PI7C8150BMAManufacturer: PREICOM ASYNCHRONOUS 2-PORT PCI-TO-PCI BRIDGE | |||
| Partnumber | Manufacturer | Quantity | Availability |
|---|---|---|---|
| PI7C8150BMA | PREICOM | 50 | In Stock |
Description and Introduction
ASYNCHRONOUS 2-PORT PCI-TO-PCI BRIDGE The **PI7C8150BMA** is a high-performance PCI-to-PCI bridge controller designed to facilitate seamless communication between PCI buses in embedded systems, servers, and networking applications. As a versatile bridging solution, it enables system designers to expand PCI bus segments while maintaining low latency and high data throughput.  
This component supports **32-bit PCI interfaces** with operating frequencies of up to **66 MHz**, ensuring efficient data transfer between multiple PCI domains. It complies with **PCI Local Bus Specification 2.3**, providing backward compatibility with legacy systems while optimizing performance for modern applications. The PI7C8150BMA integrates advanced features such as **dual address cycle (DAC) support**, **delayed transactions**, and **arbitration fairness**, enhancing system reliability and efficiency.   With its compact **128-pin LQFP package**, the PI7C8150BMA is well-suited for space-constrained designs. Its low-power architecture makes it ideal for energy-sensitive applications without compromising performance. Additionally, the bridge supports **plug-and-play functionality**, simplifying system configuration and reducing development time.   Engineers often utilize the PI7C8150BMA in industrial automation, telecommunications, and data storage systems where PCI expansion is required. Its robust design and compliance with industry standards ensure dependable operation in demanding environments.   For detailed technical specifications, refer to the official datasheet to ensure proper integration within your system architecture. |
|||
Application Scenarios & Design Considerations
ASYNCHRONOUS 2-PORT PCI-TO-PCI BRIDGE
|
|||
For immediate assistance, call us at +86 533 2716050 or email [email protected]
Specializes in hard-to-find components chips