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ADIS16201/PCB датащи(PDF) 25 Page - Analog Devices |
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ADIS16201/PCB датащи(HTML) 25 Page - Analog Devices |
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25 / 32 page ![]() Data Sheet ADIS16201 Rev. C | Page 25 of 32 Once the ADIS16201 is placed into the power-down mode, it can only return to normal operation by timing out, a reset command (using the RST hardware control line), or by cycling the power applied to the part. Once awake, the seven data output registers can be scanned to determine what the state of the output registers were prior to powering down. Once the data is recovered, the device can be powered down again by writing a non-zero value to the PWR_MDE control register and starting the process over. Once the power-down time is complete, the recovery time for the ADIS16201 is approximately 2 ms. This recovery time is implemented within the device to allow for recovery of the ADC prior to performing the next data conversion. Note that the ND data bit within the seven data output control registers is cleared when the ADIS16201 is powered down. Likewise, the new data hardware I/O line is placed into an inactive state prior to being powered down. The DAC is placed into a power-down mode as well, which results in the DAC output dropping to 0 V during the power-down period. All control register settings are retained while powered down with the exception of the PWR_MDE control register, which is reset to 0 prior to power-down. PWR_MDE Register Definition Address Default1 Format Access 0x3B, 0x3A 0x0000 Binary R/W 1 Default is valid only until the first register write cycle. The power-down period is determined by multiplying the binary value represented by the data bits times the constant 0.5 seconds. This results in a variable power-down period of 0.5 seconds to 127.5 seconds with 0.5 seconds resolution in the setting. A setting of 0 disables the power-down mode, whereas any non-zero entry places the device in the power-down mode at the next update of the data output registers. The power-down register is volatile and is set to all 0s upon initial power-up and recovery from the power-down mode. Table 26. PWR_MDE Bit Descriptions Bit Description 15:8 Not used 7:0 Data bits STATUS FEEDBACK The status control register within the ADIS16201 is utilized in determining the present state of the device. The ability to monitor the device becomes necessary when and if the ADIS16201 has registered an alarm or error condition as indicated by the “alarm enable” (14) within the seven output data registers. The 16-bit status register is broken into two bytes. The three lower bits of the lower data byte are used to indicate which error condition exists, while the two lower bits of the upper data byte are utilized in indicating which alarm condition exists. STATUS Register Definition Address Default1 Format Access 0x3D, 0x3C 0x0000 N/A Read only 1 Default is valid only until the first register write cycle. The STATUS control register contains the alarm/error flags that indicate abnormal operating conditions. See Table 27 for each status bit definition. All flags are cleared upon the reading of the status register. The flags are set on a continuing basis as long as the error or alarm conditions persist. Table 27. STATUS Bit Descriptions Bit Description 15:10 Not used. 9 Alarm 2 status. 1: Active 0: Normal mode 8 Alarm 1 status. 1: Active 0: Normal mode 7:4 Not used. 3 SPI communications failure. 1: Error condition 0: Normal mode 2 Control register update failed. 1: Error condition 0: Normal mode 1 Power supply above 3.625 V. 1: Error condition 0: Normal mode 0 Power supply below 2.975 V. 1: Error condition 0: Normal mode COMMAND CONTROL The COMMAND control register is utilized in sending global commands to the ADIS16201 device. There are four separate commands that act as global commands in the controlling of the ADIS16201 operation. Any one of the four commands can be implemented by writing 1 to its corresponding bit location. The command control register has write-only capability and is volatile. Table 28 describes each of these global commands. COMMAND Register Definition Address Default1 Format Access 0x3F, 0x3E 0x0000 N/A Write only 1 Default is valid only until the first register write cycle. |
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