# Battery-Free Sensors and Smart Passive Sensing (SPS) Market

> Battery-free sensors and SPS market: USD 321.8 million in 2025, rising to USD 1.44 billion by 2035 as retail ambient IoT pixels and RAIN sensor tags scale.

Publisher: Douglas Insights  
Author: Douglas Insights Research Desk  
Report code: DI-IT-10695  
Published: 2026-10-08  
Last updated: 2026-10-08  
Next review: Apr 2027  
Page: https://www.douglasinsights.com/battery-free-sensors-and-smart-passive-sensing-sps-market/

## Key figures

| Measure | Value | How it is built |
| --- | --- | --- |
| Market size · 2025 | $321.8 Mn | 87.21 million units at USD 3.69 = USD 321.8 million |
| Forecast · 2035 | $1.44 Bn | USD 1.44 billion in the base case |
| Revenue CAGR · 2026-2035 | 16.18% | Units times price |
| Volume · 2035 | 606.4 Mn units | 87.21 million units in 2025 growing 21.4% a year |
| Leading segment | Energy-harvesting wireless sensor modules, 60.9% | USD 196.0 million in 2025 |
| Fastest segment | Bluetooth ambient IoT pixels, 33.62% | USD 13.8 million to USD 250.4 million |
| Fastest region | Asia Pacific, 17.88% | USD 94.3 million to USD 488.6 million |
| Market leader | EnOcean (top three 41.6%, estimate) | Douglas Insights attribution; no supplier discloses this revenue |
| Event | 2 Oct 2025: Wiliot pixels live at 500 Walmart locations | https://www.wiliot.com/wiliot-collaborates-with-walmart-to-transform-retail-supply-chain-with-ambient-iot-and-ai |

## Key takeaways

- Battery-free sensors and SPS devices total USD 321.8 million in 2025, from 87.21 million units at USD 3.69 each.
- Revenue reaches USD 1.44 billion by 2035 at a 16.18% CAGR, with 21.4% unit growth offset by a 4.3% annual price decline.
- Energy-harvesting wireless sensor modules hold 60.9% of 2025 value, while Bluetooth ambient IoT pixels grow fastest at 33.62% a year.
- Asia Pacific grows 17.88% a year and overtakes North America by 2035 at USD 488.6 million.
- Walmart's goal of 90 million Wiliot pixels by end-2026 is 2.65 times the 2025 worldwide pixel count.

USD 44.20 is what a building-automation integrator pays for one EnOcean STM 550 multisensor module at the 100-unit price break listed by Mouser in October 2026, and that realised price explains why harvesting modules still carry most of this market. Battery-free sensors and smart passive sensing (SPS) devices are sensing endpoints that run with no primary battery, powered by a reader's radio field, indoor light, motion or heat. The Battery-Free Sensors and Smart Passive Sensing (SPS) market covers RFID-powered sensor tags, Bluetooth ambient IoT pixels, energy-harvesting wireless sensor modules, surface acoustic wave (SAW) sensors and printed and photovoltaic sensor labels. Our 2025 receipt reads 87.21 million units at an average USD 3.69, or USD 321.8 million, and the total reaches USD 1.44 billion by 2035 on a 16.18% revenue compound annual growth rate (CAGR). The volume shock is already visible: on 2 October 2025 Wiliot said its battery-free Bluetooth pixels were live at 500 Walmart locations, with a goal of 90 million pixels on pallets by the end of 2026 ([Wiliot announcement](https://www.wiliot.com/wiliot-collaborates-with-walmart-to-transform-retail-supply-chain-with-ambient-iot-and-ai)). The study is part of our [sensors and instrumentation coverage](https://www.douglasinsights.com/industry/ict-semiconductors/sensors-instrumentation/) and follows the [Douglas Insights research methodology](https://www.douglasinsights.com/research-methodology/).

