Intel RealSense
| Intel RealSense | |
|---|---|
| Information | |
| Type | Private company |
| Industry | Depth cameras, computer vision, robotics perception |
| Founded | 2014 (as an Intel product brand); July 11, 2025 (as an independent company) |
| Headquarters | Cupertino, California, United States |
| Notable Personnel | Nadav Orbach (CEO) |
| Products | D400 series stereo depth cameras, D555 PoE, D585 Pro, RealSense ID facial authentication, RealSense SDK 2.0 |
| Parent | Intel (2014-2025) |
| Website | https://www.realsenseai.com |
Intel RealSense is a family of depth-sensing cameras, vision processors and software that Intel introduced in 2014 and that continues today under RealSense, an independent company spun out of Intel on July 11, 2025 with a US$50 million Series A round.[1][2] The line began as a front-facing gesture camera for laptops and grew into the short-range F200 and SR300, the active-stereo R200 and D400 series, the T265 tracking camera and the L515 lidar camera.[3][4]
RealSense cameras have appeared in VR and AR work throughout their history. Intel built its wireless Project Alloy headset prototype around RealSense sensors for inside-out tracking and hand tracking in 2016, demonstrated a RealSense camera bolted to an Oculus Rift to bring real hands into VR at CES 2017, and in 2019 sold the T265 as a US$199 module that added six-degree-of-freedom positional tracking to headsets, robots and drones.[5][6][7] The T265 became the most common tracking module for the open-source Project North Star AR headset.[8]
Intel said in August 2021 that it was winding down the RealSense business, then kept the stereo D400 cameras in production while discontinuing the lidar, tracking and facial-authentication products.[3][4] The business was instead spun out in 2025 under CEO Nadav Orbach, with Intel Capital and the MediaTek Innovation Fund among the investors, and now sells depth cameras mainly to robotics, industrial automation and access-control customers.[1][9]
History
Perceptual Computing (2013)
RealSense grew out of Intel's Perceptual Computing initiative. At CES in January 2013 Intel promoted voice, face and gesture control as a replacement for the keyboard and mouse, released a free Perceptual Computing SDK beta covering facial analysis, speech recognition, hand and finger tracking, and 2D and 3D object tracking, and pointed developers to a US$150 depth-camera peripheral from Creative that detected gestures at 6 to 36 inches.[10] That peripheral was launched as the Creative Senz3D Interactive Gesture Camera at Computex Taipei on June 4, 2013; Creative said the developer version of the camera had already shipped alongside the Intel SDK, of which 11,000 copies had been downloaded.[11]
RealSense launch and PC cameras (2014-2016)
Intel unveiled the RealSense name and camera at CES on January 7, 2014. The module combined a 1080p color camera with a depth sensor in a package Intel compared to the thickness of a poker chip, tracked individual fingers and facial expressions, and was shown running an augmented reality demo in which a table became a field with grazing sheep. Lenovo, Asus and Dell showed early designs, with Fujitsu and Acer expected to follow later in 2014.[2] An Intel fact sheet from the autumn 2014 Intel Developer Forum described two cameras: a front-facing 3D camera for all-in-one PCs, laptops and 2-in-1s, and a rear-facing 3D camera for tablets with longer range, indoor and outdoor operation and a 3.8 mm thin, 100 mm long, 8 mm high module. The software tracked 22 joints in each hand for touch-free gesture recognition, and Intel expected the first tablet and select PCs in 2014 with broad availability from many OEMs in 2015.[12]
The front camera shipped as the F200 and the rear camera as the R200. The R200 used two infrared imagers and an infrared laser projector to compute depth by stereo matching, producing VGA depth from 0.4 to 2.8 m over USB 3.0 in a 101.56 mm by 9.55 mm by 3.8 mm module.[13] Intel launched the SR300, a coded-light camera that succeeded the F200 as the front-facing model, in the first quarter of 2016 with VGA depth, a 0.3 to 2 m range, a 73 by 59 degree field of view (90 degrees diagonal), 1.8 W power draw and a 110 mm by 12.5 mm by 3.75 mm module.[14] The PC cameras were pitched against Microsoft's Kinect, were licensed to peripheral makers such as Creative, and supported Windows Hello face login on Windows 10, but PCWorld later wrote that RealSense struggled in the PC market before Intel pivoted the line toward robotics.[15]
