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ST92F124 数据表(PDF) 325 Page - STMicroelectronics |
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ST92F124 数据表(HTML) 325 Page - STMicroelectronics |
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325 / 429 page ![]() 325/429 CONTROLLER AREA NETWORK (bxCAN) 10.10 CONTROLLER AREA NETWORK (bxCAN) 10.10.1 Introduction This peripheral Basic Extended CAN, named bx- CAN, interfaces the CAN network. It supports the CAN protocol version 2.0A and B. It has been de- signed to manage a high number of incoming mes- sages efficiently with a minimum CPU load. It also meets the priority requirements for transmit mes- sages. For safety-critical applications, the CAN controller provides all hardware functions for supporting the CAN Time Triggered Communication option. 10.10.2 Main Features ■ Supports CAN protocol version 2.0 A, B Active ■ Bit rates up to 1Mbit/s ■ Supports the Time Triggered Communication option Transmission ■ Three transmit mailboxes ■ Configurable transmit priority ■ Time Stamp on SOF transmission Reception ■ Two receive FIFOs with three stages ■ Eight scalable filter banks ■ Identifier list feature ■ Configurable FIFO overrun ■ Time Stamp on SOF reception Time Triggered Communication Option ■ Disable automatic retransmission mode ■ 16-bit free running timer ■ Configurable timer resolution ■ Time Stamp sent in last two data bytes Management ■ Maskable interrupts ■ Software-efficient mailbox mapping at a unique address space 10.10.3 General Description In today’s CAN applications, the number of nodes in a network is increasing and often several net- works are linked together via gateways. Typically the number of messages in the system (and thus to be handled by each node) has significantly in- creased. In addition to the application messages, Network Management and Diagnostic messages have been introduced. – An enhanced filtering mechanism is required to handle each type of message. Furthermore, application tasks require more CPU time, therefore real-time constraints caused by message reception have to be reduced. – A receive FIFO scheme allows the CPU to be dedicated to application tasks for a long time pe- riod without losing messages. The standard HLP (Higher Layer Protocol) based on standard CAN drivers requires an efficient in- terface to the CAN controller. – All mailboxes and registers are organized in 16- byte pages mapped at the same address and se- lected via a page select register. Figure 142. CAN Network Topology CAN CAN High Low CAN CAN Rx Tx CAN Transceiver CAN Controller ST9 MCU CAN Bus Application 9 |
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