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ADAU1977WBCPZ-R7 Datenblatt(PDF) 33 Page - Analog Devices |
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ADAU1977WBCPZ-R7 Datenblatt(HTML) 33 Page - Analog Devices |
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33 / 68 page ![]() Data Sheet ADAU1977 Rev. C | Page 33 of 68 I2C Read and Write Operations Figure 37 shows the format of a single-word write operation. Every ninth clock pulse, the ADAU1977 issues an acknowledge by pulling SDA low. Figure 38 shows the format of a burst mode write sequence. This figure shows an example of a write to sequential single- byte registers. The ADAU1977 increments its address register after every byte because the requested address corresponds to a register or memory area with a 1-byte word length. Figure 39 shows the format of a single-word read operation. Note that the first R/W bit is 0, indicating a write operation. This is because the address still needs to be written to set up the internal address. After the ADAU1977 acknowledges the receipt of the address, the master must issue a repeated start command followed by the chip address byte with the R/W bit set to 1 (read). This causes the ADAU1977 SDA to reverse and begin driving data back to the master. The master then responds every ninth pulse with an acknowledge pulse to the ADAU1977. Figure 40 shows the format of a burst mode read sequence. This figure shows an example of a read from sequential single-byte registers. The ADAU1977 increments its address registers after every byte because the ADAU1977 uses an 8-bit register address. Figure 37 to Figure 40 use the following abbreviations: S = start bit P = stop bit AM = acknowledge by master AS = acknowledge by slave Figure 37. Single-Word I2C Write Format Figure 38. Burst Mode I2C Write Format Figure 39. Single-Word I2C Read Format Figure 40. Burst Mode I2C Read Format S CHIP ADDRESS, R/W = 0 AS DATA BYTE AS P REGISTER ADDRESS 8 BITS S CHIP ADDRESS, R/W = 0 AS AS AS REGISTER ADDRESS 8 BITS DATA BYTE 1 DATA BYTE 2 DATA BYTE 3 DATA BYTE 4 AS AS AS P ... CHIP ADDRESS, R/W = 0 DATA BYTE 1 S CHIP ADDRESS, R/W = 0 AS AS P REGISTER ADDRESS 8 BITS CHIP ADDRESS, R/W = 1 AS S DATA BYTE 1 S CHIP ADDRESS, R/W = 0 AM REGISTER ADDRESS 8 BITS S AS AS AS DATA BYTE 2 AM ... P CHIP ADDRESS, R/W = 1 |
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