Securing UART communication interface in embedded IoT devices
By Harigovind A and Rakshith M B from Infineon Technologies (August 6, 2021)
With the increasing number of high-profile data and privacy breaches in the Internet of Things (IoT) systems, businesses and consumers have a greater awareness of the need for security when buying connected products. Providing best-in-class products or services is no longer enough. Devices that fail to provide adequate security will fail to be able to compete with those that provide end-to-end security.
Many protocols implement security within the standard and are a built-in part of any controller. Embedded devices that connect via universal asynchronous receiver-transmitter (UART), however, are not protected. UART is one of the simplest digital communication interfaces between devices. It’s a no ACK communication protocol that can be read by any device if the baud rate is known.
To prevent data from being read or injected into the system, the communication channel needs to be secured by the systems sending and receiving the data. Thus, even if an intruder gains access to the communication channel with the correct baud rate, the channel will be protected.
To read the full article, click here
Related Semiconductor IP
- Ultra Ethernet MAC & PCS 100G/200G/400G/800G
- Ethernet PCS 100G/200G/400G/800G/1.6T
- Ethernet MAC 100G/200G/400G/800G/1.6T
- Junction Over-Temperature Detector with Linear Centigrade-to-Voltage Output - X-FAB XT018
- Performance P570 Gen 3
Related Articles
- From I2C to I3C: Evolution of Two-Wire Communication in Embedded Systems
- Securing IoT Devices With ARM TrustZone
- MIPI in next generation of AI IoT devices at the edge
- Why Interlaken is a great choice for architecting chip to chip communications in AI chips
Latest Articles
- Closer in the Gap: Towards Portable Performance on RISC-V Vector Processors
- TTP: A Hardware-Efficient Design for Precise Prefetching in Ray Tracing
- Heterogeneous SoC Integrating an Open-Source Recurrent SNN Accelerator for Neuromorphic Edge Computing on FPGA
- A Reconfigurable Multiplier Architecture for Error-Resilient Applications in RISC-V Core
- ObfAx: Obfuscation and IP Piracy Detection in Approximate Circuits