Full-Time

Staff Engineer

Design Validation

Updated on 9/4/2026

Silicon Laboratories

Silicon Laboratories

1,001-5,000 employees

Fabless semiconductor company enabling IoT connectivity

No salary listed

Hyderabad, Telangana, India

In Person

Category
Hardware Engineering (1)
Required Skills
Python
Git
Assembly
Oscilloscope
C/C++

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Requirements
  • At least 8 years of experience in system-level validation or characterization of systems-on-chip or microcontroller units.
  • Experience developing embedded firmware in C and Assembly using hardware abstraction layer and driver frameworks.
  • Ability to extract and interpret register-level details from datasheets and reference manuals.
  • Experience building Python automation frameworks for validation workflows.
  • Hands-on experience with laboratory instrumentation, including oscilloscopes, spectrum analyzers, source measure units, and arbitrary waveform generators.
  • Solid understanding of ARM Cortex-M or RISC-V architectures.
  • Hands-on experience validating power blocks such as DC-DC converters, low-dropout regulators, and brown-out detectors.
  • Hands-on experience validating clocking blocks such as relaxation clock oscillators and phase-locked loops.
  • Hands-on experience validating mixed-signal blocks such as analog-to-digital converters, digital-to-analog converters, and operational amplifiers.
  • Hands-on experience validating digital interfaces including QSPI, SDIO, I3C, USART, and USB.
  • Ability to read and understand schematics and board layouts.
  • Hands-on experience with version-control software frameworks such as Git.
  • Ability to demonstrate problem-solving, leadership, and communication skills.
Responsibilities
  • Develop and execute system-level validation plans derived from typical customer use cases and cross-functional team requirements.
  • Develop embedded firmware in C and Assembly to enable validation scenarios using hardware abstraction layer and driver layers.
  • Build Python automation frameworks to control laboratory instruments such as oscilloscopes, source measure units, spectrum analyzers, and arbitrary waveform generators.
  • Validate and characterize analog, digital, and mixed-signal subsystems on silicon.
  • Debug system-level issues and collaborate with design, firmware, and applications teams.
  • Analyze results, identify failure modes, and drive root-cause analysis.
  • Document validation results and contribute to product quality and release readiness.
  • Drive or participate in cross-functional technical reviews.
  • Develop infrastructure for an automated silicon characterization platform consisting of hardware, device and instrument drivers, software toolchains, frameworks, libraries, and databases.
  • Implement and develop work processes to scale efficiently and ensure high product quality.
  • Cooperate with Internet of Things microcontroller validation teams in other locations, integrated-circuit design engineers, and software and firmware developers.
  • Lead validation projects in an inter-site, cross-functional team environment.
  • Mentor new team members.
Desired Qualifications
  • Knowledge of radio-frequency systems, including transmitter and receiver chains.
  • Experience with wireless systems-on-chip, including Bluetooth Low Energy, Wi-Fi, and proprietary radio frequency.
  • Hands-on experience in hardware design or schematic capture.
  • Familiarity with production test flows.
  • Experience with artificial-intelligence-powered tools and technologies used to enhance productivity, analysis, and decision-making.

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

  • Q2 2026 revenue reached $228 million, up 18%, with gross margin near 62%.
  • Singapore cleared TI's Silicon Labs acquisition on August 7, 2026, reducing one regulatory hurdle.
  • India's 500,000-module Wi-SUN deployment and Philips Hue wins validate commercial demand.

What critics are saying

  • Texas Instruments acquisition closes only after approvals, pushing uncertainty into first half 2027.
  • TI can reprice roadmaps, cut standalone Silicon Labs teams, and alienate customers post-close.
  • Broadcom, Nordic, and NXP squeeze wireless margins; one failed review kills the $7.5 billion deal.

What makes Silicon Laboratories unique

  • Series 3 chips target complex, low-power IoT with 22nm compute and security.
  • Silicon Labs powers concurrent Matter and Zigbee in Philips Hue bulbs, June 2026.
  • BG2B combines Bluetooth 6, Secure Vault High, and integrated CAN-FD for smaller devices.

