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ADIS16445/PCBZ датащи(PDF) 20 Page - Analog Devices

номер детали ADIS16445/PCBZ
подробное описание детали  Compact, Precision Six Degrees of Freedom Inertial Sensor
PDF  22 Pages
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производитель  AD [Analog Devices]
домашняя страница  http://www.analog.com
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ADIS16445/PCBZ датащи(HTML) 20 Page - Analog Devices

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ADIS16445
Data Sheet
Rev. F | Page 20 of 22
ALARMS
Alarm 1 and Alarm 2 provide two independent alarms with
programmable levels, polarity, and data sources.
STATIC ALARM USE
The static alarms setting compares the data source selection
(ALM_CTRL[15:8]) with the values in the ALM_MAGx registers
listed in Table 36 and Table 37, using ALM_MAGx[15] to deter-
mine the trigger polarity. The data format in these registers
matches the format of the data selection in ALM_CTRL[15:8].
See Table 41, Alarm 1, for a static alarm configuration example.
Table 36. ALM_MAG1 (Base Address = 0x40), Read/Write
Bits
Description (Default = 0x0000)
[15:0]
Threshold setting; matches for format of
ALM_CTRL[11:8] output register selection
Table 37. ALM_MAG2 (Base Address = 0x42), Read/Write
Bits
Description (Default = 0x0000)
[15:0]
Threshold setting; matches for format of
ALM_CTRL[15:12] output register selection
DYNAMIC ALARM USE
The dynamic alarm setting monitors the data selection for a
rate-of-change comparison. The rate-of-change comparison is
represented by the magnitude in the ALM_MAGx registers over
the time represented by the number-of-samples setting in the
ALM_SMPLx registers, located in Table 38 and Table 39. See
Table 41, Alarm 2, for a dynamic alarm configuration example.
Table 38. ALM_SMPL1 (Base Address = 0x44), Read/Write
Bits
Description (Default = 0x0000)
[15:8]
Not used
[7:0]
Binary, number of samples (both 0x00 and 0x01 = 1)
Table 39. ALM_SMPL2 (Base Address = 0x46), Read/Write
Bits
Description (Default = 0x0000)
[15:8]
Not used
[7:0]
Binary, number of samples (both 0x00 and 0x01 = 1)
ALARM REPORTING
The DIAG_STAT[9:8] bits provide error flags that indicate an
alarm condition. The ALM_CTRL[2:0] bits provide controls
for a hardware indicator using DIO1 or DIO2.
Table 40. ALM_CTRL (Base Address = 0x48), Read/Write
Bits
Description (Default = 0x0000)
[15:12]
Alarm 2 data source selection
0000 = disable
0001 = XGYRO_OUT
0010 = YGYRO_OUT
0011 = ZGYRO_OUT
0100 = XACCL_OUT
0101 = YACCL_OUT
0110 = ZACCL_OUT
[11:8]
Alarm 1 data source selection (same as Alarm 2)
7
Alarm 2, dynamic/static (1 = dynamic, 0 = static)
6
Alarm 1, dynamic/static (1 = dynamic, 0 = static)
5
Alarm 2, polarity (1 = greater than ALM_MAG2)
4
Alarm 1, polarity (1 = greater than ALM_MAG1)
3
Data source filtering (1 = filtered, 0 = unfiltered)
2
Alarm indicator (1 = enabled, 0 = disabled)
1
Alarm indicator active polarity (1 = high, 0 = low)
0
Alarm output line select (1 = DIO2, 0 = DIO1)
Alarm Example
Table 41 offers an example that configures Alarm 1 to trigger when
filtered ZACCL_OUT data drops below 0.7 g, and Alarm 2 to
trigger when filtered ZGYRO_OUT data changes by more than
50°/sec over a 100 ms period, or 500°/sec2. The filter setting
helps reduce false triggers from noise and refines the accuracy
of the trigger points. The ALM_SMPL2 setting of 82 samples
provides a comparison period that is approximately equal to
100 ms for an internal sample rate of 819.2 SPS.
Table 41. Alarm Configuration Example
DIN
Description
0xC936,
ALM_CTRL = 0x36AF
0xC8AF
Alarm 2: dynamic, Δ-ZGYRO_OUT
(Δ-time, ALM_SMPL2) > ALM_MAG2
Alarm 1: static, ZACCL_OUT < ALM_MAG1, filtered data
DIO2 output indicator, positive polarity
0xC313,
0xC288
ALM_MAG2 = 0x1388 = 5000 LSB = 50°/sec
0xC10A,
0xC0F0
ALM_MAG1 = 0x0AF0 = 2800 LSB = 0.7 g
0xC652
ALM_SMPL2[7:0] = 0x52 = 82 samples
82 samples ÷ 819.2 SPS = ~100 ms



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