
Safe Checkout
Secure Payments
Fast Delivery
Order Today
Free Shipping
Across the US
Easy Returns
Hassle-Free
HP JC753-61201 1.04Tb/s Type B Fabric Module
- 1.04 Tb/s Fabric Throughput
- Type B Form Factor
- Designed for HP Networking Switches
- High-speed data interconnectivity
- Enhances network scalability and performance
- Robust build for enterprise environments
Free U.S. Ground Shipping
Typically 1-2 handling + 3-7 transit days
Purchase orders accepted
For government, enterprise, data center, and small business customers.
Bulk Purchase Inquiry
Volume pricing and availability
Product Overview
The HP JC753-61201 is a Type B Fabric Module designed for high-performance networking environments. It provides a substantial 1.04 Terabits per second throughput, enabling rapid data transfer and efficient network operation.
Technical Information
| Product Type | Fabric Module |
| Throughput | 1.04 Tb/s |
Additional Specifications
| Form Factor | Type B |
| Compatibility | HP Networking Switches |
Product Description
The HP JC753-61201 Type B Fabric Module is engineered to deliver exceptional performance within HP's networking infrastructure. With a massive 1.04 Terabits per second fabric throughput, this module is crucial for data centers and enterprise networks that demand high-speed, low-latency communication. Its Type B form factor ensures seamless integration with compatible HP switch chassis, facilitating easy installation and expansion. This module is designed to handle the most demanding workloads, supporting advanced features and protocols necessary for modern network convergence and virtualization. The high throughput capability directly translates to improved application performance and user experience. By incorporating the JC753-61201, organizations can significantly enhance their network's capacity and agility. It plays a vital role in backbone connectivity, inter-switch links, and core network functions, ensuring that data flows efficiently and reliably. This fabric module represents a key component for building scalable, high-performance, and resilient network architectures.
