IP Library Granted Patent US 12689291
Granted Patent B2
US 12689291 · App. 18/618,171 · Granted Jul 21, 2026

Multi-phase power converter with external phase circuits

Inventors: Hao Zhou (San Jose, CA); Sarfraz Shaikh (Swindon, GB); Jay B. Fletcher (Sunnyvale, CA); Sanjay Pant (Santa Clara, CA); Mark A. Yoshimoto (San Jose, CA); Vincenzo Bisogno (Swindon, GB); Shawn Searles (Austin, TX)
Assignee: Apple Inc.
H02M3/155G06F1/26H02M1/08
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Quick Facts
Patent No.
US 12689291
App. No.
18/618,171
Granted
Jul 21, 2026
Kind
B2
Abstract

Various embodiments for generating a voltage level on a regulated power supply node are disclosed. In one embodiment, an apparatus includes an external phase circuit on a first integrated circuit, where the external phase circuit is coupled to a regulated power supply node via a first inductor and configured to source a first current to the regulated power supply node using an external demand current and in response to an activation of a first enable signal. The apparatus also includes a control circuit on a second integrated circuit, where the control circuit is configured to generate the external demand current using a voltage of the regulated power supply node and a reference voltage. The control circuit is further configured to generate the first enable signal using a sensed version of the first current.

Claims (38)

1 . An apparatus, comprising:

an external phase circuit included on a first integrated circuit, wherein the external phase circuit is coupled to a regulated power supply node via a first inductor, wherein the external phase circuit is configured, in response to an activation of a first enable signal, to source a first current to the regulated power supply node using an external demand current;

a control circuit included on a second integrated circuit, wherein the control circuit is configured to:

generate the external demand current using a voltage of the regulated power supply node and a reference voltage; and

generate the first enable signal using a sensed version of the first current.

2 . The apparatus of claim 1 , further comprising an internal phase circuit included on the second integrated circuit, wherein the internal phase circuit is coupled to the regulated power supply node via a second inductor, and wherein the internal phase circuit is configured, in response to an activation of a second enable signal, to source a second current to the regulated power supply node using an internal demand current.

3 . The apparatus of claim 2 , wherein the control circuit is further configured to:

generate the internal demand current using the voltage of the regulated power supply node and the reference voltage; and

generate the second enable signal using a sensed version of the second current.

4 . The apparatus of claim 3 , wherein to generate the first enable signal, the control circuit is further configured to perform a first comparison of the sensed version of the first current to a first current threshold, and wherein to generate the second enable signal, the control circuit is further configured to perform a second comparison of the sensed version of the second current to a second current threshold.

5 . The apparatus of claim 2 , wherein a first switching frequency of the external phase circuit is less than a second switching frequency of the internal phase circuit.

6 . The apparatus of claim 1 , wherein to source the first current, the external phase circuit is further configured to perform a comparison of the external demand current and the sensed version of the first current.

7 . A method, comprising:

sourcing, by an external phase circuit in response to an activation of a first enable signal and using an external demand current, a first current to a regulated power supply node via a first inductor, wherein the external phase circuit is included on a first integrated circuit;

generating, by a control circuit, the external demand current using a voltage of the regulated power supply node and a reference voltage, wherein the control circuit is included on a second integrated circuit; and

generating, by the control circuit, the first enable signal using a sensed version of the first current.

8 . The method of claim 7 , further comprising sourcing, by an internal phase circuit in response to an activation of a second enable signal and using an internal demand current, a second current to the regulated power supply node via a second inductor, wherein the internal phase circuit is included on the second integrated circuit.

9 . The method of claim 8 , further comprising:

generating, by the control circuit, the internal demand current using the voltage of the regulated power supply node and the reference voltage; and

generating, by the control circuit, the second enable signal using a sensed version of the second current.

10 . The method of claim 9 , wherein generating the first enable signal includes performing, by the control circuit, a first comparison of the sensed version of the first current to a first current threshold, and wherein generating the second enable signal including performing, by the control circuit, a second comparison of the sensed version of the second current to a second current threshold.

11 . The method of claim 9 , wherein sourcing the second current includes performing, by the internal phase circuit, a comparison of the internal demand current and the sensed version of the second current.

12 . The method of claim 8 , wherein a first switching frequency of the external phase circuit is less than a second switching frequency of the internal phase circuit.

13 . The method of claim 7 , wherein sourcing the first current includes performing, by the external phase circuit, a comparison of the external demand current and the sensed version of the first current.

14 . An apparatus, comprising:

a first external phase circuit coupled to a first regulated power supply node via a first inductor, wherein the first external phase circuit is configured, based on a first plurality of control signals, to source a first current to the first regulated power supply node using a first input power supply node;

a second external phase circuit coupled to the first regulated power supply node via a second inductor, wherein the second external phase circuit is configured, based on a second plurality of control signals, to source a second current to the first regulated power supply node using a second input power supply node; and

a first control circuit configured to generate the first plurality of control signals and the second plurality of control signals.

15 . The apparatus of claim 14 , further comprising:

a third external phase circuit coupled to a second regulated power supply node via a third inductor, wherein the third external phase circuit is configured, based on a third plurality of control signals, to source a third current to the second regulated power supply node using the first input power supply node; and

a second control circuit configured to generate the third plurality of control signals.

16 . The apparatus of claim 15 , wherein the second control circuit includes an internal phase circuit coupled to the second regulated power supply node via a fourth inductor, and wherein the internal phase circuit is configured, in response to an activation of an enable signal, to source a fourth current to the second regulated power supply node using an internal demand current.

17 . The apparatus of claim 16 , wherein a first switching frequency of the third external phase circuit is less than a second switching frequency of the internal phase circuit.

18 . The apparatus of claim 14 , wherein a voltage level of the second input power supply node is greater than a voltage level of the first input power supply node.

19 . The apparatus of claim 14 , wherein the first controller circuit and second controller circuit are located on a first integrated circuit, and at least one of the first external phase circuit or second external phase circuit is located on a second integrated circuit.

20 . The apparatus of claim 14 , wherein the first external phase circuit is further configured to:

source the first current to the first regulated power supply node during a first on-time period; and

source, via a third inductor, a third current to the first regulated power supply node during a second on-time period different than the first on-time period.