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CC1150-RTY1 Datasheet(PDF) 32 Page - Texas Instruments |
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CC1150-RTY1 Datasheet(HTML) 32 Page - Texas Instruments |
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32 / 67 page ![]() CC1150 SWRS037A Page 32 of 60 CSn goes low. The state machine will then go to the IDLE state. The SO pin on the SPI interface must be pulled low before the SPI interface is ready to be used; as described in Section 10.1 on page 19. Crystal oscillator start-up time depends on crystal ESR and load capacitances. The electrical specification for the crystal oscillator can be found in section 4.3 on page 8. 16.3 Voltage Regulator Control The voltage regulator to the digital core is controlled by the radio controller. When the chip enters the SLEEP state, which is the state with the lowest current consumption, the voltage regulator is disabled. This occurs after CSn is released when a SPWD command strobe has been sent on the SPI interface. The chip is then in the SLEEP state. Setting CSn low again will turn on the regulator and crystal oscillator and make the chip enter the IDLE state. On the CC1150, all register values (with the exception of the MCSM0.PO_TIMEOUT field) are lost in the SLEEP state. After the chip gets back to the IDLE state, the registers will have default (reset) contents and must be reprogrammed over the SPI interface. 16.4 Active Mode The active transmit mode is activated by the MCU by using the STX command strobe. The frequency synthesizer must be calibrated regularly. CC1150 has one manual calibration option (using the SCAL strobe), and three automatic calibration options, controlled by the MCSM0.FS_AUTOCAL setting: • Calibrate when going from IDLE to TX (or FSTXON) • Calibrate when going from TX to IDLE • Calibrate every fourth time when going from TX to IDLE The calibration takes a constant number of XOSC cycles; see Table 20 for timing details. When TX is active, the chip will remain in the TX state until the current packet has been successfully transmitted. Then the state will change as indicated by the MCSM1.TXOFF_MODE setting. The possible destinations are: • IDLE • FSTXON: Frequency synthesizer on and ready at the TX frequency. Activate TX with STX. • TX: Start sending preambles The SIDLE command strobe can always be used to force the radio controller to go to the IDLE state. Note that if the radio goes from TX to IDLE by issuing an SIDLE strobe, the automatic calibration-when-going-from-TX-to- IDLE will not be performed. 16.5 Timing The radio controller controls most timing in CC1150, such as synthesizer calibration and PLL lock. Table 20 shows timing in crystal clock cycles for key state transitions. Timing from IDLE to TX is constant, dependent on the auto calibration setting. The calibration time is constant 18739 clock periods. Power on time and XOSC start-up times are variable, but within the limits stated in Table 6. Note that in a frequency hopping spread spectrum or a multi-channel protocol the calibration time can be reduced from 721 µs to approximately 150 µs. This is explained in section 24.2. |
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