This application claims the benefit of Taiwan application Serial No. 93114178, filed May 19, 2004, the subject matter of which is incorporated herein by reference.
1. Field of the Invention
The invention relates in general to a server system, and more particularly to a blade server system.
2. Description of the Related Art
The blade server system is different from ordinary server system in that the blade server system comprises several blade servers. The server blade system integrates the hardware of a server system such as processor, memory, and hard disc into a single motherboard, and the several blade servers of a server blade system share the resources such as chassis, power supplier, keyboard, monitor and mouse.
Referring to
Referring to
When the blade server 102 is not operating normally, the communication signal will always hold the voltage level of the bus 106, affecting the normal operation of the bus 106 and the data transmission of other operating blade servers.
It is therefore an object of the invention to provide a blade server system. The server blade system isolates the interfering signal caused by a blade server hot-plugged or not operating normally, so that the server blade system is not affected by the signal interference and the stability of the server blade system can be maintained.
The invention achieves the above-identified object by providing a blade server system, comprising a system management unit for outputting a control signal, a blade server having a signal line for outputting a communication signal, and an isolation circuit coupled with the signal line and controlled by the control signal.
When the blade server is operating normally, the isolation circuit electrically connects the blade server to the system management unit, such that the signal line outputs a communication signal to the system management unit via the isolation circuit. When the blade server is not operating normally or is hot plugged, the isolation circuit does not electrical connect the blade server to the server blade system, such that the communication signal can not be outputted to the system management unit. Consequently, the signal isolation can be achieved and the overall system continues to have a normal operation.
Other objects, features, and advantages of the invention will become apparent from the following detailed description of the preferred but non-limiting embodiments. The following description is made with reference to the accompanying drawings.
Referring to
The isolation circuit 308 is disposed in the blade server 302 and controlled by the control signal 314 outputted from the system management unit 304. When the blade server 302 is operating normally, the isolation circuit 308 electrically connects the blade server 302 to the system management unit 304, the signal line 310 outputs the communication signal 312 to the system management unit 304 via the isolation circuit 308. When the blade server 302 is not operating normally or is hot plugged, the isolation circuit 308 does not electrically connect the blade server 302 to the system management unit 304, such that the communication signal can not be outputted to the system management unit 304. The specification of signal line 310 of the blade server 302 is an inter-integrated circuit bus (12C) or a communications port (COM).
Referring to
In the present embodiment, the isolation circuit 308 comprises two NMOS transistors and two diodes for example. Referring to
The source of the NMOS transistor 402 is coupled with the P-polarity of the diode 406. The drain of the NMOS transistor 402 is coupled with the N-polarity of the diode 406. The source of the NMOS transistor 404 is coupled with the P-polarity of the diode 408. The drain of the NMOS transistor 404 is coupled with the N-polarity of the diode 408. When the blade server 302 is disposed on the central circuit board 602 via connector 604, the source of the NMOS transistor 404 is electrically connected with the bus 306.
When the blade server 302 is operating normally, the system management unit 304 obtains the status of the blade server 302 via signal line 310, then uses the control signal 314 to control the isolation circuit 308. Meanwhile, the control signal adjusts the gate voltage (VG) of the NMOS transistor 402 and the gate voltage of the NMOS transistor 404, so that the relationship between the gate voltage (VG), the source voltage (VS), the gate/source voltage difference (VGS), and the threshold voltage (VT) is formed as follows:
VG−VS=VGS>VT;
Meanwhile, a channel is formed between the drain and the source, enabling the isolation circuit 308 to electrically connect the blade server 302 to the system management unit 304.
When the blade server 302 is operating abnormally or is hot-plugged, the system management unit 304 obtains the status of the blade server 302 via the signal line 310 then uses the control signal 314 to control the isolation circuit 308. Meanwhile, the control signal 314 adjusts the gate voltage of the NMOS transistor 402 and the gate voltage of the NMOS transistor 404, so that the relationship between the gate voltage, the source voltage, the gate/source voltage difference, and the threshold voltage is formed as follows:
VG−VS=VGS<VT;
Meanwhile, the channel between the drain and the source is closed, so that the isolation circuit 308 does not electrically connect the blade server 302 to the system management unit 304. Meanwhile, the input end and the output end of the isolation circuit 308 are in an isolation status, so as to achieve the object of isolating interfering signals.
Referring to
The source of the NMOS transistor 502 is coupled with the P-polarity of the diode 506. The drain of the NMOS transistor 502 is coupled with the N-polarity of the diode 506. The source of the NMOS transistor 504 is coupled with the P-polarity of the diode 508. The drain of the NMOS transistor 504 is coupled with the N-polarity of the diode 508. The drain of the NMOS transistor 502 is coupled with the one end of the resistor 510, and another end of the resistor 510 is grounded. The drain of the NMOS transistor 504 is coupled with the one end of the resistor 512, and another end of the resistor 512 is grounded.
When the blade server 302 is operating normally, the system management unit 304 obtains the status of the blade server 302 via signal line 310, then uses the control signal 314 to control the isolation circuit 308. Meanwhile, the control signal 314 adjusts the gate voltage of the NMOS transistor 502 and the gate voltage of the NMOS transistor 504, so that the relationship between the gate voltage, the source voltage, the gate/source voltage difference, and the threshold voltage is formed as follows:
VG−VS=VGS>VT;
Meanwhile, a channel is formed between the drain and the source, enabling the isolation circuit 308 to electrically connect the blade server 302 to the system management unit 304.
When the blade server 302 is operating abnormally or is hot-plugged, the system management unit 304 obtains the status of the blade server 302 via signal line 310 then uses the control signal 314 to control the isolation circuit 308. Meanwhile, control signal 314 adjusts the gate voltage of the NMOS transistor 502 and the gate voltage of the NMOS transistor 504, so that the relationship between the gate voltage, the source voltage, the gate/source voltage difference, and the threshold voltage is formed as follows:
VG−VS=VGS<VT;
Meanwhile, the channel between the drain and the source is closed, so that the isolation circuit 308 does not electrically connect the blade server 302 to the system management unit 304. Meanwhile, the input end and the output end of the isolation circuit 308 are in an isolation status, so as to achieve the object of isolating interfering signals.
The decentralized signal isolation device disclosed in above embodiments is applicable to server blade systems. When one particular blade server of a server blade system is hot-plugged or is operating abnormally, the invention can effectively isolate signal interference in the server blade system, so the server blade system can continue its normal operation.
While the invention has been described by way of example and in terms of a preferred embodiment, it is to be understood that the invention is not limited thereto. On the contrary, it is intended to cover various modifications and similar arrangements and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.
Number | Date | Country | Kind |
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93114178 | May 2004 | TW | national |