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RFIC Designer,RF Antenna Engineer
Job Description on RF Antenna Engineer
Candidate Profile:
1. MS or Ph.D in Electrical Engineering or Applied Physics
2. Familiar with antenna theory, simulation and test. Experience with cell phone antennas is highly preferred.
3. Understanding and ability to use a variety of simulation techniques and tools appropriate to the problem, including EM, HFSS, CST and EMpro.
4. Knowledge of practical test and characterization of antennas.
5. Experience/familiarity with RF circuit building blocks e.g. LNA, Switch, PA, etc. is a plus.
6. Good written and verbal communication skills required and ability to work in a team environment.
7. An independent and highly motivated individual with a professional attitude
Candidate Responsibility:
1. Define engineering requirements for antennas for mobile phone applications.
2. Manage antenna creation via suppliers.
3. Organize, lead, and participate in design reviews with peers and Technical Specialists.
4. Write documents of all aspects in the product development process.
5. Direct the design and layout of antenna test boards.
6. Assess, debug and measure antenna in the laboratory.
7. Support other engineering functions including test, characterization and product industrialization.
Candidate Profile:
1. Master or Ph.D of Electrical Engineering or Equivalent
2. Familiar with semiconductor process technology including Si CMOS, BiCMOS. An understanding of typical III-V (GaAs/InP/GaN) technologies is not required, but would be beneficial.
3. Demonstrate skills in analog and RF/Microwave circuit design theory, techniques and principles, with the ability to engage in effective communication with experts in these fields.
4. Understanding and ability to use a variety of simulation techniques and tools appropriate to the problem, including EM, Harmonic Balance/Pseudo-Steady State, Transient, Convolution, and Linear analysis. Possess experience in using industry standard EDA tools, including Cadence and Agilent ADS.
5. Skilled in full front-to-back design flow including initial literature search through layout and design verification including LVS and DRC.
6. Experience with 2-D and 3-D EM Simulation tools.
7. Experience/familiarity with RF circuit building blocks e.g. LNA, Switch, PA, etc.
8. Knowledge of practical test and characterization of circuits including on-wafer test and calibration.
9. Good written and verbal communication skills required and ability to work in a team environment.
Candidate Responsibility:
- Perform circuit design through schematic definition and simulation Cadence SpectreRF and Agilent ADS
- Responsible for floor-planning and physical design
- Complete layout and layout verification (DRC/ERC/LVS) including parasitic extraction using industry standard tools and techniques (e.g. Assura, VAVO.)
- Top level performance verification and closure/compliance report against the requirements specification
- Perform analysis of design variability using appropriate statistical techniques for design centring, performance compensation and increased yield.
- Organize, lead, and participate in design reviews with peers and Technical Specialists.
- Documentation of all aspects in the product development process.
- Direct the design and layout of RF circuit and test boards.
- Assess, debug and measure silicon in the laboratory.
- Perform EM simulations for the on-chip components, packaging and PCB board structures.
- Support other engineering functions including test, characterization and product industrialization
公司简介
过去三十年信息技术经历了计算时代、通讯时代,当前正步入感知时代和智能时代(物联网)。计算时代和通讯时代依靠“延续摩尔定律(More Moore)”的半导体技术创新来推动,而感知时代和智能时代的发展则依赖于以“超越摩尔(More than Moore)”为主的微技术跨领域融创新。微技术是以成熟半导体为基础的多元产品技术,如传感器、MEMS、光电器件、模拟/射频IC、功率器件、微能源、生物芯片等。微技术具有投资规模小、产品价值高、应用范围广、创新空间大等特点。
上海微技术工业研究院是以中国科学院上海微系统与信息技术研究所为基础,由上海新微技术研发中心有限公司运营,联合中国及全球半导体产业链而建立的集研发、产业化、工程、资讯、投资于一体的产业化平台和创新加速体系,致力于微技术器件及新一代信息系统技术的研发和产业化。上海微技术工业研究院的功能板块主要包括8寸“超越摩尔”研发线、工程中心、孵化加速器、产业信息平台等,为创新企业提供全方位的资源和服务。
把握信息技术发展的历史机遇,上海微技术工业研究院将充分利用中国成熟半导体的基础、广泛的市场以及充沛人才资源等方面的优势,打造具全球影响力的微技术创新中心及 “超越摩尔” 产业群。
公司网址:www.sitrigroup.com |
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