Surgical instrument battery pack with voltage polling
US-2024058001-A1 · Feb 22, 2024 · US
US9853535B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9853535-B2 |
| Application number | US-201614987922-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 5, 2016 |
| Priority date | Mar 9, 2015 |
| Publication date | Dec 26, 2017 |
| Grant date | Dec 26, 2017 |
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An external power supply and a system connection detection unit applied thereto are provided. For providing DC power, the external power supply separably connects with a positive input terminal and a negative input terminal of a system through a positive output terminal and a negative output terminal respectively. When the positive output terminal and the negative output terminal are respectively connected to the positive input terminal and the negative input terminal, a system detection terminal connects with a system connection terminal of the system, and a connection status signal generated by the system connection detection unit switches the operation of the external power supply from a deep sleeping mode to a normal operation mode. The system connection terminal is electrically connected to one of the positive input terminal and the negative input terminal through at least a first resistive element.
Opening claim text (preview).
What is claimed is: 1. An external power supply, separably connecting with a positive input terminal and a negative input terminal of a system through a positive output terminal and a negative output terminal respectively for providing electrical power to the system, comprising: a power supply unit, electrically connected to the positive output terminal and the negative output terminal; and a system connection detection unit, electrically connected to the power supply unit for detecting the connecting status between the external power supply and the system, and having a system detection terminal which is used to connect with a system connection terminal of the system when the positive output terminal and the negative output terminal respectively connecting to the positive input terminal and the negative input terminal of the system, wherein the system connection terminal is electrically connected to one of the positive input terminal and the negative input terminal through at least one first resistive element; wherein the system connection detection unit detects the voltage of the system detection terminal and generates a connection status signal accordingly, and the connection status signal generated by the system connection detection unit switches the operation of the external power supply from a deep sleeping mode to a normal operation mode when the positive output terminal and the negative output terminal are respectively connecting to the positive input terminal and the negative input terminal of the system. 2. The external power supply according to claim 1 , wherein the system connection detection unit comprises: a power impedance matching circuit, electrically connected with the system detection terminal, generating a voltage detection signal according to the voltage of the system detection terminal; and a logic circuit, electrically connected to the power impedance matching circuit, the logic circuit comparing the voltage detection signal with a reference signal to generate the connection status signal, wherein the voltage of the reference signal is between the voltage of the positive output terminal and the voltage of the negative output terminal. 3. The external power supply according to claim 2 , wherein the logic circuit comprises: a comparator, respectively receiving the voltage detection signal and the reference signal for generating the connection status signal; and a drive circuit, coupled to the comparator, converting the connection status signal generated by the comparator to a drive signal and providing the drive signal to a control chip of the power supply unit, thereby determining whether to switch the operation of the external power supply from the deep sleeping mode to the normal operation mode accordingly. 4. The external power supply according to claim 2 , wherein the system connection terminal is electrically connected to the positive input terminal of the system through the first resistive element, the power impedance matching circuit has at least one second resistive element, the system detection terminal is electrically connected to the negative output terminal through at least one second resistive element. 5. The external power supply according to claim 2 , wherein the system connection terminal is electrically connected to the negative input terminal of the system through the first resistive element, the power impedance matching circuit has at least one second resistive element, the system detection terminal is electrically connected to the positive output terminal through at least one second resistive element. 6. A system connection detection unit applied to an external power supply, electrically connected to a power supply unit of the external power supply for detecting the connecting status between the external power supply and a system, the external power supply separably connected with a positive input terminal and a negative input terminal of the system respectively through a positive output terminal and a negative output terminal for providing electrical power to the system, the power supply unit electrically connected to the positive output terminal and the negative output terminal, the system connection detection unit having a system detection terminal which is used to connect with a system connection terminal of the system when the positive output terminal and the negative output terminal respectively connecting to the positive input terminal and the negative input terminal of the system, wherein the system connection terminal is electrically connected to one of the positive input terminal and the negative input terminal through at least one first resistive element; wherein the system connection detection unit detects the voltage of the system detection terminal and generates a connection status signal accordingly, and the connection status signal generated by the system connection detection unit switches the operation of the external power supply from a deep sleeping mode to a normal operation mode when the positive output terminal and the negative output terminal are respectively connecting to the positive input terminal and the negative input terminal of the system. 7. The system connection detection unit according to claim 6 , wherein the system connection detection unit comprises: a power impedance matching circuit, electrically connected with the system detection terminal, generating a voltage detection signal according to the voltage of the system detection terminal; and a logic circuit, electrically connected to the power impedance matching circuit, the logic circuit comparing the voltage detection signal with a reference signal to generate the connection status signal, wherein the voltage of the reference signal is between the voltage of the positive output terminal and the voltage of the negative output terminal. 8. The system connection detection unit according to claim 7 , wherein the logic circuit comprises: a comparator, respectively receiving the voltage detection signal and the reference signal for generating the connection status signal; and a drive circuit, coupled to the comparator, converting the connection status signal generated by the comparator to a drive signal and providing the drive signal to a control chip of the power supply unit of the external power supply, for determining whether to switch the operation of the external power supply from the deep sleeping mode to the normal operation mode accordingly. 9. The system connection detection unit according to claim 7 , wherein the system connection terminal is electrically connected to the positive input terminal of the system through the first resistive element, the power impedance matching circuit has at least one second resistive element, and the system detection terminal is electrically connected to the negative output terminal through at least one second resistive element. 10. The system connection detection unit according to claim 7 , wherein the system connection terminal is electrically connected to the negative input terminal of the system through the first resistive element, the power impedance matching circuit has at least one second resistive element, and the system detection terminal is electrically connected to the positive output terminal through at least one second resistive element.
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