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FT4222HQ-C-R 데이터시트(PDF) 17 Page - Future Technology Devices International Ltd. |
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FT4222HQ-C-R 데이터시트(HTML) 17 Page - Future Technology Devices International Ltd. |
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17 / 49 page ![]() Copyright © Future Technology Devices International Limited 17 FT4222H USB2.0 TO QUADSPI/I2C BRIDGE IC 1.3 Document No.: FT_001011 Clearance No.: FTDI#405 5.2.3 SCK Format Software can select any of four combinations of serial clock (SCK) phase and polarity. The clock polarity is specified by the CPOL control bit, which selects an active high or active low clock and has no significant effect on the transfer format. The clock phase (CPHA) control bit selects one of two fundamentally different transfer formats. The clock phase and polarity should be identical for the master SPI device and the communicating slave device. In some cases, the phase and polarity are changed between transfers to allow a master device to communicate with peripheral slaves having different requirements. The flexibility of the SPI system on the QuadSPI allows direct interface to almost any existing synchronous serial peripheral. Users can also use the FT4222_SPIMaster_Init API which is defined in the support library LibFT4222 to select the operating phase and polarity of SCK. 5.2.3.1 CPHA=0 Transfer Format Figure5.3 shows a timing diagram of an SPI transfer where CPHA is equal to 0. Two waveforms are shown for SCK: one for CPOL equal to 0 and another for CPOL equal to 1. The diagram may be interpreted as a master or slave timing diagram since the SCK, master in/slave out (MISO), and master out/slave in (MOSI) pins are directly connected between the master and the slave. The MISO signal is the output from the slave, and the MOSI signal is the output from the master. Figure 5.3 SCK Transfer Format when CPHA=0 5.2.3.2 CPHA=1 Transfer Format Figure 5.4 is a timing diagram of an SPI transfer where CPHA equal to 1. Two waveforms are shown for SCK: one for CPOL equal to 0 and another for CPOL equal to 1. The diagram may be interpreted as a master or slave timing diagram since the SCK, MISO, and MOSI pins are directly connected between the master and the slave. The MISO signal is the output from the slave, and the MOSI signal is the output from the master. The SS line is the slave select input to the slave. Figure 5.4 SCK Transfer Format when CPHA=1 |
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