1

Embedded Dsp Jobs in Texas (NOW HIRING)

Sr. Firmware Engineer

Katy, TX ยท On-site

$103K - $136K/yr

Develop, test, and debug embedded firmware in C/C++ for microcontroller, microprocessor, or DSP-based downhole measurement and telemetry systems. Architect firmware-to-hardware and firmware-to-sensor ...

Job Summary We are seeking a talented Signal Processing Engineer to design, develop, and optimize advanced digital signal processing (DSP) algorithms for on-chip and embedded implementation. In this ...

Senior FPGA Design Engineer

Mckinney, TX ยท On-site

$95 - $125/hr

Implement designs using VHDL for gigabit serial interfaces, Radio Frequency (RF) DSP, controls, data links, embedded processing, and processor interfaces. * Collaborate with circuit card designers ...

Lead RTL Engineer

Austin, TX ยท On-site

$101K - $133K/yr

Ability to collaborate effectively with hardware, embedded software, DSP, and systems engineering teams. * Excellent communication, documentation, and presentation skills. * Ability to make and ...

Signal Processing Engineer

Austin, TX ยท On-site

$121K - $230K/yr

  • Medical

  • Dental

  • Vision

  • Retirement

Job Summary We are seeking a talented Signal Processing Engineer to design, develop, and optimize advanced digital signal processing (DSP) algorithms for on-chip and embedded implementation. In this ...

Senior Applications Engineer II

Austin, TX ยท On-site

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

This includes state-of-the-art RF, digital, and power electronics; embedded software; FPGAs; DSP; mechanical integration; and end-to-end wireless communication links. * Provide technical leadership ...

FPGA Engineer II with Security Clearance

Plano, TX ยท On-site

$118K - $163K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

Designs commonly support the following applications: multi-gigabit interfaces, Radio Frequency (RF) and Electro-Optical (EO) DSP, controls, data links, embedded processing, and processor interfaces.

New

FPGA Engineer II

Plano, TX

$124K - $159K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

Designs commonly support the following applications: multi-gigabit interfaces, Radio Frequency (RF) and Electro-Optical (EO) DSP, controls, data links, embedded processing, and processor interfaces.

New

FPGA Engineer II

Plano, TX

$117K - $162K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

Designs commonly support the following applications: multi-gigabit interfaces, Radio Frequency (RF) and Electro-Optical (EO) DSP, controls, data links, embedded processing, and processor interfaces.

New

Senior Applications Engineer II

Austin, TX

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

This includes state-of-the-art RF, digital, and power electronics; embedded software; FPGAs; DSP; mechanical integration; and end-to-end wireless communication links. * Provide technical leadership ...

Showing results 41-60

Embedded Dsp information

See Texas salary details

$65.2K

$142.9K

$162.1K

How much do embedded dsp jobs pay per year?

As of Aug 15, 2026, the average yearly pay for embedded dsp in Texas is $142,900.00, according to ZipRecruiter salary data. Most workers in this role earn between $122,500.00 and $161,200.00 per year, depending on experience, location, and employer.

What is an embedded DSP engineer?

An Embedded DSP (Digital Signal Processing) engineer is a professional who designs, develops, and implements signal processing algorithms and systems on embedded platforms. These engineers work with hardware and software to process audio, video, sensor, or communication signals in real-time using specialized microprocessors or microcontrollers. They often work in industries such as telecommunications, automotive, consumer electronics, and medical devices, ensuring efficient and reliable signal processing within resource-constrained environments. Their work may include coding in languages like C/C++, optimizing algorithm performance, and integrating DSP functions with embedded hardware.

What are the key skills and qualifications needed to thrive as an embedded DSP engineer, and why are they important?

To thrive as an Embedded DSP Engineer, you need a solid background in digital signal processing theory, embedded systems design, and proficiency in languages like C/C++ and MATLAB, often supported by a degree in electrical or computer engineering. Familiarity with DSP processors, real-time operating systems (RTOS), and tools such as Simulink or model-based design environments is typically required. Strong problem-solving skills, teamwork, and effective communication help you collaborate across multidisciplinary teams and troubleshoot complex issues. These skills are critical for developing reliable, high-performance embedded solutions in fields like telecommunications, audio, and automotive systems.

What is the difference between Embedded Dsp vs Digital Signal Processing Engineer?

AspectEmbedded DspDigital Signal Processing Engineer
CredentialsTypically requires an electrical engineering degree, certifications in embedded systems, and DSP-specific trainingRequires a degree in electrical engineering, computer engineering, or related fields; often includes DSP coursework or certifications
Work EnvironmentEmbedded systems development in hardware-focused environments, often on embedded hardware platformsSoftware-focused, working on algorithms and signal processing in software or simulation environments
Industry UsageUsed in consumer electronics, automotive, telecommunications, and embedded device manufacturingApplied in audio/video processing, telecommunications, radar, and research projects

Embedded Dsp professionals focus on integrating DSP algorithms into embedded hardware systems, while Digital Signal Processing Engineers primarily develop and optimize signal processing algorithms in software. Both roles overlap in skills but differ in their application environments and hardware involvement.

What are some common challenges faced by embedded DSP engineers when integrating algorithms into hardware platforms?

Embedded DSP engineers often encounter challenges such as optimizing algorithms for limited processing power and memory, ensuring real-time performance, and minimizing power consumption. Balancing high-level algorithm design with low-level hardware constraints requires strong collaboration with hardware engineers and firmware developers. Troubleshooting timing issues and maintaining code portability across various embedded platforms are also frequent hurdles, but overcoming these challenges builds valuable expertise and can lead to advancement into senior technical or leadership roles.
Infographic showing various Embedded Dsp job openings in Texas as of August 2026, with employment types broken down into 2% Internship, 90% Full Time, 5% Part Time, and 3% Contract. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $142,900 per year, or $68.7 per hour.

