18048144. SYSTEM AND METHOD FOR IMPROVING RATE OF AIR FLOW THROUGH DATA PROCESSING SYSTEMS simplified abstract (Dell Products L.P.)

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SYSTEM AND METHOD FOR IMPROVING RATE OF AIR FLOW THROUGH DATA PROCESSING SYSTEMS

Organization Name

Dell Products L.P.

Inventor(s)

ERIC MICHAEL Tunks of Austin TX (US)

JULIAN YU-HAO Chen of Austin TX (US)

SHUN-CHENG Hsu of Zhubei (TW)

AUSTIN MICHAEL Shelnutt of Georgetown TX (US)

SYSTEM AND METHOD FOR IMPROVING RATE OF AIR FLOW THROUGH DATA PROCESSING SYSTEMS - A simplified explanation of the abstract

This abstract first appeared for US patent application 18048144 titled 'SYSTEM AND METHOD FOR IMPROVING RATE OF AIR FLOW THROUGH DATA PROCESSING SYSTEMS

Simplified Explanation

The abstract describes methods, systems, and devices for managing the operation of data processing systems, specifically focusing on regulating the temperature of hardware components using a fan and a three-dimensional ventilation port.

  • Hardware components of data processing systems may need to operate within certain thermal dissipation requirements.
  • A fan circulates air through the system to regulate temperatures when they fall outside the requirements.
  • Higher air flow rates may be desired for more efficient temperature regulation.
  • A three-dimensional ventilation port can be implemented to de-constrict air flow when entering or exiting the system.

Potential Applications

The technology described in the patent application could be applied in various industries where data processing systems are used, such as:

  • Data centers
  • Server rooms
  • Industrial automation

Problems Solved

The innovation addresses the following issues:

  • Efficient regulation of hardware component temperatures
  • Optimization of air flow rates for cooling systems

Benefits

The benefits of this technology include:

  • Improved performance and longevity of hardware components
  • Energy efficiency through optimized cooling mechanisms

Potential Commercial Applications

The technology could be commercially applied in:

  • Manufacturing and selling data processing systems with improved cooling mechanisms
  • Licensing the technology to companies producing computing devices

Possible Prior Art

One possible prior art could be the use of traditional cooling fans in data processing systems. However, the implementation of a three-dimensional ventilation port for de-constricting air flow may be a novel aspect of this innovation.

Unanswered Questions

How does the three-dimensional ventilation port compare to traditional cooling methods in terms of efficiency and effectiveness?

The article does not provide a direct comparison between the three-dimensional ventilation port and traditional cooling methods. Further research or testing may be needed to determine the advantages of this new approach.

Are there any limitations or drawbacks to implementing a three-dimensional ventilation port in data processing systems?

The potential limitations or drawbacks of using a three-dimensional ventilation port, such as increased manufacturing costs or maintenance requirements, are not addressed in the article. Further analysis is necessary to evaluate the practicality of this innovation.


Original Abstract Submitted

Methods, systems, and devices for managing the operation of data processing systems are disclosed. A data processing system may include a computing device that may provide computer-implemented services. To provide the computer-implemented services, hardware components of the data processing system may need to operate within certain thermal dissipation requirements. To regulate the temperature of the hardware components, a fan may circulate air through the data processing system when the temperatures fall outside the thermal dissipation requirements. To regulate the temperature of the hardware components more efficiently, higher air flow rates may be desired. To increase air flow rates, a three-dimensional ventilation port may be implemented to de-constrict air flow when air enters or exits the data processing system.