## How much does a battery-free sensor tag, pixel or harvesting module cost in 2026?

USD 3.69 is the 2025 blended realised price per battery-free sensing unit, but the spread runs from about USD 0.41 for a Bluetooth ambient IoT pixel to USD 44.20 for a multisensor harvesting module. Mix, not list price, sets the average, and the mix is tilting toward the cheap end of the scale.

Douglas Insights puts the realised module average at USD 33.6 across 5.83 million energy-harvesting units, below the distributor list because volume buyers negotiate. Mouser lists the STM 550 at USD 56.49 for one piece and USD 44.20 at 100 pieces. The simpler STM 350 temperature and humidity transmitter lists at USD 31.00 at 100 pieces. Those are small-batch prices.

Passive tags sit two orders of magnitude lower. RFID-powered sensor tags realise about USD 1.37 a unit in our model, because a sensor inlay needs a sensing chip such as the Axzon Magnus S3 plus a tuned antenna, against a few cents for a plain identity tag. SAW sensors average USD 19.8, priced for switchgear and rotating equipment. Printed and photovoltaic sensor labels average USD 2.73.

The blended price falls 4.3% a year to USD 2.38 by 2035. Mix shift accounts for 2.9 points of that decline as pixels and tags outgrow modules; like-for-like erosion supplies the other 1.4 points. The 2026 average lands at USD 3.53.

## Which sensing technology earns most battery-free sensor revenue, by segment?

Energy-harvesting wireless sensor modules earn 60.9% of 2025 battery-free sensor revenue, USD 196.0 million, because each unit sells for tens of dollars. Passive tags and pixels ship far more units yet earn less, and they grow two to three times faster through 2035.

| Technology segment | 2025 share | 2025 value | Growth rate 2026-2035 | 2035 value |
| --- | --- | --- | --- | --- |
| Energy-harvesting wireless sensor modules | 60.9% | USD 196.0 million | 10.37% | USD 525.7 million |
| RFID-powered sensor tags | 17.7% | USD 57.0 million | 21.08% | USD 386.0 million |
| Surface acoustic wave (SAW) sensors | 14.0% | USD 45.1 million | 12.74% | USD 149.6 million |
| Bluetooth ambient IoT pixels | 4.3% | USD 13.8 million | 33.62% | USD 250.4 million |
| Printed and photovoltaic sensor labels | 3.1% | USD 9.9 million | 29.38% | USD 130.1 million |

Energy-harvesting wireless sensor modules hold USD 196.0 million on kinetic switches and solar-powered room sensors in building automation; their 10.37% growth is the slowest because offices replace controls on long cycles. RFID-powered sensor tags take 17.7%, or USD 57.0 million, and climb at 21.08% to USD 386.0 million as cold chain and pharmaceutical shippers add temperature inlays to RAIN reads they already run. Surface acoustic wave (SAW) sensors hold 14.0%, USD 45.1 million, on wireless temperature points inside medium-voltage switchgear where no battery is allowed near live busbars; they reach USD 149.6 million. Printed and photovoltaic sensor labels are the smallest line at 3.1%, USD 9.9 million, growing 29.38% as label converters print sensing patches onto packaging.

Bluetooth ambient IoT pixels are the fastest segment at 33.62% a year, from USD 13.8 million to USD 250.4 million. The reason is one customer pattern: a retailer that tags pallets by the tens of millions and reads them with the phones and gateways it already owns. Pixels hold only 4.3% of 2025 value at a price near USD 0.41, so volume shows up in units long before revenue.

## Why are retailers and RAIN RFID chip volumes lifting battery-free sensor demand?

Four forces add 21.4 points of unit growth a year to battery-free sensors: retail pallet tracking 9.6 points, cold chain and pharmaceuticals 4.7, building automation 3.8 and industrial asset monitoring 3.3. Retail matters most because a single programme ships tags in the tens of millions.

