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P82C150AHT 데이터시트(PDF) 27 Page - NXP Semiconductors |
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P82C150AHT 데이터시트(HTML) 27 Page - NXP Semiconductors |
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27 / 36 page ![]() 1996 Jun 19 27 Philips Semiconductors Preliminary specification CAN Serial Linked I/O device (SLIO) with digital and analog port functions P82C150 11.3 External oscillator mode In this mode the P82C150 operates with an external clock instead with the on-chip RC-oscillator. Figure 14 shows the application with an external clock. In this mode the P82C150 can achieve bit rates below 20 kbit/s and above 125 kbit/s. The DPM pulse width is 4 × tCLK of the external clock. The corresponding CAN identifier bit at Port P0 is set to a logic 0. Therefore only eight P82C150 based CAN nodes operate within the same network in external oscillator mode. 11.3.1 NOTE The external oscillator mode is not the normal operation mode. 11.4 Using digital I/O port functions Figures 12 and 13, show the principle application for digital input and output. 11.5 Using DPM The simplest way to generate an analog voltage using the P82C150 is to apply an external low pass filter at one of the DPM (Distributed Pulse Modulation) outputs. The simplest implementation concept is a RC-filter of the first order (refer to Fig.15). Regarding the selection of the time constant (edge frequency) of this filter, a trade-off between minimizing of the ripple voltage for maximum accuracy and minimum of the settling time has to be considered. Fig.12 Example for digital input application. P82C150 +5 V P0 to P15 digital input MHA072 Fig.13 Example for digital output application. P82C150 digital output P0 to P15 MHA073 Fig.14 P82C150 in external oscillator mode. handbook, halfpage P82C150 reset MHA078 clock P0/CLK XMOD RST +5 V Fig.15 Example for DPM application. P82C150 analog output DPM1(2) P10(P4) V t V t MHA074 If the output is loaded by a resistive load, this will decrease the accuracy due to the voltage drop across the series resistor. In these cases a low value for the series resistor should be chosen. The repetition time of one DPM cycle can be derived from: t CYC 4096 f OSC ------------- = |
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