Sr. Firmware Engineer

Cnpc Usa Corporation

Katy, TX โ€ข On-site

$103K - $136K/yr

Full-time

Re-posted 23 days ago


Job description

Location: Houston, Texas

Position status: Permanent

Exempt Status: Exempt


Company Profile:

CNPC USA is a subsidiary of China National Petroleum Company and serves as the North American headquarters. Our mission is to drive innovation through advanced research and development of next-generation technologies for oil and gas exploration and production.


Job Summary:

CNPC USA is seeking a highly experienced Senior Firmware Engineer to lead the architecture, design, and development of embedded firmware for MWD/LWD downhole tools, with a primary focus on high-speed mud pulse telemetry (MPT) and MWD system integration. This position is a key technical role responsible for end-to-end firmware architecture, real-time signal processing, telemetry encoding and decoding, sensor and measurement integration, power management, and system-level performance across the downhole-to-surface data chain.

The ideal candidate will have hands-on experience developing high-speed mud pulser systems and other MWD/LWD products, combined with a strong systems and architecture perspective spanning firmware, electronics, sensors, and telemetry encoding and decoding. This role will drive technology from concept and architecture definition through field deployment and commercialization, and will help establish firmware standards and design practices for the broader downhole product portfolio.


Key Responsibilities:

  • Define and own the firmware architecture for MWD/LWD tools — including high-speed mud pulse telemetry — from system requirements through implementation, qualification, and field release.
  • Design and optimize high-speed mud pulse telemetry schemes, including pulser generation and control, modulation/encoding, power-efficiency optimization, and surface decoding algorithms.
  • Develop, test, and debug embedded firmware in C/C++ for microcontroller, microprocessor, or DSP-based downhole measurement and telemetry systems. Architect firmware-to-hardware and firmware-to-sensor interfaces, defining data flow, timing, synchronization, and communication protocols across subsystems.
  • Develop signal-processing and noise-mitigation algorithms for telemetry, vibration, and sensor data in harsh, high-noise downhole environments.
  • Take a system-level view across firmware, electronics, mechanical, and surface software to ensure end-to-end tool performance, data integrity, and reliability. Work closely with electronics, mechanical, test, operations, and field teams to improve tool reliability and field performance.
  • Lead firmware integration, troubleshooting, root-cause analysis, performance optimization, verification, qualification, and reliability testing of embedded telemetry systems, including hardware-in-the-loop (HIL) and environmental testing
  • Support field deployment and product sustainment by investigating and resolving firmware, telemetry, sensor, and electronics issues to ensure reliable system performance.
  • Establish firmware development standards, coding practices, version control, and design documentation for the downhole engineering team.
  • Mentor and provide technical guidance to less experienced firmware and electronics engineers.


Qualifications:

  • Bachelor’s degree in Electrical Engineering, Computer Engineering, Embedded Systems, or a related discipline; Master’s degree or above is preferred.
  • 8+ years of embedded firmware development experience, with demonstrated experience at a lead or principal level.
  • Direct, hands-on experience developing high-speed mud pulse telemetry (MWD) systems and other MWD/LWD products.
  • Strong system and architecture perspective, with a proven ability to define firmware architecture and interfaces spanning firmware, electronics, sensors, and surface software. Familiar with various electronic communication Bus systems and implementations.
  • Expert-level embedded firmware development in C/C++ for MCU, MPU, or DSP-based real-time systems.
  • Solid understanding of hardware-software integration, including sensor interfaces, communication interfaces, and timing/synchronization.
  • Proficiency with laboratory and debug tools such as oscilloscopes, logic analyzers, emulators/debuggers, and automated or HIL test methods.
  • Strong troubleshooting and root-cause analysis capability for mixed firmware/hardware systems.


Preferred Experience:

  • Deep experience with mud-pulse telemetry (positive, negative, or continuous-wave/siren pulsers), especially, with high-data-rate downhole telemetry.
  • Experience with EM telemetry, short-hop, directional drilling tools, downhole sensors, and MWD/LWD measurement systems.
  • Strong background in real-time signal processing, digital communications/telemetry, modulation and encoding, and algorithm development.
  • Familiarity with high-temperature electronics, shock/vibration survivability, and pressure-compensated or sealed downhole systems.
  • Experience defining firmware architecture and standards across a product portfolio.
  • Experience with surface decoding software and optimization of the downhole-to-surface data chain.
  • Experience with manufacturing test systems, qualification testing, and product commercialization.
  • Prior experience supporting both new product development and sustaining engineering for deployed tools.


Work Environment:

This job operates in a professional office environment. This role routinely uses standard office equipment, including computers, phones, photocopiers, filing cabinets, and fax machines.


Physical Demands:

The physical demands described here are representative of those that an employee must meet to successfully perform the essential job functions.

While performing the duties of this job, the employee is regularly required to talk or hear. This is a sedentary role; however, some filing, bending, and the ability to lift 20 lbs are required.


Travel:

This position requires some overnight international and domestic travel. Local travel between other CNPC USA locations and testing facilities is required.


Supervisory Responsibility:

This position has no direct supervisory responsibilities; however, it serves as a technical lead, mentor, and point of contact for less-experienced engineers.


CNPC USA is an Equal Opportunity Employer (EOE). Qualified applicants are considered regardless of race, color, age, sex, sexual orientation, religion, disability, ethnicity, national origin, marital status, veteran status, or any other legally protected status.


Disclaimer: The job description is not intended to cover or contain a comprehensive listing of activities, duties, or responsibilities required of the employee. Other duties, responsibilities, and activities may change or be assigned at any time with or without notice.