Aert Medical Aert Medical

OEM/ODM AI Imaging Analytics Factories & Suppliers

Global medical-grade AI diagnostics, edge computing solutions, and high-performance imaging hardware tailormade for worldwide healthcare systems.

The Core of AI Imaging Analytics Manufacturing

Analyzing the convergence of high-performance computing, advanced sensors, and deep learning algorithms in next-generation diagnostics.

High-Definition Diagnostics

We utilize cutting-edge AI networks running on dedicated hardware to reconstruct diagnostic images in real time, minimizing artifacts and dosage while delivering sub-millimeter anatomical precision.

Edge AI Systems

Integration of high-speed SoMs like the Rockchip RK3576 enables localized model processing directly inside imaging units. This architecture minimizes latency, cuts cloud dependencies, and maintains patient privacy.

High-Layer PCBs

Designed with multi-layer high-frequency PCB substrate materials, our data processing circuits handle massive image sensor readouts without signal degradation, maintaining consistent system reliability.

Wenzhou Aert Medical Co., Ltd.

Wenzhou Aert Medical Co., Ltd. is a leading high-tech enterprise focused on the research, development, production, and sales of mobile CT, mobile MRI, and digital X-ray detectors. Headquartered in Wenzhou, Zhejiang Province, the company operates multiple state-of-the-art research and development centers. By collaborating closely with renowned domestic and international scientific research institutions and universities, we continuously drive the global advancement of intelligent medical devices.

Our commitment covers the entire product lifecycle—from basic research on image sensors to high-level clinical system integration. Leveraging robust OEM/ODM production configurations, Aert Medical delivers tailor-made clinical equipment to satisfy stringent global regulatory frameworks.

Wenzhou Aert Medical Facility

Products and Applications

The company is dedicated to providing mobile CT and mobile MRI solutions for various application scenarios, breaking through the core limitations of traditional, stationary imaging systems. Our equipment is widely deployed in hospital bedside units, emergency ambulances, mobile medical vehicles, and battlefield trauma care settings, satisfying critical diagnostic needs in highly complex environments.

Aert's mobile CT systems feature low radiation, simple operation, swift mobility, and high-definition image outputs. They are extensively integrated into clinical specialties including orthopedics, joint care, pulmonology, stroke diagnostics, and intensive care, substantially shortening turnaround times and enhancing patient treatment experiences.

Aert Medical CT and MRI Solutions

Research & Technological Advancements

Overcoming engineering barriers to refine the precision, size, and cost of diagnostic imaging machinery.

"LingTong" & "Ark" CT Series

Independently developed mobile CT systems designed for distinct clinical paths. They deliver excellent spatial resolution and rapid scan speeds under low-radiation protocols, offering immediate scans in emergency situations.

Automation Balance System

Our proprietary balance control mechanism merges Cone Beam CT (CBCT) and spiral CT algorithms. This development bridges the performance gap, elevating CBCT image quality to compete with standard 64-slice spiral CT units.

Low-Field Mobile MRI

We are actively developing ultra-low-field mobile head MRI devices. Offering complete scanning sequences and lightweight forms, these units provide real-time neurological navigation directly inside neurosurgery operating theaters.

China Supply Chain & Microelectronics Integration

Harnessing advanced semiconductor manufacturing and local manufacturing ecosystems to scale production efficiently.

Aert Medical's specialized subsidiary, Wenzhou Aert Microelectronics Technology Co., Ltd., designs and manufactures dedicated medical-grade image sensors. By organizing an elite pool of sensor designers and silicon architects, the company builds high-performance CMOS flat-panel detectors from the ground up, providing the foundational hardware for mobile CT scanners.

Additionally, our ongoing R&D on photon-counting detectors positions our technology at the forefront of global imaging science. By directly converting individual X-ray photons into digital signals, this technology promises ultra-low noise, high energy resolution, and minimal patient exposure, redefining standard medical chips globally.

Why Sourcing from Our China Facilities?

