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Silicon Labs Streamlines Energy Harvesting Product Development for Battery-Free IoT

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Silicon Labs announced the xG22E family of Wireless SoCs, their most energy-efficient to date, designed for battery-free IoT applications. The new family enables IoT device makers to create high-performance wireless devices that harvest energy from external sources. Silicon Labs also partnered with e-peas to develop energy harvesting shields for the xG22E Explorer Kit, tailored for different energy sources. The xG22E family addresses the challenge of powering low-complexity IoT devices through energy harvesting, offering features like ultra-fast cold start, power-efficient deep sleep, and multiple wake-up options. Energy harvesting technologies provide benefits like reduced energy costs, elimination of battery dependence, and reduced carbon footprint, making IoT applications more sustainable.
Silicon Labs ha annunciato la famiglia di SoC wireless xG22E, la più efficiente dal punto di vista energetico fino ad oggi, progettata per applicazioni IoT senza batteria. Questa nuova famiglia permette ai produttori di dispositivi IoT di creare dispositivi wireless ad alte prestazioni che raccolgono energia da fonti esterne. Silicon Labs ha inoltre collaborato con e-peas per sviluppare scudi per il raccolto energetico per il Kit Esploratore xG22E, su misura per diverse fonti energetiche. La famiglia xG22E affronta la sfida di alimentare dispositivi IoT di bassa complessità attraverso il raccolto energetico, offrendo caratteristiche come l'avvio a freddo ultra-rapido, il sonno profondo efficiente dal punto di vista energetico e molteplici opzioni di risveglio. Le tecnologie di raccolto energetico offrono benefici quali la riduzione dei costi energetici, l'eliminazione della dipendenza dalle batterie e la riduzione dell'impronta di carbonio, rendendo le applicazioni IoT più sostenibili.
Silicon Labs ha anunciado la familia de SoCs inalámbricos xG22E, la más eficiente energéticamente hasta la fecha, diseñada para aplicaciones IoT sin baterías. La nueva familia permite a los fabricantes de dispositivos IoT crear dispositivos inalámbricos de alto rendimiento que obtienen energía de fuentes externas. Silicon Labs también se asoció con e-peas para desarrollar escudos de recolección de energía para el Kit Explorador xG22E, adaptados para diferentes fuentes de energía. La familia xG22E aborda el desafío de alimentar dispositivos IoT de baja complejidad mediante la recolección de energía, ofreciendo características como arranque en frío ultra rápido, sueño profundo eficiente en energía y múltiples opciones de despertar. Las tecnologías de recolección de energía ofrecen beneficios como la reducción de los costos de energía, la eliminación de la dependencia de las baterías y la reducción de la huella de carbono, haciendo las aplicaciones IoT más sostenibles.
실리콘 랩스가 배터리가 필요 없는 IoT 응용 프로그램을 위해 설계된 지금까지 가장 에너지 효율적인 무선 SoC인 xG22E 제품군을 발표했습니다. 새로운 제품군은 IoT 장치 제조업체가 외부 소스에서 에너지를 수집하는 고성능 무선 장치를 만들 수 있게 합니다. 실리콘 랩스는 또한 다양한 에너지 소스를 위해 맞춤 제작된 xG22E Explorer Kit용 에너지 수확 쉴드를 개발하기 위해 e-peas와 파트너 관계를 맺었습니다. xG22E 제품군은 에너지 수확을 통해 저복잡성 IoT 장치를 구동하는 도전을 해결하며 초고속 콜드 스타트, 에너지 효율적인 깊은 잠자기 모드 및 다양한 깨우기 옵션과 같은 기능을 제공합니다. 에너지 수확 기술은 에너지 비용 감소, 배터리 의존성 제거 및 탄소 발자국 줄이기와 같은 혜택을 제공하여 IoT 응용 프로그램을 더욱 지속 가능하게 만듭니다.
Silicon Labs a annoncé la famille de SoCs sans fil xG22E, la plus économe en énergie à ce jour, conçue pour les applications IoT sans batterie. La nouvelle famille permet aux fabricants de dispositifs IoT de créer des dispositifs sans fil hautes performances qui récoltent de l'énergie à partir de sources externes. Silicon Labs s'est également associé à e-peas pour développer des boucliers de récolte d'énergie pour le Kit Explorateur xG22E, adaptés à différentes sources d'énergie. La famille xG22E relève le défi d'alimenter des dispositifs IoT de faible complexité par la récolte d'énergie, offrant des fonctionnalités telles que le démarrage à froid ultra-rapide, le sommeil profond écoénergétique et plusieurs options de réveil. Les technologies de récolte d'énergie offrent des avantages tels que la réduction des coûts énergétiques, l'élimination de la dépendance aux batteries et la réduction de l'empreinte carbone, rendant les applications IoT plus durables.
Silicon Labs hat die xG22E Familie von Wireless SoCs vorgestellt, ihre bisher energieeffizienteste, entworfen für batteriefreie IoT-Anwendungen. Die neue Familie ermöglicht es Herstellern von IoT-Geräten, leistungsstarke drahtlose Geräte zu erschaffen, die Energie aus externen Quellen gewinnen. Silicon Labs hat außerdem mit e-peas zusammengearbeitet, um Energiegewinnungsschilde für das xG22E Explorer Kit zu entwickeln, maßgeschneidert für verschiedene Energiequellen. Die xG22E Familie nimmt sich der Herausforderung an, IoT-Geräte geringer Komplexität durch Energiegewinnung zu betreiben, und bietet Funktionen wie ultra-schnellen Kaltstart, energieeffizienten Tiefschlaf und multiple Weckoptionen. Energiesammeltechnologien bieten Vorteile wie reduzierte Energiekosten, die Eliminierung der Batterieabhängigkeit und eine reduzierte CO2-Bilanz, was IoT-Anwendungen nachhaltiger macht.
Positive
  • Silicon Labs announced the xG22E family of Wireless SoCs for battery-free IoT applications.
  • The xG22E family enables high-performance wireless devices that harvest energy from external sources.
  • Silicon Labs partnered with e-peas to develop energy harvesting shields for the xG22E Explorer Kit.
  • The xG22E family offers features like ultra-fast cold start, power-efficient deep sleep, and multiple wake-up options.
  • Energy harvesting technologies provide benefits like reduced energy costs, elimination of battery dependence, and reduced carbon footprint.
Negative
  • None.

