Details, datasheet, quote on part number: 592
Part592
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Features, Applications

Product Concept & Application Laboratory Hamburg, F. R. Germany

©Philips Export B.V. All rights are reserved. Reproduction in whole or in part is prohibited without the prior written consent of the copyright owner. The information presented in this document does not form part of any quotation or contract, is believed to be accurate and reliable and may be changed without notice. No liability will be accepted by the publisher for any consequence of its use. Publication thereof does not convey nor imply any license under patent- or other industrial or intellectual property rights.

Summary: The integrated circuit P8xC592 from Philips is a single-chip high performance microcontroller designed for use in automotive and general industrial applications. is a high-end derivative of the 80C51 family CMOS microcontrollers. In addition to the 80C51 standard features the P8xC592 provides a number of dedicated hardware features for sophisticated control applications. It includes timers, A/D converter, PWM output, UART and a CAN protocol controller (CAN = Controller Area Network) for serial communication. The P8xC592 covers the complete CAN specification, offering important features such as multi-master serial communication capability with a high number of participating network nodes, programmable data transmission rate to 1 Mbit/s and powerful error handling. This technical publication puts special emphasis on CAN applications of the P8xC592. The application note provides a simple circuit example for a CAN module built with a P8xC592. Furthermore flowcharts are discussed to let the reader become familiar with the software aspects of CAN communication. A practical example shows that there is very little CPU load for the control of CAN communication.

Revision history: 92-07-02: 1st release 2nd release: pages 6,11,31,34 revised

Table of Contents: Introduction. 2 P8xC592 Features. 3 Hardware Aspects. 5 Main Circuitry. 5 Transceiver: Physical Interface to the Transmission Medium. 6 On-chip Transceiver Components. 7 Software Aspects. 8 CAN Registers. On-chip Interface Between CPU and CAN Controller. CAN Related Special Function Registers. Auto Address Increment. High Speed DMA. Basic Functions for CAN Communication. Initialization. Transmission. Reception. Sleep Mode. Comparator Switches. Control of CAN Communication. Interrupts. Polling. CPU Load for CAN - a Real Example. Calculation of the CPU Load for CAN Communication. CPU Load. Spare Time.

Development Tools. 27 Philips P8xC592 Evaluation Board. P8xC592 Evaluation Board Hardware. P8xC592 Evaluation Board Software. In-Circuit-Emulators. Philips Stand-alone Debug System (SDS). ICE from Other Vendors. Programming Support for P87C592 (EPROM). Debug Tools for CAN communication.

Appendix A.1 A.2 Example program for investigation of CPU load. 32 Receiver part. 32 Transmitter part. 35


 

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