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Steve Statler

AmbAI

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Steve Statler | AmbAI: What are the key performance characteristics and cost trends of Ambient IoT tags, and how do they enable widespread adoption?

00:09:10 - 00:10:04

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What are the key performance characteristics and cost trends of Ambient IoT tags, and how do they enable widespread adoption?

The speaker details the performance characteristics of Ambient IoT tags, citing We-IOT's technology as an example. These tags exhibit low power consumption, with a milliwatt of peak consumption and nanowatts of leakage, enabling long lifespans. They also offer a decent range of 20 meters plus and provide zonal accuracy for location tracking.

The speaker emphasizes the significant cost reductions in Ambient IoT tags. The first version of We-IOT's tags cost around a dollar, while the second version was priced at 30 cents. The upcoming third version, slated for release in Q4, is expected to be a third of the price with three times the performance. This dramatic cost reduction makes continuous and secure connectivity increasingly affordable.

The speaker concludes that the decreasing cost of continuous and secure connectivity is a key enabler for widespread adoption of Ambient IoT. As the price point drops, it becomes economically feasible to connect a wider range of objects and products, unlocking new possibilities for data collection and analysis. This trend is expected to accelerate the integration of Ambient IoT into various industries and applications.

In this short video, you can learn:
* The power consumption and range of Ambient IoT tags.
* The dramatic cost reductions in Ambient IoT tag technology.
* How decreasing costs are driving the adoption of Ambient IoT.
πŸ“‹ **Clip Abstract** This segment discusses the performance characteristics and cost trends of Ambient IoT tags, highlighting the low power consumption, decent range, and significant price reductions. It emphasizes that the decreasing cost of these tags is a key factor driving the widespread adoption of Ambient IoT technology.
πŸ”— Link in comments πŸ‘‡

#AmbientIoTTags, #LowPowerWireless, #ZonalLocation, #IoTCostReduction, #InternetOfThings, #UbiquitousSensing

This is a highlight of the presentation:

Bridging Worlds: How Ambient IoT is Creating the Critical Connection Between AI and the Physical Environment

The Future of Electronics RESHAPED USA | Boston 2063

UMass Boston

Organised By:

TechBlick

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00:03:48 - 00:04:52

How can a 10-cent postage-stamp-sized computer run without a battery?

How can a 10-cent postage-stamp-sized computer run without a battery?

In this segment, Steve Statler breaks down the physical and electrical architecture of Wiliot's battery-free smart tag. He describes a highly integrated postage-stamp-sized compute device that contains an ARM processor, RAM, ROM, and flash memory, functioning as an active radio without any onboard battery.

The tag utilizes three distinct antenna loops: two dedicated to harvesting RF energy from ambient sources, specifically Bluetooth and sub-gigahertz frequencies, and one for active transmission. This design represents a massive leap in low-cost, high-volume semiconductor integration, targeting a price point of under ten cents.

By eliminating the battery, the design addresses the historical lifespan and weight constraints of active IoT devices. The resulting system can continuously sense variables like temperature and communicate directly over standard Bluetooth protocols to existing consumer infrastructure.

In this short video, you can learn:
* How ambient RF energy harvesting is implemented using multi-loop antenna architectures.
* The silicon composition of a sub-10-cent, battery-free active Bluetooth transmitter.
* How stripping the battery enables new form factors and industrial applications for real-time sensing.

πŸ“‹ **Clip Abstract** Steve Statler details the hardware architecture of Wiliot's battery-free, postage-stamp-sized ARM computing device. He explains how multi-loop antennas harvest ambient Bluetooth and sub-gigahertz energy to power continuous temperature sensing and active radio transmission.

#RFEnergyHarvesting, #MultiLoopAntenna, #ZeroPowerWireless, #AmbientIoT, #FlexibleElectronics, #PrintedElectronics

00:10:52 - 00:11:54

Which global wireless standards are currently shaping the future of trillions of connected devices?

