on circuit coupled to said power input node and to said drive circuit, said power-on circuit permitting said drive current to cause output voltage to rise as power input node voltage rises when said power input node is LOW while preventing said drive current from increasing without limitation when said power input node is LOW, said power-on circuit comprising at least one circuit device selected from the group consisting of a transistor and a diode, said circuit device having at least one P-type region and at least one N-type region, said N-type region being coupled to said power input node.
- 2. The very low dropout dual supply voltage regulator circuit of claim 1, wherein said circuit device comprises a PNP transistor having a base coupled to said power input node, a collector coupled to said output node, and an emitter coupled to said drive circuit.
- 3. The very low dropout dual supply voltage regulator circuit of claim 2, wherein said PNP transistor is a lateral PNP transistor.
- 4. The very low dropout dual supply voltage regulator circuit of claim 2, wherein said PNP transistor is a vertical PNP transistor.
- 5. The very low dropout dual supply voltage regulator circuit of claim 1, wherein said circuit device comprises a diode-connected PNP transistor having a base and collector coupled together and to said power input node.
- 6. The very low dropout dual supply voltage regulator circuit of claim 1, wherein said circuit device comprises a diode-connected NPN transistor having an emitter coupled to said power input node.
- 7. The very low dropout dual supply voltage regulator circuit of claim 1, wherein said circuit device comprises a Schottky diode having an anode coupled to said drive circuit and a cathode coupled to said power input node.
- 8. The very low dropout dual supply voltage regulator circuit of claim 1 further comprising a bandgap reference circuit coupled to said output node and to said drive circuit.
- 9. The very low dropout dual supply voltage regulator circuit of claim 8 further comprising a level shifting circuit coupled between said bandgap reference circuit and said drive circuit.
- 10. The very low dropout dual supply voltage regulator circuit of claim 9, wherein said power-on circuit is coupled to a node between said drive circuit and said level shifting circuit.
- 11. A very low dropout dual supply voltage regulator circuit comprising:
- a control input node that receives control power;
- a power input node that receives output power, said power input node being isolated from said control input node;
- an output node;
- an output transistor coupled to said output node and to said power input node;
- a driver transistor coupled between said control input node and the base of said output transistor to provide drive current to said output transistor; and
- a power-on transistor coupled to said power input node and to said driver transistor that permits said drive current to cause output voltage to rise as power input node voltage rises when said power input node is LOW while preventing said output transistor from going into saturation when said power input node is LOW.
- 12. The very low dropout dual supply voltage regulator circuit of claim 11 further comprising a bandgap reference circuit coupled to said output node and to said driver transistor.
- 13. The very low dropout dual supply voltage regulator circuit of claim 12 further comprising a level shifting circuit coupled between said bandgap reference circuit and said driver transistor.
- 14. The very low dropout dual supply voltage regulator circuit of claim 13, wherein said power-on transistor is coupled between said level shifting circuit and said driver transistor.
- 15. The very low dropout dual supply voltage regulator circuit of claim 11, wherein said power-on transistor comprises a PNP transistor having a base coupled to said power input node, a collector coupled to said output node, and an emitter coupled to said driver transistor.
- 16. The very low dropout dual supply voltage regulator circuit of claim 15, wherein said PNP transistor is a lateral PNP transistor.
- 17. The very low dropout dual supply voltage regulator circuit of claim 15, wherein said PNP transistor is a vertical PNP transistor.
- 18. The very low dropout dual supply voltage regulator circuit of claim 11, wherein said power-on transistor comprises a diode-connected PNP transistor having a base and collector coupled together and to said power input node.
- 19. The very low dropout dual supply voltage regulator circuit of claim 11, wherein said power-on transistor comprises a diode-connected NPN transistor having an emitter coupled to said power input node.
- 20. The very low dropout dual supply voltage regulator circuit of claim 11, wherein said regulator circuit has a dropout voltage approximately equal to V.sub.CESAT of said output transistor.
- 21. The very low dropout dual supply voltage regulator circuit of claim 11, wherein drive current sufficient to cause latching is prevented from being drawn from the collector of said output transistor when said power input node is LOW.
