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RFIC Layout Engineer

External
Apple logoApple · Emeryville, CA
Full-timeOn-siteToday
PerlRouting
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About the role

As an RFIC Layout Engineer, you will be a key member of a RFIC team, researching, designing and bringing the next-generation of wireless technologies into high-volume production in advanced CMOS technology nodes.

Responsibilities

  • Detailed transistor-level layout of RF and analog circuit blocks including LNA, mixers, PLL, LO generation, modulators, power amplifiers, ADC/DAC, baseband filters, and bandgap/bias/LDO.
  • Block level layout through full verification flow including extraction, DRC, LVS, and DFM checking.
  • Co-work with designers on block level floorplanning.
  • Layout review for power/gnd routing, electromigration, signal path check, differential and IQ matching, and signal coupling.

Requirements

  • Experience in custom RF/analog layout for radio transceivers with extensive knowledge of deep sub-micron CMOS.
  • Knowledgeable in layout techniques for device matching, minimizing parasitics, RF shielding, and high frequency routing.
  • Solid understanding of RC delay, electromigration, and coupling.
  • Understanding of guard rings, DNW, PN junctions, and advanced process effects such as LOD and WPE.
  • High level proficiency in interpretation of CALIBRE DRC, ERC, LVS in FinFet Technology.
  • Knowledge of CADENCE layout tools.
  • Excellent communication skills.
  • Scripting skills in PERL or SKILL.
  • Minimum requirement of a bachelors degree
  • FinFet experience.
  • Pay & Benefits
  • Note: Apple benefit, compensation and employee stock programs are subject to eligibility requirements and other terms of the applicable plan or program.

Additional Information

The Wireless SoC Radio Team designs state-of-art highly energy efficient CMOS radios, from RF to bits. To deliver these radios, our team is responsible for the design of a wide range of RF, analog, and mixed-signal blocks from RF front-end amplifiers to data converters, including baseband filters, baseband and RF phase-locked loops, crystal oscillators, and bandgap references.


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