Silicon Labs' most energy-efficient Wireless SoC to date with energy harvesting-ready capabilities

AUSTIN, Texas, April 22, 2024 /PRNewswire/ -- Silicon Labs (NASDAQ: SLAB), a leader in secure, intelligent wireless technology for a more connected world, today announced their new xG22E family of Wireless SoCs, Silicon Labs' first-ever family designed to operate within the ultra-low power envelope required for battery-free, energy harvesting applications. The new family consists of the BG22E, MG22E, and FG22E. As Silicon Labs' most energy-efficient SoCs to date, all three SoCs will enable IoT device makers to build high-performance, Bluetooth Low Energy (LE), 802.15.4-based, or Sub-Ghz wireless devices for battery-optimized and battery-free devices that can harvest energy from external sources in their environments like indoor or outdoor ambient light, ambient radio waves, and kinetic motion.

To help device manufacturers build a complete energy harvesting solution, Silicon Labs is also announcing their partnership with e-peas, a provider of industry-leading Power Managed Integrated Circuits (PMICs) designed for energy harvesting. Through this partnership, Silicon Labs and e-peas co-developed two energy harvesting shields for Silicon Labs' new, energy-optimized xG22E Explorer Kit. To better develop within the tight constraints that energy harvesting requires, the new xG22E Explorer Kit allows developers to customize the peripherals and debugging options that best match their application and get highly accurate measurements to better build their applications and devices with the energy harvesting shields. The energy harvesting shields are each tuned and optimized for different energy sources and energy storage technologies. They are custom-fit to slot onto the Explorer Kit. Notably, one of the shields uses e-peas' latest AEM13920 dual-harvester, which allows it to pull energy simultaneously from two distinct energy sources, like indoor or outdoor light, thermal gradients, and electromagnetic waves without sacrificing on energy conversion efficiency. The second co-developed shield is based on e-peas' AEM00300 shield, and is dedicated to harvesting power from random pulsed energy sources.

"As the market for energy harvesting and low-power solutions grows, Silicon Labs remains dedicated to enhancing our wireless MCU and radio stack capabilities to advance the development of battery-free IoT solutions," said Ross Sabolcik, Senior Vice President for the Industrial and Commercial Business Unit at Silicon Labs. "Our efforts to prioritize energy efficiency and increase device longevity underscore our commitment to fostering a more sustainable IoT ecosystem."

xG22E Designed to Address Energy Efficiency Challenges for the IoT
The evolution and widespread deployment of the Internet of Things (IoT) faces a significant challenge related to powering low-complexity, small-form-factor devices. Traditional sources like mains power or batteries pose scalability and maintenance issues. The emergence of the Ambient IoT addresses this challenge by introducing a class of connected devices primarily powered through energy harvesting from ambient sources like radio waves, light, motion, and heat.