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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
Sep 4th, 2026
Silicon Labs opens Austin R&D centre with $23M Texas CHIPS Act grant

Silicon Labs has opened a new research and development laboratory in Austin, Texas, supported by a $23 million grant from the Texas Semiconductor Innovation Fund established by the Texas CHIPS Act. The facility expands the company's capabilities for advanced chip design and testing. The lab features advanced research, testing and validation equipment, plus engineering workspace for developing next-generation wireless technologies. It supports innovation across Silicon Labs' wireless portfolio, including its Series 3 platform for IoT applications in smart home, industrial, healthcare, commercial and smart city sectors. The TSIF funding enabled Silicon Labs to upgrade equipment for more advanced wafer process technology nodes. Company leaders and Texas state representatives attended a ribbon-cutting ceremony celebrating the facility's opening at Silicon Labs' Austin headquarters.

PR Newswire
Aug 11th, 2026
Silicon Labs reports $228M revenue and 545% non-GAAP EPS growth in Q2 2026

Silicon Labs reported second quarter 2026 revenue of $228 million, up 18% year-over-year. The wireless IoT company saw strong performance across segments, with Industrial Commercial revenue reaching $135 million (up 23%) and Home Life revenue hitting $93 million (up 12%). Medical achieved record revenue, surging 78% year-over-year. Gross margin reached nearly 62%. The company posted a GAAP diluted loss per share of $0.32, improving 52% from the prior year period. Non-GAAP diluted earnings per share was $0.71, up 545% year-over-year. Silicon Labs has suspended forward-looking guidance due to its pending acquisition by Texas Instruments. The Austin-based company noted accelerating bookings and declining inventory at distributors and end customers during the quarter.

PR Newswire
Aug 4th, 2026
Silicon Labs launches BG2B, its lowest-power Bluetooth LE SoC with industry-leading efficiency and security

Silicon Labs has announced the BG2B, its lowest-power Bluetooth Low Energy system-on-chip. The Austin-based company says the device combines Bluetooth 6 Channel Sounding technology with Secure Vault High security and integrated peripherals including CAN-FD and LED drivers. The BG2B delivers 14-15% lower active current consumption and 1.1 microamp sleep current compared to Silicon Labs' previous Bluetooth LE chip. The device is designed for applications including secure ranging, asset tracking, electronic shelf labels, smart home devices, and vehicle diagnostics. The chip integrates CAN-FD connectivity, eliminating the need for separate bridge devices in commercial vehicles and industrial equipment. It also includes integrated LED boost capabilities and dual 12-bit ADCs. BG2B is currently available through an early customer programme, with initial production hardware and modules planned for 2027.

PR Newswire
Jun 23rd, 2026
Signify brings concurrent Matter and Zigbee support to Philips Hue bulbs via Silicon Labs

Signify and Silicon Labs have announced a collaboration to bring concurrent multiprotocol communications to select Philips Hue smart bulbs, enabling support for both Zigbee and Matter over Thread simultaneously on a single device. The new Philips Hue bulbs leverage Silicon Labs' MG26 and SiMG301 wireless SoCs to deliver greater flexibility whilst maintaining advanced features like dynamic scenes, entertainment synchronisation and automation capabilities. The technology allows consumers to integrate bulbs into leading smart home ecosystems for everyday controls whilst accessing premium Hue-specific functionality. Select Philips Hue smart bulbs using the Silicon Labs technology are available now or being introduced across product lines. Whilst products currently require choosing Zigbee or Thread at commissioning, a software update enabling concurrent operation will launch later this year.

PR Newswire
May 21st, 2026
Comminent ships 500K Wi-SUN modules powered by Silicon Labs for India's smart grid rollout

Comminent has shipped over 500,000 Wi-SUN-compliant communication modules powered by Silicon Labs' EFR32FG28 Wireless SoC to support India's smart grid infrastructure. The milestone reflects growing adoption of Wi-SUN technology in the country's Revamped Distribution Sector Scheme, one of the world's largest smart meter rollouts. The Bureau of Indian Standards has adopted the global Wi-SUN Field Area Network specification as the national standard for smart meter RF communication networks. Comminent's modules utilise Silicon Labs' dual-band SoC, which combines sub-GHz and Bluetooth LE connectivity with enterprise-grade security through Secure Vault technology. The deployment enables utilities to implement scalable, self-healing wireless mesh networks. Comminent is now expanding into global smart grid markets including the US and Japan.