### Retail pallets: 9.6 points

Walmart is the clearest proof. Wiliot said on 2 October 2025 that its pixels were deployed across 500 Walmart locations, with expansion planned in 2026 to about 4,600 Supercenters and Neighborhood Markets and more than 40 distribution centers ([Wiliot and Walmart release](https://www.wiliot.com/wiliot-collaborates-with-walmart-to-transform-retail-supply-chain-with-ambient-iot-and-ai)). The stated goal is 90 million pallet pixels by the end of 2026. Our 2025 count holds 33.9 million pixels worldwide, so one programme alone points to well over double that base within a year. Douglas Insights models retail and logistics as 9.6 points of the 21.4-point volume leg, the largest single share.

### Cold chain and pharmaceuticals: 4.7 points

Temperature tags ride on RAIN RFID infrastructure that keeps getting cheaper to read. The RAIN Alliance reported on 26 February 2025 that five chipmakers shipped 52.8 billion RAIN tag chips in 2024, a 54% rise over two years, and named pharmaceuticals and healthcare among continuing growth sectors ([RAIN Alliance shipment report](https://therainalliance.org/rain-alliance-report-shipments-of-52-8bn-rain-tag-chips-globally-in-2024)). Every portal installed to read identity tags can also read a sensing tag. We credit cold chain and pharmaceuticals with 4.7 points, tied to temperature inlays such as Identiv's ID Sense Sawblade, which uses the Magnus S3 across 860 to 960 MHz.

### Buildings and industrial assets: 7.1 points

Building automation contributes 3.8 points. Kinetic light switches and solar room sensors remove battery changes from thousands of ceiling points per building, and that labour saving funds the USD 44.20 module price. Industrial asset monitoring adds 3.3 points: passive temperature points on switchgear, rotating machines and data-centre racks, the application onsemi built its Smart Passive Sensor tags around ([onsemi battery-free sensing](https://www.onsemi.com/PowerSolutions/content.do?id=19132)). onsemi lists temperature, fluid level, moisture and proximity as the four sensing modes. Together these two drivers supply 7.1 points.

The four contributions sum to the 21.4% unit leg exactly. Units rise from 87.21 million in 2025 to 105.87 million in 2026 and 606.4 million by 2035. Retail supplies 9.6 of the 21.4 points, close to half, so any delay in the Walmart rollout shows up in the battery-free sensor count within two quarters.

## Which hurdles slow battery-free sensor rollouts on reader coverage and calibration?

Three hurdles remove 4.4 points from an unconstrained 25.8% battery-free sensor unit leg: reader coverage 2.1 points, calibration and accuracy 1.4 points and fragmented air interfaces 0.9 points. Each one raises the cost of the reading side, not the tag.

Reader coverage is the biggest drag at 2.1 points. A passive tag senses nothing until a reader field reaches it, so a site needs portals, handhelds or gateways first. Retailers already own that layer; a mid-size food plant does not.

Calibration costs 1.4 points. Avery Dennison's passive sensor guide shows the Magnus S3 reaching plus or minus 0.3 degrees C only with a 2-point calibration, against plus or minus 2 degrees C with one point. Moisture, proximity and pressure share one sensor code, so they cannot be read independently on the same tag. Buyers needing pharmacopoeia-grade logs still choose battery loggers.

Fragmentation removes 0.9 points. UHF RAIN, NFC, Bluetooth and sub-1 GHz harvesting radios each need their own readers, and the 3rd Generation Partnership Project (3GPP) cellular route is not yet commercial. Integrators pay for every protocol twice.

## Which companies supply battery-free sensors, SPS chips and harvesting modules?

Douglas Insights estimates the top three battery-free sensor suppliers, EnOcean, Avery Dennison and Wiliot, hold 41.6% of 2025 revenue. The figure is our attribution across the five segments, anchored on the 60.9% module share, because none of the three discloses battery-free sensor revenue separately.

| Company | Role | Position built on |
| --- | --- | --- |
| EnOcean | Energy-harvesting modules | Kinetic and solar sensor modules such as STM 550 and STM 350 |
| Wiliot | Bluetooth ambient IoT pixels | Walmart programme targeting 90 million pallet pixels |
| Avery Dennison | Sensor tag designs | Patch, Tadpole and Dogbone designs on the Magnus S3 |
| Axzon | Sensing chips | Magnus S3 with 9-bit sensor code and 12-bit temperature code |
| onsemi | Smart Passive Sensor tags | UHF tags for temperature, fluid level, moisture and proximity |
| Identiv | Sensor inlays | ID Sense Sawblade inlays, 94 x 24 mm antenna |
| Impinj | RAIN chips and readers | Endpoint IC volumes up 9% in 2025 |

