Navigate the New IoT Labeling Program with Silicon Labs’ Best-In-Class Security

2024-03-21 SILICON LABS Blogs
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Securing the IoT is challenging. It’s also mission critical. As more devices become connected, the potential for IoT threats also increases, which has led governments and regulatory bodies to take action to protect consumers and has also incentivized manufacturers to prioritize cybersecurity. To help consumers better navigate this evolving landscape, today the White House officially launched its voluntary national cybersecurity IoT labeling program, U.S. Cyber Trust Mark, to provide consumers with information and build trust in the security capabilities of their IoT devices.

 

New White House Label Will Build Consumer Confidence in IoT Device Security


Through this program, consumers will gain transparency into the security features of their IoT products, including vulnerability information. For example, before buying a smart doorbell a customer could access a “living label” such as a QR code on the back of the device’s package to get all the latest security details about the product, including breaches, with a click of a button from their smartphone. By using a living label, consumers can be assured that the security of the device wasn’t compromised during transit from the manufacturer or while it sat on store shelves. This increased transparency will enable consumers to make better-informed decisions and will also help the IoT industry to scale as trust grows not only with consumers but also among device vendors, ecosystem partners, Internet Service Providers (ISPs), and the broader technology universe as more stakeholders embrace the security the label represents.


As a leader in IoT security, SILICON LABS is primed to help IoT developers and designers navigate changes in the IoT landscape with silicon, software, and solutions integrated with the best-in-class security from the start.

 

A Challenging Landscape for Customers


 

Secure Vault, Custom Parts Manufacturing, and Third-Party Certifications Give Silicon Labs’ Customers a Head Start in IoT Security


Customers will be able to inherit security certifications for sub-components, which have been certified by frameworks like Platform Security Architecture (PSA) and Security Evaluation Standard for IoT Platforms (SESIP). Silicon Labs’ Secure Vault™ is one such component that meets and exceeds the requirements called for by the latest IoT labeling program. Secure Vault™ contains a suite of advanced security features that protects against local and remote software attacks, local hardware attacks, and has been penetration tested by third-party laboratories. Silicon Labs was the first silicon provider to achieve the highest level of certification for Platform Security Architecture (PSA/SESIP certification Level 3) developed by Arm in response to the need for a "Hardware Root of Trust" in a secure microcontroller. The architecture includes functions such as Secure Boot, secure storage, secure code updating, secure isolation, cryptography, and secure debug ports.


The basis for the U.S. Consumer IoT Labeling program will be the National Institute of Standards and Technology (NIST) Interagency Report (IR) 8425 developed from NIST IR 8259A and B. In addition to product requirements, this report’s requirements are unique in that they now also require IoT product developer activities such as creating security documentation, providing means for the consumer and the public to report vulnerabilities, similar to a Product Security Incident Response program, disseminating vulnerabilities to the public, and requiring general security education and awareness. Silicon Labs plays a role in these requirements by providing its own vulnerability reporting program on our website where users and developers can also find the documentation and training on the security features we offer.


 


NIST IR 8425 IoT Device Cybersecurity and Non-Technical Supporting Core Baseline Requirements (courtesy of NIST)

 

For the device requirements, the labeling program requires manufacturers to meet baseline security standards for their IoT products including asset identification, product configuration, data protection, interface access control, software updates, and cybersecurity state awareness. To achieve proper asset identification, manufacturers can utilize Silicon Lab’s secure identity and Silicon Lab's Custom Parts Manufacturing Services (CPMS), which enables unique identification of all components and a secure way to provision the devices. Silicon Lab’s Secure Boot allows manufacturers to validate the firmware before letting it run on the device. Silicon Lab’s cryptography solutions protect data from unauthorized access, while our Secure Debug restricts interface access to authorized entities. Our solutions help partners implement secure over-the-air (OTA) updates, ensuring authorized entities can update software securely. Silicon Labs also assists customers in Cybersecurity State Awareness with our hardware tamper protection, allowing for detection of cybersecurity incidents affecting or impacted by the IoT product.


We maintain a high standard of security at Silicon Labs which makes it possible for manufacturers to go through dependent security certification programs such as the Connectivity Standards Alliance’s Product Security Working Group (PSWG), PSA, and SESIP. If customers use Secure Vault™, they will only need to prove to the security labs that they have implemented Silicon Labs’ security features properly, instead of doing penetration testing on these same features.