- 22. A very low dropout dual supply voltage regulator circuit comprising:
- a control input node that receives control power;
- a power input node that receives output power, said power input node being isolated from said control input node;
- an output node;
- a drive circuit comprising a driver transistor that provides drive current in response to said control power, said drive circuit being coupled to said control node;
- an output circuit coupled between said power input node and said output node, said output circuit comprising an output transistor coupled to said driver transistor; and
- a power-on circuit coupled to said power input node and to said drive circuit that permits said drive current to cause output voltage to rise as power input node voltage rises when said power input node is LOW while preventing said drive current from overdriving said output circuit when said power input node is LOW, said power-on circuit comprising at least one circuit device selected from the group consisting of a transistor and a diode, said circuit device having at least one P-type region and at least one N-type region, said N-type region being coupled to said power input node.
- 23. A very low dropout dual supply voltage regulator circuit comprising:
- a control input node that receives control power;
- a power input node that receives output power, said power input node being isolated from said control input node;
- an output node;
- means for providing power from said power input node to said output node;
- means for driving a drive current into said means for providing power in response to said control power; and
- means for preventing said means for driving from increasing drive current without limitation when said means for preventing senses that said power input node is low.
- 24. The very low dropout dual supply voltage regulator circuit of claim 23, wherein said means for preventing is a PNP transistor having a base coupled to said power input node.
- 25. The very low dropout dual supply voltage regulator circuit of claim 24, wherein said PNP transistor is a diode-connected PNP transistor having a base and collector coupled together and to said power input node.
- 26. The very low dropout dual supply voltage regulator circuit of claim 23, wherein said means for preventing is a diode-connected NPN transistor having an emitter coupled to said power input node.
- 27. The very low dropout dual supply voltage regulator circuit of claim 23, wherein said means for preventing is a Schottky diode.
- 28. A method of operating a very low dropout dual supply voltage regulator comprising:
- providing an output transistor between a power input node and an output node;
- monitoring said power input node to sense whether said power input node is LOW;
- preventing a driver transistor from increasing drive current without limitation to said output transistor when said monitoring monitors that said power input node is LOW, said driver transistor being coupled to a control input node that is separate from said power input node;
- permitting said driver transistor to supply drive current to said output transistor to allow output voltage to rise as power input node voltage rises when said monitoring monitors that said power input node is LOW; and
- driving said output transistor with said drive current from said driver transistor when said monitoring senses that said power input node is other than LOW.
- 29. The method of claim 28, wherein said monitoring and preventing are performed by a PNP transistor having a base coupled to said power input node.
- 30. The method of claim 28, wherein said monitoring and preventing are performed by a Schottky diode coupled to said power input node.
- 31. A very low dropout dual supply voltage regulator circuit comprising:
- a control input node that receives control power;
- a power input node that receives output power, said power input node being isolated from said control input node;
- an output node;
- a drive circuit that provides drive current in response to said control power, said drive circuit being coupled to said control node, said drive circuit comprising a driver transistor;
- an output circuit coupled between said power input node and said output node, said output circuit comprising an output transistor coupled to said driver transistor; and
- a power-on circuit coupled to said power input node and to said drive circuit that causes said drive circuit to decrease said drive current to said output circuit when said power input node is LOW while permitting said drive current to cause output voltage to rise as power input node voltage rises when said power input node is LOW, said power-on circuit comprising at least one circuit device selected from the group consisting of a transistor and a diode, said circuit device having at least one P-type region and at least one N-type region, said N-type region being coupled to said power input node.
CROSS REFERENCE TO RELATED APPLICATION
This is a continuation of commonly assigned U.S. patent application Ser. No. 08/908,293, filed Aug. 7, 1997, now U.S. Pat. No. 5,781,002, which is a continuation of U.S. application Ser. No. 08/604,749, filed Feb. 23, 1996, now abandoned.
US Referenced Citations (6)
Non-Patent Literature Citations (1)
Entry |
"Initial Release: LT1580/LT1580-2.5: 7A, Very Low Dropout Regulator," Linear Technology, Inc., Milpitas, California, pp. 1-4, Jun. 1995. |
Continuations (2)
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Number |
Date |
Country |
Parent |
908293 |
Aug 1997 |
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Parent |
604749 |
Feb 1996 |
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