Dyson has launched the CameraJet, a premium electric toothbrush that uses a built-in 100,000-pixel camera and machine learning to identify gaps between teeth. When it detects a gap, the system can trigger a targeted cone-shaped jet of mouthrinse, allowing the device to combine brushing and liquid interdental cleaning in one routine. The CameraJet launched on September 1, 2026, with a U.S. price of $499.99.
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Dyson Toothbrush CameraJet Brings a Camera Inside the Brush Head
Dyson has taken an unusual approach to the electric toothbrush market: instead of simply making a more powerful brush, it has designed a toothbrush that can look inside your mouth and react to what it sees.
The result is the Dyson CameraJet, officially unveiled by James Dyson in Paris on September 1, 2026.
The new device combines an electric toothbrush, an intraoral camera, machine learning and a precision liquid jet. Dyson says its technology can detect spaces between teeth in real time and direct mouthrinse toward those areas while the user continues brushing.
That makes CameraJet one of the more unusual connected health gadgets to emerge this year.
Rather than treating brushing and interdental cleaning as two completely separate activities, Dyson is trying to bring both into the same device.
What Is the Dyson CameraJet?
The CameraJet is Dyson’s first major product in the electric toothbrush category.
Its defining component is a 100,000-pixel macro camera integrated into the brush system. The camera works with Dyson’s proprietary Gap Optical Targeting technology, which uses machine learning to recognize spaces between teeth.
According to Dyson, the camera analyzes 28 live images every second. Once the system identifies a gap, it can predict the location and activate a precision jet within approximately 100 milliseconds.
The idea is simple but technically demanding: the toothbrush is supposed to determine where interdental cleaning is needed instead of relying entirely on the user to guide a separate flossing tool.
Dyson says the machine-learning system was trained using 470,000 dental images collected during development.
How the Camera and Jet Work Together
The CameraJet does not continuously spray liquid.
Instead, Dyson designed the system to detect a target first and then deliver a controlled burst.
The device uses a conical jet of mouthrinse rather than the narrow, needle-like stream found in some conventional water flossers. Dyson says its engineers selected the broader spray profile after testing different fluid-flow designs.
The company argues that a wider cone can cover more of the target area while allowing the system to operate at lower pressure.
This is one of the key differences between CameraJet and a traditional water flosser.
A standard water flosser requires the user to position the nozzle manually. CameraJet attempts to automate that targeting process.
The Toothbrush Is Doing More Than One Job
The Dyson CameraJet isn’t simply a camera attached to an electric toothbrush.
The brush head itself uses what Dyson calls variable sonic oscillation. The company says the system changes the angle of the brushing motion to help prevent the bristles from stalling against teeth.
Dyson says the brush head moves at nearly 1,000 movements per second and combines different bristle types for surface cleaning and gumline care.
There are also three brushing-intensity settings, including a Gentle mode intended for users who prefer a softer brushing experience.
The brush heads include RFID tags as well. According to Dyson, the toothbrush can recognize a connected head, track usage and notify the user when replacement is required.
That gives the product another smart-device feature that ordinary electric toothbrushes generally do not have.
A 12.5ml Tank Is Built Into the System
One of the engineering challenges was fitting a liquid-delivery system into a toothbrush without making it too cumbersome.
Dyson says CameraJet uses a 12.5ml anti-gravity tank.
The tank is designed to maintain liquid delivery even when the toothbrush is tilted or held horizontally. Dyson says this is particularly important when users clean the back teeth, where the brush is naturally positioned at different angles.
The company uses a diaphragm pump and pressure chamber rather than relying on a conventional tube dipping into a reservoir.
The purpose is to keep the jet consistent and reduce the possibility of air entering the delivery system.
The MyDyson App Turns the Toothbrush Into a Connected Device
The camera has another function beyond automatic gap targeting.
Users can connect the CameraJet to the MyDyson app and view a live image from inside their mouth.
