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CC1150-RTY1 Folha de dados(PDF) 29 Page - Texas Instruments |
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CC1150-RTY1 Folha de dados(HTML) 29 Page - Texas Instruments |
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29 / 67 page ![]() CC1150 www.ti.com SWRS037B – JANUARY 2006 – REVISED MARCH 2015 The calibration takes a constant number of XOSC cycles; see Table 5-6 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. 5.11.5 Timing The radio controller controls most timing in CC1150, such as synthesizer calibration and PLL lock. Table 5-6 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 Section 4.7. NOTE 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 5.19.2. Table 5-6. State Transition Timing DESCRIPTION XOSC PERIODS 26 MHz CRYSTAL Idle to TX/FSTXON, no calibration 2298 88.4 µs Idle to TX/FSTXON, with calibration ≈ 21037 809 µs TX to IDLE, no calibration 2 0.1 µs TX to IDLE, including calibration ≈ 18739 721 µs Manual calibration ≈ 18739 721 µs 5.12 Data FIFO The CC1150 contains a 64 byte FIFO for data to be transmitted. The SPI interface is used for writing to the TX FIFO. Section 10.5 contains details on the SPI FIFO access. The FIFO controller will detect underflow in the TX FIFO. When writing to the TX FIFO, it is the responsibility of the MCU to avoid TX FIFO overflow. This will not be detected by the CC1150. A TX FIFO overflow will result in an error in the TX FIFO content. Table 5-7. FIFO_THR Settings and the Corresponding FIFO Thresholds BYTES in TX FIFO_THR FIFO 0000 61 0001 57 0010 53 0011 49 0100 45 0101 41 0110 37 Copyright © 2006–2015, Texas Instruments Incorporated Detailed Description 29 Submit Documentation Feedback Product Folder Links: CC1150 |
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