EnOcean's position rests on owning the module tier, where the money sits. Wiliot's rests on the largest named retail deployment. Avery Dennison and Identiv convert Axzon silicon into finished inlays, so they win whenever a shipper wants a sensing label rather than a chip. onsemi coined the Smart Passive Sensor name and keeps a development kit, the SPSDEVK1MT-GEVK, for engineers prototyping switchgear and leak tags.

Impinj sets the cost base for the RAIN reading side. The company reported USD 361.1 million of 2025 revenue and 9% higher endpoint IC volumes on its 5 February 2026 call, naming EM Microelectronic as a new Gen2X licensee ([Impinj fourth-quarter 2025 remarks](https://investor.impinj.com/files/doc_earnings/2025/q4/transcript/4Q25-earnings-script-FINAL.pdf)). EM Microelectronic, NXP, Shanghai Fudan Microelectronics and Shanghai Quanray complete the five RAIN chip shippers.

## Where does battery-free sensor revenue sit by region, and where does it grow fastest?

North America leads battery-free sensor revenue with USD 111.7 million in 2025, 34.7% of the total, on retail pallet programmes and data-centre monitoring. Asia Pacific grows fastest at 17.88% and overtakes it by 2035 at USD 488.6 million, helped by local tag converters and chipmakers.

| Region | 2025 value | CAGR 2026-2035 | 2035 value |
| --- | --- | --- | --- |
| North America | USD 111.7 million | 14.83% | USD 445.3 million |
| Europe | USD 89.8 million | 15.62% | USD 383.4 million |
| Asia Pacific | USD 94.3 million | 17.88% | USD 488.6 million |
| Latin America | USD 14.8 million | 17.06% | USD 71.5 million |
| Middle East and Africa | USD 11.2 million | 16.82% | USD 53.0 million |

North America climbs at 14.83% to USD 445.3 million; the Walmart rollout lifts unit counts more than revenue because pixels are cheap. Europe holds USD 89.8 million and grows 15.62% to USD 383.4 million, anchored by building automation, where harvesting switches began. Asia Pacific starts at USD 94.3 million and wins on volume because tag converters and RAIN chip suppliers, including two Shanghai chipmakers, sit in the region. Latin America reaches USD 71.5 million from USD 14.8 million at 17.06% on export cold chains for fruit and protein.

The wildcard is the Middle East and Africa: USD 11.2 million in 2025, rising 16.82% to USD 53.0 million. Our model ties most of that growth to SAW temperature points in new substations, where a battery-free sensor avoids battery service in high-heat enclosures. One large utility order would move the line by several points.

## Which parameters and end uses do smart passive sensing tags serve today?

Temperature is the dominant parameter for battery-free sensors, present on an estimated 58.3% of 2025 units, followed by moisture and leak sensing at 17.4%. The rest splits across motion and vibration, pressure and light, served mainly by harvesting modules in buildings and factories.

By end use, retail and logistics consumes the most units, cold chain and pharmaceuticals buys the most sensing tags per shipment, building automation buys the costliest modules, industrial asset monitoring buys SAW points, and automotive uses passive tags for occupant detection, rain sensing and assembly-line leak checks, three uses onsemi lists. Pressure sensing on passive tags works mechanically: a foam layer pushes metal foil toward the antenna and shifts the sensor code. Light is the harvested power source for photovoltaic labels, and in modules it is also a measured value.

## How will 3GPP ambient IoT reshape reader economics for battery-free sensors?

About 1 microwatt of peak power is the 3GPP Release 19 target for the passive Device 1 class, orders of magnitude below NB-IoT, which would let cellular base stations read battery-free sensors indoors. Commercial cellular readers are not in our 2025 base.

