Infineon Semiconductor Firmware Development Services

Adequate Infosoft, specialize in Infineon firmware development services, delivering production-ready code that is safety-compliant, performance-optimized, and fully tested.

Infineon Technologies (Inf) is one of the leading manufacturers of semi-conductors for the global automotive, industrial and IOT market segments.

AURIX™, TRAVEO™, PSoC™ and XMC™ are a few of Infineon's many microcontrollers supporting various applications.

Electric vehicles, motors for industrial automation, power electronics and smart energy devices as well as Internet of Things (IoT) connectivity solutions all use these.

To take full advantage of the capabilities of Infineon’s Microcontrollers and Processors, you need to have extensive experience in developing embedded firmware, working with real-time systems, and knowledge about Safety Standards and hardware integration.

Explore our Infineon firmware development services, supported microcontroller platforms, PCB integration capabilities, and embedded software expertise that help global clients accelerate product development and reduce time-to-market.

Infineon Microcontroller and Firmware Development Illustration

Our Infineon Firmware Development Services

People searching for Infineon firmware solutions typically need specialized expertise across multiple domains.

Adequate InfoSoft delivers comprehensive solutions to the needs of your firmware development processes through end-to-end services that cover all stages of the life cycle of developing firmware.

1. Low-Level Driver & BSP Development

The foundation of every Infineon project is a solid foundation of low-level software. We will work with you to develop that solid foundation through our comprehensive ability to create and improve:

  • Development of Device Drivers for the following peripherals: ADC, PWM, CAN, SPI, I2C, UART, Ethernet and USB
  • Customizing Infineon's iLLD to work within your custom hardware provides the necessary support to move to production with confidence.
  • Supporting the creation of your hardware by bringing the board up from the first power to final system integration and through the validation process of the connected peripherals.
  • Creating a secure Bootloader, enabling over-the-air updates and validating applications running in the flash area.

For AURIX™ specifically, we leverage the Infineon Low-Level Driver (iLLD) library, which provides optimized driver functions for the TriCore™ architecture, enabling efficient peripheral access and real-time performance .

2. AUTOSAR-Compliant Software Development

The automotive industry demands standardization. Our AUTOSAR expertise covers. We have knowledge of the many AUTOSAR building blocks that are required for the automobile to work properly:

  • Development of AUTOSAR MCAL drivers for the Infineon AURIX™ and TRAVEO™ Microcontroller Abstraction Layers.
  • Configuration/Integration of Basic Software (BSW) Stacks; the generation of RTE & COM Stacks.
  • Building of AUTOSAR Software Components with Model-Based Design (SWC)
  • Transitioning from a non-AUTOSAR platform to one fully compliant with AUTOSAR.
  • Functional & Integration Testing of the Modules to confirm connectivity and dependability.

This AURIX-specific expertise enables easy code portability and leverages the vertical scalability of pin-to-pin compatible AURIX chips .

3. Device Firmware Update (DFU) & OTA Solutions

Field updates are critical for modern connected devices. We implement robust update mechanisms using Infineon's official DFU Middleware:

  • Over-the-Wire (OTW) Updates - Firmware updates via UART, I2C, SPI, USB-CDC, or CAN FD
  • Wireless Updates - OTA via Wi-Fi or Bluetooth Low Energy for PSoC™ and AIROC™ devices
  • Dual-Image Strategies - A/B partitioning for fail-safe updates with power-loss recovery
  • Secure Boot Integration -Cryptographic signature verification using OPTIGA Trust M or TPM secure elements

Infineon's DFU Middleware supports PSoC™ 4, PSoC™ 6, XMC7000, and PSoC™ Control C3 families, and we have extensive experience implementing it across all these platforms .

4. Functional Safety (ISO 26262) & Security Engineering

Functional Safety (ISO 26262) and Security Engineering

Rigorous processes are needed for applications where safety is critical. Our safety services include:

  • Firmware development from ISO 26262 ASIL-A to ASIL-D due to the highest safety integrity level.
  • Identification and mitigating system risks through hazard analyses and risk assessments.
  • By converting safety goals into firmware specifications, we create technical safety requirements.
  • Perform Software Safety Analysis using Failure Mode and Effects Analysis (FMEA), Fault Tree Analysis (FTA) and Dependent Failure Analyses.
  • For cryptographic verification of Secure Boot Implementation, OPTIGA Trust M is used.
  • Cybersecurity support is provided through secure communication protocols, key storage methods, and firmware encryption.

The AURIX™ architecture is fully compliant with ASIL D and can therefore be used in electric vehicle (EV) powertrains, braking systems, or steering controllers.

