參數(shù)資料
型號(hào): ADXL05
廠商: Analog Devices, Inc.
英文描述: Single Chip Accelerometer with Signal Conditioning(帶信號(hào)調(diào)節(jié)的單片加速計(jì))
中文描述: 單芯片加速度計(jì)信號(hào)調(diào)理(帶信號(hào)調(diào)節(jié)的單片加速計(jì))
文件頁數(shù): 11/20頁
文件大小: 292K
代理商: ADXL05
ADXL05
–11–
REV. B
BUFFER
AMP
0.1μF
+5V
V
OUT
0.022μF
C1
C1
+3.4V
REF
COM
1.8V
6
8
9
10
1
2
3
4
0.022μF
C2
PRE-AMP
V
PR
R1b
R3
V
IN–
OUTPUT SCALE FACTOR = (R1a + R1b)
PR
OUTPUT
V
PR
OUTPUT: 200mV/g
5
ADXL05
R1a
Figure 21. External Scale Factor Trimming
Setting the Accelerometer’s 0
g
Bias Level, AC Coupled
Response
If a dc (gravity) response is not required—for example in motion
sensing or vibration measurement applications—ac coupling can
be used between the preamplifier output and the buffer input as
shown in Figure 22. T he use of ac coupling between V
PR
and
the buffer input virtually eliminates any 0
g
drift and allows the
maximum buffer gain without clipping.
Resistor R1 and capacitor C4 together form a high pass filter
whose corner frequency is 1/(2
π
R1 C4). T his means that this
simple filter will reduce the signal from V
PR
by 3 dB at the
corner frequency, and it will continue to reduce it at a rate of
6 dB/octave (20 dB per decade) for signals below the corner
frequency.
Note that capacitor C4 should be a nonpolarized, low leakage
type. If a polarized capacitor is used, tantalum types are pre-
ferred, rather than electrolytic. With polarized capacitors, V
PR
should be measured on each device and the positive terminal of
the capacitor connected toward either V
PR
or V
IN
—whichever is
more positive
T he 0
g
offset level of the ADX L05 accelerometer is preset at
+1.8 V. T his can easily be changed to a more convenient level,
such as +2.5 V which, being at the middle of the supply voltage,
provides the greatest output voltage swing.
When using the ac coupled circuit of Figure 22, only a single re-
sistor, R2, is required to swing the buffer output to +2.5 V.
Since the “+” input of the buffer is referenced at +1.8 V, its
summing junction, Pin 10, is also held constant at +1.8 V.
T herefore, to swing the buffer’s output to the desired +2.5 V
0
g
bias level, its output must move up +0.7 V (2.5 V – 1.8 V =
0.7 V). T herefore, the current needed to flow through R3 to
cause this change, IR3, is equal to:
IR
3
=
0.7
Volts
R
3
inOhms
USING T HE INT E RNAL BUFFE R AMPLIFIE R T O VARY
T HE ACCE LE ROME T E R’S OUT PUT SCALE FACT OR
AND 0
g
BIAS LE VE L
T he ADX L05 accelerometer has an onboard buffer amplifier
that allows the user to change the output scale factor and 0
g
bias level.
T he output scale factor of an accelerometer is simply how many
volts output are provided per
g
of applied acceleration. T his
should not be confused with its resolution. T he resolution of the
device is the lowest
g
level the accelerometer is capable of mea-
suring. Resolution is principally determined by the device noise
and the measurement bandwidth.
T he 0
g
bias level is simply the dc output level of the accelerom-
eter when it is not in motion or being acted upon by the Earth’s
gravity.
Setting the Accelerometer’s Scale Factor
Figure 20 shows the basic connections for using the onboard
buffer amplifier to increase the output scale factor. T he nominal
output level in volts from V
PR
(the preamplifier output) is equal
to the
g
forces applied to the sensor (along its sensitive axis)
times 200 mV/
g
. T he use of the buffer is always recommended,
even if the preset scale factor is adequate, as the buffer helps
prevent any following circuitry from loading down the V
PR
output.
BUFFER
AMP
C3
0.1μF
+5V
V
OUT
0.022μF
C1
C1
+3.4V
REF
COM
1.8V
6
8
9
10
1
2
3
4
0.022μF
C2
PRE-AMP
V
PR
R1
R3
V
IN–
OUTPUT SCALE FACTOR = R1
PR
OUTPUT
V
PR
OUTPUT: 200mV/g
5
ADXL05
Figure 20. Basic Buffer Connections
In Figure 20, the output scale factor at Pin 9 (V
OUT
) is the out-
put at V
PR
times the gain of the buffer, which is simply the value
of resistor R3 divided by R1. Choose a convenient scale factor,
keeping in mind that the buffer gain not only amplifies the sig-
nal but any noise or drift as well. T oo much gain can also cause
the buffer to saturate and clip the output wave form.
T he circuit of Figure 20 is entirely adequate for many applica-
tions, but its accuracy is dependent on the pretrimmed accuracy
of the accelerometer and this will vary by product type and
grade. For the highest possible accuracy, an external trim is rec-
ommended. As shown by Figure 21, this consists of a potenti-
ometer, R1a, in series with a fixed resistor, R1b.
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