Project Alloy and merged reality (2016-2017)
At the Intel Developer Forum on August 16, 2016, CEO Brian Krzanich revealed Project Alloy, an all-in-one wireless VR headset with a full computer inside. It used RealSense technology (a 1080p camera plus infrared cameras and lasers) for six-degree-of-freedom inside-out positional tracking and hand-tracking input, and could bring real-world objects into the virtual scene, a combination Intel called "merged reality." Intel planned to release the hardware as an open design in the second half of 2017.[5] At CES 2017 Intel showed a related demo: an Oculus Rift retrofitted with a RealSense camera let a wearer see his own hands, down to a wedding ring and individual fingers, while batting virtual balloons without controllers. Presenter Aneet Chopra described merged reality as resting on an untethered headset, freedom of movement, integrated inside-out tracking and natural manipulation, and said Alloy would be the first headset to include the technology natively.[6]
Intel cancelled the Alloy reference design in September 2017, citing a lack of partner interest, and told Road to VR it would "continue to invest in the development of technologies to power next-generation AR/VR experiences," naming Movidius visual processing and RealSense depth sensing and 6DoF solutions among them.[16] In the same period Intel also sold the Euclid Development Kit, a US$399 all-in-one robotics computer that paired a ZR300 RealSense camera (depth up to 628 by 468 at 60 fps, a VGA fisheye camera and an IMU) with an Atom x7-Z8700 processor running Ubuntu 16.04 and ROS; it shipped from May 31, 2017.[17]
D400 stereo cameras, T265 and L515 (2018-2020)
Intel began shipping the D400 series in January 2018. The D415 (US$149) used rolling-shutter imagers with a narrower field of view for fine detail, while the D435 (US$179) used global-shutter imagers with a wider field of view for moving subjects; both carried the RealSense D4 vision processor, ran from USB power, worked indoors and outdoors, and shipped with the open-source RealSense SDK 2.0. Intel listed VR and AR alongside robotics, drones, product development, 3D scanning and motion monitoring as target uses.[18][19] The D435i, announced in November 2018 at about US$200 and shipping from November 26, added an inertial measurement unit; Intel named rotational tracking for AR and VR head-mounted devices among its uses.[20]
On January 23, 2019, Intel announced the RealSense Tracking Camera T265, a stand-alone inside-out tracking device that ran Intel's visual-inertial odometry SLAM on an Intel Movidius Myriad 2 vision processing unit. It used two fisheye cameras of roughly 170 degrees each, drew 1.5 W over USB 2.0 or 3.0, was priced at US$199 and shipped from February 28, 2019; Intel named robotics, drones, augmented reality and virtual reality as applications.[7] UploadVR noted that the 55 g, USB-stick-sized unit was not a depth sensor and that, since most headsets of the time already had positional tracking, its appeal lay in robotics, hobby projects and prototyping.[21]
On November 11, 2019, Intel announced the RealSense LiDAR Camera L515 at US$349 for pre-order: a solid-state lidar camera that scanned the scene with a MEMS mirror, produced 1024 by 768 depth at 30 fps, processed over 23 million depth points per second and drew under 3.5 W, with an IMU and a full-HD color camera.[22] Intel quoted a 0.25 to 9 m range; the datasheet gives 9 m at VGA depth resolution and 6.5 m at 1024 by 768.[23] The D455 followed on June 16, 2020 at US$239: its depth imagers sit 95 mm apart, which doubled the optimal range to 6 m with less than 2 percent depth error at 4 m, and it added global shutters on both the depth and color sensors plus an IMU.[24] In January 2021 Intel added RealSense ID, a facial-authentication product built on an active depth sensor and an on-device neural network, sold as the US$99 F455 peripheral and the F450 module at US$750 per ten, with shipments from March 1, 2021.[25]
Wind-down and refocus on stereo (2021-2024)
