miriac® MPX-MX95 system-on-module
i.MX95 module with maximum connectivity, automotive and FuSa-ready
New from MicroSys, the miriac MPX-95 module is optimised for high-performance, connectivity-rich and functional-safety and security-conscious applications of the i.MX95 processor, including autonomous systems, automotive, and medical applications.
The MPX-MX95 is based on multiple heterogeneous processing units including up to 6 cores 2.0 GHz ARM Cortex-A55 plus two independent real-time co-processors: a 800MHz ARM Cortex-M7 and an ARM Cortex-M33 up to 333MHz supporting Trustzone-M. It offers high-speed data processing alongside high-performance real-time and safety/low-power uses.
The innovative SoM also supports safety, so that the i.MX95’s potential for IEC61508 (SIL 2) for Industrial and ISO26262 (ASIL B) for Automotive Security, and other aligned industry standards can be realized. All necessary internal voltages are routed to the module connector to allow, for example, monitoring via a supervisor. Additional safety requirements can be met by using a current sensor to measure parameters such as the power consumption of the SoM, CPU logic, and core. Two temperature sensors are also available for system monitoring. A QNX Board Support Package is in development.
The i.MX95 offers NXPs most advanced cybersecurity features so that systems can be designed for CRA compliance and beyond. These include AHAB secure boot, EdgeLock Secure Enclave (Advanced Profile) with EdgeLock Accelerator (V2X) including Post Quantum Cryptography (PQC). These features can be supported alongside a cybersecurity-hardened version of the Linux BSP available from Direct Insight.
The wide range of supported connectivity is summarized in the table below.
A feature-rich carrier board – the CRX-MX95 is available for development purposes.





NXP processors offer secure boot, which potentially allows the user to secure the device against code modification, while preserving the ability to update. This is achieved by programming public keys into the device, against which the private-key signed image and data are validated. We offer secure boot programming during manufacture to enable customers to easily secure their device.



