‏إظهار الرسائل ذات التسميات Image Sensor. إظهار كافة الرسائل
‏إظهار الرسائل ذات التسميات Image Sensor. إظهار كافة الرسائل

MIT Unveils Chip That Controls Infrared Light, Revolutionizing Sensors Worldwide

MIT Unveils Chip That Controls Infrared Light, Revolutionizing Sensors Worldwide

MIT scientists have built a new chip that can bend and control invisible heat‑based light (infrared) one pixel at a time. Unlike older systems that need heavy moving lenses, this chip works electronically, making devices like thermal cameras and gas detectors smaller, cheaper, and smarter. This breakthrough could change how we monitor pollution, improve defense night‑vision, and even open doors to faster computers that use light instead of electricity.

The prototype chip is built using mostly standard semiconductor manufacturing methods, making it easier to produce at scale. The design combines a special light‑controlling surface with a grid‑like wiring system similar to what’s used in display screens. Thin layers of copper and silicon heat up tiny pixels, switching them between two states — crystalline and amorphous — which changes how each pixel bends or blocks invisible infrared light. To keep signals clean, a built‑in diode ensures electricity doesn’t leak between neighboring pixels. This clever setup means the chip can be expanded to much larger arrays, paving the way for powerful new infrared devices.

What Happened

Researchers at MIT have developed a revolutionary chip that can control infrared light pixel by pixel using a phase‑change metasurface. Unlike traditional infrared systems that rely on bulky moving parts, this chip is fully electronic — making devices like thermal cameras and gas‑detection sensors smaller, faster, and smarter.

The research study, published in Nature, presents a new chip-scale technology: a two-dimensional, pixel-level addressable metasurface that can dynamically control mid‑infrared light without moving parts. It demonstrates how phase‑change materials and crossbar wiring can be combined to create programmable infrared optics, paving the way for compact, scalable thermal imaging and sensing systems.

This research marks a shift from mechanical optics to programmable light control. Just as digital cameras replaced film, programmable metasurfaces could replace bulky infrared systems. The result: lighter drones, smarter pollution monitors, and faster optical computers — all powered by nanoscale engineering.

How It Works

  • Phase‑change material: Each pixel can switch between two states (crystalline and amorphous), changing how it bends or blocks infrared light.
  • Metasurface design: A thin, engineered surface manipulates light at the nanoscale.
  • Crossbar wiring: Copper wires and doped silicon heat specific pixels, enabling precise control without electrical leakage.
  • Pixel‑level control: Instead of moving lenses, the chip electronically adjusts focus and direction of infrared light.

Why It Matters

  • Thermal cameras: Detecting heat leaks in homes, factories, and aircraft.
  • Gas detection: Spotting pollutants like methane or propane in the environment.
  • Defense imaging: Smarter night vision and surveillance systems.
  • Optical computing: Using light instead of electricity to process information faster.

Comparison

FeatureOld Infrared SystemsMIT Chip
OpticsMoving lensesNo moving parts
SizeBulkyCompact
ControlWhole surface onlyPixel‑by‑pixel
ApplicationsLimitedExpansive (thermal, gas, defense, computing)

Challenges Ahead

  • Scaling up: Current prototypes are small (6×6 pixels). Expanding to millions of pixels is the next step.
  • Durability: Materials must withstand repeated switching without wearing out.
  • Integration: Needs to fit into existing semiconductor manufacturing processes.

The Big Picture

This chip represents a shift from mechanical optics to programmable light control. Just as digital cameras replaced film, programmable infrared chips could replace bulky thermal systems. The result: lighter drones, smarter pollution monitors, and faster optical computers — all powered by nanoscale engineering.

Sony Unveils 50MP Mobile Sensor With HDR Power

Sony Unveils 50MP Mobile Sensor With HDR Power
  • Delivering power saving, high-image quality 4K shooting and improved night view and outdoor imaging performance
Sony Semiconductor Solutions Corporation (Sony) announced the launch of the L910, an approximately 50-effective megapixel image sensor for mobile applications that delivers 100 dB high dynamic range imaging with low power consumption.

This is one of the first LYTIA lineup with the LOFIC structure. It also features the new HDR technology along with the logic circuit technology that helps in reducing the random noise in dark areas of images. These technologies offer high-quality imaging by reducing highlight blowout in bright areas and noise in dark areas, compared to conventional products. Additionally, it also offers HDR video recording at 4K, 60 fps, while maintaining low power consumption with optimized circuit design.

In recent years, the need for camera functionality that can provide stable, high-quality imaging in various environments continues to grow along with the popularity of video production and live streaming. Consequently, image sensors require expanded dynamic range and improved power efficiency.

