Xiangcheng Electronics | The XC3588H and XC3576H motherboards feature LPDDR5 memory, delivering a hardcore upgrade that redefines the benchmark for high‑performance industrial control.
As edge AI computing, high-definition visual acquisition, and industrial multi-terminal collaborative applications become increasingly widespread, industrial control devices are facing ever more stringent demands for memory speed, operational power consumption, and parallel processing capabilities. Xiangcheng Electronics keeps pace with the latest advancements in domestic chip technology, and its… The XC3588H and XC3576H industrial‑grade motherboards now fully support LPDDR5 high‑speed, low‑power memory. , successfully completing the technological upgrade from traditional LPDDR4 memory to the next‑generation LPDDR5, while enhancing overall system computing performance and ensuring seamless software–hardware compatibility. This delivers a more stable, higher‑performance, and lower‑power embedded hardware solution for industries such as industrial automation, smart security, edge‑computing terminals, intelligent in‑vehicle systems, and self‑service kiosks.
Core Advantages of LPDDR5 Memory
LPDDR5, as a next-generation low-power, double-data-rate memory, is specifically designed for embedded industrial control and edge‑intelligence devices, seamlessly adapting to the demanding operating conditions of industrial environments:
1. Ultra-high transmission speeds and ample bandwidth—no strain: LPDDR5 boasts a significantly higher operating frequency, doubling data read/write speeds. Its ultra‑wide memory bandwidth effortlessly handles multiple video streams, AI model inference, and real‑time caching and forwarding of massive industrial datasets, eliminating performance lags and data latency.
2. Ultra-low operating voltage, with dual enhancements in energy efficiency and temperature control: Compared with the previous generation, memory power consumption has been significantly reduced, leading to a marked decrease in overall device heat dissipation. This results in lower thermal stress for sealed industrial‑grade enclosures and outdoor embedded devices, enabling stable 24/7 operation over extended periods without frequency throttling.
3. Multi-channel parallel architecture, powerful multitasking scheduling: Optimized memory partitioning architecture delivers enhanced parallel read/write performance, enabling simultaneous execution of multiple system applications, peripheral drivers, and data acquisition tasks, while background resident applications run smoothly without preempting resources.
4. Industrial-grade stable compatibility, ruggedly durable in harsh environments: Enhances signal anti‑interference performance, optimizes error‑correction mechanisms, and delivers robust resistance to extreme temperatures and electromagnetic interference. It is well‑suited for demanding industrial environments—including outdoor applications, vehicle‑mounted vibrations, and high‑interference workshop settings—meeting the stringent requirements for long‑term, stable operation in industrial control systems.
5. Large capacity with flexible scalability: Supports larger single‑die memory capacities, effortlessly meeting the high‑memory requirements of high‑end industrial control systems and enabling seamless integration with large‑scale applications, graphical user interfaces, and deep‑learning algorithm deployments.
A Direct Comparison of the Key Specifications of LPDDR4 and LPDDR5 Memory
Comparison Items |
LPDDR4 |
LPDDR5 |
Upgrade Benefits |
Operating voltage |
1.1V~1.2V |
1.05V~1.1V |
Lower voltage results in a significant reduction in overall power consumption. |
Data transfer rate |
Up to approximately 4267 MT/s |
Up to 7,500 MT/s |
Speed nearly doubled, with a quantum leap in read/write efficiency. |
Memory bandwidth |
Medium bandwidth |
Ultra-high bandwidth |
High-definition video and AI computing throughput at full capacity. |
Prefetching architecture |
8n prefetching |
16n prefetching |
Data read volume per operation has doubled, resulting in faster response times. |
Multitasking |
Normal scheduling |
Multi-group parallel scheduling |
Running multiple programs simultaneously is smoother. |
Overall device heating |
Slightly high |
Lower |
Long-term operation results in noticeable cooling, and the equipment is more durable. |
Compatible Scenarios |
Introduction to Industrial Control and Simple Data Acquisition |
High-end industrial control, edge AI, and visual intelligence terminals |
High-performance smart devices covering the entire industry |
Upgrade Compatibility |
Basic and General |
Backward compatibility with the LPDDR4 ecosystem |
Seamless transition between new and legacy projects |
The motherboard’s memory has been upgraded from LPDDR4 to LPDDR5, delivering a tangible leap in performance.
Following the LPDDR5 memory upgrade on the XC3588H and XC3576H industrial control motherboards, the devices have undergone a comprehensive qualitative leap in overall performance:
1. The overall processing capability of the entire system has been significantly enhanced: Leveraging the high-speed read/write capabilities of LPDDR5, and paired with Rockchip’s flagship RK3588 octa-core architecture and the RK3576 high-efficiency computing architecture, this platform delivers a significant boost in CPU performance and NPU AI inference speed. Model loading is faster, image recognition is more rapid, and command response is more timely, fully maximizing the operational efficiency of edge‑computing devices.
2. Seamless multi-device collaboration: Industrial control motherboards often connect to a wide range of peripherals, including serial ports, Ethernet interfaces, CAN buses, cameras, and sensors. The high bandwidth of LPDDR5 enables simultaneous data exchange with multiple devices, allowing synchronous acquisition, transmission, and analysis of multiple signals without interference, thereby enhancing the precision and efficiency of industrial coordinated control.
3. Comprehensive upgrade to device operational stability: With its low-power, low-heat design, it effectively slows down motherboard hardware degradation, reduces failures such as system crashes, restarts, and unexpected application exits, and perfectly meets the demands of continuous operation in industrial environments, significantly lowering subsequent maintenance and repair costs.
4. Greater room for product iteration: It reserves ample high‑performance hardware headroom, enabling customers to expand functionality, upgrade the system, and iterate algorithms without replacing the motherboard—simply by optimizing the software—thereby extending the device’s service life.
Widely adopted across industries, with proven strength and recognition.
The XC3588H and XC3576H industrial‑grade motherboards, equipped with LPDDR5 high‑speed memory, are widely applicable across numerous fields, including industrial control, edge computing gateways, smart vision systems, medical IoT devices, self‑service terminals, IoT gateways, and robot control. With four core advantages—high performance, exceptional stability, broad compatibility, and low power consumption—they have become the preferred solution for domestically produced embedded industrial‑control hardware.
Xiangcheng Electronics will continue to deepen its R&D and manufacturing of industrial‑control motherboards based on the Rockchip platform, relentlessly advancing hardware performance upgrades and technological innovation. Leveraging next‑generation LPDDR5 memory technology, we will help our customers develop high‑performance, highly competitive smart industrial‑control products, working together to forge a new future for China’s industrial‑control industry.
Recommended
Looking ahead, Xiangcheng Electronics will remain customer‑centric, uphold rigorous quality control as its unwavering standard, and continuously refine product quality. With robust testing procedures and uncompromising product excellence, we will ensure the stable implementation and long‑term, reliable operation of our customers’ projects.
The XC3588H and XC3576H industrial‑grade motherboards now fully support LPDDR5 high‑speed, low‑power memory, successfully completing the technological upgrade from traditional LPDDR4 to the next‑generation LPDDR5.
From the DEEPX accelerator card’s unparalleled visual‑computing performance to the RK182X coprocessor’s on‑device large‑model capabilities, the XC3588E motherboard redefines the benchmark for edge AI hardware with its core strengths of low power consumption, high expandability, and dual‑compute‑power compatibility.
The XC3588E high-performance industrial control motherboard is core hardware designed specifically for high-end intelligent applications, integrating a powerful computing module and dual CAN bus interfaces.