IP Library Granted Patent US 9,621,037
Granted Patent B2
US 9,621,037 · App. 14/505,688 · Granted Apr 11, 2017

Voltage regulator with charge pump for generating second voltage source

Inventors: Walter Rossi (Pozzo d'Adda, IT); Jason Larry Rabb (Austin, TX); David Nigel Wakely (Austin, TX)
Assignee: Microsemi Semiconductor (U.S.) Inc.
H02M3/156H02M3/07G05F1/577H02M2001/009
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Quick Facts
Patent No.
US 9,621,037
App. No.
14/505,688
Granted
Apr 11, 2017
Kind
B2
Abstract

A voltage regulator includes a switch coupled between an input voltage terminal and an energy storage element, a first output capacitor coupled to a first node defined between the switch and the energy storage element, the first capacitor being coupled to a first output voltage terminal, a charge pump circuit coupled to the first node and comprising a second output capacitor coupled between a second output voltage terminal and the first output voltage terminal, and a controller operable to selectively enable the switch to control voltages generated at the first and second output terminals.

Claims (37)

1. A voltage regulator, comprising:

a switch coupled between an input voltage terminal and an energy storage element;

a first output capacitor coupled to a first node defined between the switch and the energy storage element, the first capacitor being coupled to a first output voltage terminal;

a first diode coupled between the first output capacitor and the first node arranged to prevent current from flowing from the energy storage element to the first output capacitor during a charging phase of the energy storage element;

a charge pump circuit coupled to the first node and comprising:

a second output capacitor coupled between a second output voltage terminal and the first output voltage terminal;

a third capacitor coupled between the first node and the second output terminal;

a second diode coupled between the second output capacitor and the third capacitor arranged to prevent current from flowing from the third capacitor to the second output capacitor during the charging phase of the energy storage element;

a second node defined between the third capacitor and the second diode; and

a third diode coupled between the second node and the first output capacitor; and

a controller operable to selectively enable the switch to control voltages generated at the first and second output terminals.

2. The voltage regulator of claim 1 , wherein the energy storage element comprises an inductor.

3. The voltage regulator of claim 1 , wherein the controller is operable to control a pulse width of a switching signal provided to the switch based on a voltage at the first output terminal.

4. A system comprising:

a plurality of subscriber line interface circuits, each operable to control communication over one of a plurality of subscriber lines, wherein each subscriber line interface circuit is operable to receive first and second control voltages; and

a switching stage operable to generate the first control voltage, the switching state comprising:

a switch coupled between an input voltage terminal and an energy storage element;

a first output capacitor coupled to a first node defined between the switch and the energy storage element, the first capacitor being coupled to a first output voltage terminal for providing the first control voltage; and

a first diode coupled between the first output capacitor and the first node arranged to prevent current from flowing from the energy storage element to the first output capacitor during a charging phase of the energy storage element:

a charge pump stage coupled to receive the first control voltage and generate the second control voltage based thereon, the charge pump stage comprising:

a second output capacitor coupled to a second output voltage terminal,

a third capacitor coupled between the first node and the second output terminal;

a second diode coupled between the second output capacitor and the third capacitor arranged to prevent current from flowing from the third capacitor to the second output capacitor during the charging phase of the energy storage element;

a second node defined between the third capacitor and the second diode; and

a third diode coupled between the second node and the first output capacitor; and

a controller operable to control the switching voltage regulator so as to vary a magnitude of the first and second control voltages based on operating states of the subscriber line interface circuits.

5. The system of claim 4 , wherein the second output capacitor is coupled between the second output terminal and the first output terminal.

6. The system of claim 4 , wherein the controller is operable to control the switch to generate the first control voltage at a first level responsive to none of the subscriber line interface circuits being in a ringing state and generate the first control voltage at a second level greater in magnitude than the first level responsive to at least one of the subscriber line interface circuits being in a ringing state.

7. The system of claim 4 , wherein the energy storage element comprises an inductor.

8. The system of claim 4 , wherein the controller is operable to control a pulse width of a switching signal provided to the switch based on a voltage at the first output terminal.

