Full-Time

Staff Digital Design Engineer

SoC Low Power, Clocking & Integration

Updated on 8/1/2026

Silicon Laboratories

Silicon Laboratories

1,001-5,000 employees

Fabless semiconductor company enabling IoT connectivity

Compensation Overview

$143.2k - $265.9k/yr

+ Annual cash bonus + Equity package

Austin, TX, USA

Hybrid

Hybrid role; on-site schedule details are not specified.

Category
Hardware Engineering (1)
Required Skills
Verilog
Python
Git
Perl
C/C++

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Requirements
  • A Bachelor of Science or Master of Science degree in Electrical Engineering.
  • 10–20 years of professional experience in digital complementary metal-oxide-semiconductor integrated-circuit design.
  • Demonstrated ability to lead small teams designing complex digital subsystems.
  • Strong RTL design expertise using Verilog and SystemVerilog.
  • Solid understanding of SoC clocking architectures, clock domain crossing, reset domain crossing, synchronization techniques, and timing considerations.
  • Extensive experience with low-power design methodologies, including Unified Power Format, power gating, retention, isolation, level shifting, and power-aware verification.
  • Strong experience with industry-standard on-chip bus protocols such as Advanced eXtensible Interface, Advanced High-performance Bus, Advanced Peripheral Bus, and related interconnect architectures.
  • Experience integrating complex subsystems, processor clusters, memory subsystems, and third-party intellectual property into large SoCs.
  • Knowledge of embedded processor systems and C programming.
  • Experience with logic simulators for RTL and gate-level simulation, design and waveform browsers, and power analysis tools.
  • Experience with logic synthesis and timing constraints.
  • Experience working with backend teams to optimize designs for power, performance, and area.
  • Experience working with analog and mixed-signal designs to support the integration and verification of these subsystems in SoCs.
  • Experience with scripting and automation, including Python, Perl, and Tcl.
  • Experience with revision control and configuration management systems such as Perforce, Git, and Methodics.
  • Strong written and verbal communication skills.
  • Demonstrated ability to produce high output independently.
  • Experience with artificial-intelligence-powered tools and technologies used to enhance productivity, analysis, and decision-making.
Responsibilities
  • Develop complex SoC and chip architectures with multiple processors, digital and mixed-signal subsystems, and multiple power and clock domains, optimizing power for specific customer scenarios.
  • Define and implement SoC-level low-power architecture, including power domains, retention, isolation, level shifters, and power sequencing.
  • Develop and integrate Unified Power Format and Common Power Format-based power intent across subsystem and SoC hierarchies.
  • Collaborate with architects to define power-management strategies that meet performance, power, and area targets.
  • Design and integrate clocking infrastructure, including clock generation, clock distribution, clock gating, clock multiplexing, reset architectures, and clock-monitoring mechanisms.
  • Drive RTL design and integration of power-management controllers, clock controllers, reset controllers, and related infrastructure intellectual property.
  • Prepare and conduct architecture, design, and verification reviews with technical staff throughout the project lifecycle.
  • Analyze and debug low-power and clocking issues identified during simulation, emulation, synthesis, and silicon bring-up.
  • Architect and integrate SoC interconnects and bus fabrics, including Advanced eXtensible Interface, Advanced High-performance Bus, Advanced Peripheral Bus, and other on-chip communication protocols.
  • Lead small teams of design engineers to architect, design, and verify digital subsystems.
  • Drive subsystem and SoC integration activities, ensuring connectivity between processors, memories, peripherals, accelerators, and third-party intellectual property.
  • Drive RTL development and integration of infrastructure intellectual property, including clock controllers, reset controllers, power-management controllers, direct memory access engines, and bus-fabric components.
  • Analyze and debug integration, clocking, power, clock-domain-crossing, reset-domain-crossing, and protocol-related issues throughout the development cycle.
  • Validate and bring up designs on silicon, providing support to cross-functional teams.

Silicon Labs designs and sells silicon ICs, software, and development tools that enable connected, energy-efficient products. They operate as a fabless semiconductor company, designing hardware and software while outsourcing manufacturing to third-party foundries. Their offerings span IoT, Internet infrastructure, industrial automation, consumer electronics, and automotive markets, with microcontrollers, wireless transceivers, sensors, and related software to simplify integration. The company aims to help developers and manufacturers bring advanced, reliable, and energy-efficient connected devices to market quickly, meeting strict quality and environmental standards.

