Digital Cockpit
Development Services

Cockpit Services-introduction

The automotive industry is rapidly shifting toward software-defined and user-centric vehicles. In this shift, the cockpit plays an important role serving as the digital hub that enables interaction between the driver, passengers, and the vehicle. Original Equipment Manufacturers (OEMs) and Tier-1s aim to deliver seamless, immersive, and safe in-vehicle experiences by integrating infotainment, instrument cluster, connectivity, and Advanced Driver Assistance System (ADAS) functions into centralized High-Performance Computing (HPC) platforms. This needs scalable architectures, faster software iteration cycles, and robust integration between multiple domains and operating systems.

eInfochips supports customers in this transformation by offering comprehensive cockpit development services. Our expertise spans Android Automotive, Linux, QNX, and AUTOSAR-based environments, with services covering domain controller design, Human Machine Interface/User Experience (HMI/UX) development, middleware integration, and system validation. We also provide access to pre-validated reference designs, partner ecosystems, and custom integration support to help OEMs and Tier-1s accelerate next-generation cockpit programs.

Why eInfochips For Digital Cockpit Development Services?

Next-Generation Cockpit Architectures

Supporting future-ready cockpit designs with infotainment and ADAS integration readiness

End-to-End Development and Integration Support

eInfochips works as a single point of contact for hardware, software, and system integration

Configurable Platform Support

Helping companies build cockpit solutions that can be customized and scaled across different vehicle segments

Why eInfochips for Digital Cockpitbr Development Services

Dedicated Lab and Infrastructure

Dedicated lab for Hardware, RF, Image Tuning, Electromagnetic Interference and Electromagnetic Compatibility (EMI/EMC) Testing, Hardware-in-loop, Software-in-loop, Model-in-loop (HIL/SIL/MIL) testing

Third Party Integration

Enabling seamless collaboration and integration with third party hardware and software

Ecosystem Support for Faster Development

Providing access to ready to use hardware and software stacks to reduce time-to-market

Key Offerings

Cockpit Domain Controller
In-Vehicle Infotainment
HMI and Display
User Experience
Android Automotive
Custom Integration
Instrument Cluster
Firmware Over-The-Air

SkipGenTM eCockpit IVI Platform

Re-defining the In-Cabin Experience with Next-Gen Digital Cockpit Solutions

Platforms and Stacks

Hardware Platforms

eInfochips provides hardware bring-up, Board Support Package (BSP) customization, performance optimization, and hardware validation services across these platforms:

Qualcomm

Snapdragon Automotive Platforms (SA8295/SA8195)
NXP

NXP

i.MX and S32G Families

i.MX and S32G Families

Intel / AMD Embedded Platforms

Software Stack

eInfochips provides system integration, middleware development, multi-OS harmonization, and validation services to deliver production-ready cockpit stacks:

Operating Systems and Virtualization

Android™ Automotive OS, QNX, Linux, RTOS, Hypervisor

Middleware and
Frameworks

AUTOSAR Classic and Adaptive, Android™ Framework, Communication Middleware (SOME/IP and DoIP)
yocto project

Connectivity and
Cloud

Wi-Fi, Bluetooth, GPS Integration, Cloud Telematics, and Over-the-Air (OTA) update frameworks

Digital Cockpit IVI Reference Platform

eInfochips offers a reference In-Vehicle Infotainment (IVI) platform based on Panasonic’s SkipGen™ eCockpit solution. The platform is built on Android Automotive OS and is designed to be highly customizable, scalable, and future-ready.This would enable OEMs to customize, integrate, and optimize their next-generation Android™ Automotive–based cockpit systems for faster time-to-market.

Key Features

  • Built on Android™ Automotive OS with Android™ 15* Support
  • Supports Cameras, Premium Audio, ADAS, Multimodal Interfaces, GPS
  • Domain Coverage with Cockpit Domain Controller, Vehicle Interface Domain, Cluster Domain, In-Vehile Connectivity, Android IVI
  • Pre-validated Hardware and Software, FUSA SEooC
  • Multi-Vendor Compatibility for Third Party Software Integration
  • Wired and Wireless Projection

Benefits to Manufacturer

  • Modular and Scalable Design
  • Compact and Energy Efficient Control Unit
  • Ecosystem Support
  • Multi-Vendor Compatibility
  • Future-ready architecture supporting ADAS integration

Case Studies

Next Generation Infotainment System Development and Testing

Client – Leading Automotive Tier-1 based in North America

  • Platform bring-up, firmware, drivers, middleware communication, Microcontroller Abstraction Layer (MCAL) for High performance computing (HPC), Vehicle interface processor (VIP), Display, and camera systems
  • Implemented native services within hypervisor across OS – QNX, Android, and Adaptive Autosar
  • Migrating Audio Chime feature from System on chip (SOC) to VIP / Boot Micro
  • Testing – Manual testing, Test automation using Python, Robot framework

AUTOSAR-Based HPC ECU Development and Testing for Cluster and Infotainment

Client – US-based leading Automotive Tier-1 supplier

Solution Delivered:

  • End-to-end AUTOSAR architecture design, development, integration, verification, and validation.
  • Complete AUTOSAR-based Development for three controllers- ASW, BSW, and RTE
  • Communication: CAN, LIN, Ethernet, PCIe
  • Two ethernet switches (Ethernet, PCIe switch)

Next-generation Cockpit System Development

Client – Chinese all-electric vehicle automotive Brand

Solution Delivered:

  • Hardware design based on Qualcomm Snapdragon SD820A
  • Qualcomm Hypervisor porting and enabling both Android and QNX Operating Systems
  • Three Cameras, Wi-Fi, Bluetooth, and HDMI 2.0 with High-bandwidth Digital Content Protection (HDCP)
  • Board bring-up and Functional Testing
  • Able to achieve ultra-small form factor of System on module (SOM) (84mm x 42mm)

Custom Software Development for Digital Rear View Mirrors

Client – US based leading automotive semiconductor company

Solution Delivered:

  • Customized application using Software development kit (SDK) APIs to configure cameras, displays (i.e., processing image data, adjusting display settings, and controlling camera feeds)
  • Established host communication over UART/SPI/I2C between PC and SOC for sending commands
  • Implemented On-screen display (OSD), Video Graphics, warpmaps-Lens Distortion Correction (LDC) and rendering workflows as per client requirements for parking guidelines, system warnings, and PTZ control
  • Integrate camera drivers for SerDes and image sensors
  • Perform various graphics rendering activities

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