How can the electronics industry scale ambient IoT to trillions of everyday objects without proprietary bottlenecks?

The scaling of ambient IoT and passive smart devices demands a fundamental transition from fragmented, proprietary ecosystems to standardized, carrier-grade infrastructure. To achieve ubiquitous connectivity, the industry requires robust standards for roaming and data sharing analogous to those established by major wireless telecommunications carriers. Without these unified frameworks, the interoperability required for massive, decentralized device deployment remains out of reach.

Major international standards bodies are actively addressing this infrastructure gap by developing dedicated protocols for ambient IoT. The 3GPP is currently integrating ambient IoT features into Release 19, while the IEEE is advancing the 802.11amp specification to support low-power, pervasive connectivity. Simultaneously, the Bluetooth Special Interest Group (SIG) is evolving its ubiquitous basic standard to ensure it can support the massive scaling demands of this emerging ecosystem.

Deploying ambient IoT at scale relies on ultra-low-power tag architectures designed to harvest energy from their surroundings. While current implementations leverage existing Bluetooth standards to transmit data, future-proof deployments must accommodate diverse environments where ambient energy is scarce. This requires a multi-vendor ecosystem of tags and harvesting technologies capable of operating continuously without traditional battery power.

In this short video, you can learn:
* The critical standardization efforts underway within 3GPP Release 19, IEEE, and the Bluetooth SIG.
* Why carrier-grade roaming and data-sharing models are essential for scaling ambient IoT.
* The architectural requirements for deploying energy-harvesting ambient IoT tags in diverse environments.

πŸ“‹ **Clip Abstract** The speaker discusses the necessity of carrier-grade standards, such as 3GPP Release 19, IEEE 802.11amp, and evolving Bluetooth protocols, to enable ambient IoT to scale. He also outlines the deployment of energy-harvesting tags within this emerging standardized ecosystem.

🎀 Speaker: Steve Statler
🏒 Company: Wiliot
πŸ“… Event: The Future of Electronics RESHAPED 2023 Berlin
πŸ“ Location: Estrel Congress Centre, Berlin, Germany, Europe

🌐 Learn more at the next TechBlick event: https://www.techblick.com

#AmbientIoT, #3GPPRelease19, #IEEE80211amp, #CarrierGradeRoaming, #PrintedElectronics, #SupplyChainTracking

00:08:25 - 00:09:51

Why is the transition from dedicated scanners to commodity radios the key to scaling IoT?

Why is the transition from dedicated scanners to commodity radios the key to scaling IoT?

In this technical segment, the speaker discusses the architectural shift from traditional RFID and optical scanning systems to the ambient Internet of Things. He outlines how legacy systems rely on expensive, manual handheld scanners, which creates fragmented, point-in-time data snapshots.

By contrast, Ambient IoT leverages the commodity Bluetooth and Wi-Fi radios already embedded in everyday consumer electronics, such as smart fridges, doorbells, and smartphones, to act as continuous, passive readers. This democratizes the reader infrastructure and eliminates the capital expenditure barrier of dedicated hardware.

This modern approach is designed from the ground up to integrate directly with cloud platforms, generating real-time triggers for environmental metrics like temperature, humidity, and light. This represents a paradigm shift from manual inventory counts to continuous supply chain visibility.

In this short video, you can learn:
* The key structural differences between point-in-time RFID scanning and continuous Ambient IoT.
* How utilizing existing commodity radio infrastructure solves the cost barrier of widespread reader deployment.
* The types of environmental sensor data that can be continuously streamed directly to cloud services.

πŸ“‹ **Clip Abstract** Steve Statler outlines the architectural paradigm shift from costly, manual RFID scanning to passive, continuous Ambient IoT tracking. By utilizing existing commodity radios in consumer appliances as readers, supply chains can access real-time, cloud-connected environmental data without dedicated hardware.

#AmbientIoT, #CommodityRadios, #EnvironmentalTelemetry, #PassiveTracking, #SupplyChainVisibility, #WirelessSensorNetworks

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