In order to "prove" that the driverless car is safe, the British invented the chip.

Electronic enthusiasts eight o'clock: The Cerberus Security Lab in Bristol, UK, designed a chip that would make driverless cars and IoT devices safer.

The chip design uses the RISC V open source kernel and custom encryption and password management units. RISC V technology is becoming more and more popular, because no license fee is required for use, and an authorization fee is required if ARM or MIPS technology is used. According to Carl Shaw, founder and CEO of the lab, we can build a stand-alone chip or integrate it into an existing chip.

The problem is that the chip's IP (intellectual property) business is difficult to expand, so Cerberus provides data and cloud storage networks that allow customers to manage the security data of massive devices. Sean said that they use the private cloud of Wales, not a public cloud, such as Amazon AWS, Microsoft Azure is a public cloud, and Cerberus uses private clouds to process information.

IP has become more and more important, and the UK government has issued a mentoring program that requires engineers who develop smart cars to be designed to ensure that products are not vulnerable to cyber attacks.

The guiding program requires design principles to be secure, and all aspects of security (including the physical layer, the personal layer, and the network layer) must be reflected in the product and service development process. In the long run, organizations need to maintain products and respond to incidents to ensure that the system is safe throughout its life cycle, and that's what Cerberus is focusing on.

Lord Transportanan, the UK's transportation minister, said: "Our cars are becoming more and more intelligent, autopilots are getting closer and closer, and the way people travel will revolutionize. Malicious people are hacked into technology. The risk may be low, but we must protect the public. Whether it is turning a car into a Wi-Fi connection hotspot, or arming a car with a lot of code, let it run completely automatically, and it is important to prevent cyber attacks. As such, it is important to provide a common guide to all participants in the manufacturing and supply chain, which can support global industry development. The key principles we have developed provide advice to the organization on how they should do it, from the most basic. The beginning of the level, including technical design and development ideas."

In addition to driverless cars, security technology can also be used in IoT devices and medical systems.

Cylindrical Cell-holders

Antenk battery holders for Cylindrical Cells
Thru Hole and Surface Mount or with Wire Leads
For A, AA, AAA, 1/2AA, CR2, CR123A, 1/3N,C, D, N, 12 Volt, 18350, 18650, 26650 Batteries

Antenk Battery Holders for Cylindrical Cells Type

Plastic Cost Effective Holders, Polyproplene base, coil spring contacts
PC Mountable and wire lead for on or off board applications
PC Connetcor for quick connection to automated board assemblies
Snap On Connector for off board connection using 9V connection
High Performance Leaf Spring Holders, High Temp. Nylon Base
SMT Holders, Gold plated contacts
THM Holders, Tin-Nickel Plated Contacts
Solder Lug Holders, for remote wiring applications
High Performance Coil Spring Holders, High Temp. Nylon Base
SMT Holders, Gold plated contacts
THM Holders, Tin-Nickel Plated Contacts
cylindrical battery holders

Battery Holder,Cylindrical Cell Holders,Cylindrical Battery Bracket,Custom Cylindrical Cell Holders,Battery Holders Cylindrical,18650 Battery Holders,alkaline batteries Holders

ShenZhen Antenk Electronics Co,Ltd , https://www.antenksocket.com

Posted on