Ramadhan, 2018 - Google Patents
Electrohydrodynamic Driven Airflows for Microelectronics Thermal ManagementRamadhan, 2018
View PDF- Document ID
- 18074259580870898392
- Author
- Ramadhan A
- Publication year
External Links
Snippet
The increasing demand for effective and compact thermal solutions for the next generation of thin and high-power density consumer electronics is challenging the capability of miniature mechanical systems to meet the required cooling performance. Due to their …
- 238000004377 microelectronic 0 title abstract description 56
Classifications
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01L—SEMICONDUCTOR DEVICES; ELECTRIC SOLID STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H01L23/00—Details of semiconductor or other solid state devices
- H01L23/34—Arrangements for cooling, heating, ventilating or temperature compensation; Temperature sensing arrangements
- H01L23/46—Arrangements for cooling, heating, ventilating or temperature compensation; Temperature sensing arrangements involving the transfer of heat by flowing fluids
- H01L23/467—Arrangements for cooling, heating, ventilating or temperature compensation; Temperature sensing arrangements involving the transfer of heat by flowing fluids by flowing gases, e.g. air
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01L—SEMICONDUCTOR DEVICES; ELECTRIC SOLID STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H01L2924/00—Indexing scheme for arrangements or methods for connecting or disconnecting semiconductor or solid-state bodies as covered by H01L24/00
- H01L2924/0001—Technical content checked by a classifier
- H01L2924/0002—Not covered by any one of groups H01L24/00, H01L24/00 and H01L2224/00
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING; COUNTING
- G06F—ELECTRICAL DIGITAL DATA PROCESSING
- G06F1/00—Details of data-processing equipment not covered by groups G06F3/00 - G06F13/00, e.g. cooling, packaging or power supply specially adapted for computer application
- G06F1/16—Constructional details or arrangements
- G06F1/20—Cooling means
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Wang et al. | Thermal management of microelectronics with electrostatic fluid accelerators | |
Wang et al. | Review on the recent development of corona wind and its application in heat transfer enhancement | |
Ramadhan et al. | Numerical development of EHD cooling systems for laptop applications | |
Shin et al. | Development of heat sink with ionic wind for LED cooling | |
Yang et al. | Corona driven air propulsion for cooling of electronics | |
US8342234B2 (en) | Plasma-driven cooling heat sink | |
JP5128656B2 (en) | Flow tube equipment | |
US20110292560A1 (en) | Electrohydrodynamic fluid mover techniques for thin, low-profile or high-aspect-ratio electronic devices | |
Qu et al. | LED chip cooling system using ionic wind induced by multi-wire corona discharge | |
US20130340981A1 (en) | Electrohydrodynamic (ehd) air mover configuration with flow path expansion and/or spreading for improved ozone catalysis | |
US8467168B2 (en) | Electronic system changeable to accommodate an EHD air mover or mechanical air mover | |
US7269008B2 (en) | Cooling apparatus and method | |
US20120268857A1 (en) | Electrohydrodynamic (ehd) fluid mover with field shaping feature at leading edge of collector electrodes | |
Qu et al. | A review on recent advances and challenges of ionic wind produced by corona discharges with practical applications | |
Seo et al. | A high performance planar pump using electro-conjugate fluid with improved electrode patterns | |
Ramadhan et al. | Numerical modelling of electrohydrodynamic airflow induced in a wire-to-grid channel | |
Ramadhan et al. | Performance and flow characteristics of miniature EHD air blowers for thermal management applications | |
Jewell-Larsen et al. | CFD analysis of electrostatic fluid accelerators for forced convection cooling | |
Wang et al. | Improvement of hotspot cooling in confinement space by corona discharge induced ionic wind | |
Ramadhan et al. | Numerical analysis and optimization of miniature electrohydrodynamic air blowers | |
Wang et al. | Optimization of a green solid-state fan for electronics cooling applications | |
Wang et al. | Improve the secondary structure of the series ionic wind generator to regulate the flow distribution and its application in electronics cooling | |
Wen et al. | Recent developments in air pumps for thermal management of electronics | |
Ramadhan | Electrohydrodynamic Driven Airflows for Microelectronics Thermal Management | |
Jewell-Larsen et al. | Coupled-physics modeling of electrostatic fluid accelerators for forced convection cooling |