Silicon Labs aims to build a device that can address one of the significant challenges in Ambient IoT: creating a platform that can optimize its energy consumption and prolong its lifespan. The xG22E family comes equipped with several features designed to minimize energy use and make it the platform of choice for energy harvesting, including:

  • Ultra-fast, low-energy cold start for applications starting from a zero-energy state to transmit packets and then rapidly return to sleep. An xG22E device wakes up in only eight milliseconds and uses only 150 micro-Joules, or roughly 0.003% of the energy needed to power a 60-watt equivalent LED lightbulb for one second.
  • Energy conserving deep sleep swift wake-up reduces wake-up energy by 78% compared to other Silicon Labs devices.
  • Power-efficient energy mode transition to smoothly transition in and out of energy modes by mitigating current spikes or inrush, which can harm energy storage capacity.
  • Multiple deep sleep wake-up options, such as RFSense, GPIO, and RTC wake-up sources from the deepest EM4 sleep mode, are ideal for extended storage.

Energy Harvesting Applications Enable a More Sustainable IoT
Energy harvesting and conservation technologies offer significant benefits across industries, including reduced energy costs, elimination of battery dependence, and reduced operational carbon footprint by changing energy consumption sources and minimizing battery waste. It also complements many existing IoT applications. For example, electronic shelf labels are being rapidly adopted by retailers across the globe to allow for more accurate pricing, inventory management, and even loss prevention. However, with a single location having as many as thousands of labels, they require a lot of batteries. Fortunately, electronic shelf labels do not need a lot of power, nor do they require always-on connectivity, making them an excellent fit for energy harvesting. By using Ambient IoT energy sources, retailers can reduce or eliminate their need for batteries for shelf labels. Other examples in the consumer space include television remote controls that use solar energy and movable, wireless light or appliance switches.

Silicon Labs actively supports companies developing successful low-power devices and pursuing battery-free designs, fostering an environmentally sustainable leadership within their respective fields.

To learn more about how to begin developing battery-free IoT devices using Silicon Labs, be sure to visit:

About Silicon Labs
Silicon Labs is a trailblazer in wireless connectivity for the Internet of Things. The corporate values and vision to be a sustainable leader in the semiconductor Industry are the foundation of Silicon Labs' sustainability strategy. Its integrated hardware and software platform, intuitive development tools, and unmatched ecosystem support make Silicon Labs the ideal long-term partner in building advanced industrial, commercial, and home and life applications. Silicon Labs leads the industry in high performance, low power, and security, supporting the broadest set of multi-protocol solutions.

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SOURCE Silicon Labs

FAQ

What did Silicon Labs announce for battery-free IoT applications?

Silicon Labs announced the xG22E family of Wireless SoCs, their most energy-efficient to date, designed for battery-free IoT applications.

Who did Silicon Labs partner with to develop energy harvesting shields for the xG22E Explorer Kit?

Silicon Labs partnered with e-peas to develop energy harvesting shields for the xG22E Explorer Kit.

What benefits do energy harvesting technologies offer?

Energy harvesting technologies provide benefits like reduced energy costs, elimination of battery dependence, and reduced carbon footprint.

What features does the xG22E family offer for energy efficiency in IoT devices?

The xG22E family offers features like ultra-fast cold start, power-efficient deep sleep, and multiple wake-up options.

How does energy harvesting contribute to sustainability in IoT applications?

Energy harvesting technologies contribute to sustainability in IoT applications by reducing energy costs, eliminating battery dependence, and reducing carbon footprint.

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silicon labs is a leading provider of silicon, software and solutions for a smarter, more connected world. our award-winning technologies are shaping the future of the internet of things, internet infrastructure, industrial automation, consumer and automotive markets. headquartered in austin, silicon labs has more than 1,400 team members in over 20 countries creating products focused on performance, energy savings, connectivity and simplicity. we're passionate about what we do and are proud that the global semiconductor alliance voted us the most respected public semiconductor company for three of the last four years. connect with us at silabs.com.