IoT security is key to protecting company brands, end user privacy and commercial viability of products. Vulnerabilities can be exploited through both remote Internet attacks and physical hands-on-attacks.
Developers using the Silicon Labs wireless product portfolio including those in the EFR32BG24 portfolio have access to a number of technologies designed to protect their product, including Secure Debug, Secure Boot with Root of Trust & Secure Loader.
Part Number | MCU Core | Core Frequency (MHz) | Flash | RAM | Secure Vault | AI/ML Acceleration | Bluetooth | Bluetooth Mesh | Cryptography | Output Power Range (dBm) | GPIO | I²C | SPI | I²S | Timers (16-bit) | Temperature Range ºC | Package Type | Package Size (mm) |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
ARM Cortex-M33 | 78 | 1536 | 256 | High | 5.3 | AES-128 AES-256 ECC SHA-1 SHA-2 | -20 10 | 28 | 2 | 3 | 1 | 3 | -40 125 | QFN48 | 6x6 | |||
ARM Cortex-M33 | 78 | 1024 | 128 | High | 5.3 | AES-128 AES-256 ECC SHA-1 SHA-2 | -20 10 | 32 | 2 | 3 | 1 | 3 | -40 125 | QFN48 | 6x6 | |||
ARM Cortex-M33 | 78 | 1024 | 128 | High | 5.3 | AES-128 AES-256 ECC SHA-1 SHA-2 | -20 19.5 | 32 | 2 | 3 | 1 | 3 | -40 125 | QFN48 | 6x6 | |||
ARM Cortex-M33 | 78 | 1024 | 128 | Mid | 5.3 | AES-128 AES-256 ECC SHA-1 SHA-2 | -20 10 | 26 | 2 | 3 | 1 | 3 | -40 125 | QFN40 | 5x5 | |||
ARM Cortex-M33 | 78 | 1024 | 128 | Mid | 5.3 | AES-128 AES-256 ECC SHA-1 SHA-2 | -20 10 | 32 | 2 | 3 | 1 | 3 | -40 125 | QFN48 | 6x6 | |||
ARM Cortex-M33 | 78 | 1024 | 128 | Mid | 5.3 | AES-128 AES-256 ECC SHA-1 SHA-2 | -20 19.5 | 26 | 2 | 3 | 1 | 3 | -40 125 | QFN40 | 5x5 | |||
ARM Cortex-M33 | 78 | 1024 | 128 | Mid | 5.3 | AES-128 AES-256 ECC SHA-1 SHA-2 | -20 19.5 | 32 | 2 | 3 | 1 | 3 | -40 125 | QFN48 | 6x6 |
Information is subject to change without notice.