Improve Patient Outcomes with Fast & Secure Data Solutions
Medical imaging, diagnostics, and device security require real-time data processing with uncompromised reliability. Our IP cores are designed to support HIPAA-compliant systems and medical-grade device operations.
✅ Ultra-reliable FPGA architecture
✅ NVMe-based image storage
✅ Encrypted patient data handling
Key Applications
- NVMe-IP: Imaging machine data storage
- AES-IP: Patient data security
- USB3.0-IP: Medical record transfer
Unleash Real-Time Medical Imaging
Blazing-Fast FPGA Solution Records & Processes Data Instantly
Reimagine how medical imaging systems capture, store, and analyze data with Design Gateway’s real-time FPGA-based solution—designed to process image data at speeds exceeding 10GB/s, without relying on CPUs or OS layers. Perfect for MRI, CT, and ultrasound applications, this high-performance reference design eliminates latency, reduces hardware complexity, and enables instantaneous data access over the network for rapid diagnosis and better patient outcomes.


Key Advantages
- 10GB/s+ real-time NVMe SSD recording – Capture full-resolution image data without delay
- exFAT file reading over network – Enable instant access for diagnostics and analysis
- No CPU/OS required – Simplify architecture and improve reliability
- Pre-built reference design – Shorten development cycles and reduce risk
- Unlock FPGA computing – Accelerate advanced imaging and AI processing at the edge
Industrial Applications Use Cases for
AES-GCM 100G IP Core
Protecting Patient Privacy in Real-Time Medical Imaging Systems
In the realm of medical imaging, ensuring the privacy and security of patient data is not just critical—it’s mandatory. Design Gateway’s AES-GCM 100G IP Core, implemented on FPGA, provides a hardware-accelerated encryption engine that guarantees data confidentiality and integrity in compliance with stringent healthcare data regulations like HIPAA. Whether capturing high-resolution MRI or CT scan data, this solution enables real-time encryption and decryption of sensitive medical images at up to 100 Gbps, securing both storage and transmission. From edge devices to viewing workstations, the AES-GCM IP Core ensures end-to-end protection without compromising system performance or adding CPU load.

Telemedicine and Remote Surgery
Real-Time Precision with FPGA-Powered QUIC
In the world of telemedicine and remote surgery, milliseconds matter. Surgeons and medical teams require ultra-low latency, secure, and reliable data transmission to perform life-critical operations across distances. Traditional TCP-based networks often introduce delays and instability, but FPGA-accelerated QUIC IP Core technology ensures seamless edge-to-cloud connectivity with built-in TLS 1.3 security. This innovation empowers healthcare providers to deliver safe, real-time surgical procedures and remote diagnostics—even over unstable 5G/6G or satellite networks. Design Gateway’s FPGA solutions bring next-generation precision and trust to medical applications, enabling breakthroughs in remote patient care.

Secure Medical Connectivity with
FPGA-Based TLS 1.3 Encryption
Secure, real-time communication between medical devices and healthcare systems is crucial in modern healthcare environments. Design Gateway’s FPGA-based TLS 1.3 IP Core enhances medical device connectivity with high-speed encryption and robust authentication. Supporting both RSA and ECDSA certificates, our hardware solution ensures compliance with global standards such as HIPAA and IEC 62443 while reducing CPU load and power consumption. By offloading the TLS protocol to FPGA, medical device designers can achieve consistent low-latency performance and safeguard patient data without compromising system efficiency.

Examples of DG’s IP Core Applications

High resolution
CT scanner



X-ray


Medical
equipment control

Success Stories & Application Example
Key factors
- 1~2.5GB/s transfer speed over 10GbE & 25GbE from Machine to Storage server
- Simple and no CPU require for implementing NVMe Over TCP Host Controller on Medical Machine
- Reference design on FPGA development kit available to shorten development time


Key factors
- Low FPGA resource usage, high performance and energy efficient NVMe Host Controller
- Simple user interface, able to record Ultrasonic image directly to SSD without CPU
- Reference design on FPGA development kit available to shorten development time