In August 2021 CRN reported that Intel would wind down RealSense, and Intel confirmed to The Robot Report that it was "winding down our RealSense business and transitioning our computer vision talent, technology and products to focus on advancing innovative technologies that better support our core businesses and IDM 2.0 strategy." Sagi Ben Moshe, who had led the group, had left Intel weeks earlier.[3] An end-of-life notice on September 1, 2021 covered the L515, the T265 and T261 tracking products, the F450 and F455 ID products and two software packages, with a last order date of February 28, 2022 and last shipments on March 31, 2022. Intel said it would keep selling the stereo cameras to distribution customers, and RealSense CTO Anders Grunnet-Jepsen later confirmed that the D455, initially listed for discontinuation, would continue.[4]
The stereo line kept expanding under Intel. In September 2024 Intel introduced the D421, an entry-level all-in-one module with the D4 vision processor on the same board as the optics, a 75 by 50 degree field of view, a 0.2 to 3 m recommended range, 1-megapixel global-shutter sensors and a USB-C connection, sold at US$800 per ten-pack with shipping from November 2024.[26]
Spin-out as RealSense (2025)
On July 11, 2025, RealSense announced that it had completed its spin-out from Intel and closed a US$50 million Series A round led by an unnamed semiconductor private equity firm, with participation from Intel Capital and the MediaTek Innovation Fund. The company said its depth cameras were embedded in 60 percent of the world's autonomous mobile robots and humanoid robots, that it had more than 3,000 customers and over 80 patents, and that it would use the funds to expand into adjacent markets, scale manufacturing and go-to-market operations, and hire AI, software and robotics engineers. The company's website gives Cupertino, California, as its headquarters, while The Robot Report and dormakaba's November 2025 release placed it in Santa Clara.[27][9][28] CEO Nadav Orbach joined Intel in 2006 as a CPU architect in Israel, moved to vision technology in 2011 and became general manager of Intel's incubation and disruptive innovation group in 2022.[29] The Robot Report counted 130 employees at the spin-out, 115 of them from Intel, and reported that Intel remained a minority investor with a board seat under a transition services agreement.[9]
The first product of the independent company was the D555 PoE, a stereo camera built on the new RealSense Vision SoC V5 with Power over Ethernet on the chip, a global shutter, an IMU and native ROS 2 support, streaming up to 90 fps.[30][31] On August 25, 2025, RealSense announced a collaboration with NVIDIA to integrate its cameras with the Jetson Thor computer, Isaac Sim and the Holoscan Sensor Bridge, and in November 2025 the Swiss access-control group dormakaba took a minority stake in RealSense to develop biometric access systems for data centers, airports and other critical infrastructure.[32][28]
2026
At Hannover Messe in April 2026 RealSense added GMSL (Gigabit Multimedia Serial Link) versions of the D401, D415 and D430 alongside the existing D457, supporting up to eight synchronized cameras per system with FAKRA connectors and on-device depth processing.[33] At Automate 2026 in Chicago on June 18, 2026, it unveiled the D585 Pro, a flagship camera with a 120 by 100 degree field of view, 60 fps at 1280 by 960, a minimum range under 15 cm, a working range of 10 m or more, IP65 sealing, GMSL2 and USB-C connections and a custom fifth-generation SoC with AI accelerators; availability is expected in the first quarter of 2027. The same announcement opened Perception Studio, a beta program in the RealSense SDK 2.0 whose first features include close-range depth on the D401 and D405, person detection and visual-inertial odometry.[34]
Technology
RealSense has used three depth-sensing methods. The SR300 is a coded-light camera, a form of structured light: a projector casts a sequence of infrared patterns onto the scene and a camera decodes them to triangulate depth. Intel engineers described the SR300 design in IEEE Transactions on Pattern Analysis and Machine Intelligence as producing a VGA-size depth map at 60 fps with 0.125 mm depth resolution.[35] Its 0.3 to 2 m operating range reflects the short-range nature of the method, which suited a front-facing PC camera.[14]
