Entry-level microcontroller til sikkerhedskritiske applikationer

Entry-level microcontroller til sikkerhedskritiske applikationer

Microchip’s nye entry-level AVR SD MCU familie baner vejen for at reducere både systemomkostningerne og kompleksiteten i sikkerhedskritiske applikationer (in english).

To assist engineers in meeting stringent safety requirements while minimizing design costs and complexity, Microchip Technology has launched the AVR SD family of microcontrollers (MCUs). The MCUs feature built-in functional safety mechanisms and are designed to support applications requiring rigorous safety assurance.

Paired with a dedicated safety software framework, this is the first entry-level MCU of its kind - at this price point - designed to meet Automotive Safety Integrity Level C (ASIL C) and Safety Integrity Level 2 (SIL 2) requirements, which mandate redundant safety checks. Further enhancing the safety credentials of the AVR SD family, the MCUs follow a functional safety management system that has been certified by TÜV Rheinland.

Hardware safety features include a dual-core lockstep CPU, dual Analog-to-Digital Converters (ADCs), Error Correction Code (ECC) on all memories, a dedicated error controller module, error injection mechanisms and voltage and clock monitors. These features reduce fault detection time and software complexity. The AVR SD family has the capability to detect internal faults quickly and deterministically, allowing applications to meet stringent Fault Detection Time Interval (FDTI) targets as low as 1 millisecond, helping prevent hazardous situations and increasing reliability. 

The hardware features work with Microchip’s safety framework software to manage functional safety diagnostics so the MCUs can detect and handle errors autonomously, initiating a safe state when necessary. The MCUs can be used as the main processor for crucial functions, such as detecting thermal runaways or monitoring sensor data like rotary positions, at minimal power consumption. It is also an excellent candidate for a coprocessor in complex systems to mirror or offload safety-critical functions for applications targeting higher safety integrity levels up to ASIL D and SIL 3.

- When designing safety-critical applications, engineers have typically been limited to using expensive and complicated devices. By integrating specific safety features directly into an entry-level MCU and providing a supporting software framework, we are helping our customers meet stringent safety standards with greater efficiency. With the AVR SD family, designers can significantly reduce development time and minimize system and certification costs, says Greg Robinson, corporate vice president of Microchip’s MCU business unit. 

AVR SD MCUs are compatible with the TÜV SÜD functional safety certified MPLAB XC8 Pro compiler and Microchip’s popular Curiosity Nano development board. The MCUs are supported by functional safety packages that include safety documentation (Failure Modes, Effects and Diagnostic analysis report, Safety manual, Dependent Fault Analysis report), safety software and compliance reports.

19/3 2025
  • Europæisk industriel Linux til sikre og suveræne embedded systemer

    Europæisk industriel Linux til sikre og suveræne embedded systemer

    aktive-komponenter-og-embedded-sw ›SYSGO præsenterer ELinOS 8, som er den seneste generation af firmaets industrielle Linux platforme, der er designet specielt til missionskritiske embedded systemer (in english).
  • Unik UWB-chip til positions- og tilstedeværelses-detektering

    Unik UWB-chip til positions- og tilstedeværelses-detektering

    kommunikation-iot-og-cybersikkerhed ›Infineon præsenterer AIROC UWB TSL100, der en single-chip løsning til præcis positionerings- og tilstedeværelses- (presence) detektering (in english).
  • SiC-MOSFET relæer til højspændings power- og testapplikationer

    SiC-MOSFET relæer til højspændings power- og testapplikationer

    aktive-komponenter-og-embedded-sw ›OMRON lancerer nye G3VH SiC-MOSFET-relæer med spændings-ratings på 3.300 V og 1.800 V, der tilbyder fordelene ved solid-state powereffektswitching ved bus- og batterispændinger på op til 1.000 V eller mere (in english).
  • Toshiba er klar med samples af nye 'entry-level' MCU'er

    Toshiba er klar med samples af nye 'entry-level' MCU'er

    aktive-komponenter-og-embedded-sw ›Toshiba kan nu levere design-samples af firmaets TXZ+ Family Entry-Class M4H Group af standard microcontrollere.
  • XJTAG understøtter nu FTDI

    XJTAG understøtter nu FTDI

    aktive-komponenter-og-embedded-sw ›XJTAG, en førende leverandør af test- og programmeringsløsninger, understøtter nu FTDI's JTAG-controllerhardware i version 4.3 af XJTAG-softwaresuiten (in english).
  • Samarbejde skal fremme embedded GUI-økosystem

    Samarbejde skal fremme embedded GUI-økosystem

    aktive-komponenter-og-embedded-sw ›GigaDevice og Qt Group præsenterer vidtrækkende samarbejde, der sigter på at forbedre og optimere de grafiske interfaces (GUI'er) til embedded applikationer (in english).
  • 180 mio. til ny chipteknologi

    180 mio. til ny chipteknologi

    branche-og-teknologi ›Et nyt forskningsprojekt med et samlet budget på knap 24 mio. euro skal demonstrere, hvordan spintronik kan bane vej for en ny generation af europæiske chips. Aarhus Universitet får en central rolle i projektet.
  • Digitale isolatorer til low-power produkter

    Digitale isolatorer til low-power produkter

    aktive-komponenter-og-embedded-sw ›Toshiba præsenterer to nye firekanals digitale isolatorer, der understøtter stabil og energieffektiv isoleret signaltransmission til multikanal kommunikationsapplikationer med middelhøj hastighed.