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MCP25612FD 数据表(PDF) 3 Page - Microchip Technology |
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MCP25612FD 数据表(HTML) 3 Page - Microchip Technology |
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3 / 26 page ![]() 2015 Microchip Technology Inc. DS20005409A-page 3 MCP25612FD 1.0 DEVICE OVERVIEW The MCP25612FD is a dual fully independent, CAN FD transceiver Fault tolerant device that serves as the interface between a CAN protocol controller and the physical bus. The MCP25612FD device provides differ- ential transmit and receive capability for the CAN pro- tocol controller, and is fully compatible with the ISO 11898-2 and ISO 11898-5 standards. The Loop Delay Symmetry is ensured to support data rates up to 8 Mbps for CAN FD (Flexible Data-Rate). The maximum propagation delay was improved to support longer bus length. Typically, each node in a CAN system must have a device to convert the digital signals generated by a CAN controller to signals suitable for transmission over the bus cabling (differential output). It also provides a buffer between the CAN controller and the high-voltage spikes that can be generated on the CAN bus by outside sources. 1.1 Mode Control Block The MCP25612FD supports two modes of operation between the two CAN transceivers independently: • Normal Mode • Standby Mode These modes are summarized in Table 1-1. 1.1.1 NORMAL MODE Normal mode is selected by applying low-level voltage to the STBYx pin. The driver block is operational and can drive the bus pins. The slopes of the output signals on CANHx and CANLx are optimized to produce minimal Electromagnetic Emissions (EME). The high-speed differential receiver is active. 1.1.2 STANDBY MODE The device may be placed in Standby mode by apply- ing a high-level voltage to the STBYx pin. In Standby mode, the transmitter and the high-speed part of the receiver are switched off to minimize power consump- tion. The low-power receiver and the wake-up filter blocks are enabled to monitor the bus for activity. The Receive pin (RXDX) will show a delayed representation of the CAN bus due to the wake-up filter. The CAN controller gets interrupted by a negative edge on the RXDX pin (Dominant state on the CAN bus). The CAN controller must put the MCP25612FD back into Normal mode, using the STBYx pin, in order to enable high-speed data communication. The CAN bus wake-up function requires VDDX to be in valid range. TABLE 1-1: MODES OF OPERATION Mode STBYx Pin RXDX Pin Low High Normal Low Bus is dominant Bus is recessive Standby High Wake-up request is detected No wake-up request detected |
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