The R200 and every D400-series camera use active infrared stereo. Two infrared imagers view the scene from a fixed baseline and a processor matches features between them to compute disparity, while an infrared projector adds texture to blank surfaces so that matching still works; because the method does not depend on the projector, these cameras also work in sunlight.[13] A 2017 CVPR workshop paper by Intel researchers, "Intel RealSense Stereoscopic Depth Cameras," gives an overview of the R200 and the then-new RS400 family, their optics and correlation algorithms, and their performance across uses such as 3D reconstruction and gesture recognition.[36] The D4 vision processor computes depth on the camera so the host receives a finished depth stream; the D421 puts that processor on the same board as the optics, and the 2025 Vision SoC V5 in the D555 adds Power over Ethernet and image processing on the chip.[26][37]
The L515 was a lidar camera, a time-of-flight sensor that steered its infrared laser with a MEMS mirror instead of projecting a fixed pattern; it was discontinued in 2022.[22][23][4] The T265 tracking camera did not measure depth at all: it combined two global-shutter fisheye cameras with an IMU and ran Intel's V-SLAM on the Myriad 2 chip to output its own six-degree-of-freedom pose.[7][21] All current cameras are supported by the open-source RealSense SDK 2.0 (librealsense), which also serves ROS 2.[18][33]
Products
| Product | Type | Introduced | Launch price (US$) | Status | Notes |
|---|---|---|---|---|---|
| Creative Senz3D | Depth-sensing gesture camera (Intel Perceptual Computing) | June 2013 | 150 (developer camera) | Legacy | Creative peripheral sold with the Intel Perceptual Computing SDK, the predecessor of RealSense[10][11] |
| F200 | Front-facing short-range depth camera | 2014 | Integrated in PCs | Legacy | First RealSense camera for laptops, all-in-ones and 2-in-1s; 1080p color plus depth[2][12] |
| R200 | Rear-facing active-stereo camera | 2014-2015 | Integrated in tablets | Legacy | VGA depth from 0.4 to 2.8 m; Class 1 infrared laser projector; USB 3.0[12][13] |
| SR300 | Coded-light camera | Q1 2016 | Not verified | Legacy | 0.3 to 2 m range; 73 by 59 degree field of view; 1.8 W[14][35] |
| ZR300 / Euclid Development Kit | Stereo depth plus fisheye and IMU; all-in-one robotics computer | May 2017 | 399 (Euclid) | Legacy | Atom x7-Z8700, Ubuntu 16.04 and ROS[17] |
| D415 and D435 | Active-stereo depth cameras with D4 vision processor | January 2018 | 149 and 179 | Current | D415 rolling shutter and narrow field of view; D435 global shutter and wide field of view[18] |
| D435i | D435 with IMU | November 2018 | About 200 | Current | Intel listed rotational tracking for AR and VR headsets among its uses[20] |
| T265 | Stand-alone inside-out tracking camera (no depth) | January 2019 | 199 | Discontinued (last shipments March 31, 2022) | Two fisheye cameras, IMU, Myriad 2; used in Project North Star builds[7][4][8] |
| L515 | Solid-state lidar camera | November 2019 | 349 | Discontinued (last shipments March 31, 2022) | 0.25 to 9 m (6.5 m at 1024 by 768); 1024 by 768 at 30 fps; under 3.5 W[22][23][4] |
| D455 | Wide-baseline active-stereo camera | June 2020 | 239 | Current | 95 mm baseline; 6 m optimal range; global shutters and IMU[24] |
| RealSense ID F455 and F450 | Facial authentication | January 2021 | 99 (F455); 750 per ten (F450) | Original models discontinued in 2022; RealSense ID and ID Pro continue | Active depth sensor with on-device neural network[25][4][38] |
| D421 | Entry-level all-in-one stereo module | September 2024 | 800 per ten-pack | Current | D4 processor on the optics board; 75 by 50 degree field of view; 0.2 to 3 m[26] |
| D555 PoE | Active-stereo camera with Power over Ethernet | August 2025 | Not disclosed | Current | First product of the independent RealSense; Vision SoC V5; 1280 by 720 depth at up to 90 fps; IP65[31][37] |
| GMSL D401, D415 and D430 | Active-stereo cameras with GMSL interface | April 2026 | Not disclosed | Current | Up to eight synchronized cameras per system; joins the existing D457[33] |
| D585 Pro | Flagship active-stereo camera with AI accelerators | Announced June 2026 | Not disclosed | Expected Q1 2027 | 120 by 100 degree field of view; 60 fps at 1280 by 960; IP65; GMSL2 and USB-C[34] |
As of September 2026 the RealSense catalog lists the D405, D415, D430 series (D435, D435i, D435f, D435if and D436), D450 series (D455, D455f, D456 and the GMSL D457), D555 and D585 Pro stereo cameras, camera modules and vision processors, and the RealSense ID and ID Pro facial-authentication products.[38]
