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CC1150-RTY1 Datasheet(PDF) 27 Page - Texas Instruments |
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CC1150-RTY1 Datasheet(HTML) 27 Page - Texas Instruments |
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27 / 67 page ![]() CC1150 SWRS037A Page 27 of 60 IOCFGx.GDOx_CFG=0x03 configurations are associated with the TX FIFO. See Table 24 for more information. b) SPI Polling The PKTSTATUS register can be polled at a given rate to get information about the current GDO2 and GDO0 values respectively. The TXBYTES register can be polled at a given rate to get information about the number of bytes in the TX FIFO. Alternatively, the number of bytes in the TX FIFO can be read from the chip status byte returned on the MISO line each time a header byte, data byte, or command strobe is sent on the SPI bus. It is recommended to employ an interrupt driven solution due to that when using SPI polling, there is a small, but finite, probability that a single read from registers PKTSTATUS and TXBYTES is being corrupt. The same is the case when reading the chip status byte. This is explained in the CC1150 Errata Notes [8] Refer to the TI website for SW examples [12] 14 Modulation Formats CC1150 supports amplitude, frequency and phase shift modulation formats. The desired modulation format is set in the MDMCFG2.MOD_FORMAT register. Optionally, the data stream can be Manchester coded by the modulator. This option is enabled by setting MDMCFG2.MANCHESTER_EN=1. Manchester encoding cuts the effective data rate in half, and thus Manchester is not supported for 500 kBaud. Further note that Manchester encoding is not supported at the same time as using the FEC/Interleaver option or when using MSK modulation. 14.1 Frequency Shift Keying CC1150 has the possibility to use Gaussian shaped 2_FSK (GFSK). The 2-FSK signal is then shaped by a Gaussian filter with BT=1, producing a GFSK modulated signal. This spectrum-shaping feature improves adjacent channel power (ACP) and occupied bandwidth. In “true” 2-FSK systems with abrupt frequency shifting, the spectrum is inherently broad. By making the frequency shift “softer”, the spectrum can be made significantly narrower. Thus, higher data rates can be transmitted in the same bandwidth using GFSK. The frequency deviation is programmed with the DEVIATION_M and DEVIATION_E values in the DEVIATN register. The value has an exponent/mantissa form, and the resultant deviation is given by: E DEVIATION xosc dev M DEVIATION f f _ 17 2 ) _ 8 ( 2 ⋅ + ⋅ = The symbol encoding is shown in Table 19. Format Symbol Coding 2-FSK/GFSK ‘0’ – Deviation ‘1’ + Deviation Table 19: Symbol Encoding for 2-FSK/GFSK Modulation 14.2 Minimum Shift Keying When using MSK 1, the complete transmission (preamble, sync word and payload) will be MSK modulated. Phase shifts are performed with a constant transition time. The fraction of a symbol period 1 Identical to offset QPSK with half-sine shaping (data coding may differ) used to change the phase can be modified with the DEVIATN.DEVIATION_M setting. This is equivalent to changing the shaping of the symbol. Note that when using MSK, Manchester encoding must be disabled by setting MDMCFG2.MANCHESTER_EN=0 . Further note that the MSK modulation format implemented in CC1150 inverts the data compared to e.g. signal generators. |
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