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Embedded System Engineer Internship Jobs in Boerne, TX

Deep understanding of embedded systems and communication protocols (UART, SPI, I2C, CAN, PWM ... Scripting or programming (C/C++/Python) for debugging or automation * Experience working in fast ...

Integration and Test Engineer

San Antonio, TX ยท On-site

$93K - $126K/yr

CACI is seeking a Systems Engineer (Embedded Hardware/Software Integration/Testing) doing Test Program Set (TPS) development within CACI's Aerospace Solutions Group on the ATSSI II Program in San ...

... systems, including hardware, embedded systems, and networked solutions * Develop and review ... internships/co-ops applicable) * Familiarity with engineering tools such as MATLAB and Python

Design, develop, and test cryptographic embedded systems. * Research requirements and develop product specifications according to marketing and customer needs. * Collaborate with engineers in other ...

Design, develop, and test cryptographic embedded systems. * Research requirements and develop product specifications according to marketing and customer needs. * Collaborate with engineers in other ...

Design, develop, and test cryptographic embedded systems. * Research requirements and develop product specifications according to marketing and customer needs. * Collaborate with engineers in other ...

Design, develop, and test theatrical automation equipment, embedded control systems, and related ... PLC programming, and desktop applications in VB.Net. * Develop and maintain automation control ...

Showing results 21-40

Embedded System Engineer Internship information

See Boerne, TX salary details

$58.7K

$129K

$180.4K

How much do embedded system engineer internship jobs pay per year?

As of Sep 5, 2026, the average yearly pay for embedded system engineer internship in Boerne, TX is $128,980.00, according to ZipRecruiter salary data. Most workers in this role earn between $104,800.00 and $153,600.00 per year, depending on experience, location, and employer.

What is an embedded system engineer internship?

Embedded System Engineer Internships are temporary positions designed for students or recent graduates to gain practical experience in designing, developing, and testing embedded systems. Interns typically work with microcontrollers, sensors, and real-time operating systems to help build products like consumer electronics, automotive systems, or IoT devices. These internships provide valuable hands-on experience in both hardware and software aspects of embedded systems, making them an excellent starting point for a career in embedded engineering.

What kinds of projects or tasks can I expect to work on during an embedded system engineer internship?

As an Embedded System Engineer Intern, you will typically be involved in tasks such as assisting with firmware development, testing and debugging embedded software, and supporting hardware integration efforts. Interns often collaborate closely with experienced engineers, contributing to real-world projects like sensor interfacing, microcontroller programming, or system validation. Expect a combination of hands-on technical work and learning opportunities designed to build your understanding of embedded systems. This role also encourages teamwork and communication, as you may participate in code reviews, technical discussions, and project meetings.

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

To thrive as an Embedded System Engineer Intern, you need a solid understanding of programming languages like C/C++, basic electronics, and embedded systems concepts, often supported by coursework in computer engineering or related fields. Familiarity with microcontroller platforms (such as ARM or Arduino), debugging tools, and version control systems like Git is typically expected. Strong problem-solving skills, attention to detail, and effective communication help you collaborate with teams and tackle complex technical challenges. These skills are crucial for successfully contributing to embedded projects and adapting quickly to real-world engineering environments.

What is the difference between Embedded System Engineer Internship vs Embedded Software Developer Internship?

AspectEmbedded System Engineer InternshipEmbedded Software Developer Internship
Required CredentialsTypically pursuing or holding a degree in Electrical Engineering, Computer Engineering, or related fieldsSimilar educational background, often with focus on software development
Work EnvironmentHands-on hardware and firmware development, working with microcontrollers and embedded devicesPrimarily software coding, testing, and debugging embedded applications
Industry UsageUsed in industries like automotive, consumer electronics, and IoTCommon in tech companies, startups, and embedded systems firms
Search & Comparison IntentInterested in hardware-software integration roles in embedded systemsFocused on software development within embedded environments

While both internships involve embedded systems, the Embedded System Engineer Internship emphasizes hardware and firmware work, whereas the Embedded Software Developer Internship centers on software coding and debugging. Your choice depends on whether you prefer working with hardware components or software development within embedded systems.

Is there a demand for embedded system engineer internships?

There is a strong and growing demand for embedded system engineer internships as industries such as automotive, consumer electronics, and IoT expand. Internships in this field often require knowledge of programming languages like C or C++, and familiarity with microcontrollers and real-time operating systems enhances employability. Companies seek interns to support development, testing, and integration of embedded systems, making these internships valuable for gaining practical experience in a competitive job market.

What cities near Boerne, TX are hiring for Embedded System Engineer Internship jobs?

Cities near Boerne, TX with the most Embedded System Engineer Internship job openings:

Senior Embedded Linux Platform Engineer

Futurex Inc.

Bulverde, TX โ€ข On-site

$150 - $190/hr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Posted 25 days ago


Job description

Secure platform ownership for next-generation Hardware Security Modules

Position Summary

We are seeking a Senior Embedded Linux Platform Engineer to lead the development and maintenance of the embedded software platform powering our next-generation Hardware Security Modules (HSMs). This role bridges hardware and application software by owning the Linux platform, Board Support Package (BSP), security architecture, and hardware interfaces that enable our cryptographic applications.

The ideal candidate has deep experience with embedded Linux, Buildroot, kernel and device-tree configuration, low-level hardware interfaces, secure boot, PCIe, and high-speed networking. The engineer will collaborate closely with hardware, FPGA, security, manufacturing, and application teams to deliver a secure, reliable, production-ready appliance.