Dyson describes the camera as functioning like an intraoral endoscope, allowing users to see areas that would normally be difficult to observe while brushing.
The app also provides features including:
- Guided cleaning
- Brushing and flossing insights
- Coverage mapping
- Technique feedback
- Live camera viewing
- Manual or automatic jetting
- Personalized cleaning information
This could be particularly useful for people who want visual feedback rather than simply relying on a timer or vibration alert.
What Happens to the Camera Images?
A camera inside a toothbrush naturally raises privacy questions.
Dyson says the CameraJet’s camera is active only during live viewing or automatic jetting.
The company states that images are not recorded or stored on the toothbrush or in the cloud. Dyson also says the images remain private and are not accessible to the company or third parties.
That is an important distinction because CameraJet is effectively collecting visual information from an extremely personal environment.
Consumers considering the device should still review the current MyDyson app privacy terms applicable in their market before using connected features.
Dyson’s Claims About Plaque Removal
Dyson is making significant performance claims for CameraJet, but those claims need to be understood in context.
The company’s website says CameraJet was tested in a clinical study involving 204 participants over six weeks, with participants brushing twice daily using the Brush and Auto-jet mode compared with a manual toothbrush. Dyson describes the product as clinically tested for improvements in gum health.
Dyson also reports laboratory testing for plaque removal and says its variable sonic technology removed up to 69% more plaque than market-leading premium electric toothbrushes in hard-to-reach areas under its specified test conditions.
Those figures are Dyson-reported results, not a blanket independent conclusion that CameraJet is better than every competing toothbrush.
That distinction is important for consumers comparing products.
Dyson Developed Its Own Plaque Testing Material
Another unusual part of the development process involved Dyson’s attempt to reproduce plaque-like conditions in the laboratory.
The company says it spent five years collaborating with the National University of Singapore’s Faculty of Dentistry while developing a proprietary proxy for plaque.
Engineers used that material to compare different jet shapes and fluid-flow characteristics.
Dyson says testing showed that a narrow needle-type jet could create a hole through the proxy material without removing all of it, while its conical jet provided broader coverage.
This is engineering research rather than proof of clinical superiority, but it explains why Dyson chose the unusual cone-shaped jet.
What Does the Dyson Toothbrush Cost?
The CameraJet sits firmly in the premium end of the electric toothbrush market.
Dyson’s U.S. website lists the CameraJet electric toothbrush with flosser at $499.99.
The launch system includes the CameraJet toothbrush, charging equipment, travel case, toothpaste and mouthrinse.
Dyson introduced the product in Ceramic Ultra Blue and Ceramic Pink.
Pricing and availability can differ between countries, so consumers outside the United States should check their local Dyson store before assuming the U.S. price applies.
When Did the Dyson CameraJet Launch?
Dyson officially unveiled CameraJet in Paris on September 1, 2026.
The company said the Dyson Dental System would launch through Dyson’s website, Dyson Demo Stores and selected retailers.
The launch marks a major expansion for Dyson into oral care.
The company’s move is notable because Dyson has traditionally been associated with household cleaning technology, hair styling, air treatment and other consumer engineering products.
CameraJet takes that engineering-focused approach into a completely different part of the daily routine.
What Makes CameraJet Different From a Normal Electric Toothbrush?
The biggest difference is that CameraJet attempts to see and respond rather than simply brush.
A conventional electric toothbrush can provide timed brushing, pressure monitoring or other feedback, but the user generally remains responsible for identifying and cleaning the spaces between teeth.
CameraJet adds an automated targeting system.
Its camera searches for interdental gaps, the software processes those images, and the liquid system delivers a targeted burst.
That creates a three-part cleaning process:
- Brush the tooth surfaces.
- Detect gaps using the camera and machine learning.
- Jet mouthrinse toward identified spaces.
The concept could appeal to people who find traditional flossing inconvenient or difficult.
Why This New Dyson Toothbrush Matters
The significance of CameraJet goes beyond another premium toothbrush entering an already crowded market.
