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P82C150AHT 数据表(PDF) 3 Page - NXP Semiconductors |
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P82C150AHT 数据表(HTML) 3 Page - NXP Semiconductors |
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3 / 36 page ![]() 1996 Jun 19 3 Philips Semiconductors Preliminary specification CAN Serial Linked I/O device (SLIO) with digital and analog port functions P82C150 1 FEATURES • Single-chip I/O device with CAN protocol controller • Meets CAN protocol specification version 2.0 A and B (passive) with restricted bit timing • Fully integrated clock oscillator (no crystal required) • 16 configurable digital or analog I/O port pins • Each of the port pins individually configurable via CAN-bus: port direction, port mode and event capture facilities for inputs (event driven or polling) • Up to sixteen digital inputs; automatic transmission of a CAN message on a change on inputs individually selectable • Up to sixteen 3-state outputs • Up to two quasi-analog outputs with 10-bit accuracy • 10-bit analog-to-digital converter with up to six multiplexed analog input channels (for accuracy see Section 11.6) • Two general purpose comparators • Bit rate from 20 kbit/s up to 125 kbit/s using internal oscillator • Automatic bit rate detection and calibration • Up to sixteen P82C150 nodes for one CAN-bus system • Four identifier bits programmable • SLIO functions controlled by a single intelligent node (‘host’) • Sleep-mode with wake-up via CAN-bus • Differential CAN-bus input comparator and CAN-bus output driver • Supply voltage: 5 V ±4% • Operating temperature: two ranges −40 to +85 °C and −40 to +125 °C. 2 GENERAL DESCRIPTION The P82C150 is a single-chip 16-bit I/O device including a Controller Area Network (CAN) protocol controller with automatic bit rate detection and calibration. It features 16 configurable I/O port pins with programmable direction, digital and analog modes. The P82C150 provides a configurable event capture facility supporting automatic transmission caused by a change on the port input pins. The clock oscillator requires no external components, thus, the cost of the CAN link is reduced significantly. The P82C150 is a very cost-effective way to increase the I/O capability of a microcontroller based CAN node as well as to reduce the amount and complexity of wiring. Advanced safety is provided by the CAN protocol. Applications: • Body electronics and instrumentation in automotive applications • Sensor/actuator interface in automotive and general industrial applications • Extension of I/O capabilities of microcontroller based CAN nodes. 3 ORDERING INFORMATION TYPE NUMBER PACKAGE TEMPERATURE RANGE ( °C) NAME DESCRIPTION VERSION P82C150 AFT SO28 plastic small outline package; 28 leads; body width 7.5 mm SOT136-1 −40 to +85 P82C150 AHT −40 to +125 |
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