JWIPC Industrial Controllers: Powering the AI Era with Cutting-Edge Performance

JWIPC Industrial Controllers: Powering the AI Era with Cutting-Edge Performance
2024-11-22

As artificial intelligence continues to evolve, industry-wide intelligence has become the cornerstone of high-quality development. JWIPC’s PAS series industrial controllers, built on the NVIDIA Jetson Orin platform, deliver exceptional computational power and flexible expansion capabilities. These controllers are designed to support a wide range of AI applications, including machine vision, robotic control, V2X roadside MEC, medical imaging inference, and many other specialized use cases.

The PAS series integrates NVIDIA’s AI platform, JetPack 6.0, which provides a robust AI development environment. JetPack includes tools such as CUDA, TensorRT, cuDNN, and VPI, and supports a variety of NVIDIA Jetson software tools, including Isaac, DeepStream, and VLM. By incorporating and supporting these advanced technologies and tools, the PAS series offers users a comprehensive, efficient, and convenient solution for industrial AI applications.

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Machine Vision

Defect Detection in Manufacturing

In industries such as 3C electronics, semiconductors, displays, textiles, and automotive electronics, product defect detection is one of the most common applications of machine vision. JWIPC's PAS-6101 series offers advanced solutions for these scenarios.

Unmatched AI Computing Power

The PAS-6101 series delivers up to 275 TOPS of AI inference performance, powered by 2,048 CUDA cores and 64 Tensor cores. This enables real-time parallel processing of high-resolution images. For high-density product defect detection—such as surface flaws on chips or edge wear in electronic devices—the system ensures rapid and precise analysis of every detail, achieving highly accurate defect identification.

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High Expandability for Versatile Vision Capabilities

The PAS-6101 is equipped with a range of I/O interfaces, including USB, CAN, COM, GPIO, and AUDIO ports. These support peripherals like ToF cameras, robotic arms, ultrasonic radars, sensors, surveillance monitors, voice broadcasters, and remote clients. This versatility enables applications such as intelligent recognition, fast sorting, depth measurement, environmental perception, obstacle avoidance, light source control, and remote monitoring and operation. Additionally, PCIe and M.2 interfaces enhance the system's expandability to accommodate evolving needs.

Integrated Vision Language Model (VLM)

The PAS-6101 supports integration with a Vision Language Model (VLM), combining the strengths of Transformer-based vision technology and natural language processing. VLM enables efficient multimodal learning, allowing it to detect objects in images, identify their locations and categories, and swiftly execute related vision tasks.

JWIPC’s PAS-6101 series redefines machine vision for industrial applications, offering powerful AI capabilities, flexible expandability, and state-of-the-art vision technology to meet the most demanding manufacturing requirements.


Intelligent Sorting

In industries such as logistics and packaging, automated production lines rely on machine vision systems to classify and sort items. These tasks are achieved through technologies like visual recognition, sensor measurement, and robotic arm operation, allowing the system to rapidly identify item characteristics such as color, type, size, volume, and orientation. This information is then relayed to robotic arms for precise sorting.

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Ultra-Fast Image Processing

Powered by robust GPU acceleration, the JWIPC PAS-6101 series can process image data from multiple cameras in real time, even on high-speed production lines. Leveraging advanced AI algorithms, the system analyzes item features with 275 TOPS of AI computing power, ensuring millisecond-level recognition accuracy. This makes the PAS-6101 ideal for demanding, high-throughput sorting tasks.

NVIDIA DeepStream Support

The PAS-6101 supports NVIDIA DeepStream, an AI-driven toolkit for multi-sensor processing and video/image analytics. DeepStream leverages GPU acceleration to enhance video analysis capabilities from edge devices to the cloud. Its core functionality includes processing large data streams in real time and utilizing deep learning models for traditional computer vision tasks such as object detection and classification, significantly improving sorting efficiency and accuracy.

Flexible Wireless Connectivity

Seamless collaboration between devices is crucial in modern production lines. The PAS-6101 supports Wi-Fi and Bluetooth modules, enabling wireless communication with other devices. This facilitates easy integration into Industrial IoT (IIoT) systems, supporting remote monitoring and control for enhanced operational flexibility.

With its advanced image processing, cutting-edge AI tools, and wireless connectivity, the JWIPC PAS-6101 series empowers intelligent sorting systems to meet the evolving needs of modern logistics and packaging industries.


Robotic Control

The JWIPC PAS-6102 series robotic controllers combine exceptional computational power and versatile interface configurations, making them an ideal choice for applications such as AMR (Autonomous Mobile Robots) and industrial robotic arms.

High-Performance Computing Power

Equipped with the Jetson AGX Orin module, the PAS-6102 offers 200 TOPS (32GB version) and 275 TOPS (64GB version) of INT8 computational performance. With an Ampere architecture GPU featuring 1,792 or 2,048 CUDA cores, the PAS-6102 seamlessly handles multi-sensor data and executes complex AI algorithms. This enables real-time environmental perception, path planning, and dynamic obstacle avoidance for various robotic systems, ensuring high precision, efficiency, and rapid response to commands during operation.

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Support for Multi-Sensor and Camera Integration

The PAS-6102 supports up to 8 GMSL cameras, which provide 2D image data, 3D imagery, and positional information. This capability enhances AMR systems’ ability to perceive and identify the surrounding environment, making it suitable for applications requiring multi-channel video input.