Therefore, the new sensor combines the expanded saturation capacity enabled by the LOFIC structure with the new HDR and circuit technology. It achieves a dynamic range of 100 dB with a single exposure, enabling imaging

with rich gradations from highlights to shadows and minimal noise. Compared to multi-exposure HDR technologies, this design help suppresses motion blur and flicker when shooting moving subjects, since the synthesizing process is not needed. Also, Sony's proprietary circuit design reduces power consumption, enabling high-quality video recording at 4K, 60 fps even when shooting in HDR.

Model name and shipment date:




Model nameMass-production shipment date
LYTIA L910 1/1.28-type (12.49 mm diagonal) 50-effective-megapixel stacked CMOS image sensorSummer 2026

Key Features:

1. The new HDR and circuit technologies offer 100 dB high dynamic range imaging in a single exposure
  • LOFIC structure expands saturation capacity. 
  • Triple Conversion Gain-HDR reduces highlight blowouts and noise.
  • Ultra High Conversion Gain circuits improve efficiency.
  • Reduces random noise by ~30% compared to conventional products.
  • Achieves smooth gradations in high-contrast scenes.

2. Optimized circuit design delivers low power 4K video recording while maintaining high dynamic range
  • Proprietary circuit design lowers sensor power consumption.
  • Enables high-quality 4K video recording at 60 fps.
  • Allows HDR preview on smartphone screens.

Key Specifications:

Model nameLYTIA L910
Image size1/1.28-type (diagonal 12.49 mm)
Effective pixelsApprox. 50 megapixels
Unit cell size1.22 µm × 1.22 µm
Color filterQuad Bayer Coding
Frame rate (at full-pixel AF)50 megapixels (4:3)30 fps / 120 fps
12.5 megapixels (4:3)60 fps (DCG-HDR) / 60 fps (TCG-HDR w/LOFIC)
4K2K (16:9)60 fps (2x2 Bin, DCG-HDR)
60 fps (2x2 Bin, TCG-HDR w/LOFIC)
Power supplyAnalog: 2.8 v/1.8 v
Digital: 0.81 v
Interface: 1.8 v or 1.2 v

Outer Interface:

- MIPI® C-PHY 2/3 trio, Max. 6.0 Gsps/trio
- MIPI D-PHY 2/4 lane, Max. 2.5 Gbps/lane

Sony–TSMC Alliance to Boost Image Sensor Tech for Automotive and Robotics

Sony–TSMC Alliance to Boost Image Sensor Tech for Automotive and Robotics

Sony Semiconductor Solutions and TSMC have announced that the two have signed a non-binding MOU to form a joint venture in Kumamoto, Japan, aimed at developing next-generation image sensors for AI-driven applications in automotive, robotics, and consumer electronics. Sony will hold majority control, while the Japanese government is expected to support phased investments.

Key Highlights of the Partnership

  • Joint Venture (JV): Sony will be the majority shareholder, controlling operations at its new fab in Koshi City, Kumamoto Prefecture.
  • Technology Synergy: Sony contributes sensor design expertise, while TSMC brings process technology and manufacturing excellence.
  • Strategic Focus: Next-generation CMOS image sensors targeting AI-era applications such as autonomous vehicles, robotics, and advanced smartphones.
  • Government Support: Investments will be phased based on market demand, with backing from the Japanese government.
  • Expansion Plans: Sony will also invest in its Nagasaki plant, strengthening domestic semiconductor capacity.

Industry Context

  • Market Leadership: Sony dominates the global image sensor market, supplying to major smartphone makers like Apple.
  • TSMC’s Role: As the world’s largest contract chipmaker, TSMC diversifies its footprint in Japan, ensuring supply chain resilience.
  • Competitive Edge: The JV creates a formidable barrier against rivals such as Samsung and OmniVision.

Emerging Applications

  • Automotive: Sensors for ADAS and autonomous driving.
  • Robotics: High-performance sensors enabling machine vision and physical AI integration.
  • Consumer Electronics: Premium smartphones and imaging devices requiring higher-performance sensors.

Strategic & Economic Impact

AspectSonyTSMCJapan
OwnershipMajority shareholderMinority partnerGovernment support
StrengthsSensor design, market leadershipAdvanced manufacturing, process nodesSemiconductor revitalization strategy
ApplicationsSmartphones, automotive, roboticsFoundry services, AI workloadsLocal economic growth, supply chain resilience
InvestmentNew fab in Kumamoto + Nagasaki expansionProcess technology integrationEstimated ¥1 trillion support for Kumamoto site

Leadership Statements

  • Shinji Sashida (Sony CEO): “This JV is a significant initiative that brings together the strengths of both companies and aims to drive further advancement in technology and business within the next-generation image sensor field.”
  • Dr. Kevin Zhang (TSMC SVP): “This partnership underscores our shared commitment and mutual vision of leveraging cutting-edge technologies and innovative solutions to deliver leading sensing technology and products.”

