Input power port protection component
US-9019674-B2 · Apr 28, 2015 · US
US10714923B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10714923-B2 |
| Application number | US-201816204797-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 29, 2018 |
| Priority date | Nov 29, 2018 |
| Publication date | Jul 14, 2020 |
| Grant date | Jul 14, 2020 |
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In electronic systems, the downstream circuitry may be damaged by overcurrent and overvoltage events. Therefore, there is provided a dual protection device for protecting electrical components in electronic systems. The protection device includes a mechanical fuse in conjunction with an electronic fuse, eFuse, the two components connected in series, together protecting against overcurrent events on two levels. The mechanical fuse provides high overcurrent protection, realising fast and reliable protection at high overcurrent events, and the electronic fuse provides low overcurrent protection, realising accurate and resettable protection for low overcurrent events.
Opening claim text (preview).
The invention claimed is: 1. A protection device for protecting an electrical component in an electrical circuit, the protection device comprising: a mechanical fuse configured to interrupt current flow above a first predetermined overcurrent; and an electronic fuse, (“eFuse”), arranged in series with the mechanical fuse, and configured to interrupt current flow after waiting for a blanking period in response to the current flow exceeding a second predetermined overcurrent, and configured to interrupt current flow without waiting for the blanking period in response to the current flow exceeding a third predetermined overcurrent; and wherein the second predetermined overcurrent is less than the third predetermined overcurrent, and wherein the third predetermined overcurrent is less than the first predetermined overcurrent. 2. The protection device according to claim 1 , wherein the protection device is configured for protecting a power supply rail of a power supply unit. 3. The protection device according to claim 2 , wherein the eFuse comprises an input voltage pin and a ground pin, and wherein the ground pin of the eFuse is connected to a ground rail of the power supply unit. 4. The protection device according to claim 1 , wherein the protection device is configured for protecting downstream circuitry. 5. The protection device according to any preceding claim, wherein the eFuse comprises an integrated sense resistor for measuring current flow. 6. The protection device according to claim 1 , wherein the eFuse comprises an integrated electronic switch for interrupting current flow. 7. The protection device according to claim 1 , wherein the eFuse comprises an external current setting resistor for defining the second predetermined overcurrent. 8. The protection device according to claim 1 , wherein the eFuse comprises an enable pin for enabling or disabling an output of the eFuse. 9. The protection device according to claim 8 , wherein the eFuse further comprises a fault pin. 10. The protection device according to claim 1 , wherein the protection device further comprises means for preventing overvoltage in the electrical circuit. 11. The protection device according to claim 10 , wherein eFuse comprises an overvoltage pin arranged between two resistors of a voltage divider. 12. The protection device according to claim 10 , wherein the protection device further comprises a Zener diode arranged in parallel with the mechanical fuse and the eFuse. 13. The protection device according to claim 1 , wherein the first predetermined overcurrent is 10 A or less. 14. The protection device according to claim 1 , wherein the second predetermined overcurrent is 2 A or less. 15. The protection device according to claim 1 , wherein the blanking time is less than 100 μs. 16. A method of protecting an electrical component in an electrical circuit by a protection device, the protection device comprising a mechanical fuse and an electronic fuse, (“eFuse”), arranged in series with the mechanical fuse, wherein the method comprises: providing different first, second, and third predetermined overcurrent levels, wherein the second predetermined overcurrent is less than the third predetermined overcurrent, and wherein the third predetermined overcurrent is less than the first predetermined overcurrent; and performing at least one of: in response to the second predetermined overcurrent being exceeded, current flow is interrupted by the eFuse after waiting for a blanking period; in response to the third predetermined overcurrent being exceeded, the current flow is interrupted by the eFuse without waiting for the blanking period; or in response to the first predetermined overcurrent being exceeded, the current flow is interrupted by the mechanical fuse. 17. The method according to claim 16 , wherein the method further comprises using an external current setting resistor of the eFuse to define the second predetermined overcurrent. 18. The method according to claim 16 , wherein preventing overvoltage in the electrical circuit comprises activating an overvoltage pin of the eFuse that is connected between two resistors of a voltage divider in response to an overvoltage is sensed. 19. The method according to claim 16 , wherein preventing overvoltage in the electrical circuit comprises shunting current to ground in response to an overvoltage is sensed by a Zener diode in parallel with the mechanical fuse and the eFuse. 20. Use of an electronic fuse, (“eFuse”), for protecting a mechanical fuse in an electrical circuit; wherein the eFuse is arranged in series with the mechanical fuse; wherein the mechanical fuse is configured to interrupt current flow above a first predetermined overcurrent, the eFuse is configured to interrupt current flow after waiting a blanking period when the current flow is above a second predetermined overcurrent, and the eFuse is configured to interrupt current flow without waiting for the blanking period when the current flow is above a third predetermined overcurrent; wherein the third predetermined overcurrent being higher than the second predetermined overcurrent, and the first predetermined overcurrent being higher than either the second predetermined overcurrent or the third predetermined overcurrent; and wherein the eFuse output is user enabled or disabled by an enable pin.
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