Use in virtual and augmented reality
RealSense hardware has been a building block for VR and AR rather than a consumer product. Intel's own Project Alloy used it for inside-out positional tracking, hand tracking and scanning nearby furniture into the virtual scene, and Intel continued to name RealSense depth sensing and 6DoF tracking as VR and AR investments after cancelling the headset.[5][16] The CES 2017 Rift demo showed the same hand-tracking approach on third-party hardware.[6]
The T265 was the RealSense product most directly aimed at headsets. Intel listed AR and VR among its applications, and UploadVR described it as a way to add positional tracking to any headset that lacked it.[7][21] The open-source Project North Star AR headset, originally designed by Leap Motion (now Ultraleap), adopted it: the project's FAQ calls the T265 "the most commonly used device currently" for six-degree-of-freedom tracking, notes that it does not provide world meshing, and prefers it over alternatives such as the ZED Mini (which needs an NVIDIA GPU) and the Vive Tracker (which needs base stations).[8] After Intel discontinued the T265 and its embedded T261 variant, the North Star sensor guide advised builders that the cameras would have to be found second-hand, that the last compatible SDK release was 2.53.1, and that the Xvisio XR50, SteamVR Lighthouse tracking and Luxonis OAK-D cameras were the alternatives.[39]
The stereo D400 cameras have been marketed for VR and AR development since launch, and the IMU-equipped D435i was pitched for rotational tracking in head-mounted devices.[18][20] Since the 2025 spin-out the company has described its market as physical AI, autonomous mobile robots, humanoid robots, industrial automation, healthcare and access control, and its 2025 and 2026 announcements do not mention VR or AR.[1][34]
References
- ↑ 1.0 1.1 1.2 "RealSense Completes Spinout from Intel, Raises $50 Million to Accelerate AI-Powered Vision for Robotics and Biometrics". RealSense. 2025-07-11. https://www.realsenseai.com/news-insights/news/realsense-completes-spin-out-from-intel-raises-50-million-to-accelerate-ai-powered-vision-for-robotics-and-biometrics/. Retrieved 2026-09-20.
- ↑ 2.0 2.1 2.2 Will Findlater (2014-01-07). "Intel's RealSense camera: gesture control and 3D scanning built into your next PC". Stuff. https://www.stuff.tv/news/intels-realsense-camera-gesture-control-and-3d-scanning-built-your-next-pc/. Retrieved 2026-09-20.
- ↑ 3.0 3.1 3.2 Steve Crowe (2021-08-17). "Report: Intel RealSense camera business being shut down". The Robot Report. https://www.therobotreport.com/intel-realsense-camera-business-being-shut-down/. Retrieved 2026-09-20.
- ↑ 4.0 4.1 4.2 4.3 4.4 4.5 4.6 Steve Crowe (2021-09-01). "Intel issues end-of-life notice for RealSense LiDAR". The Robot Report. https://www.therobotreport.com/intel-issues-end-of-life-notice-realsense-lidar/. Retrieved 2026-09-20.
- ↑ 5.0 5.1 5.2 Lucas Matney (2016-08-16). "Intel shows off all-in-one Project Alloy virtual reality headset". TechCrunch. https://techcrunch.com/2016/08/16/intel-shows-off-all-in-one-project-alloy-virtual-reality-headset/. Retrieved 2026-09-20.
- ↑ 6.0 6.1 6.2 Joe Durbin (2017-01-05). "Intel's 'Merged Reality' Demo Brings Actual Hands Into VR on Oculus Rift". UploadVR. https://www.uploadvr.com/intels-merged-reality-brings-real-hands-vr-no-controllers/. Retrieved 2026-09-20.
- ↑ 7.0 7.1 7.2 7.3 7.4 "Intel Announces New Class of RealSense Stand-Alone Inside-Out Tracking Camera". Intel Corporation. 2019-01-23. https://www.intc.com/news-events/press-releases/detail/97/intel-announces-new-class-of-realsense-stand-alone. Retrieved 2026-09-20.
- ↑ 8.0 8.1 8.2 "FAQ". Project North Star Documentation. https://docs.projectnorthstar.org/project-north-star/getting-started/faq. Retrieved 2026-09-20.
- ↑ 9.0 9.1 9.2 Steve Crowe (2025-07-16). "After Intel exit, RealSense maps its own future in 3D vision". The Robot Report. https://www.therobotreport.com/after-intel-exit-realsense-maps-its-own-future-in-3d-vision/. Retrieved 2026-09-20.
- ↑ 10.0 10.1 Nancy Cohen (2013-01-14). "Intel's Perceptual Computing marks neo-desktop era". Phys.org. https://phys.org/news/2013-01-intel-perceptual-neo-desktop-era.html. Retrieved 2026-09-20.
- ↑ 11.0 11.1 "Creative Senz3D Interactive Gesture Camera". Creative Technology. 2013-06-04. https://sg.creative.com/corporate/pressroom?id=13361. Retrieved 2026-09-20.
