Jintide-C6P
High-performance secure server CPU with 64 cores and chip-level security monitoring
Product Overview
Description
The Jintide C6P is a high-performance secure server CPU featuring 64 cores and integrated chip-level security monitoring.
Built on advanced process technology, it delivers exceptional compute performance while providing hardware-based security through Mont-PrC and DSC technologies.
The CPU is fully compatible with x86 software ecosystems while adding unique security capabilities for trusted computing applications.
Product Series
Jintide
Primary Application
Secure data center servers
Key Features
- 64 high-performance x86 cores with SMT
- Mont-PrC chip-level security monitoring
- DSC dynamic security monitoring technology
- Hardware encryption acceleration (AES, RSA)
- Trusted execution environment support
- Full x86 software ecosystem compatibility
Specifications
| CPU Cores | 64 cores / 128 threads |
|---|---|
| Base Frequency | 2.5 GHz |
| Max Turbo | 3.5 GHz |
| Memory Support | DDR5-4800, 12 channels |
| PCIe Lanes | 128 lanes (Gen5) |
| TDP | 250W |
Applications
Secure data center servers
Electronic system design
Financial transaction processing
Electronic system design
Government secure computing
Electronic system design
Cloud infrastructure with security requirements
Electronic system design
Critical infrastructure protection
Electronic system design
FAE Expert Insights
"The Jintide C6P is unique approach to server security. Unlike software-based security solutions, the chip-level monitoring provided by Mont-PrC cannot be bypassed by malware or software attacks. I've worked with financial institutions and government agencies deploying these processors, and the security capabilities are impressive. Performance is comparable to mainstream x86 processors for most workloads. The hardware encryption acceleration provides significant performance benefits for encrypted workloads. One consideration: software optimized for specific x86 implementations may need validation, though standard applications run without modification. I highly recommend this platform for security-sensitive applications."
Unique chip-level security monitoring that cannot be bypassed by software attacks
— Dr. Sarah Liu, BeiLuo
Frequently Asked Questions
Is Jintide compatible with standard x86 software?
Yes, Jintide CPUs are fully compatible with standard x86 software ecosystems. They support all standard x86 instructions and run operating systems including Windows Server, Linux, and VMware without modification. The security features operate transparently and do not require software changes for basic functionality. However, to fully leverage the security monitoring capabilities, Montage provides software tools and APIs for security management. Standard applications, databases, and virtualization platforms run without modification. Performance is comparable to mainstream x86 processors for most workloads.
Jintide provides x86 compatibility with added security. Evaluate software compatibility for specialized applications.
What is Mont-PrC technology and how does it work?
Mont-PrC (Montage Pre-Check) is a proprietary security technology that monitors CPU behavior at the hardware level. It tracks instruction execution patterns, memory access behaviors, and bus transactions in real-time. When anomalous patterns are detected - such as unexpected privilege escalations, unusual memory access patterns, or anomalous instruction sequences - the system can trigger alerts or protective actions. This hardware-based monitoring operates independently of the CPU's software state, making it impossible for malware to disable or bypass the monitoring. Mont-PrC provides a foundation for trusted computing that software solutions cannot match.
Mont-PrC is ideal for applications requiring hardware-level threat detection. Contact LiTong for security architecture consultation.
How does Jintide performance compare to Intel Xeon and AMD EPYC?
Jintide C6P performance is comparable to mainstream x86 processors for most workloads. The 64-core configuration with 2.5 GHz base frequency delivers strong compute performance. Benchmarks show competitive performance in integer, floating-point, and memory-intensive workloads. The hardware encryption acceleration provides significant advantages for encrypted workloads. Some specialized workloads optimized for specific Intel or AMD implementations may show differences, but standard applications run at comparable speeds. The key differentiator is the hardware security monitoring, which adds minimal performance overhead (< 2%).
Jintide provides competitive performance with unique security features. Evaluate for your specific workload requirements.
What memory configurations are supported by Jintide C6P?
The Jintide C6P supports DDR5-4800 memory with 12 channels. Maximum memory capacity depends on DIMM type: RDIMM configurations support up to 3TB per socket (12 x 256GB); LRDIMM configurations support up to 6TB per socket (12 x 512GB). The platform supports both registered and load-reduced DIMMs, allowing flexibility in capacity and cost. Memory operates at 1.1V for improved power efficiency. The 12-channel architecture provides exceptional memory bandwidth for data-intensive applications.
Plan memory configuration based on capacity and bandwidth requirements. Contact LiTong for memory compatibility verification.
How do I deploy Jintide in my data center?
Deploying Jintide requires planning for both hardware integration and security configuration. Hardware integration follows standard x86 server design practices with attention to DDR5 memory routing and PCIe Gen5 signal integrity. Security configuration involves setting up Mont-PrC monitoring policies, configuring secure boot with TPM, and integrating with your security infrastructure. Montage provides reference designs, BIOS/firmware, and management tools. LiTong offers deployment support including design review, integration assistance, and security configuration guidance.
Contact LiTong for deployment support and reference designs. Our FAE team can assist with integration and security configuration.