Responsibilities

Embedded Linux Platform

  • Develop, maintain, and reproducibly build a Buildroot-based Linux distribution.
  • Customize and maintain Linux kernels for selected System-on-Modules (SoMs).
  • Configure and maintain device trees and board-specific platform definitions.
  • Build and maintain BSPs for custom HSM hardware and successive board revisions.
  • Integrate kernel drivers, platform services, bootloaders, and root filesystems.
  • Optimize boot performance, system footprint, reliability, and maintainability.
  • Support production images, manufacturing configuration, and secure update mechanisms.

Hardware Integration

  • Bring platform hardware into Linux and expose clean, documented interfaces to application software.
  • Integrate and validate I^2C, SPI, GPIO, UART, USB, PCIe, EEPROM/flash, and other board-level interfaces.
  • Enable sensors, fan controllers, LEDs, buttons, watchdogs, voltage monitors, reset controls, TPMs, and secure elements.
  • Develop or adapt kernel drivers and user-space services where existing interfaces are insufficient.
  • Use schematics, datasheets, oscilloscopes, logic analyzers, and other tools to diagnose board-level issues.

Security

  • Design, implement, maintain, and validate secure boot and the complete chain of trust.
  • Configure and integrate hardware roots of trust, TPMs, secure elements, and measured-boot capabilities where appropriate.
  • Recommend secure component choices and platform architectures based on threat, lifecycle, and supply-chain considerations.
  • Review hardware and low-level software designs for security weaknesses and attack surface.
  • Support tamper detection, encrypted storage, key protection, secure manufacturing, and device provisioning.
  • Define and support secure firmware and software update strategies, including rollback protection and recovery.

Networking

  • Integrate and support 10 GbE connectivity through PCIe-connected network devices and external Ethernet interfaces.
  • Configure Ethernet controllers, PHYs, drivers, link behavior, and relevant hardware offload features.
  • Tune the Linux networking stack for throughput, latency, reliability, and predictable appliance behavior.
  • Diagnose performance bottlenecks across PCIe, DMA, interrupts, drivers, and the network stack.

Platform Enablement

  • Lead bring-up of new SoMs, custom boards, and hardware revisions from first power-on through application readiness.
  • Create platform diagnostics, hardware validation utilities, and manufacturing test support.
  • Establish automated, repeatable build and integration workflows for embedded platform releases.
  • Support production, quality, field engineering, and sustaining activities throughout the product lifecycle.
  • Document platform architecture, interfaces, security assumptions, build procedures, and operational constraints.
Required Qualifications
  • Bachelorโ€™s or Masterโ€™s degree in Computer Engineering, Electrical Engineering, Computer Science, or a related field, or equivalent practical experience.
  • Five or more years of professional experience developing embedded Linux systems.
  • Strong C programming and debugging skills in resource-constrained or hardware-adjacent environments.
  • Hands-on experience with Buildroot or Yocto, Linux kernel configuration, device trees, and cross-compilation toolchains.
  • Practical knowledge of the Linux boot process, bootloaders such as U-Boot, root filesystems, kernel modules, and driver integration.
  • Experience collaborating across hardware, systems, security, and application engineering disciplines.
  • Proficiency with Git and disciplined software configuration-management practices.
Required Technical Experience

Embedded Linux

  • Buildroot or Yocto; Linux kernel configuration and customization; device trees; bootloaders; init systems; root filesystems; kernel modules; BSP and driver integration.

Hardware Interfaces

  • Hands-on experience with several of the following: I^2C, SPI, UART, GPIO, PCIe, USB, MDIO, Ethernet PHYs, DMA, and interrupts.

Networking

  • Linux networking stack, Ethernet drivers, 10 GbE, PCIe-connected networking, and network performance analysis or tuning.

Platform Security

  • Experience with one or more of the following: secure boot, measured boot, TPMs, secure elements, trusted execution, hardware roots of trust, secure updates, or applied cryptography fundamentals.
Preferred Qualifications
  • Experience developing security appliances, HSMs, cryptographic products, or other high-assurance embedded systems.
  • Familiarity with FIPS 140-3, Common Criteria, or comparable product-security certification environments.
  • ARM64 platform experience and familiarity with SoMs from NXP, AMD, Intel, TI, or similar vendors.
  • Linux kernel or PCIe driver development experience.
  • Experience reviewing schematics and conducting hands-on hardware debugging.
  • Experience with manufacturing diagnostics, secure provisioning, lifecycle controls, and field-update strategies.
Nice to Have
  • OpenSSL, PKCS #11, secure key storage, or related cryptographic interfaces.
  • Trusted Firmware-A, OP-TEE, trusted execution environments, or hardware-backed attestation.
  • Rust for systems programming.
  • CI/CD practices for embedded systems and reproducible, containerized build environments.
  • Experience with performance profiling, reliability testing, or fault-injection techniques.
What Success Looks Like
  • New hardware platforms boot reliably and can be brought to application readiness through a repeatable, documented process.
  • All required peripherals and control signals are exposed through stable, well-documented Linux interfaces.
  • Secure boot and the platform root of trust are implemented, validated, maintainable, and aligned with product-security goals.
  • 10 GbE and external Ethernet interfaces achieve expected throughput, latency, and reliability.
  • Builds are reproducible, version-controlled, automated, and suitable for manufacturing and field release.
  • Platform risks are identified early, communicated clearly, and addressed in partnership with hardware and security teams.
  • The embedded platform provides a stable, secure foundation that allows HSM application teams to deliver confidently.
  • Health, dental, vision, life, and short/long-term disability insurance
  • Paid vacation, holidays, and sick leave
  • Competitive compensation and opportunities for advancement
  • Retirement plan with employer contribution match
  • Welcoming, family-style corporate culture uniquely suited to fast-paced, entrepreneurial, and motivated individuals
  • One of San Antonioโ€™s โ€œBest Places to Workโ€ for nine consecutive years
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