Vendor: CAST Category: Protocol Bridge

AXI to APB Bus Bridge

The AXI2APB implements a bridge between AXI and APB buses, allowing the connection of peripherals with an APB interface to an AXI…

Overview

The AXI2APB implements a bridge between AXI and APB buses, allowing the connection of peripherals with an APB interface to an AXI bus.

The highly configurable core translates read or write transactions on the AXI bus to APB bus transactions. An AXI4 master, such a microprocessor, can connect to its AXI slave interface, and APB4, APB3, or APB2 peripherals can connect to its APB master port. Furthermore, the endianness and the data bus widths of the AXI and APB interfaces are independently configurable.

The user can also select the number of APB slaves and their address mapping at synthesis time. To ease core configuration, the core’s deliverables include a software application that enables users to configure the core via an intuitive HTML interface and automatically generate the corresponding Verilog parameter values.

The LINT-clean and scan-ready AXI2APB core is extensively verified and proven in multiple production designs. It can be mapped to any ASIC or FPGA, provided sufficient silicon resources are available, and it is delivered with everything required for successful implementation including a testbench and comprehensive documentation.

Key features

  • AMBA™ AXI to APB Bridge
    • Allows connecting APB slaves to an AXI master
    • Supports AXI4 host and APB4, APB3, or APB2 Slaves
  • Configuration Parameters
    • AXI data bus width and endianness
    • APB data-bus width (can be different than AXI data-bus width)
    • APB address-bus width 
    • Number of APB Slaves
    • Data width, base address, and address space per APB Slave
    • Use of write strobe (PSTRB) and error response (PSLVERR) signal per slave 
  • Easy to Use and Integrate 
    • Requires no run-time programming or initialization 
    • HTML configuration tool generates Verilog parameters 
    • Fully synchronous, scan-ready, LINT-clean design
    • Delivered with sample scripts, RTL testbench, and sample test cases

Block Diagram

Specifications

Identity

Part Number
AXI2APB
Vendor
CAST
Type
Silicon IP

Files

Note: some files may require an NDA depending on provider policy.

Provider

CAST
HQ: USA
CAST is a silicon intellectual property (IP) developer, aggregator, and integrator providing IP cores and subsystems since 1993. Our product line features both leading-edge and standards-based digital IP, including compression engines and image processing functions; 8051 microcontrollers and low-power 32-bit BA2X™ processors; industry-leading automotive interfaces; a complete family of SoC security modules; and a variety of peripherals, interfaces, and other IP cores. Our goal is to maximize IP benefits for our customers by delivering high quality, easy to use, cost effective solutions for real system development challenges. We minimize customer risk through rigorous development standards, complete deliverables with comprehensive documentation, and superlative customer support. We maximize customer value thorough competitive pricing and simple licensing—including royalty-free options—and long-term partnerships with all leading silicon providers and select technology leaders. Our product standards and business practices have been uniquely honed through successful projects with hundreds of systems designers since the very beginnings of the IP industry, making CAST one of the best IP partners available.

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Frequently asked questions about Protocol Bridge IP cores

What is AXI to APB Bus Bridge?

AXI to APB Bus Bridge is a Protocol Bridge IP core from CAST listed on Semi IP Hub.

How should engineers evaluate this Protocol Bridge?

Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this Protocol Bridge IP.

Can this semiconductor IP be compared with similar products?

Yes. Buyers can compare this product with similar semiconductor IP cores or IP families based on category, provider, process options, and structured technical specifications.

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