 IoT Security is a Global Imperative


This enhanced focus on IoT security extends globally. For example, Singapore has its own labeling scheme, Singapore Cybersecurity Labeling Scheme (SCLS), and the European Union created Radio Equipment Directive (RED) Security Requirements. By being a part of the Connectivity Standards Alliance’s PSWG, Silicon Labs is helping to continue the global conversation on the best way to protect and inform consumers and society at large, and today's announcement from the White House represents a strong step towards building a safer, more connected world.


Silicon Labs is continuing to improve our offerings to cover increasing security concerns and requirements in global markets. Learn more about our IoT security mission.


授权代理商:世强先进(深圳)科技股份有限公司
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本文由涂抹转载自SILICON LABS Blogs,原文标题为:Navigate the New IoT Labeling Program with Silicon Labs’ Best-In-Class Security,本站所有转载文章系出于传递更多信息之目的,且明确注明来源,不希望被转载的媒体或个人可与我们联系,我们将立即进行删除处理。

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描述- Silicon Labs Wi-SUN产品组合概述,涵盖Wi-SUN技术优势、价值主张、产品差异化、软件、开发者体验、安全和CPMS、应用图示、边界路由器详情等。介绍Wi-SUN技术基于标准LPWAN技术,易于部署和互操作,支持多种调制方案,具有自形成和自愈合的网状拓扑结构,由Wi-SUN联盟管理,提供高度安全的网状网络。产品包括Wi-SUN FAN架构、OFDM和FSK调制、FG25射频性能等。

型号- FG12,EFR32XG23,EFR32MG12,BRD4002A,XG13,WI-SUN-PK6015A,FG28-PK6024A,XG12,XG23-PK6068A,FG25-PK6011A,XG28-RB4401C,FG25-RB4271A,EFR32FG28,EFR32FG25,FG28-PK6025A,WI-SUN-PK6016A,FGM230S,FG22,FG23,FG25,FG25-RB4272A,XG28-EK2705A,FG28,BRD2705A,FG25-PK6012A,XG28-RB4400C,FG25-RB4270B,EFR32FG12,FG28-RB440XB,XG28-RB440XC

2024/11/8  - SILICON LABS  - 商品及供应商介绍 代理服务 技术支持 采购服务

Sekorm公司简介

描述- Sekorm Found in 1993, Best component distributor in China.

KENDEIL,INFINEON,KEYSIGHT,LITTELFUSE,SILICON LABS,TE CONNECTIVITY,CENTRAL SEMICONDUCTOR,FDK,ADVANCECHIP,WIMA,NIPPON CHEMI-CON,REP-AVAGO,MEIG,VINCOTECH,PERATECH,STANDEX-MEDER,KODENSHI,EPSON,WOLFSPEED,LONGSUNG,SMAC,MELEXIS,EMC RFLABS,中科微,RICOH,ISABELLENHUETTE,AARONIA,MAXELL,ROHM,WEIDMUELLER,LAIRD,ALLIANCE,SMI,FIRECOMMS,TT ELECTRONICS,RENESAS,II-VI MARLOW,EXXELIA,PRECI-DIP,SHINDENGEN,KYOCERA,EPC,PI,UMS,ROGERS,SGMICRO,LEONI  - 世强公司简介

Sekorm: The Largest Authorized Distributor Platform In China In The Asia-Pacific Region, Providing Stable Supply Guarantee

As the largest authorized distributor platform In China In the Asia-Pacific region, Sekorm provides a stable supply guarantee.

2022-08-19 -  公司动态

Enhancing 4G Communication: The Role of 4G Antenna Spring Coils

A 4G antenna spring coil is a component designed to enhance the quality and stability of 4G communication signals. Typically shaped like a spiral or coil, it boosts the antenna‘s ability to transmit and receive signals. The elastic structure of the spring coil provides mechanical support and allows for frequency response adjustments within a specific range.

2024-11-08 -  技术探讨 代理服务 技术支持 采购服务

利用Mangoh®Yellow开放式平台优化智能计量

描述- 本文介绍了如何优化mangOH® Yellow开放平台上的RF信号。通过集成RUN mXTEND™天线增强器,可以提升多频段连接的RF信号。文章详细阐述了如何通过匹配网络和PCB设计改进来增强LTE天线性能,并提供了设计指南和结果分析。此外,还介绍了如何使用Virtual Antenna™技术进行快速、经济的设计流程。

型号- NN02-224

April 2021  - IGNION  - 应用笔记或设计指南 代理服务 技术支持 采购服务
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