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Chip Architect Jobs in Texas (NOW HIRING)

Work closely with hardware, firmware, and Chip architect to optimize DSP implementation for performance, power, and area. * Conduct system-level modelling and simulations to validate DSP algorithms ...

We're looking for an architect to own the NoC (network on chip) inside our XPU, as well as its integration into the broader network and system. Ideal Background: * Hands on experience in designing ...

Chip Lead

Austin, TX · On-site

$101K - $133K/yr

AI & Chip Engineering team defines and develops System on Chip, ASIC's, Digital and Analog IP's for ... Generate and analyze data to take right and cost effective architecture decision * Work with IP ...

Chip Lead

Austin, TX · Hybrid

$101K - $133K/yr

AI & Chip Engineering team defines and develops System on Chip, ASIC's, Digital and Analog IP'sfor ... Generate and analyze data to take right and cost effective architecture decision * Work with IP ...

Architect- Subsystem

Austin, TX · On-site

$180 - $260/hr

Hands-on experience in owning and delivering the architecture of a block that was part of a larger chip/system. * Understanding and hands-on experience in the design of AI accelerators * Experience ...

Lead Architect

Austin, TX · On-site

$230 - $360/hr

Experience leading the architecture of an entire system or subsystem (eg chip, board, die, package) * Deep understanding of AI workloads like LLM inference at workload levels and its system level ...

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Chip Architect information

See Texas salary details

$43.3K

$120K

$187.7K

How much do chip architect jobs pay per year?

As of Aug 29, 2026, the average yearly pay for chip architect in Texas is $119,956.00, according to ZipRecruiter salary data. Most workers in this role earn between $84,800.00 and $154,700.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a chip architect?

To thrive as a Chip Architect, you need deep expertise in computer architecture, digital circuit design, and strong analytical skills, usually supported by an advanced degree in electrical engineering or a related field. Familiarity with hardware description languages (like Verilog or VHDL), EDA tools, and simulation platforms is essential, along with knowledge of industry-standard protocols. Strong problem-solving abilities, effective communication, and leadership skills set outstanding chip architects apart when collaborating across multidisciplinary teams. These competencies are crucial for designing efficient, innovative chips that meet performance, power, and cost requirements in a highly competitive technology industry.

What are some common challenges faced by chip architects when translating system requirements into chip designs?

Chip Architects often face the challenge of balancing performance, power consumption, and cost constraints while translating high-level system requirements into detailed chip architectures. They must ensure that their designs can be efficiently implemented in silicon, taking into account factors like manufacturability, scalability, and integration with existing hardware and software. Collaborating closely with cross-functional teams—such as hardware, software, and verification engineers—is essential to address issues early and ensure alignment throughout the development process. Staying updated with rapidly evolving semiconductor technologies and industry standards is also a key part of overcoming these challenges.

What is the difference between Chip Architect vs Hardware Design Engineer?

AspectChip ArchitectHardware Design Engineer
Required CredentialsBachelor's or Master's in Electrical Engineering, Computer Engineering, or related fields; experience in chip design and architectureBachelor's or Master's in Electrical Engineering, Computer Engineering, or related fields; focus on circuit design and implementation
Work EnvironmentDesign teams, R&D labs, collaborative project settingsDesign labs, testing facilities, manufacturing environments
Employer & Industry UsageSemiconductor companies, tech firms, integrated circuit manufacturersElectronics companies, semiconductor firms, hardware development labs

The main difference is that a Chip Architect focuses on designing the overall architecture and high-level specifications of chips, while a Hardware Design Engineer concentrates on implementing circuit designs based on specifications. Both roles require electrical engineering expertise, but the Chip Architect is more involved in conceptual and architectural decisions, whereas the Hardware Design Engineer handles detailed circuit development and testing.

What does a chip architect do?

A chip architect designs the overall structure and specifications of integrated circuits, including processors and other hardware components. They analyze performance requirements, create architectural models, and collaborate with engineers to ensure the design meets technical and functional goals, often using tools like CAD software and simulation environments.

What job categories do people searching Chip Architect jobs in Texas look for?

The top searched job categories for Chip Architect jobs in Texas are:

What cities in Texas are hiring for Chip Architect jobs?

Cities in Texas with the most Chip Architect job openings:

Infographic showing various Chip Architect job openings in Texas as of August 2026, with employment types broken down into 92% Full Time, 2% Part Time, and 6% Contract. Highlights an 77% Physical, 8% Hybrid, and 15% Remote job distribution, with an average salary of $119,956 per year, or $57.7 per hour.

Optical DSP Chief Architect

Retym

Austin, TX • On-site

Full-time

Re-posted 11 days ago


Job description

Description
We are seeking an experienced Optical DSP Chief Architect to lead the system architect of cutting-edge Digital Signal Processing (DSP) solutions for high-speed optical communication systems. The ideal candidate will play a critical role in defining system architecture, optimizing performance, and collaborating with cross-functional teams to develop next-generation optical transceivers and communication chips.
Key Responsibilities:
  • Define the system architecture for optical DSP chips used in high-speed optical communication networks (800G/1.6T and beyond).
  • Improve the algorithms for equalization, error correction, clock and data recovery, and other signal processing functions.
  • Work closely with hardware, firmware, and Chip architect to optimize DSP implementation for performance, power, and area.
  • Conduct system-level modelling and simulations to validate DSP algorithms and architectures.
  • Collaborate with photonics and RF teams to ensure seamless integration of DSP with optical front-end components.
  • Define key performance metrics and validation methodologies for DSP architectures.
  • Work with customers and industry partners to align DSP architectures with market needs and emerging technologies.
  • Continuously monitor and adopt advancements in optical communications, DSP methodologies, and semiconductor technologies

Requirements
Qualifications & Experience:
  • Education: Master's or Ph.D. in Electrical Engineering, Computer Engineering, or a related field.
  • Experience: Minimum of 10-15 years of experience in DSP algorithm development, system architecture, and ASIC design for optical communication systems
  • Technical Expertise:
  • Strong background in digital signal processing, communication theory, and error correction codes.
  • Hands-on experience with MATLAB, Python, or C/C++ for algorithm development and simulations.
  • Knowledge of ASIC design
  • Familiarity with optical communication standards such as OIF and others
  • Experience with high-speed SerDes, ADC/DAC interfaces, and mixed-signal design considerations.
  • Understanding of optical modulation techniques and coherent optical transmission.

Preferred Skills:
  • Strong leadership and communication skills, with the ability to motivate and inspire a diverse team.
  • Knowledge of photonic integrated circuits and co-design with DSP.
  • Experience with real-time embedded DSP implementations.
  • Proven track record of delivering high-performance DSP architectures in commercial optical products.