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LIS3MDL Datasheet(PDF) 17 Page - STMicroelectronics |
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LIS3MDL Datasheet(HTML) 17 Page - STMicroelectronics |
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17 / 33 page ![]() DocID024204 Rev 4 17/33 LIS3MDL Digital interfaces 5.1.1 I2C operation The transaction on the bus is started through a START (ST) signal. A START condition is defined as a HIGH-to-LOW transition on the data line while the SCL line is held HIGH. After this has been transmitted by the master, the bus is considered busy. The next byte of data transmitted after the start condition contains the address of the slave in the first seven bits and the eighth bit tells whether the master is receiving data from the slave or transmitting data to the slave. When an address is sent, each device in the system compares the first seven bits after a start condition with its address. If they match, the device considers itself addressed by the master. The Slave ADdress (SAD) associated to the LIS3MDL is 00111x0b, whereas the x bit is modified by the SDO/SA1 pin in order to modify the device address. If the SDO/SA1 pin is connected to the voltage supply, the address is 0011110b, otherwise, if the SDO/SA1 pin is connected to ground, the address is 0011100b. Data transfer with acknowledge is mandatory. The transmitter must release the SDA line during the acknowledge pulse. The receiver must then pull the data line LOW so that it remains stable low during the HIGH period of the acknowledge clock pulse. A receiver which has been addressed is obliged to generate an acknowledge after each byte of data received. The I2C embedded inside the LIS3MDL behaves like a slave device and the following protocol must be adhered to. After the START condition (ST) a slave address is sent, once a slave acknowledge (SAK) has been returned, an 8-bit sub-address (SUB) is transmitted: the 7 LSb represent the actual register address while the MSb enables address auto-increment. If the MSb of the SUB field is ‘1’, the SUB (register address) is automatically increased to allow multiple data read/write. The slave address is completed with a Read/Write bit. If the bit is ‘1’ (Read), a repeated START (SR) condition must be issued after the two sub-address bytes; if the bit is ‘0’ (Write) the master will transmit to the slave with direction unchanged. Table 11 explains how the SAD+read/write bit pattern is composed, listing all the possible configurations. Table 11. SAD+read/write patterns Command SAD[6:2] SAD[1] = SDO/SA1 SAD[0] R/W SAD+R/W Read 00111 0 0 1 00111001 (39h) Write 00111 0 0 0 00111000 (38h) Read 00111 1 0 1 00111101 (3Dh) Write 00111 1 0 0 00111100 (3Ch) Table 12. Transfer when master is writing one byte to slave Master ST SAD + W SUB DATA SP Slave SAK SAK SAK |
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