New
phyFLEX-i.MX 91/93 FPSC
SoM Highlights
- Robust FTGA soldering module, compatible with i.MX 91 or i.MX 93.
- Single- or dual-core ARM® Cortex®-A55 (up to 1,7GHz)
- i.MX 93 with Arm co-processor® Cortex®-M33 and arm® Ethos™-U65 microNPU
- Interfaces for graphics and audio capabilities
- Thanks to FPSC, it is pin-compatible with all phyFLEX Gamma modules.
- Yocto-based Linux OS and BSP
- securiPHY distribution with all important security features
- Compatible Ezpire application software
Product details
Efficient i.MX 9 platform for scalable designs
The phyFLEX-i.MX 91/93 FPSC is based on NXP's i.MX 9 processor family and combines NXP's innovative Energy Flex architecture with high computing power thanks to Arm Cortex-A55 cores. This fully industrial-grade system-on-module (SoM) features a cost-optimized bill of materials. The phyFLEX module is designed as a robust FTGA solderable module and can be equipped with either the i.MX 91 or i.MX 93. This makes it suitable for high-volume production and significantly reduces manufacturing costs for end-user applications. Both phyFLEX modules offer a common foundation of interfaces, memory technologies, and security features, differing primarily in their vision and AI capabilities. Unlike the i.MX 91, the i.MX 93 features a second Ethernet interface and MIPI DSI, as well as optional LVDS for displays up to 1920x1200p60.
i.MX 93: AI acceleration and vision functionality
The i.MX 93 integrates an arm® The Ethos™-U65 microNPU accelerates AI inference directly on the SoM. Combined with camera interfaces and graphics capabilities, it enables efficient local processing of data-driven algorithms. This reduces latency and allows for independent system execution without a permanent cloud connection. Hardware acceleration is specifically designed for energy-efficient AI applications.
Areas of Application:
Scalability through FPSC standard
Thanks to scalability within the FPSC standard, product variants and upgrades are possible throughout the product lifecycle without redesigning the baseboard. Pin compatibility with phyFLEX modules in the FPSC Gamma feature set allows for a choice of platforms in new projects after evaluating performance requirements. Even the development of different end-product variants with varying performance classes and features—for example, applications scalable in terms of price/performance ratio—is possible. Thus, the phyFLEX-i.MX 91/93 FPSC offers upgrade paths, scalable computing power, and access to the latest technologies, while simultaneously ensuring longevity. Productsn and applications ensures and improves.
Software
Yocto-based Linux operating systems are available for the phyFLEX-i.MX 91/93.BSPPHYTEC's securiPHY distribution with integrated security features for protecting sensitive data is available. The software base is designed for rapid integration and long-term maintainability. This enables structured development and reduces the effort required to implement complex embedded systems.
Scalability through FPSC standard
Thanks to scalability within the FPSC standard, product variants and upgrades are possible throughout the product lifecycle without redesigning the baseboard. Pin compatibility with phyFLEX modules in the FPSC Gamma feature set allows for a choice of platforms in new projects after evaluating performance requirements. Even the development of different end-product variants with varying performance classes and features—for example, applications scalable in terms of price/performance ratio—is possible. Thus, the phyFLEX-i.MX 91/93 FPSC offers upgrade paths, scalable computing power, and access to the latest technologies, while simultaneously ensuring longevity. Productsn and applications ensures and improves.
Software
Yocto-based Linux operating systems are available for the phyFLEX-i.MX 91/93.BSPPHYTEC's securiPHY distribution with integrated security features for protecting sensitive data is available. The software base is designed for rapid integration and long-term maintainability. This enables structured development and reduces the effort required to implement complex embedded systems.