NVIDIA Isaac Platform Integration

The PAS-6102 fully supports the NVIDIA Isaac platform, offering specialized tools and solutions for accelerating robotic development and deployment:

  • Isaac Perceptor: Designed for mobile robots, it enables 360-degree multi-camera vision, enhancing 3D spatial awareness and obstacle avoidance precision.
  • Isaac Manipulator: Provides modular AI functionality for robotic arms, leveraging Transformer-based foundational models and GPU-accelerated libraries for smoother and more efficient path planning and grasp pose generation.
  • Isaac Sim: A virtual environment for designing, simulating, testing, and training AI-powered robots. It generates synthetic data, trains robotic strategies, and creates tailored application scenarios as needed.

Comprehensive Sensor Fusion

The PAS-6102 features CAN bus, RS485/232, four USB 3.0 ports, and dual Ethernet ports, enabling integration with a wide array of sensors such as radar and ultrasonic devices. This allows the system to deliver advanced data fusion capabilities for comprehensive perception in complex environments.

The JWIPC PAS-6102 series redefines robotic control by integrating cutting-edge computational power, multi-sensor support, and advanced AI tools, empowering the next generation of intelligent and autonomous robotic systems.


V2X Roadside MEC

The JWIPC PAS-6101 V2X Roadside MEC offers robust AI inference and data processing capabilities, making it an ideal solution for next-generation Vehicle-to-Everything (V2X) applications. Designed for seamless integration into intelligent transportation systems, it delivers reliable performance for real-time traffic analysis, pedestrian detection, lane departure warnings, and more.

Powerful AI Inference and Data Processing

Equipped with NVIDIA Jetson AGX Orin (32GB/64GB) modules, the PAS-6101 achieves 200/275 TOPS of AI computing power, enabling it to process massive volumes of vehicle and road data simultaneously. It supports multithreaded AI inference for tasks such as identifying pedestrians, vehicle recognition, adapting to changing weather conditions, and detecting potential safety risks.

  • JetPack SDK Compatibility: The system integrates with the NVIDIA JetPack SDK and the extensive Jetson ecosystem, offering versatile AI tools and resources for high-efficiency object detection and scene analysis.
  • High-Speed Data Handling: The device is equipped with 32GB or 64GB of LPDDR5 memory, ensuring bottleneck-free processing of concurrent sensor data streams.
  • Stable Network Connectivity: With support for 10/100/1000 Mbps wired connections, the PAS-6101 ensures low-latency, high-speed data transmission to traffic control centers for accurate and timely decision-making.

Reliable 24/7 Operation in Challenging Environments

Built to meet rigorous industrial standards, the PAS-6101 operates reliably in environments with significant temperature fluctuations and limited ventilation.

  • Wide Operating Temperature Range: Ensures stable performance in extreme conditions.
  • Efficient Thermal Management: Advanced heat dissipation capabilities keep the system cool during intensive computational tasks, enabling 24/7 operation without interruptions.

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Support for Diverse Perception and Data Collection Devices

  • COM Interfaces (RS232/RS485): Enables communication with industrial-grade devices such as radar and LiDAR sensors for enhanced traffic perception and complex data feedback in V2X systems.
  • USB 3.0 Ports: Supports multiple high-resolution cameras for real-time collection of traffic environment data, ensuring a comprehensive understanding of roadway conditions.

The JWIPC PAS-6101 V2X Roadside MEC is a reliable and powerful solution tailored to meet the demands of modern smart transportation systems. Its advanced AI capabilities, robust hardware design, and extensive compatibility with sensing technologies ensure smooth integration into V2X ecosystems, paving the way for safer and more efficient transportation networks.


Medical Imaging Inference

The JWIPC PAS-6101 controller leverages NVIDIA Jetson Orin modules and the JetPack SDK to deliver cutting-edge AI performance for medical imaging applications. Its powerful computing capabilities enable faster and more accurate image analysis, supporting a wide range of diagnostic and therapeutic scenarios.

 

AI + CT/DR/MRI Imaging

With high-performance deep learning and inference capabilities, the PAS-6101 accelerates the processing of vast amounts of medical imaging data.

· Real-Time Diagnostics: Enables rapid and precise image analysis for diagnostic purposes.

· Enhanced Image Reconstruction: Supports advanced applications such as intelligent CT image reconstruction or noise reduction in MRI scans, improving the clarity and diagnostic value of medical images.

 

AI + Endoscopy/Ultrasound

The PAS-6101, powered by its high-performance GPU and NPU, paired with NVIDIA DeepStream, transforms real-time imaging in endoscopic and ultrasound procedures:

· Endoscopic Surgery: Produces highly detailed, real-time images during procedures, enhancing surgical precision and reducing operational risk.

· Ultrasound Imaging: AI acceleration improves image quality by enhancing resolution and identifying anomalies in real-time. This ensures comprehensive support for medical teams in critical scenarios.

 

AI + Surgical Robots

By combining the PAS-6101’s efficient AI computational power with NVIDIA software libraries (including TensorRT, cuDNN, and DeepStream), surgical robots achieve unparalleled performance:

· Enhanced Decision-Making: Real-time processing of surgical environments ensures faster and safer decision-making.

· Precision in Complex Procedures: Excels in micro-invasive surgeries by providing accurate perception, planning, and control, thereby improving patient outcomes.

 

The PAS-6101 controller is a transformative tool in medical imaging and robotic-assisted surgeries, enabling real-time analysis, superior image enhancement, and unprecedented precision. By integrating advanced AI technology into healthcare, it paves the way for safer, more efficient, and highly innovative medical practices.





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