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MCP2155 Datasheet(PDF) 7 Page - Microchip Technology |
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MCP2155 Datasheet(HTML) 7 Page - Microchip Technology |
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7 / 52 page ![]() 2001-2013 Microchip Technology Inc. Preliminary DS21690B-page 7 MCP2155 2.0 DEVICE OPERATION The MCP2155 is a cost effective, low pin count (18- pin), easy to use device for implementing IrDA stan- dard wireless connectivity. The MCP2155 provides support for the IrDA standard protocol “stack” plus bit encoding/decoding. The Serial interface and IR baud rates are independantly selectable. 2.1 Power-up Any time that the device is powered up (parameter D003), the Power-up timer delay (parameter 33) occurs, followed by an Oscillator Start-up Timer (OST) delay (parameter 32). After these two delays complete, communication with the device may be initiated. This communication is from both the infrared transceiver’s side as well as the controller’s UART interface. 2.2 Device Reset The MCP2155 is forced into the reset state when the RESET pin is in the low state. After the RESET pin is brought to a high state, the Device Reset sequence occurs. Once the sequence completes, functional operation begins. 2.3 Clock Source The MCP2155 requires a clock source to operate. The frequency of this clock is 11.0592 MHz (electrical spec- ification parameter 1A). This clock can be supplied by either a crystal/resonator or as an external clock input. 2.3.1 CRYSTAL OSCILLATOR / CERAMIC RESONATORS A crystal or ceramic resonator can be connected to the OSC1 and OSC2 pins to establish oscillation (Figure 2-1). The MCP2155 oscillator design requires the use of a parallel cut crystal. Use of a series cut crys- tal may give a frequency out of the crystal manufactur- ers specifications. FIGURE 2-1: CRYSTAL OPERATION (OR CERAMIC RESONATOR) TABLE 2-1: CAPACITOR SELECTION FOR CERAMIC RESONATORS TABLE 2-2: CAPACITOR SELECTION FOR CRYSTAL OSCILLATOR 2.3.2 EXTERNAL CLOCK IN For applications where a clock is already available elsewhere, users may directly drive the MCP2155 pro- vided that this external clock source meets the AC/DC timing requirements listed in Section 4.3. Figure 2-2 below shows how an external clock circuit should be configured. FIGURE 2-2: EXTERNAL CLOCK INPUT OPERATION See Table 2-1 and Table 2-2 for recommended values of C1 and C2. C1 C2 XTAL OSC2 RS OSC1 RF To Internal MCP2155 see Note Logic Note: A series resistor may be required for AT strip cut crystals. Freq OSC1 (C1) OSC2 (C2) 11.0592 MHz 10 - 22 pF 10 - 22 pF Higher capacitance increases the stability of the oscil- lator but also increases the start-up time. These val- ues are for design guidance only. Since each resonator has its own characteristics, the user should consult the resonator manufacturer for appropriate values of external components. Freq OSC1 (C1) OSC2 (C2) 11.0592 MHz 15 - 30 pF 15 - 30 pF Higher capacitance increases the stability of the oscil- lator but also increases the start-up time. These val- ues are for design guidance only. RS may be required to avoid overdriving crystals with low drive level spec- ification. Since each crystal has its own characteristics, the user should consult the crystal manufacturer for appropriate values of external com- ponents. Clock From external MCP2155 OSC1 OSC2 Open system 21690B.book Page 7 Thursday, January 10, 2013 1:06 PM |
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