- ↑ 12.0 12.1 12.2 "Fact Sheet: Intel RealSense Technology". Intel Newsroom. Intel Corporation. 2014. https://download.intel.com/newsroom/kits/idf/2014_fall/pdfs/Intel_RealSense_Factsheet.pdf. Retrieved 2026-09-20.
- ↑ 13.0 13.1 13.2 "Intel RealSense Camera R200: Embedded Infrared Assisted Stereovision 3D Imaging System Product Datasheet (Revision 001)". Intel Corporation. 2016-06. https://www.intel.com/content/dam/develop/external/us/en/documents/realsense-camera-r200-product-datasheet.pdf. Retrieved 2026-09-20.
- ↑ 14.0 14.1 14.2 "Intel RealSense Camera SR300 - Product Specifications". Intel. https://www.intel.com/content/www/us/en/products/sku/92329/intel-realsense-camera-sr300/specifications.html. Retrieved 2026-09-20.
- ↑ Mark Hachman (2025-07-11). "Intel spins off RealSense as a new depth-camera company". PCWorld. https://www.pcworld.com/article/2846867/realsenses-depth-camera-tech-spins-off-from-intel.html. Retrieved 2026-09-20.
- ↑ 16.0 16.1 Ben Lang (2017-09-22). "Intel Scraps Plans to Launch Project Alloy Reference Headset, Pursuing Other VR R&D". Road to VR. https://www.roadtovr.com/intel-scraps-plans-to-launch-project-alloy-reference-headset-pursuing-other-vrar-rd/. Retrieved 2026-09-20.
- ↑ 17.0 17.1 Jean-Luc Aufranc (2017-05-22). "$399 Intel Euclid Robotics Devkit Runs Ubuntu & ROS on Intel Atom x7-Z8700 Processor". CNX Software. https://www.cnx-software.com/2017/05/22/399-intel-euclid-realsense-powered-robotics-devkit-runs-ubuntu-ros-on-intel-atom-x7-z8700-processor/. Retrieved 2026-09-20.
- ↑ 18.0 18.1 18.2 18.3 Mark Tyson (2018-01-19). "Intel ships the RealSense D415 and D435 depth cameras". HEXUS. https://hexus.net/tech/news/peripherals/114461-intel-ships-realsense-d415-d435-depth-cameras/. Retrieved 2026-09-20.
- ↑ Shane McGlaun (2018-01-21). "Intel Ships New RealSense D400 Series 3D Cameras For Makers And Educators". HotHardware. https://hothardware.com/news/intel-d415-and-d435-cameras. Retrieved 2026-09-20.
- ↑ 20.0 20.1 20.2 Chris Burns (2018-11-13). "Intel RealSense D435i Stereo Depth Camera Revealed: 6DoF Now A Reality". SlashGear. https://www.slashgear.com/intel-realsense-d435i-stereo-depth-camera-revealed-6dof-now-a-reality-13553544/. Retrieved 2026-09-20.
- ↑ 21.0 21.1 21.2 David Heaney (2019-01-24). "Intel's New RealSense Camera Adds Positional Tracking To Any Headset For $199". UploadVR. https://www.uploadvr.com/realsense-t265/. Retrieved 2026-09-20.
- ↑ 22.0 22.1 22.2 "Intel RealSense Lidar Camera Technology Redefines Computer Vision". Edge AI and Vision Alliance. Intel Corporation (press release, 2019-11-11). 2019-12. https://www.edge-ai-vision.com/2019/12/intel-realsense-lidar-camera-technology-redefines-computer-vision/. Retrieved 2026-09-20.
- ↑ 23.0 23.1 23.2 "Intel RealSense LiDAR Camera L515 Datasheet (Revision 003)". RealSense. Intel Corporation. https://realsenseai.com/wp-content/uploads/2025/06/Intel_RealSense_LiDAR_L515_Datasheet_Rev003.pdf. Retrieved 2026-09-20.
- ↑ 24.0 24.1 "Intel RealSense Depth Camera D455: Twice the Range, Better Performance". Intel Newsroom. Intel Corporation. 2020-06-16. https://download.intel.com/newsroom/archive/2025/en-us-2020-06-16-intel-realsense-depth-camera-d455-twice-the-range-better-performance.pdf. Retrieved 2026-09-20.