Global Significance

  • Localization of semiconductor capacity in Japan to reduce supply chain risks.
  • Rising demand for AI-ready sensors across industries.
  • Strategic alliances between design leaders and foundry giants to accelerate innovation.
To summarizs, the Sony–TSMC JV marks a pivotal step in the evolution of image sensors, reinforcing Japan’s semiconductor ecosystem while positioning both companies at the forefront of AI-driven sensing technologies.

Building on the trust cultivated through our long-standing collaboration with TSMC, I am delighted that we have reached an agreement to advance our partnership to a new stage,” said Shinji Sashida, President and CEO of Sony Semiconductor Solutions Corporation.“This JV is a significant initiative that brings together the strengths of both companies and aims to drive further advancement in technology and business within the next-generation image sensor field. Building on this JV, Sony intends to further strengthen its business operations with a focus on creating high added value. Rooted in the Sony Spirit that has guided us since our founding, we intend to continue to take on the challenge of creating new markets through unprecedented ideas and distinctive technologies.”

Sony has been our long-time partner in the CMOS image sensor business. We are excited to elevate our collaboration to the next level, which represents a key step forward in driving future sensing technology in the AI era,” said TSMC Senior Vice President and Deputy Co-COO, Dr. Kevin Zhang.This partnership underscores our shared commitment and mutual vision of leveraging cutting-edge technologies and innovative solutions to deliver leading sensing technology and products. We look forward to working closely together to achieve impactful results and create lasting value for all stakeholders.”

TECNO Unveils “Ultimage” — Future in Imaging Technologies

The brand will be rolling out next-generation imaging technologies in a phased manner

CAMON 20 Premier 5G to feature an industry-first combination of RGBW Pro and sensor-shift Anti-shake technology

TECNO, an innovative technology brand, held the 2023 Future of Imaging Technology Conference today in Delhi. The brand unveiled “Ultimage”- the ultimate imaging experience with a specific focus on sensors and AI processing that seamlessly integrates cutting-edge smartphone imaging technology.

"Ultimage" is the culmination of TECNO's relentless pursuit of excellence in research and development and an outcome of thorough understanding of consumer needs. Through extensive analysis and dedicated efforts, TECNO has created a game-changing solution that caters to the requirements of portrait photography, anti-shaking functionality, and lowlight shooting. The brand’s premium product lines, Phantom and CAMON will feature this next generation of technology starting first from CAMON 20 series.

The eagerly awaited CAMON 20 line-up includes three cutting-edge products: CAMON 20 Premier 5G, CAMON 20 Pro 5G, and CAMON 20. These remarkable devices are poised to hit the market by the end of this month. CAMON 20 Series would bring spectacular portrait video and night photography experience with the industry’s first Combination of Sensor-Shift OIS Anti-shaking Technology, 50MP RGBW Ultra-Sensitive sensor and proprietary AI algorithms which will disrupt the mobile photography segment and set it apart from its competition.

I. Experience Brilliant colors like Never Before with RGBW Pro Technology-

Experience Brilliant colors like Never Before with RGBW Pro Technology

TECNO's innovative RGBW Pro technology replaces the "green" array solution in the traditional RGGB color filter with a "white" one, thus allowing 208% light intake to be captured in low-light conditions. The 1G+6P lens increases the light intake when it reaches the main sensor by replacing one of the plastic lenses with a glass one. The main sensor on TECNO CAMON 20 Premier 5G is also increased from 1/1.73 to 1/1.56 and the single pixel size from 0.8μm to 1.0μm, with 56.25% larger light-sensitive area to ensure images are as close to real-life scenes as possible. With greater light transmission, TECNO CAMON 20 Premier 5G lets users capture crystal-clear night portrait in stunning definition, never losing a detail in the dark. 

TECNO Unveils “Ultimage” - Future in Imaging Technologies

II. Never a blur moment with sensor-shift Technology-

Looking to capture sharp, steady high-quality photos on the go? TECNO has incorporated SLR camera in-body image stabilization into the CAMON 20 Premier 5G. The devices with Sensor-Shift OIS Anti-Shaking Technology can compensate for shakes up to 5,000 times per second. As a result, images and video are crisp and vivid, even when taken while moving at speed. What sets Sensor-shift apart from traditional lens stabilization is the way it works. Instead of relying on lens movement to compensate for shaky hands or bumpy rides, Sensor-shift uses the motion of the camera's sensor itself. This advanced anti-shake solution provides smoother, clearer images than ever before.

Sensor Shift OIS

III. Unlock Your Inner Photographer with Portrait Master Algorithm –

TECNO's premium series of smartphones provide a lifestyle-oriented approach to photography with the Portrait Master. Users can easily capture stunning portraits for a "one shot perfect photo" experience. The advanced portrait algorithm in these phones enhance seven distinct skin tones using deep learning technology and machine learning advancements. With over 50 million deep skin tone photos, this algorithm is the most advanced in the industry, offering users unparalleled customization and control for optimizing their portraits. The CAMON 20 series' Portrait Master delivers a superior portrait experience, ideal for capturing intimate moments or glamorous selfies.

