Skip to main content

Sony IMX677

23.91 MP Stacked CMOS sensor with high-speed video capabilities and energy-efficient design for industrial and consumer cameras.

sony

Important Update

This component is now available through our sister company, RESTAR FRAMOS. For a production-ready alternative, explore our compatible integrated modules.

Product Overview

The Sony IMX677-AAPJ-C delivers high-resolution 23.91 MP images with low power consumption, perfect for consumer and industrial imaging applications.

The Sony IMX677-AAPJ-C is a high-resolution CMOS image sensor designed for applications that require superior image quality and performance. With a diagonal size of 7.85 mm (Type 1/2.3) and a resolution of approximately 23.91 megapixels, this sensor is ideal for capturing high-definition still images and video. It features a square pixel array with 5663 x 4223 pixels, each measuring 1.12 x 1.12 µm, providing detailed and sharp image quality.

The IMX677-AAPJ-C utilizes 12-bit digital output, allowing for the transmission of high-definition signals from the sensor, making it well-suited for still photography and video applications that require precise detail and color accuracy. The sensor supports horizontal and vertical binning and subsampling readout, enhancing performance for high-speed and high-definition video capture.

With its stacked CMOS architecture, the sensor achieves high sensitivity and low dark current, delivering low-noise performance even in challenging lighting conditions. The electronic shutter with variable integration time enables the sensor to handle a variety of exposure conditions, allowing for flexible image capture, especially in fast-moving scenes.

The IMX677 operates with three distinct power supply voltages: 2.8 V for analog circuits, 1.2 V for digital operations, and 1.8 V for the I/O interface. This multi-voltage configuration ensures that the sensor operates efficiently, reducing power consumption, which is critical in portable or battery-powered devices such as mobile cameras, drones, and other compact imaging systems.

  • 23.91 MP resolution with 5663 x 4223 pixel array
  • 1.12 x 1.12 µm pixel size for detailed and sharp images
  • 12-bit digital output for high-definition still images and video
  • Supports horizontal and vertical binning and subsampling readout for high-speed imaging
  • High sensitivity and low dark current for low-noise performance
  • Electronic shutter with variable integration time for flexible exposure control
  • Low power consumption with multi-voltage operation (2.8V, 1.2V, and 1.8V)

Packaged in a durable 148-pin ceramic package, the Sony IMX677-AAPJ-C is ideal for integration into high-performance imaging systems where high-resolution, low-noise, and efficient power consumption are key requirements. The sensor's SLVS-EC interface further supports fast and reliable data transmission, making it a versatile choice for a range of applications, including photography, industrial imaging, and consumer electronics.


Product Specifications

Pixel Size x [µm]Pixel Size x [µm]
1.12
Pixel Size y [µm]Pixel Size y [µm]
1.12
InterfaceInterface
SLVS-EC
Bit DepthBit Depth
10, 12
ChromaticsChromatics
RGB
Frame Rate [fps]Frame Rate [fps]
60
Horizontal Resolution [px]Horizontal Resolution [px]
5663
Image Diagonal [mm]Image Diagonal [mm]
7.91
ManufacturerManufacturer
Sony
Max. Operating Temperature [°C]Max. Operating Temperature [°C]
75
Min. Storage Temperature [°C]Min. Storage Temperature [°C]
-30
Pins / BallsPins / Balls
148
Protective FilmProtective Film
Yes
Resolution [MP]Resolution [MP]
23.91
Sensor SizeSensor Size
1/2.3 inch
Sensor TypeSensor Type
CMOS
Shutter TypeShutter Type
Rolling Shutter
Vertical Resolution [px]Vertical Resolution [px]
4223

Latest Blog Posts

Our latest blogs

Welcome to our blog section, where knowledge meets inspiration. Explore insightful articles, expert tips, and the latest trends in our field.

View All
Inside-Out, Outside-In: Two Ways Vision AI Enters the Factory

Inside-Out, Outside-In: Two Ways Vision AI Enters the Factory

Physical AI is moving from research labs onto the factory floor along two distinct paths. One begins with digital twins, simulation, and synthetic data before a robot reaches real hardware....

Read more
Bridging Sensor and SoC: Co-Optimization Strategies for Next-Generation Vision

Bridging Sensor and SoC: Co-Optimization Strategies for Next-Generation Vision

As imaging moves toward smarter, faster, and more efficient systems, modern vision applications demand more than incremental improvement. They require deeper synergy and better co-optimization between sensors and SoCs. Design...

Read more
Unlocking New Capabilities: How Sony’s Image Sensors Are Advancing Industrial Vision

Unlocking New Capabilities: How Sony’s Image Sensors Are Advancing Industrial Vision

Industrial vision is evolving to support faster, more accurate, and more adaptable inspection. Advances in image sensors – from high-resolution and HDR imaging to short-wave infrared – are enabling better...

Read more
Embedded Vision Beyond Autonomous robots

Embedded Vision Beyond Autonomous robots

Embedded vision is widely recognized in modern mobility applications such as autonomous driving, advanced driver-assistance systems (ADAS), AMRs, AGVs, drones, and humanoid robots. Besides these relatively new application areas, there...

Read more
From Prototype to Production: Building AI at the Edge

From Prototype to Production: Building AI at the Edge

An AI model that works on a development board is still a long way from a production-ready edge device. The final system must capture useful data, process it within a...

Read more
Industrial 3D Cameras: Rugged 3D Vision Camera for Automation – FRAMOS D435e with GigE & IP66 

Industrial 3D Cameras: Rugged 3D Vision Camera for Automation – FRAMOS D435e with GigE & IP66 

3D cameras for industrial applications have to operate in harsh production environments and reliably detect moving objects at speed, e.g. when the camera is mounted on a robot arm. Stable...

Read more
Depth Sensing Cameras: How Machines Understand the Physical World

Depth Sensing Cameras: How Machines Understand the Physical World

The past two decades of innovations in embedded systems, robotics, industrial automation and autonomous vehicles all have one thing in common.

Read more
When Robot Safety Becomes a Perception Problem

When Robot Safety Becomes a Perception Problem

For decades, robot safety was based on separation. Cages, light curtains, guarded workcells, and emergency stops kept machines and people apart. Physical AI changes that model. Robots increasingly share space...

Read more