Shenzhen Kai Mo Rui Electronic Technology Co. LTDShenzhen Kai Mo Rui Electronic Technology Co. LTD

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Kaimorui CM8258E-iOS+CM2001HA dual-core vision solution empowers stabilization robots to excel in complex mobile operation scenarios.

Source:Shenzhen Kai Mo Rui Electronic Technology Co. LTD2026-08-26

Today’s anti-shake robots for emergency rescue, factory inspections, and field surveys operate in highly uncertain environments. They face multiple challenges—including bumpy terrain, vibrations when overcoming obstacles, smog, dust, extreme temperature fluctuations between day and night, and long-distance target detection—each of which places stringent demands on the imaging stability, environmental adaptability, and system compatibility of onboard cameras. When components and control accessories are procured separately, issues such as synchronization delays, signal interruptions, and protracted debugging periods frequently arise. Kaimorui CM8258E-IOS zoom mechanism, paired with the CM2001H encoding control board, delivers an integrated anti-shake robotic camera visual solution, enabling the construction of a highly stable, easily integrable, and all-weather visual perception system for mobile platforms.

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I.Optical image stabilization empowers the robot with dynamic, high-definition observation capabilities.

CM8258E-The iOS movement, serving as the visual core of the anti-shake robot, is equipped with a 1/1.8" Sony Starvis CMOS sensor offering 2-megapixel high-definition imaging and featuring an ultra-long 58x optical zoom with a focal length range covering 6.3.-365mm. The 63.4° wide field of view enables the robot to quickly scan large areas during cruising, while the 1.2° telephoto field of view precisely captures distant targets. The entire optical zoom process takes only 8 seconds, making it perfectly suited for operational modes that require rapid switching between near and far observations during mobile operations.

The open-type optical image stabilization feature effectively counteracts image shifts caused by vibrations in the robot’s body, thereby eliminating motion blur and ghosting during mobile operations. The lens incorporates aspherical glass elements and a high-transmittance coating, with TV distortion at both W and T ends below 1%. This low-distortion imaging ensures precise calculations by the backend AI recognition algorithms. The device comes equipped with optical temperature compensation and optical anti-fog functionality, and its three-filter system is compatible with lasers, enabling stable imaging even in challenging environments such as foggy conditions or extreme temperature fluctuations. The entire unit weighs just 930g, and its lightweight design reduces the load on the robot. It delivers starlight-level low-light imaging at 0.005 Lux, paired with ICR day-and-night switching.-20Operates within a wide temperature range of ℃~+60℃, ensuring the anti-shake robot can perform uninterrupted outdoor operations day and night.

II.Dual-channel synchronous output, building a multi-channel data stream pathway for robots.

When the anti-shake robot is running, it must both transmit surveillance video back to the remote control platform and output raw images to the onboard computing unit for intelligent analysis. CM8258E-IOS supports simultaneous output of two video streams—network and LVDS—delivering up to 1080P@50/60fps high-definition video. It supports H.265, H.264, and MJPEG encoding with a bitrate range of 32 kbps.-16Mbps, allowing flexible adjustment of image quality based on the available bandwidth at the site.

The camera module features a mature ISP image-processing system, offering comprehensive capabilities including 2D/3D noise reduction, wide dynamic range, strong-light suppression, and ROI region enhancement. It comes equipped with advanced on-site intelligent analysis functions such as tripwire intrusion detection, area intrusion detection, and loitering detection, and works seamlessly with PTZ gimbal control, heartbeat alarms, and customizable OSD to provide real-time alerts for on-site events. The camera is compatible with Onvif and GB28181 security protocols, enabling easy integration into robotic host systems. It supports local storage up to 256G via TF card, ensuring that video recordings are retained even in the event of network interruptions. The TTL interface is compatible with the SONY VISCA protocol, significantly reducing the debugging complexity for secondary robot development.

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III.CM2001H control board ensures stable and reliable communication of robotic mechanism commands.

To ensure the smooth operation of all functions in the imaging mechanism, a stable control platform is required to facilitate seamless signal communication. The CM2001H encoding control board serves as the reliable control hub for the entire anti-shake robotic vision solution. The control board features a 6-layer, military-grade gold-plated PCB, equipped with imported chips. It measures just 50×50×5 mm—lightweight, thin, and compact—making it perfectly suited for installation in the tight spaces inside robotic bodies. Its 42×42 mm positioning holes simplify structural assembly.

LVDS direct-connect movement; automatically recognizes image signals upon power-up, eliminating the need for complicated configurations. Equipped with RS485 and RS232 interfaces.-TTL and IO key multi-path control mode, natively compatible with the SONY VISCA protocol, ensures precise and efficient transmission of commands for zoom, focus, and image parameter adjustments. The power-off memory function enables the robot to automatically restore the last saved operating parameters upon unexpected shutdown and subsequent restart, eliminating the need for manual reconfiguration. It can convert LVDS signals into HDMI video outputs in multiple resolutions—720P, 1080I, and 1080P—allowing engineers to conveniently connect external displays for on-site debugging. Additionally, it supports OEM/ODM custom development, catering to the personalized needs of various types of anti-shake robots.

IV.Complete, deeply tailored solutions to remove obstacles to the implementation of image-stabilization robot projects.

During the robot’s overall R&D phase, if components are purchased separately, it’s easy to encounter challenges such as protocol adaptation failures, unstable signal transmission, and persistently high debugging costs later on. Kemore CM8258E-IOS and CM2001H integrated vision solution is specifically designed for stabilizing mobile robot applications, featuring coordinated software and hardware optimization.

CM8258E-IOS tackles core challenges such as mobile vibration-induced image stabilization, long-distance target recognition, and all-weather imaging in complex environments. The CM2001H establishes a robust data link among the movement mechanism, robot’s main controller, and remote backend, ensuring stable transmission of video signals and control commands. This comprehensive solution is lightweight, resistant to extreme temperatures, and features an extensive array of interface options, making it suitable for integration into various devices—including emergency rescue robots, industrial inspection robots, and field surveying anti-shake robots. By providing an integrated, turnkey solution, this approach effectively mitigates compatibility risks associated with discrete components, shortens the project’s R&D cycle, accelerates the deployment and mass production of anti-shake robots, and empowers diverse mobile robotic platforms with powerful visual capabilities.


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