IP Library Granted Patent US 8,503,193
Granted Patent B2
US 8,503,193 · App. 12/869,147 · Granted Aug 6, 2013

Open loop DC to DC converters with enable/disable circuits

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Quick Facts
Patent No.
US 8,503,193
App. No.
12/869,147
Granted
Aug 6, 2013
Kind
B2
Abstract

Power supplies, power adapters, and related methods are disclosed. One example power supply includes an open loop DC to DC converter having an input for connecting to an input power source and an output for supplying a DC output voltage or current and an enable/disable circuit coupled to the open loop DC to DC converter. The enable/disable circuit is configured to enable and disable the open loop DC to DC converter as a function of the DC output voltage or current. One example method includes determining a DC output voltage or current from an open loop DC to DC converter and enabling and disabling the open loop DC to DC converter as a function of the determined DC output voltage or current.

Claims (20)

1. A power supply comprising an open loop DC to DC converter and an enable/disable circuit coupled to the open loop DC to DC converter, the open loop DC to DC converter having an input for connecting to an input power source and an output for supplying a DC output voltage or current, the enable/disable circuit configured to intermittently enable and disable the open loop DC to DC converter as a function of the DC output voltage or current, the open loop DC to DC converter configured to operate with a fixed duty cycle and a fixed frequency that are not a function of the DC output voltage or current when the open loop DC to DC converter is enabled by the enable/disable circuit.

2. The power supply of claim 1 further comprising a pre-regulation stage for generating a regulated DC voltage, the pre-regulation stage coupled to the input of the open loop DC to DC converter.

3. The power supply of claim 2 wherein the open loop DC to DC converter comprises a half-bridge converter.

4. An external AC/DC power adapter for an electronic device, the power adapter comprising the power supply of claim 3 .

5. The power supply of claim 3 wherein the pre-regulation stage comprises a power factor correction circuit.

6. The power supply of claim 5 wherein the power factor correction circuit comprises a buck converter or a boost converter.

7. An external AC/DC power adapter for an electronic device, the power adapter comprising the power supply of claim 6 .

8. The power supply of claim 3 wherein the open loop DC to DC converter includes a switching stage, a transformer, and an isolation circuit, the transformer having a primary winding and a secondary winding, the switching stage connected to the primary winding, wherein the enable/disable circuit is connected to the secondary winding to determine the DC output voltage or current, and wherein the enable/disable circuit is coupled to the switching stage via the isolation circuit to enable and disable the open loop DC to DC converter.

9. The power supply of claim 3 wherein the open loop DC to DC converter includes a switching stage and a transformer having a primary winding and a secondary winding, the switching stage connected to the primary winding, wherein the enable/disable circuit is connected to the primary winding to determine the DC output voltage or current at the primary winding, and wherein the enable/disable circuit is connected to the switching stage to enable and disable the open loop DC to DC converter.

10. The power supply of claim 1 wherein the open loop DC to DC converter is configured to operate exclusively at a substantially maximum duty cycle when the open loop DC to DC converter is enabled.

11. The power supply of claim 1 wherein the enable/disable circuit is configured to enable the open loop DC to DC converter when the DC output voltage or current is below a defined level and disable the open loop DC to DC converter when the DC output voltage or current is above the defined level.

12. The power supply of claim 11 wherein the defined level is a fixed level.

13. The power supply of claim 1 wherein the enable/disable circuit is configured to enable the open loop DC to DC converter when the DC output voltage or current is below a first defined level and disable the open loop DC to DC converter when the DC output voltage or current is above a second defined level.

14. The power supply of claim 1 wherein the open loop DC to DC converter does not include an output inductor.

15. The power supply of claim 1 wherein the open loop DC to DC converter includes an output inductor having an inductance no greater than about 0.001 mH.

16. A method of operating a power supply having an open loop DC-DC converter, the method comprising determining a DC output voltage or current from the open loop DC to DC converter and intermittently enabling and disabling the open loop DC to DC converter as a function of the determined DC output voltage or current, the open loop DC to DC converter having a fixed duty cycle and a fixed frequency that are not a function of the determined DC output voltage or current when the open loop DC to DC converter is enabled.

17. The method of claim 16 , further comprising supplying a regulated voltage from a power factor correction circuit to an input of the open loop DC to DC converter.

18. The method of claim 17 , wherein enabling and disabling the open loop DC to DC converter includes enabling the open loop DC to DC converter when the DC output voltage or current is below a defined level and disabling the open loop DC to DC converter when the DC output voltage or current is above the defined level.

19. The method of claim 17 , further comprising operating the open loop DC to DC converter at substantially maximum duty cycle when the open loop DC to DC converter is enabled.

20. The method of claim 16 , wherein disabling the open loop DC to DC converter includes disabling the open loop DC to DC converter only during a light load condition.

Assignments (1)
CONFIRMATORY PATENT ASSIGNMENT Recorded Mar 5, 2025
From: ASTEC INTERNATIONAL LIMITED
To: AES GLOBAL HOLDINGS PTE. LTD.
Reel/Frame 070404/0890 →