IP Library Granted Patent US 7,375,575
Granted Patent B1
US 7,375,575 · App. 11/254,601 · Granted May 20, 2008

Method and apparatus for controlled voltage level shifting

Assignee: Marvell Israel (MISL) Ltd.
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Quick Facts
Patent No.
US 7,375,575
App. No.
11/254,601
Granted
May 20, 2008
Kind
B1
Abstract

A method and an apparatus for voltage level shifting are described. A voltage level shifter includes two level shifting circuits and a differential amplifier. The differential amplifier forms a feedback loop with one level shifting circuit. The feedback loop controls the level shifting operation of both level shifting circuits. The differential amplifier can operate to provide a control signal that causes a level-shifted signal in the feedback loop to match a target signal. The two level shifting circuits can perform their level shifting operation based on the control signal.

Claims (90)

1. A voltage level shifting apparatus, comprising:

an input signal, a reference signal, and a target signal;

a differential amplifier having a positive input node, a negative input node connected to the target signal, and an output node;

a first level shifting circuit comprising:

a first top transistor having a drain node connected to a first reference voltage, a gate node connected to the reference signal, and a source node; and

a first bottom transistor having a drain node connected to the positive input node, a gate node connected to the output node, and a source node connected to a second reference voltage;

a second level shifting circuit comprising:

a second top transistor having a drain node connected to the first reference voltage, a gate node connected to the input signal, and a source node; and

a second bottom transistor having a gate node connected to the output node, and a source node connected to the second reference voltage;

a third reference voltage; and

a comparator connected to the third reference voltage and having:

a positive input node connected to the drain node of the first bottom transistor, and

a negative input node connected to the drain node of the second bottom transistor.

2. The voltage level shifting apparatus of claim 1 , further comprising:

a voltage divider comprising two voltage dividing resistances and a voltage between the two voltage dividing resistances, wherein one resistance is connected to the second reference voltage and the other resistance is connected to the third reference voltage,

wherein the voltage between the two voltage dividing resistances is the target signal.

3. The voltage level shifting apparatus of claim 1 , wherein the source node of the first top transistor is connected to the drain node of the first bottom transistor, and wherein the source node of the second top transistor is connected to the drain node of the second bottom transistor.

4. The voltage level shifting apparatus of claim 3 , further comprising:

a first resistance having a top node connected to the source node of the first top transistor and a bottom node connected to the drain node of the first bottom transistor; and

a second resistance having a top node connected to the source node of the second top transistor and a bottom node connected to the drain node of the second bottom transistor.

5. A voltage level shifter, comprising:

a first level shifting circuit for receiving a reference signal and for providing a level-shifted reference signal based on the reference signal;

a differential amplifier for providing a control signal based on a difference between the level-shifted reference signal and a target signal; and

a second level shifting circuit for receiving an input signal and for providing a level-shifted version of the input voltage signal based on the control signal; and

a comparator circuit to adjust the amplitude levels of the level-shifted version of the input signal to produce an output binary signal.

6. The voltage level shifter of claim 5 , wherein the first level shifting circuit provides the level-shifted reference signal based on the control signal.

7. The voltage level shifter of claim 6 , wherein the control signal causes the first level shifting circuit to provide the level-shifted reference signal to be substantially equal to the target signal.

8. The voltage level shifter of claim 5 , wherein the control signal causes the first level shifting circuit and the second level shifting circuit to provide an amount of level shifting that is substantially equal to a difference between the reference signal and the target signal.

9. The voltage level shifter of claim 5 , wherein the differential amplifier and the first level shifting circuit are connected in a negative feedback configuration.

10. The voltage level shifter of claim 5 , wherein the second level shifting circuit provides a level-shifting current that corresponds to the control signal.

11. The voltage level shifter of claim 10 , wherein the second level shifting circuit includes,

a component having a first node and a second node, wherein the component is one of: a resistance, a MOS amplifier, and an electrical connection;

a first transistor having a gate node connected to the input signal and a source node connected to the first node; and

a second transistor having a gate node connected to the control signal and a drain node connected to the second node,

wherein the second level shifting circuit creates a controllable voltage drop by allowing the level-shifting current to flow through the component, the first transistor, and the second transistor.

12. The voltage level shifter of claim 5 , wherein the first level shifting circuit provides a level-shifting current that corresponds to the control signal.

13. The voltage level shifter of claim 12 , wherein the first level shifting circuit includes

a component having a first node and a second node, wherein the component is one of: a resistance, a MOS amplifier, and an electrical connection;

a first transistor having a gate node connected to the reference signal and a source node connected to the first node;

a second transistor having a gate node connected to the control signal and a drain node connected to the second node,

wherein the first level shifting circuit creates a controllable voltage drop by allowing the level-shifting current to flow through the component, the first transistor, and the second transistor.

14. The voltage level shifter of claim 5 , wherein the first level shifting circuit and the second level shifting circuit include the same configuration.

15. The voltage level shifter of claim 5 , wherein the target signal and the reference signal are substantially constant signals.