Additionally, TECNO is among the first smartphone brands that will bring Android 14 upgrade to enhance the CAMON 20 series' user experience by delivering a host of privacy, security, performance, and user customization updates.

TECNO Unveils “Ultimage” - Future in Imaging Technologies

TECNO Unveils “Ultimage” - Future in Imaging Technologies

About TECNO

TECNO Mobile is a premium smartphone brand from TRANSSION Holdings. With “Stop at Nothing” as its brand essence, TECNO is committed to unlocking the best contemporary technologies for progressive individuals across global emerging markets, giving them elegantly designed products that inspires consumers to uncover a world of possibilities. TECNO understands the needs of consumers from different markets and provides them with localized innovations which is demonstrated through their mastery of serving con sumers who are “young at heart” and never stops pursuing excellence. TECNO’s portfolio spans across smartphones, smart wearables and AIoT devices made for consumers in over 60 emerging markets across the world. For more information, please visit https://www.tecno-mobile.in/home/#/

Samsung unveils World's Highest-Resolution for Mobile Cameras with 64Mp ISOCELL Image Sensor

On Thursday (May 9), South Korean electronics giant, Samsung Electronics Co, introduced the world's highest-resolution image sensor, with 64 megapixels for smartphones, to meet the growing demand for mobile devices with better image quality.

Samsung unveiled two new 0.8-micrometer pixel image sensors-the 64-megapixel ISOCELL Bright GW1 and the 48-megapixel ISOCELL Bright GM2, expanding its 0.8-micrometer pixel image sensor lineup, the smallest pixel size currently available in the market.

“Over the past few years, mobile phone cameras have become the main instrument for recording and sharing our everyday moments,” said Yongin Park, executive vice president of sensor business at Samsung Electronics.

"With more pixels and advanced pixel technologies, Samsung ISOCELL Bright GW1 and GM2 will bring a new level of photography to today’s sleekest mobile devices that will enhance and help change the way we record our daily lives," Park said.

ISOCELL Bright GW1 is a 64Mp image sensor that features the highest resolution in Samsung’s 0.8μm-pixel image sensor lineup. With pixel-merging Tetracell technology and remosaic algorithm, GW1 can produce bright 16Mp images in low-light environments and highly-detailed 64Mp shots in brighter settings.

The Tetracell technology merges four pixels into one so that users can achieve high quality images in all light conditions. In bright environments, Tetracell uses a re-mosaic algorithm to produce full resolution images.

[caption id="attachment_130414" align="aligncenter" width="1024"] Samsung ISOCELL GW1[/caption]

[caption id="attachment_130415" align="aligncenter" width="1024"] Samsung ISOCELL GM2[/caption]

To take pictures resembling the way the human eye perceives its surroundings in a mixed light environment, GW1 supports real-time high dynamic range (HDR) of up to 100-decibels (dB) that provides richer hues. In comparison, the dynamic range of a conventional image sensor is at around 60dB, while that of the human eye is typically considered to be around 120dB.

GW1 is equipped with a Dual Conversion Gain (DCG) that converts the received light into an electric signal according to the illumination of the environment. This allows the sensor to optimize its full well capacity (FWC), utilizing the collected light more efficiently especially in bright environments. Sharper results can be delivered through Super PD, a high-performance phase detection auto-focus technology, and full HD recording at 480 frames-per-second (fps) is supported for smooth cinematic slow motion videos.

ISOCELL Bright GM2 is a 48Mp image sensor that also adopts Tetracell technology in low-light environments and a remosaic algorithm in well-lit settings, bringing highly-detailed pictures with natural and vivid colors. GM2, like GW1, adopts DCG as well for added performance and Super PD for fast autofocus.

Samsung ISOCELL Bright GW1 and GM2 are currently sampling and are expected to be in mass production in the second half of this year.

Samsung first announced its ISOCELL technology in 2013, which reduces color-cross talk between pixels by placing a physical barrier, allowing small-sized pixels to achieve higher color fidelity. Based on this technology, Samsung introduced the industry’s first 1.0um-pixel image sensor in 2015 and 0.9-pixel sensor in 2017. In June 2018, Samsung introduced an upgraded pixel isolation technology, the ISOCELL Plus.

Additionally, the world's biggest smartphone vendor is also said to be developing various sensors for automotive cameras to meet growing demands for self-driving cars.

The image sensor market is expected to grow to a level comparable to the current memory chip market through 2030 in line with advancements in artificial intelligence and 5G technologies.

Source - Samsung

[Top-most Featured image is for representative purpose only sourced from Alice Donovan Rouse on Unsplash]

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