Liquid-cooled server inspection equipment

TWM685757UActive Publication Date: 2026-08-01富聯卓越科技(紹興)有限公司 +1
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
富聯卓越科技(紹興)有限公司
Filing Date
2025-07-28
Publication Date
2026-08-01

Smart Images

  • Figure TWG2TB001904221_001
    Figure TWG2TB001904221_001
  • Figure TWG2TB001904221_002
    Figure TWG2TB001904221_002
  • Figure TWG2TB001904221_003
    Figure TWG2TB001904221_003
Patent Text Reader

Abstract

This application discloses a testing device for a liquid-cooled server, including a liquid storage component, a heating loop assembly, and a liquid injection assembly. The heating loop assembly includes a heating element and a liquid pipeline. The liquid storage component and the liquid cooling pipeline of the liquid-cooled server are interconnected through the liquid pipeline to form a loop. The liquid injection assembly includes an injection pipe and a drain pipe. The outlet end of the injection pipe is connected to the liquid cooling pipeline and is connected between the outlet end of the liquid storage component and the inlet end of the liquid cooling pipeline. The inlet end of the drain pipe is connected to the liquid cooling pipeline and is connected between the outlet end of the liquid cooling pipeline and the inlet end of the liquid storage component. The above-mentioned testing device can inject different liquid media into the liquid cooling pipeline through different paths to measure various performance characteristics of the liquid cooling pipeline, saving the time of disconnecting and reconnecting the liquid cooling pipeline and the testing device, and improving the testing efficiency of the liquid-cooled server.
Need to check novelty before this filing date? Find Prior Art

Claims

1. A testing device for a liquid-cooled server, the improvement of which includes: Liquid storage unit; A heating loop assembly includes a heating element and a liquid pipeline. The heating element is configured to heat the liquid medium inside the liquid reservoir. The liquid reservoir and the liquid cooling pipeline of the liquid-cooled server are interconnected through the liquid pipeline to form a loop, so that the liquid reservoir can provide the heated liquid medium to the liquid cooling pipeline, and the heated liquid medium can flow back from the liquid pipeline to the liquid reservoir. A liquid injection assembly includes an injection pipe and a drain pipe. The outlet end of the injection pipe is connected to the liquid cooling pipeline and is connected between the outlet end of the liquid reservoir and the inlet end of the liquid cooling pipeline. The inlet end of the drain pipe is connected to the liquid cooling pipeline and is connected between the outlet end of the liquid cooling pipeline and the inlet end of the liquid reservoir.

2. The testing equipment as described in claim 1, wherein, The detection device also includes a replenishment pipe, which connects the injection pipe to the storage container, so that the injection pipe can replenish the storage container with unheated liquid medium.

3. The testing equipment as described in claim 2, wherein, The replenishment pipe is equipped with a first switching valve, and the injection pipe is equipped with a second switching valve. The first switching valve is configured to control the opening or closing of the replenishment pipe, and the second switching valve is configured to control the opening or closing of the injection pipe, so as to control the flow direction of the liquid medium.

4. The testing equipment as described in any one of claims 1 to 3, wherein, The liquid pipeline includes a supply pipe and a return pipe. The supply pipe connects the liquid storage device and the liquid cooling pipeline to guide the heated liquid medium into the liquid cooling pipeline. The return pipe connects the liquid cooling pipeline and the liquid storage device to guide the heated liquid medium back to the liquid storage device. The injection pipe connects to the supply pipe to guide the unheated liquid medium into the liquid cooling pipeline. The drain pipe connects to the return pipe to guide the liquid medium in the liquid cooling pipeline into the drain pipe.

5. The testing equipment as described in claim 4, wherein, The injection pipe is equipped with a first one-way valve, which is located near the supply pipe to prevent the liquid medium in the liquid cooling pipeline from flowing into the injection pipe.

6. The testing equipment as described in claim 1, wherein, The injection tube is provided with a first filter assembly, which is configured to filter the unheated liquid medium.

7. The testing equipment as described in claim 1, wherein, The drain pipe is equipped with a fifth switch valve, which is configured to control the opening or closing of the drain pipe.

8. The testing equipment as described in claim 2, wherein, The detection device also includes a liquid level sensor configured to monitor the height of the liquid medium within the storage container.

9. The testing equipment as described in claim 1 or 8, wherein, The detection device also includes a drain pipe connected to the bottom of the liquid storage container to drain the liquid medium inside the liquid storage container.

10. The testing equipment as described in claim 8, wherein, The liquid storage device is equipped with a pressure relief valve, which is configured to release the gas inside the liquid storage device.