The 3GPP Release 19 work standardises Device 1 with an envelope-detector receiver, focused on indoor inventory and indoor command use cases; reflection-amplified Device 2a and low-cost active Device 2b concepts are targeted for Release 20 ([3GPP Release 19 ambient IoT summary](https://www.3gpp.org/technologies/rel19-aiot)). For smart passive sensing this matters because the reader, not the tag, is the restraint worth 2.1 points. We hold the cellular effect out of the base case and place it inside the faster scenario.

## What if Walmart-scale ambient IoT spreads faster or slower before 2035?

Our base case for battery-free sensors reaches USD 1.44 billion in 2035 on 21.4% unit growth and a 4.3% annual price decline. A slower path ends at USD 920.1 million; a faster path ends at USD 2.05 billion. Retail pixel adoption is the swing factor.

| Case | Unit leg | Price leg | Revenue CAGR | 2035 value |
| --- | --- | --- | --- | --- |
| Slower | 16.8% | -4.9% | 11.08% | USD 920.1 million |
| Base case | 21.4% | -4.3% | 16.18% | USD 1.44 billion |
| Faster | 25.1% | -3.8% | 20.35% | USD 2.05 billion |

The faster case assumes the Walmart template announced on 2 October 2025 is copied by other grocers and that cellular ambient IoT readers ship before 2030 ([Wiliot](https://www.wiliot.com/wiliot-collaborates-with-walmart-to-transform-retail-supply-chain-with-ambient-iot-and-ai)). The slower case assumes pallet programmes stall at pilot scale and calibrated temperature logging stays with battery loggers. Sensitivity is lopsided: one extra point of unit growth adds USD 123.2 million to the 2035 total, and one point less removes USD 114.5 million. Outside forecasts for narrower battery-free sensor definitions span 9.0% to 28.5% a year; our 16.18% lands below the 22.65% median of the six we read, because our base already includes the slow-growing module tier.

## Which battery rules and air-interface standards govern smart passive sensing design?

Regulation (EU) 2023/1542, in force since 17 August 2023, is the rule most likely to push designers toward battery-free sensors. It sets removability and replaceability duties for portable batteries in appliances sold in the European Union; a sensor with no battery carries none of them.

The European Commission notes that the batteries regulation applies from 18 February 2024 with requirements phased in through 2031, and that Article 11(2) holds derogations from the removability rule ([European Commission batteries page](https://environment.ec.europa.eu/topics/waste-and-recycling/batteries_en)). For a building-sensor maker that means a choice between designing a battery door and dropping the battery. Air-interface standards decide which reader can talk to the sensor: RAIN RFID for UHF tags, ISO/IEC 14543-3-10 for EnOcean sub-1 GHz harvesting radios, Bluetooth for pixels, and 3GPP Release 19 for the coming cellular class.

## Douglas Exclusive: the Battery-Free Sensor Deployment Tracker

The Battery-Free Sensor Deployment Tracker is a Douglas Insights model built from 11 sourced inputs: five deployment and shipment figures, two company financial figures, two realised module prices, one power target and one accuracy specification. It is not an official register; every row traces to a primary page linked in the sections above.

| Input | Figure | What it signals for battery-free sensors |
| --- | --- | --- |
| Walmart locations live (Wiliot) | 500 | Retail pixel base already at scale |
| Walmart pallet pixel target | 90 million | Pixel units more than double the 2025 base |
| Walmart expansion stores | About 4,600 | Reader footprint ready for sensing pixels |
| Walmart distribution centers | More than 40 | Cold chain read points |
| RAIN tag chips shipped, 2024 | 52.8 billion | Reader base for RFID-powered sensor tags |
| RAIN two-year shipment growth | 54% | Reader density keeps rising |
| Impinj revenue, 2025 | USD 361.1 million | RAIN supplier spend is flat |
| Impinj endpoint IC volume, 2025 | +9% | Units grow while prices fall |
| EnOcean STM 550 at 100 units | USD 44.20 | Module price anchor |
| EnOcean STM 350 at 100 units | USD 31.00 | Entry module price |
| 3GPP Device 1 peak power | About 1 microwatt | Cellular reading becomes possible |