5. Motor Control & Power Conversion Firmware

Infineon's expertise in power semiconductors pairs perfectly with our motor control firmware:

  • BLDC & PMSM Motor Control - Sensorless and sensored FOC (Field-Oriented Control)
  • Gate Driver Integration - GD3160, GD3162 for IGBT/SiC traction inverters
  • Current Sensing & Position Feedback - Hall sensors, encoders, and resolver interfaces
  • Power Conversion - PFC, DC-DC converters, and inverter control algorithms

Our firmware optimizes torque ripple, efficiency, and acoustic performance while ensuring safe operation under all conditions.

Case Study: Automotive BLDC Motor Controller on AURIX™ TC3xx

AURIX TC3xx BLDC Motor Controller - Infineon Firmware Case Study

Client and Challenge:

A European automobile Tier-1 supplier was seeking to develop functional safety approving firmware for an electric oil pump BLDC (brushless direct current) motor controller utilizing the Infineon TC334 AURIX™ processor (Tri-Core). The firmware needed to meet the requirements of ASIL-C (Automotive Safety Integrity Level).

Our Solution:

The AURIX TC334 (TriCore with ASIL-D capability) processor was selected and the following software was developed:

  • Field-oriented control (FOC) and sensorless positioning
  • Control of the torque and speed through CAN FD (Fast Data) communications
  • Defined ASIL-C Safety Requirements within ISO 26262 for all mechanisms including: lockstep cores, ECC (Error Correcting Code) for memory and an independent watchdog timer.
  • AUTOSAR MCAL Layer Configuration (CAN, PWM, ADC)

Testing was performed using HIL simulation, fault injection and unit testing with TESSY.

Results were as follows:

ASIL-C certification was obtained, all PWM switching occurred at a frequency of 20kHz, the current loop response was less than 10 µsec and production-ready firmware was delivered to the client within 14 weeks.

Infineon Microcontroller Families We Master

Our firmware expertise spans the entire Infineon MCU portfolio. Here is every family we work with:

AURIX™ Family – Automotive & Safety-Critical Applications

SeriesKey FeaturesTarget Applications
TC3xxUp to 6 TriCore cores @300MHz, ASIL-D, 16MB FlashEV traction inverters, ADAS, domain controllers, battery management
TC2xxUp to 3 cores @200MHz, ASIL-D, 4MB FlashEngine control, transmission, chassis, airbag systems

Our AURIX Firmware Capabilities:

The capabilities we have in regards to our AURIX firmware are:

  • Startup and initialization sequence configuration (boot firmware, boot memory header data, user configurable boot
  • Implements FreeRTOS or bare metal based.
  • Configuration of Memory Test Unit (MTU)/MBIST for safety diagnostic testing.
  • Communication stacks (CAN FD, Ethernet TSN, FlexRay, LIN)

TRAVEO™ Family – Body Electronics & Cluster Applications

  • TRAVEO™ T2G (Body/Cluster) - Arm Cortex-M4/M7 based for instrument clusters, HMI, and body control modules
  • TRAVEO™ S6J/S6E - Legacy body electronics controllers

PSoC™ Family – Flexible, Mixed-Signal MCUs

SeriesKey FeaturesApplications
PSoC™ 4Arm Cortex-M0, CapSense®, programmable analogConsumer HMI, touch interfaces
PSoC™ 6Dual-core M4/M0+, BLE, ultra-low-powerIoT sensors, wearables, medical devices
PSoC™ EdgeML acceleration, DSP instruction setEdge AI, predictive maintenance, voice recognition
PSoC™ Control C3Real-time control, CAN FDIndustrial motor drives, power conversion

Our PSoC™ Firmware Capabilities:

  • ModusToolbox™ development with peripheral driver library (PDL)
  • CapSense® middleware for touch and gesture recognition
  • BLE/Wi-Fi integration using AIROC™ connectivity devices
  • DFU implementation with transport selection (UART, I2C, SPI, USB-CDC)

XMC™ Family – Industrial & Power Conversion

  • XMC1000 series – 32-bit Arm Cortex-M0 for cost-sensitive industrial apps
  • XMC4000 series – Cortex-M4 with DSP and FPU for drives and power supplies
  • XMC7000 series – High-performance dual-core for industrial control

OPTIGA™ & Security Solutions

  • OPTIGA Trust M – Secure element for cryptographic operations (key storage, signature verification)
  • OPTIGA TPM – Trusted Platform Module for secure boot and platform integrity

Launch Your Infineon Firmware Project Now

Are you looking for firmware specialists for Infineon? You may need one of the following:

  • • Low-level driver solutions for AURIX™ or AUTOSAR MCAL
  • • Bluetooth Low Energy (BLE)-enabled PSoC™ ModusToolbox Applications
  • • Motor control Firmware built to Safety Compliance
  • • Secure Boot and Over-The-Air (OTA) Solutions for firmware updates

Contact Adequate Infosoft today to speak with our technical specialists about your need for technical support on your next Infineon-based project and receive a detailed formal proposal from one of our experienced engineers.

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