Company Size

1,001-5,000

Company Stage

IPO

Headquarters

Austin, Texas

Founded

1996

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Simplify Jobs

Simplify's Take

What believers are saying

  • Industrial revenue grew 33% year-over-year driven by electronic shelf labels and smart metering
  • Matter protocol adoption drives ecosystem convergence enabling seamless smart home network integration
  • Book-to-bill ratio reached multi-year high as design wins exceeded internal targets

What critics are saying

  • Texas Instruments acquisition may fail due to EU or US antitrust regulatory block by H1 2027
  • Customer migration backlash from TI's poor technical support could cause 20% design win loss within 12 months
  • Silicon Labs' fabless model may collapse as TI shifts production to internal US 300mm fabs

What makes Silicon Laboratories unique

  • Silicon Labs enables concurrent Zigbee and Matter over Thread multiprotocol support on single devices
  • The company deployed over one billion wireless chips, proving dominance across major IoT ecosystems
  • Silicon Labs offers seven wireless protocols including Bluetooth, Wi-Fi, Zigbee, Thread, and Z-Wave

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Benefits

Medical, dental, and vision insurance plans

Learning and development resources

Short and long term disability

Life insurance

Retirement benefits

Profit sharing

Growth & Insights and Company News

Headcount

6 month growth

0%

1 year growth

0%

2 year growth

0%
Yahoo Finance
Mar 10th, 2026
Silicon Labs revenue up 34% to $785M in fiscal 2025, reports Q4 non-GAAP EPS of $0.56

Silicon Laboratories Inc. announced its fourth quarter and full year 2025 financial results. Fourth quarter revenue reached $208 million, up 25% year-on-year, with Industrial & Commercial revenue rising 37% to $122 million and Home & Life revenue increasing 12% to $87 million. The company reported a GAAP operating loss of $3 million and diluted loss per share of $0.08, whilst non-GAAP operating income was $21 million with diluted earnings per share of $0.56. For the full year 2025, Silicon Laboratories reported revenue of $785 million, representing 34% growth. The company recorded a GAAP operating loss of $71 million but achieved non-GAAP operating income of $25 million and diluted earnings per share of $0.92. Silicon Laboratories develops analog-intensive and mixed-signal integrated circuits for Internet of Things applications.

The Associated Press
Mar 10th, 2026
BANF and Silicon Labs launch battery-free 4 kHz tire monitoring system for autonomous vehicles

Korean startup BANF has partnered with Silicon Labs to develop a real-time tire monitoring system for autonomous vehicles and connected fleets, using Silicon Labs' ultra-low-power BG22 Bluetooth SoC. The system processes tire data at 4 kHz, measuring acceleration, pressure, temperature and tread depth from sensors mounted inside the tyre. The solution overcomes traditional power constraints through wireless energy transfer technology, eliminating the need for batteries. BANF's Smart Profiler, mounted on the vehicle's mudguard, delivers continuous power to in-tyre sensors using magnetic resonance. The system processes data within the tyre, sending only critical alerts about issues like wheel-nut loosening or slip events to the vehicle. BANF aims to expand into predictive maintenance and route optimisation services, targeting autonomous driving and fleet management applications.

PR Newswire
Mar 10th, 2026
BANF and Silicon Labs launch battery-free tire sensor with 4 kHz real-time monitoring for autonomous vehicles

BANF, a Korean intelligent tyre system company, and Silicon Labs have developed a real-time, high-resolution tyre monitoring system for autonomous vehicles and fleets. The solution integrates Silicon Labs' ultra-low-power BG22 Bluetooth SoC to process tyre data at 4 kHz sampling rates. BANF's iSensor, mounted inside the tyre, measures acceleration, pressure, temperature and tread depth, processing data locally before transmitting alerts about issues like wheel-nut loosening or slip events. The system uses proprietary wireless power transfer technology, delivering continuous power via magnetic resonance from a Smart Profiler mounted on the vehicle's mudguard, eliminating battery constraints. The solution addresses traditional Tyre Pressure Monitoring Systems' limitations by transforming tyres into connected intelligence nodes. BANF plans to expand into predictive maintenance and route optimisation services for autonomous and fleet applications.

Texas Instruments
Feb 5th, 2026
Texas Instruments to acquire Silicon Labs | Texas Instruments

The Investor Relations website contains information about Texas Instruments's business for stockholders, potential investors, and financial analysts.

Yahoo Finance
Feb 4th, 2026
Texas Instruments to acquire Silicon Labs for $7.6B, stock surges 48%

Silicon Labs shares surged 48% on Wednesday after Texas Instruments announced it would acquire the semiconductor company for $7.6 billion, or $231 per share in cash. The deal values the enterprise at approximately $7.5 billion after accounting for net cash. Silicon Labs also reported fourth-quarter earnings that beat analyst expectations, posting $0.56 per share on revenue of $208 million, compared to forecasts of $0.55 per share on $207.6 million in sales. Texas Instruments said the acquisition would create a global leader in embedded wireless connectivity solutions. Silicon Labs has grown revenues 15% annually over the past decade and generated nearly $66 million in positive free cash flow last year despite posting a $65 million loss. The transaction is expected to close in the first half of 2027.