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ADIS16480/PCBZ датащи(PDF) 17 Page - Analog Devices

номер детали ADIS16480/PCBZ
подробное описание детали  Ten Degrees of Freedom Inertial Sensor
PDF  40 Pages
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производитель  AD [Analog Devices]
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ADIS16480/PCBZ датащи(HTML) 17 Page - Analog Devices

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Data Sheet
ADIS16480
Rev. 0 | Page 17 of 40
ACCELERATION
The registers that use the x_ACCL_OUT format are the primary
registers for the accelerometer measurements (see Table 17,
Table 18, and Table 19). When processing data from these
registers, use a 16-bit, twos complement data format. Table 20
provides x_ACCL_OUT digital coding examples.
Table 17. X_ACCL_OUT (Page 0, Base Address = 0x1E)
Bits
Description
[15:0]
X-axis accelerometer data; twos complement,
±10 g range, 0 g = 0x0000, 1 LSB = 0.8 mg
Table 18. Y_ACCL_OUT (Page 0, Base Address = 0x22)
Bits
Description
[15:0]
Y-axis accelerometer data; twos complement,
±10 g range, 0 g = 0x0000, 1 LSB = 0.8 mg
Table 19. Z_ACCL_OUT (Page 0, Base Address = 0x26)
Bits
Description
[15:0]
Z-axis accelerometer data; twos complement,
±10 g range, 0 g = 0x0000, 1 LSB = 0.8 mg
Table 20. x_ACCL_OUT Data Format Examples
Acceleration
Decimal
Hex
Binary
+10 g
+12,500
0x30D4
0011 0000 1101 0100
+1.6 mg
+2
0x0002
0000 0000 0000 0010
+0.8 mg
+1
0x0001
0000 0000 0000 0001
0 mg
0
0x0000
0000 0000 0000 0000
−0.8 mg
−1
0xFFFF
1111 1111 1111 1111
−1.6 mg
−2
0xFFFE
1111 1111 1111 1110
−10 g
−12,500
0xCF2C
1100 1111 0010 1100
The MSB in x_ACCL_LOW has a weight of 0.4 mg, and each
subsequent bit has ½ the weight of the previous one.
Table 21. X_ACCL_LOW (Page 0, Base Address = 0x1C)
Bits
Description
[15:0]
X-axis accelerometer data; additional resolution bits
Table 22. Y_ACCL_LOW (Page 0, Base Address = 0x20)
Bits
Description
[15:0]
Y-axis accelerometer data; additional resolution bits
Table 23. Z_ACCL_LOW (Page 0, Base Address = 0x24)
Bits
Description
[15:0]
Z-axis accelerometer data; additional resolution bits
DELTA ANGLES
The delta angle outputs represent an integration of the gyro-
scope measurements and use the following formula for all
three axes (x-axis displayed):
(
)
S
S
n
x
n
x
S
x
f
RATE
DEC
t
t
1
_
;
2
,
1
,
+
=
+
×
=
+
ω
ω
θ
where:
ωx is the gyroscope, x-axis.
ΔtS is the time between samples.
When using the internal sample clock, fS is equal to 2.46 kHz.
When using the external clock option, the time between samples
is the time between active edges on the input clock signal, as
measured by the internal clock (252 MHz). See Table 67 for
more information on the DEC_RATE register. The registers
that use the x_DELTANG_OUT format are the primary
registers for the delta angle calculations. When processing
data from these registers, use a 16-bit, twos complement
data format (see Table 24, Table 25, and Table 26). Table 27
provides x_DELTANG_OUT digital coding examples.
Table 24. X_DELTANG_OUT (Page 0, Base Address = 0x42)
Bits
Description
[15:0]
X-axis delta angle data; twos complement,
±720° range, 0° = 0x0000, 1 LSB = 720°/215 = ~0.022°
Table 25. Y_DELTANG_OUT (Page 0, Base Address = 0x46)
Bits
Description
[15:0]
Y-axis delta angle data; twos complement,
±720° range, 0° = 0x0000, 1 LSB = 720°/215 = ~0.022°
Table 26. Z_DELTANG_OUT (Page 0, Base Address = 0x4A)
Bits
Description
[15:0]
Z-axis delta angle data; twos complement,
±720° range, 0° = 0x0000, 1 LSB = 720°/215 = ~0.022°
Table 27. x_DELTANG_OUT Data Format Examples
Angle (°)
Decimal
Hex
Binary
+720 × (215 − 1)/215
+32,767
0x7FFF
0111 1111 1111 1111
+1440/215
+2
0x0002
0000 0000 0000 0010
+720/215
+1
0x0001
0000 0000 0000 0001
0
0
0x0000
0000 0000 0000 0000
−720/215
−1
0xFFFF
1111 1111 1111 1111
−1440/215
−2
0xFFFE
1111 1111 1111 1110
−720
−32,768
0x8000
1000 0000 0000 0000



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