  • Vertical Component Integration: From raw silicon detectors to precision cast housings, we control the entire workflow to lower overhead costs.
  • Agile ODM Prototyping: Accelerated turnarounds for structural modifications, specialized logic board layouts, and customized software systems.
  • Dust-Free Assembly: Class 100 to Class 10,000 cleanroom environments prevent particulate contaminants in sensitive optical paths.

Engineered to Excel on Global Standards

Empirical metrics backing our manufacturing capacity, quality control, and R&D dedication.

6+ TOPS
AI Processing Power
0.35T
Intelligent MRI Solutions
100%
ISO 13485 Certified
10G
Edge Fiber Interfaces

Localization Support & Global Regulatory Compliance

Overcoming regulatory hurdles and adapting technologies to local regional standards.

Regulatory Alignments

We ensure our manufactured devices satisfy international standards, including FDA 510(k), CE-MDR, RoHS, and local NMPA certifications, ensuring streamlined market entries for medical distributors.

Data Security Compliance

All software stacks are written to respect localized medical privacy regulations like HIPAA in the United States and GDPR in Europe, deploying secure local databases and encrypted network transmissions.

Local Diagnostics Adaptability

Our AI imaging interfaces support multi-language localizations. We offer API gateways to integrate seamlessly with various regional PACS (Picture Archiving and Communication Systems) and hospital networks.

Global Procurement Expectations

For international healthcare providers and device brand owners, securing reliable B2B suppliers requires verifying crucial operational qualities:

  • Continuous Hardware Lifecycle: Long-term supply of key silicon modules, microprocessors, and custom-molded enclosures.
  • Technical Documentation: Providing detailed design files, schematics, material test reports, and compliance paperwork.
  • Rigorous Testing: Multi-axis shock tables, thermal stress chambers, and radiation leakage mapping to ensure long-term durability.

AI Diagnostics Development Trends

The medical and industrial imaging sectors are shifting toward decentralized diagnosis. Critical trends shaping development include:

  • Quantum Photon Counting: Transitioning from analog scintillator assemblies to direct solid-state photon counting, lowering radiation dose limits.
  • Intelligent Guided Scans: AI software that prompts local technicians on correct patient positioning and automatically refines scan parameters.
  • Multi-Modality Fusion: Consolidating CT, MRI, and ultrasound imaging overlays into unified, real-time clinical visualizations.

Frequently Asked Questions

Crucial engineering, commercial, and regulatory questions answered by our system specialists.

What OEM/ODM customization services does Aert Medical provide for mobile CT/MRI systems?
We provide full-spectrum customization including specialized mechanical housings, dynamic range configurations on CMOS flat-panel detectors, customized embedded firmware for NPUs, and bespoke physical chassis designs for ambulances or military clinics.
How does the "Automation Balance System" achieve 64-slice performance parity on CBCT platforms?
The system combines the rapid projection acquisition of Cone Beam CT (CBCT) with iterative reconstruction algorithms utilized in multi-slice spiral CTs. By adjusting sensor readouts in real-time, it removes scatter radiation artifacts, delivering structural resolution comparable to 64-slice machinery.
What certifications do your microelectronics components carry for European and American deployments?
Our sensor manufacturing facilities conform to ISO 13485 medical device quality management system requirements. Furthermore, our finished diagnostic assemblies comply with CE-MDR and FDA 510(k) protocols, accompanied by documentation packages for target market validation.
Can your systems run machine learning models locally on the edge?
Yes, our computing systems employ edge engines, such as the Rockchip RK3576, which provides 6 TOPS of dedicated NPU power. This enables real-time inferencing, immediate diagnostics processing, and localized patient data handling.
What is the standard manufacturing lead-time for custom medical hardware batches?
Prototype adjustments and engineering evaluations are typically completed within 4 to 8 weeks. Scaled OEM manufacturing cycles range from 60 to 90 days, depending on mechanical configurations and specialized sensor procurement schedules.