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标题: 故障保护高速CAN芯片 [打印本页]

作者: 小青子    时间: 2013-3-4 10:34     标题: 故障保护高速CAN芯片

Fail-Safe High Speed CAN Chip

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UJA1066故障保护系统基础芯片(SBC)采用了一个控制器区域网络(CAN)接口,替代了电子控制单元(ECU)常用的基本分立元器件。故障保护SBC支持所有的,采用高速CAN作为主网络接口的,控制各种电源和传感器外设的网络应用程序。故障保护SBC包含了以下集成器件:

•高速CAN收发器,可互操作和向下兼容CAN收发器TJA1041和TJA1041A,兼容ISO 11898-2和ISO11898-5标准(筹备中)

•先进的独立看门狗

•专用电压调节器,用于微控制器和CAN收发器

•串行外设接口(全双工)

•本地唤醒输入端口

• Inhibit/limp-home输出端口

The UJA1066 fail-safe System Basis Chip (SBC) replaces basic discrete components which are common in every Electronic Control Unit (ECU) with a Controller Area Network (CAN) interface. The fail-safe SBC supports all networking applications that control various power and sensor peripherals by using high-speed CAN as the main network interface. The fail-safe SBC contains the following integrated devices:

High-speed CAN transceiver, interoperable and downward compatible with CAN transceiver TJA1041 and TJA1041A, and compatible with the ISO 11898-2 standard and the ISO 11898-5 standard (in preparation)

Advanced independent watchdog

Dedicated voltage regulators for microcontroller and CAN transceiver

Serial peripheral interface (full duplex)

Local wake-up input port

Inhibit/limp-home output port

In addition to the advantages of integrating these common ECU functions in a single package, the fail-safe SBC offers an intelligent combination of system-specific functions such as:

Advanced low-power concept

Safe and controlled system start-up behavior

Advanced fail-safe system behavior that prevents any conceivable deadlock

Detailed status reporting on system and subsystem levels

The UJA1066 is designed to be used in combination with a microcontroller that incorporates a CAN controller. The fail-safe SBC ensures that the microcontroller is always started up in a defined manner. In failure situations, the fail-safe SBC will maintain microcontroller functionality for as long as possible to provide a full monitoring and software-driven fallback operation.

The UJA1066 is designed for 14 V single power supply architectures and for 14 V and 42 V dual power supply architectures.

Article Sources: NXP Semiconductors

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详见:http://news.eccn.com/news_2013022805120271.htm




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