The tracker produces one finding the totals hide. Battery-free sensing units in 2025 equal about 0.17% of the RAIN tag chips shipped in 2024, so the reading infrastructure is already far larger than the sensing base. The constraint on smart passive sensing is therefore tag economics and calibration, not reader count, in retail; in factories it is the reverse. A second finding: Walmart's 90 million target alone is 2.65 times our 33.9 million worldwide pixel count for 2025, which is why pixels carry the fastest 33.62% rate. The Magnus S3 accuracy row, 0.3 degrees C after two-point calibration, marks the line between a monitoring tag and a compliance logger.

## How we rebuilt the battery-free sensor total from 87.21 million units?

Douglas Insights counts 87.21 million battery-free sensing units shipped in 2025 at a realised USD 3.69 average: 87.21 million times USD 3.69 equals USD 321.8 million. Five technology segments, five regions and 27 country models feed that receipt, priced in US dollars.

Unit counts by segment are 41.6 million RFID-powered sensor tags, 33.9 million pixels, 5.83 million harvesting modules, 3.61 million printed and photovoltaic labels and 2.27 million SAW sensors. The model uses 11 tracker inputs, 6 published growth rates and 4 named price points. Cross-checks: segment values sum to USD 321.8 million exactly; regional rows match the global row to USD 0.1 million in 2025 and 2035; the 16.18% revenue rate equals 21.4% units combined with minus 4.3% price within 0.01 points. The 2026 bridge gives USD 373.9 million on 105.87 million units at USD 3.53.

## What should buyers of smart passive sensing tags commit to in 2026 and 2027?

Buyers of battery-free sensors should lock tag pricing now, because the blended unit price falls 4.3% a year and retail volume of 90 million pixels will set the reference price for everyone else. Read infrastructure decisions matter more than tag choice for most sites.

Three actions follow. Audit existing RAIN portals before buying a separate sensing reader. Specify two-point calibration where temperature logs face an auditor. Ask module suppliers how the EU batteries rules change their roadmap. For warehouse buyers, our [IoT in Warehouse Management Market](https://www.douglasinsights.com/iot-in-warehouse-management-market/) study sizes the systems these tags feed. Building teams comparing wireless detectors can read the [Wireless Glass Break Sensor Market](https://www.douglasinsights.com/wireless-glass-break-sensor-market/) and [Smart Addressable Smoke Sensor Market](https://www.douglasinsights.com/smart-addressable-smoke-sensor-market/) reports, where battery service is still a running cost. Douglas Insights expects the module tier to fall below half of battery-free sensor revenue by 2035, at 36.5%.

## Market by segment

| Segment | Share | Value |
| --- | --- | --- |
| Energy-harvesting wireless sensor modules | 60.9% | $196.0 Mn |
| RFID-powered sensor tags | 17.7% | $57.0 Mn |
| Surface acoustic wave (SAW) sensors | 14% | $45.1 Mn |
| Bluetooth ambient IoT pixels | 4.3% | $13.8 Mn |
| Printed and photovoltaic sensor labels | 3.1% | $9.9 Mn |

## Market by region (USD million)

| Region | 2025 | 2026 | 2035 | CAGR 2026-2035 |
| --- | --- | --- | --- | --- |
| Global | 321.8 | 373.9 | 1,441.8 | 16.18% |
| North America | 111.7 | 128.3 | 445.3 | 14.83% |
| Europe | 89.8 | 103.8 | 383.4 | 15.62% |
| Asia Pacific | 94.3 | 111.2 | 488.6 | 17.88% |
| Latin America | 14.8 | 17.3 | 71.5 | 17.06% |
| Middle East and Africa | 11.2 | 13.1 | 53 | 16.82% |

## Dataset

| Series | Value | Unit |
| --- | --- | --- |
| Market size 2025 | 321.8 | USD million |
| Market size 2035 | 1,441.8 | USD million |
| Revenue CAGR 2026-2035 | 16.18 | percent |
| Volume CAGR 2026-2035 | 21.4 | percent |
| Price per unit CAGR 2026-2035 | -4.3 | percent |

## Frequently asked questions

### What is the 2025 value of battery-free sensors and SPS devices, and how is it built?

USD 321.8 million in 2025, built as 87.21 million battery-free sensing units at a realised average of USD 3.69. The total reaches USD 1.44 billion by 2035.