It demonstrates how computer vision and machine learning are moving into everyday personal-care products.
For years, smart toothbrushes have focused primarily on sensors, timers, pressure detection and smartphone connectivity.
Dyson is attempting something more ambitious: using a camera to understand the physical environment and then changing the device’s behavior in response.
That approach could influence how future personal-care products are designed.
However, the price is likely to be a major barrier.
At nearly $500 in the U.S., CameraJet costs substantially more than many established electric toothbrushes. Consumers will therefore have to decide whether automated interdental targeting, camera feedback and integrated liquid flossing offer enough additional value.
What Early Reviews Say
Independent hands-on coverage provides another perspective.
TechRadar’s Emily Peck tested the CameraJet for a week and described it as a highly unusual approach to brushing and water-flossing, highlighting its camera, liquid jet and MyDyson live-view capability. The publication’s review was broadly positive about the cleaning experience while also noting the product’s premium positioning.
The Verge similarly highlighted the combination of the camera, AI-powered gap detection and targeted mouthwash delivery, while noting the $499 price.
These early reviews are useful, but they represent limited hands-on experience rather than long-term clinical evidence.
What Happens Next?
The immediate next step for Dyson is broader consumer adoption and continued testing of the technology in real-world use.
CameraJet will likely face questions about durability, replacement brush-head costs, mouthrinse consumption, app usefulness and whether people actually use the automatic jetting function consistently.
There is also a broader question about whether consumers want a toothbrush that behaves more like a connected medical-style device.
The answer may depend on how much value users place on visual feedback and automated interdental cleaning.
For now, the Dyson CameraJet stands out because it attempts to solve a very specific problem: the spaces between teeth that a conventional toothbrush cannot easily reach.
Whether that idea becomes a mainstream oral-care technology or remains a high-end gadget will depend on consumer experience, independent evidence and price.
FAQs
What is the Dyson CameraJet?
The Dyson CameraJet is a new electric toothbrush that combines brushing with a built-in camera, machine-learning gap detection and a targeted liquid jet for interdental cleaning.
Does the Dyson toothbrush really have a camera?
Yes. CameraJet includes a 100,000-pixel macro camera designed to view areas inside the mouth and identify gaps between teeth. Dyson says the system processes 28 live images per second.
How does Dyson CameraJet floss between teeth?
The camera identifies gaps using Dyson’s Gap Optical Targeting technology. When a gap is detected, the device can trigger a cone-shaped burst of mouthrinse toward that location.
What is the Dyson CameraJet price?
The Dyson CameraJet is listed at $499.99 in the United States. Prices and availability may differ in other countries.
Does CameraJet record images of your teeth?
Dyson says the camera is active during live viewing or automatic jetting and that images are not recorded or stored on the device or in the cloud.
Can I see inside my mouth with the Dyson toothbrush?
Yes. The CameraJet’s camera can provide live viewing through the MyDyson app, allowing users to see the cleaning process from the toothbrush’s perspective.
Does the Dyson CameraJet replace traditional flossing?
Dyson markets the product as a precision liquid-flossing system, but consumers should not assume that it eliminates the need for all other forms of interdental care or professional dental advice. Its performance claims should be considered in the context of the specific tests cited by Dyson.
When was the Dyson CameraJet released?
Dyson unveiled CameraJet in Paris on September 1, 2026, with availability through Dyson’s website, Demo Stores and selected retailers.
Sources
The primary source for this article is Dyson’s official September 1, 2026 CameraJet announcement and official product documentation. Product specifications, launch information, camera technology, jet system, app features and Dyson’s stated testing results were cross-checked against Dyson’s product pages.
Independent context was also checked against The Verge and TechRadar, including TechRadar’s hands-on review published on September 1, 2026.
Source note: Claims such as plaque-removal percentages, clinical results and laboratory performance are identified as Dyson’s reported findings and should not be confused with independent head-to-head clinical conclusions.