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MRF49XA-I/T 데이터시트(PDF) 64 Page - Microchip Technology |
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MRF49XA-I/T 데이터시트(HTML) 64 Page - Microchip Technology |
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64 / 102 page ![]() MRF49XA DS70590C-page 64 Preliminary © 2009-2011 Microchip Technology Inc. 3.15 Low Duty Cycle Mode In Low Duty Cycle mode, the receiver periodically wakes up for a short period and checks for the valid FSK transmission in progress. The FSK transmission is detected in the frequency range determined by CFSREG and the baseband filter bandwidth is determined by the RXCREG. The on time is automatically extended until the DQI indicates a good received signal condition. The following facts need to be considered while calculating the duty cycle on-time: • The crystal oscillator, the synthesizer and the PLL need time to start (see Table 5-7). • Depending on the DQTI, the device needs to receive few valid data bits before the DQI signal indicates a good signal condition (see Register 2-8). Selecting a short on-time can prevent the crystal oscillator from starting, or the DQI signal will not go high even when the received signal has a good quality. The MRF49XA is normally configured to work in FIFO mode. However, when the device periodically wakes up from Sleep mode, it switches to the Receive mode. If valid FSK data is received, the device sends an interrupt to the microcontroller and continues filling the RXFIFO. On completion of transmission, the FIFO is read out completely and all other interrupts are cleared. The device then returns to the Low-Power Consumption mode. Figure 3-13 depicts the Low-Power Duty Cycle mode sequence. The low duty cycle is calculated by using the DCMV (DCSREG<7:1>) and WTMV (WTSREG<7:0>) bits, as shown in Equation 3-3. The time cycle is determined by the WTSREG. EQUATION 3-3: The registers associated with Low Duty Cycle mode are: •STSREG (see Register 2-1) • GENCREG (see Register 2-2) • RCXREG (see Register 2-7) • BBFCREG (see Register 2-8) • PMCREG (see Register 2-13) • WTSREG (see Register 2-14) FIGURE 3-13: LOW-POWER DUTY CYCLE MODE SEQUENCE Note: In Duty Cycle mode, the RXCEN bit must be cleared and the WUTEN bit must be set in PMCREG. DC = (DCMV<7:1> x 2 + 1)/WTMV<7:0> x 100% Transmitter Receiver Receiving DQI IRO Microcontroller Operation FIFO Read FIFO Read B. Packet Packet A Packet A Packet A Packet A Packet A TWAKE-up B. B. B. B. Packet Start/Send Start/Send |
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