- ↑ 25.0 25.1 Chris Davies (2021-01-06). "Intel RealSense ID Promises Face ID-Style Security For ATMs And Smart Locks". SlashGear. https://www.slashgear.com/intel-realsense-id-promises-face-id-style-security-for-atms-and-smart-locks-06653717/. Retrieved 2026-09-20.
- ↑ 26.0 26.1 26.2 Steve Crowe (2024-09-24). "Intel RealSense D421 offers low-cost depth sensing for robots". The Robot Report. https://www.therobotreport.com/intel-realsense-d421-offers-low-cost-depth-sensing-for-robots/. Retrieved 2026-09-20.
- ↑ "About RealSense". RealSense. https://www.realsenseai.com/about/. Retrieved 2026-09-20.
- ↑ 28.0 28.1 "dormakaba invests in RealSense in the US to strengthen innovation and forms partnership to advance AI-powered access control and security solutions". dormakaba Group. 2025-11-19. https://www.dormakabagroup.com/en/news/17b0f5e5-c174-4590-9f9c-ce9a8722eaf7/dormakaba-invests-in-realsense-in-the-us-to-strengthen-innovation-and-forms-partnership-to-advance-ai-powered-access-control-and-security-solutions. Retrieved 2026-09-20.
- ↑ Rebecca Szkutak (2025-07-11). "RealSense spins out of Intel to scale its stereoscopic imaging technology". TechCrunch. https://techcrunch.com/2025/07/11/realsense-spins-out-of-intel-to-scale-its-stereoscopic-imaging-technology. Retrieved 2026-09-20.
- ↑ Linda Wilson (2025-07-16). "Intel Completes RealSense Spinoff". Vision Systems Design. https://www.vision-systems.com/embedded/article/55303384/intel-completes-realsense-spinoff. Retrieved 2026-09-20.
- ↑ 31.0 31.1 "RealSense deepens NVIDIA ties with new D555 depth camera". The Robot Report. 2025-08-29. https://www.therobotreport.com/realsense-deepens-nvidia-ties-with-new-d555-depth-camera/. Retrieved 2026-09-20.
- ↑ "RealSense and NVIDIA Collaborate to Usher in the Age of Physical AI". RealSense. 2025-08-25. https://www.realsenseai.com/news-insights/news/realsense-and-nvidia-collaborate-to-usher-in-the-age-of-physical-ai/. Retrieved 2026-09-20.
- ↑ 33.0 33.1 33.2 "RealSense Demonstrates Industry's Most Comprehensive GMSL Depth Camera Portfolio at Hannover Messe 2026". RealSense. 2026-04-16. https://www.realsenseai.com/press-release/realsense-demonstrates-industrys-most-comprehensive-gmsl-depth-camera-portfolio-at-hannover-messe-2026/. Retrieved 2026-09-20.
- ↑ 34.0 34.1 34.2 "At Automate 2026, RealSense Unveils the D585 Pro and Perception Studio, Expanding AI-Native Vision for Robotics". RealSense. 2026-06-18. https://www.realsenseai.com/press-release/at-automate-2026-realsense-unveils-the-d585-pro-and-perception-studio/. Retrieved 2026-09-20.
- ↑ 35.0 35.1 Aviad Zabatani, Vitaly Surazhsky, Erez Sperling, Sagi Ben Moshe, Ohad Menashe, David H. Silver, Zachi Karni, Alexander M. Bronstein, Michael M. Bronstein, Ron Kimmel (2020). "Intel RealSense SR300 Coded Light Depth Camera". IEEE Transactions on Pattern Analysis and Machine Intelligence, vol. 42, no. 10. pp. 2333-2345. doi:10.1109/TPAMI.2019.2915841.
- ↑ Leonid Keselman, John Iselin Woodfill, Anders Grunnet-Jepsen, Achintya Bhowmik (2017-05-16). "Intel RealSense Stereoscopic Depth Cameras". arXiv. https://arxiv.org/abs/1705.05548. Retrieved 2026-09-20.
- ↑ 37.0 37.1 "D555 PoE". RealSense. https://www.realsenseai.com/products/d555-poe/. Retrieved 2026-09-20.
- ↑ 38.0 38.1 "Products". RealSense. https://www.realsenseai.com/products/. Retrieved 2026-09-20.
- ↑ "Sensor and Tracking Guide". Project North Star Documentation. https://docs.projectnorthstar.org/project-north-star/northstar-next/sensor-and-tracking-guide. Retrieved 2026-09-20.