IP Library › Granted Patent US 11,637,443
Granted Patent B2
US 11,637,443 · App. 17/226,577 · Granted Apr 25, 2023

Backup power supply for electronic system and operation method thereof

Inventor: Shang-Hui Chen (New Taipei, TW)
Assignee: Acer Incorporated
H02J9/061G06F1/30
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Quick Facts
Patent No.
US 11,637,443
App. No.
17/226,577
Granted
Apr 25, 2023
Kind
B2
Abstract

An operation method for a backup power supply of an electronic system is provided. The backup power supply includes a fuse. The operation method includes: estimating a reading voltage error and a resistance of the fuse; reading a real-time battery discharging current; reading and calculating a voltage difference between two terminals of the fuse; and determining whether to send a fuse replacement message to the electronic system according to the voltage difference between the two terminals of the fuse, the reading voltage error, the resistance of the fuse and the real-time battery discharging current.

Claims (31)

1. An operation method for a backup power supply of an electronic system, wherein the backup power supply comprises a fuse, and the operation method comprises:

estimating a reading voltage error and a resistance of the fuse;

reading a real-time battery discharging current;

reading and calculating a voltage difference between two terminals of the fuse; and

determining whether to send a fuse replacement message to the electronic system according to the voltage difference between the two terminals of the fuse, the reading voltage error, the resistance of the fuse and the real-time battery discharging current,

wherein the step of estimating the reading voltage error and the resistance of the fuse comprises:

setting a first discharging current;

measuring a first voltage difference between the two terminals of the fuse, wherein the first voltage difference between the two terminals of the fuse comprises the reading voltage error;

setting a second discharging current;

measuring a second voltage difference between the two terminals of the fuse, wherein the second voltage difference between the two terminals of the fuse comprises the reading voltage error; and

estimating the reading voltage error and the resistance of the fuse according to the first voltage difference between the two terminals of the fuse, the second voltage difference between the two terminals of the fuse, the first discharging current and the second discharging current.

2. The operation method according to claim 1 , wherein when in the step of determining whether to send the fuse replacement message to the electronic system, whether the voltage difference between the two terminals of the fuse is greater than the value of (I*R+ΔV) is determined, wherein I, R and ΔV respectively represent the real-time battery discharging current, the resistance of the fuse and the reading voltage error.

3. The operation method according to claim 2 , wherein when it is determined that the voltage difference between the two terminals of the fuse is greater than the value of (I*R+ΔV), it is determined that the fuse replacement message is sent to the electronic system.

4. A backup power supply of an electronic system comprises:

a battery string configured to provide a power to the electronic system;

a fuse coupled to the battery string;

a battery monitoring protection unit coupled to the battery string and the fuse to monitor and protect the backup power supply; and

a micro-controller processing unit coupled to the battery monitoring protection unit and the electronic system,

wherein

the micro-controller processing unit estimates a reading voltage error and a resistance of the fuse;

the micro-controller processing unit reads a real-time battery discharging current;

the micro-controller processing unit reads and calculates a voltage difference between two terminals of the fuse;

the micro-controller processing unit determines whether to send a fuse replacement message to the electronic system according to the voltage difference between the two terminals of the fuse, the reading voltage error, the resistance of the fuse and the real-time battery discharging current,

wherein when the micro-controller processing unit estimates the reading voltage error and the resistance of the fuse, the micro-controller processing unit performs:

setting a first discharging current;

measuring a first voltage difference between the two terminals of the fuse, wherein the first voltage difference between the two terminals of the fuse comprises the reading voltage error;

setting a second discharging current;

measuring a second voltage difference between the two terminals of the fuse, wherein the second voltage difference between the two terminals of the fuse comprises the reading voltage error; and

estimating the reading voltage error and the resistance of the fuse according to the first voltage difference between the two terminals, the second voltage difference between the two terminals, the first discharging current and the second discharging current.

5. The backup power supply according to claim 4 , wherein when the micro-controller processing unit determines whether to send the fuse replacement message to the electronic system, the micro-controller processing unit determines whether the voltage difference between the two terminals of the fuse is greater than the value of (I*R+ΔV), wherein I, R and ΔV respectively represent the real-time battery discharging current, the resistance of the fuse and the reading voltage error.

6. The backup power supply according to claim 5 , wherein when the micro-controller processing unit determines that the voltage difference between the two terminals of the fuse is greater than the value of (I*R+ΔV), the micro-controller processing unit determines to send the fuse replacement message to the electronic system.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2021
From: CHEN, SHANG-HUI
To: ACER INCORPORATED
Reel/Frame 055878/0761 →
Priority Claims (1)
TW 109118439 · Jun 2, 2020 · national
Continuity (1)
Related Publication 20210376654A1 · Dec 2, 2021