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LP5523 Datenblatt(PDF) 16 Page - Texas Instruments |
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LP5523 Datenblatt(HTML) 16 Page - Texas Instruments |
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16 / 56 page ![]() SCL SDA data change allowed data valid data change allowed data valid data change allowed LP5523 SNVS550D – SEPTEMBER 2009 – REVISED MAY 2013 www.ti.com Data Validity The data on SDA line must be stable during the HIGH period of the clock signal (SCL). In other words, state of the data line can only be changed when clock signal is LOW. Figure 20. Data Validity Diagram Start and Stop Conditions START and STOP conditions classify the beginning and the end of the data transfer session. A START condition is defined as the SDA signal transitioning from HIGH to LOW while SCL line is HIGH. A STOP condition is defined as the SDA transitioning from LOW to HIGH while SCL is HIGH. The bus master always generates START and STOP conditions. The bus is considered to be busy after a START condition and free after a STOP condition. During data transmission, the bus master can generate repeated START conditions. First START and repeated START conditions are equivalent, function-wise. Transferring Data Every byte put on the SDA line must be eight bits long, with the most significant bit (MSB) being transferred first. Each byte of data has to be followed by an acknowledge bit. The acknowledge related clock pulse is generated by the master. The master releases the SDA line (HIGH) during the acknowledge clock pulse. The LP5523 pulls down the SDA line during the 9th clock pulse, signifying an acknowledge. The LP5523 generates an acknowledge after each byte has been received. There is one exception to the “acknowledge after every byte” rule. When the master is the receiver, it must indicate to the transmitter an end of data by not acknowledging (“negative acknowledge”) the last byte clocked out of the slave. This “negative acknowledge” still includes the acknowledge clock pulse (generated by the master), but the SDA line is not pulled down. After the START condition, the bus master sends a chip address. This address is seven bits long followed by an eighth bit which is a data direction bit (READ or WRITE). The LP5523 address is defined with ASEL0 and ASEL1 pins, and it is 32h when ASEL1 and ASEL0 are connected to GND. For the eighth bit, a “0” indicates a WRITE and a “1” indicates a READ. The second byte selects the register to which the data will be written. The third byte contains data to write to the selected register. I2C-Compatible Chip Address ASEL0 and ASEL1 pins configure the chip address for the LP5523 as shown in Table 1. Table 1. LP5523 Chip Address Configuration ASEL1 ASEL0 ADDRESS 8-BIT HEX ADDRESS (HEX) WRITE/READ GND GND 32 64/65 GND VEN 33 66/67 VEN GND 34 68/69 VEN VEN 35 6A/6B 16 Submit Documentation Feedback Copyright © 2009–2013, Texas Instruments Incorporated Product Folder Links: LP5523 |
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