9. A method, comprising:

generating a first control voltage for a plurality of subscriber line interface circuits using a switching voltage regulator, each operable to control communication over one of a plurality of subscriber lines, the switching state comprising a switch coupled between an input voltage terminal and an energy storage element, a first output capacitor coupled to a first node defined between the switch and the energy storage element, the first capacitor being coupled to a first output voltage terminal for providing the first control voltage and a first diode coupled between the first output capacitor and the first node arranged to prevent current from flowing from the energy storage element to the first output capacitor during a charging phase of the energy storage element;

generating a second control voltage for the plurality of subscriber line interface circuits based on the first control voltage using a charge pump stage coupled to receive the first control voltage, the charge pump stage comprising a second output capacitor coupled to a second output voltage terminal, a third capacitor coupled between the first node and the second output terminal, a second diode coupled between the second output capacitor and the third capacitor arranged to prevent current from flowing from the third capacitor to the second output capacitor during the charging phase of the energy storage element, a second node defined between the third capacitor and the second diode, and a third diode coupled between the second node and the first output capacitor; and

controlling the switching regulator to vary a magnitude of the first and second control voltages based on operating states of the subscriber line interface circuits.

10. The method of claim 9 , wherein controlling the switching regulator further comprises controlling the switching regulator to generate the first control voltage at a first level responsive to none of the subscriber line interface circuits being in a ringing state and generate the first control voltage at a second level greater in magnitude than the first level responsive to at least one of the subscriber line interface circuits being in a ringing state.

11. The method of claim 9 , wherein controlling the switching regulator comprises controlling a pulse width of a switching signal provided to the switching voltage regulator based on a voltage of the first control voltage.

12. The method of claim 9 , wherein the second output capacitor is coupled between the second output terminal and the first output terminal.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded May 29, 2018
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: MICROSEMI CORPORATION; MICROSEMI SEMICONDUCTOR (U.S.), INC.; MICROSEMI FREQUENCY AND TIME CORPORATION; MICROSEMI COMMUNICATIONS, INC.; MICROSEMI SOC CORP.; MICROSEMI CORP. - POWER PRODUCTS GROUP; MICROSEMI CORP. - RF INTEGRATED SOLUTIONS
Reel/Frame 046251/0391 →
PATENT SECURITY AGREEMENT Recorded Feb 3, 2016
From: MICROSEMI CORPORATION; MICROSEMI SEMICONDUCTOR (U.S.) INC. (F/K/A LEGERITY, INC., ZARLINK SEMICONDUCTOR (V.N.) INC., CENTELLAX, INC., AND ZARLINK SEMICONDUCTOR (U.S.) INC.); MICROSEMI FREQUENCY AND TIME CORPORATION (F/K/A SYMMETRICON, INC.); MICROSEMI COMMUNICATIONS, INC. (F/K/A VITESSE SEMICONDUCTOR CORPORATION); MICROSEMI SOC CORP. (F/K/A ACTEL CORPORATION); MICROSEMI CORP. - POWER PRODUCTS GROUP (F/K/A ADVANCED POWER TECHNOLOGY INC.); MICROSEMI CORP. - RF INTEGRATED SOLUTIONS (F/K/A AML COMMUNICATIONS, INC.)
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 037691/0697 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE FROM "MICROSEMI CORPORATION" TO "MICROSEMI SEMICONDUCTOR (U.S.) INC." PREVIOUSLY RECORDED ON REEL 033892 FRAME 0944. ASSIGNOR(S) HEREBY CONFIRMS THE MICROSEMI SEMICONDUCTOR (U.S.) INC. 4509 FREIDRICH LANE, BUILDING 2, SUITE 200, AUSTIN, TEXAS 78744. Recorded Oct 17, 2014
From: ROSSI, WALTER; RABB, JASON LARRY; WAKELY, DAVID NIGEL
To: MICROSEMI SEMICONDUCTOR (U.S.) INC.
Reel/Frame 034012/0879 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 6, 2014
From: ROSSI, WALTER; RABB, JASON LARRY; WAKELY, DAVID NIGEL
To: MICROSEMI CORPORATION
Reel/Frame 033892/0944 →
Continuity (2)
Provisional Application 61887637 · Oct 7, 2013
Related Publication 20150098562A1 · Apr 9, 2015