16. The voltage level shifter of claim 5 , wherein the target signal varies within a permissible range of values.

17. A method of voltage level shifting, comprising:

performing a first level shifting operation to provide a level-shifted reference signal;

providing a control signal to the first level shifting operation to cause the level-shifted reference signal to substantially equal a target signal; and

performing a second level shifting operation based on the control signal to provide a level-shifted version of an input signal;

adjusting the amplitude levels of the level-shifted version of an input signal to provide an output binary signal.

18. The method of claim 17 , wherein performing a first level shifting operation comprises:

receiving a reference signal; and

level shifting the reference signal by an amount substantially equal to a difference between the reference signal and the target signal.

19. The method of claim 18 , wherein performing the second level shifting operation based on the control signal comprises:

receiving an input signal; and

level shifting the input signal by an amount substantially equal to the difference between the reference signal and the target signal.

20. The method of claim 17 , wherein providing the control signal comprises providing the control signal based on a difference between the level-shifted reference signal and the target signal.

21. The method of claim 20 , wherein pro viding a control signal further comprises:

increasing the control signal when the level-shifted reference signal is greater than the target signal; and

decreasing the control signal when the level-shifted reference signal is less than the target signal.

22. The method of claim 17 , wherein the first level shifting operation and the second level shifting operation occur simultaneously.

23. The method of claim 17 , wherein the target signal is a substantially constant signal.

24. The method of claim 17 , wherein the target signal varies within a permissible range of values.

25. A voltage level shifter, comprising:

first means for receiving a reference signal and for providing a level-shifted reference signal based on the reference signal;

difference amplifier means for providing a control signal based on a difference between the level-shifted reference signal and a target signal; and

second means for receiving an input signal and for providing a level-shifted version of the input voltage signal based on the control signal; and

comparator means for adjusting the amplitude levels of the level-shifted version of the input signal to produce an output binary signal.

26. The voltage level shifter of claim 25 , wherein the first means comprises means for providing the level-shifted reference signal based on the control signal.

27. The voltage level shifter of claim 26 , wherein the control signal causes the first means to provide the level-shifted reference signal to be substantially equal to the target signal.

28. The voltage level shifter of claim 25 , wherein the control signal causes the first means and the second means to provide an amount of level shifting that is substantially equal to a difference between the reference signal and the target signal.

29. The voltage level shifter of claim 25 , wherein the difference amplifier means and the first means are connected in a negative feedback configuration.

30. The voltage level shifter of claim 25 , wherein the second means comprises current means for providing a level-shifting current that corresponds to the control signal.

31. The voltage level shifter of claim 30 , wherein the current means comprises:

one of:

a resistance means for providing a voltage drop based on the level-shifting current,

amplifier means for providing signal amplification, and

electrical connection means for passing the level-shifting current;

a first transistor means for passing the level-shifting current, where the first transistor means is connected to one of: the resistance means, the amplifier means, and the electrical connection means; and

a second transistor means for passing the level-shifting current, where the second transistor means is connected to one of: the resistance means, the amplifier means, and the electrical connection means.

32. The voltage level shifter of claim 25 , wherein the first means comprises current means for providing a level-shifting current that corresponds to the control signal.

33. The voltage level shifter of claim 32 , wherein the current means comprises:

one of:

a resistance means for providing a voltage drop based on the level-shifting current,

amplifier means for providing signal amplification, and

electrical connection means for passing the level-shifting current;

a first transistor means for passing the level-shifting current, where the first transistor means is connected to one of: the resistance means, the amplifier means, and the electrical connection means; and

a second transistor means for passing the level-shifting current, where the second transistor means is connected to one of: the resistance means, the amplifier means, and the electrical connection means.

34. The voltage level shifter of claim 25 , wherein the first means and the second means include the same configuration.

35. The voltage level shifter of claim 25 , wherein the target signal and the reference signal are substantially constant signals.

36. The voltage level shifter of claim 25 , wherein the target signal varies within a permissible range of values.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME OF ASSIGNOR PREVIOUSLY RECORDED ON REEL 021018 FRAME 0240. ASSIGNOR(S) HEREBY CONFIRMS THE MISSPELLING OF THE NAME OF ASSIGNOR WAS A TYPO WHEN FILED; THE ASSIGNOR NAME IS CORRECT ON THE ASSIGNMENT DOCUMENT. Recorded Aug 4, 2020
From: MARVELL SEMICONDUCTOR ISRAEL LTD.
To: MARVELL ISRAEL (M.I.S.L.) LTD.
Reel/Frame 053398/0078 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNOR'S NAME PREVIOUSLY RECORDED AT REEL: 021018 FRAME: 0240. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF NAME. Recorded Jul 30, 2020
From: MARVELL SEMICONDUCTOR ISRAEL LTD.
To: MARVELL ISRAEL (M.I.S.L.) LTD.
Reel/Frame 053365/0378 →
CHANGE OF NAME Recorded May 27, 2008
From: MARVELL SEMICONDUCTOR ISREAL LTD.
To: MARVELL ISRAEL (M.I.S.L.) LTD.
Reel/Frame 021018/0240 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2005
From: BAZES, MEL
To: MARVELL SEMICONDUCTOR ISRAEL LTD.
Reel/Frame 017149/0482 →
Continuity (1)
Provisional Application 6065322100 · Feb 14, 2005