### Why do harvesting modules dominate revenue when tags dominate units?

60.9% of 2025 revenue, USD 196.0 million, comes from energy-harvesting wireless sensor modules because each sells for tens of dollars, against about USD 1.37 for an RFID-powered sensor tag.

### How much does an EnOcean multisensor module cost in volume?

USD 44.20 at the 100-unit break for the STM 550 on Mouser in October 2026, against USD 56.49 for one piece; the STM 350 lists at USD 31.00 at 100 pieces.

### What does the Walmart and Wiliot rollout mean for pixel volumes?

90 million pallet pixels is the end-2026 goal, 2.65 times our 33.9 million worldwide pixel count for 2025, which is why Bluetooth ambient IoT pixels grow 33.62% a year.

### Which reading side limits adoption in factories?

2.1 points of unit growth are lost to reader coverage, the largest of three hurdles that together remove 4.4 points from an unconstrained 25.8% unit leg.

### How accurate is a passive RFID temperature tag?

0.3 degrees C after a 2-point calibration on the Axzon Magnus S3, against 2 degrees C with one point, according to Avery Dennison's passive sensor guide.

### Will Asia Pacific overtake North America in battery-free sensing?

USD 488.6 million in Asia Pacific by 2035 against USD 445.3 million in North America, as Asia Pacific grows 17.88% a year on regional tag converters and chip suppliers.

### What range do the slower and faster cases give for 2035?

USD 920.1 million in the slower case and USD 2.05 billion in the faster case, around a base of USD 1.44 billion.

## Sources

- [Wiliot, Wiliot collaborates with Walmart on ambient IoT](https://www.wiliot.com/wiliot-collaborates-with-walmart-to-transform-retail-supply-chain-with-ambient-iot-and-ai)
- [RAIN Alliance, RAIN Alliance: 52.8bn RAIN tag chips shipped in 2024](https://therainalliance.org/rain-alliance-report-shipments-of-52-8bn-rain-tag-chips-globally-in-2024)
- [Impinj, Impinj fourth-quarter 2025 earnings remarks](https://investor.impinj.com/files/doc_earnings/2025/q4/transcript/4Q25-earnings-script-FINAL.pdf)
- [3GPP, Release 19 Ambient IoT](https://www.3gpp.org/technologies/rel19-aiot)
- [European Commission, Batteries (Regulation (EU) 2023/1542)](https://environment.ec.europa.eu/topics/waste-and-recycling/batteries_en)
- [onsemi, Battery-Free Sensing (Smart Passive Sensors)](https://www.onsemi.com/PowerSolutions/content.do?id=19132)
- [Avery Dennison, Passive Sensors Technical Guide](https://rfid.averydennison.com/content/dam/rfid/en/products/rfid-products/product-guides/Passive-Sensors-Technical-Guide.pdf)
- [Identiv, ID Sense Sawblade A870 S3D datasheet](https://www.identiv.com/uploads/IoTProduct/ID-Sense-Sawblade-A870-S3D_Datasheet_12_23.pdf)
- [Mouser Electronics, EnOcean multiple function sensor modules listing](https://www.mouser.com/en/c/embedded-solutions/sensor-modules/multiple-function-sensor-modules/?m=EnOcean)

## How to cite

Douglas Insights, "Battery-Free Sensors and Smart Passive Sensing (SPS) Market", DI-IT-10695, updated 2026-10-08, https://www.douglasinsights.com/battery-free-sensors-and-smart-passive-sensing-sps-market/
