參數(shù)資料
型號: LTC2411
廠商: Linear Technology Corporation
元件分類: ADC
英文描述: 2.7V to 5.5V Micropower 24-Bit Differential Σ△ Analog to Digital Converter(2.7V ~5.5V,微功耗,24位差分Σ△串行模數(shù)轉(zhuǎn)換器)
中文描述: 2.7V至5.5V微功耗24位差分Σ△模數(shù)轉(zhuǎn)換器(2.7?5.5V的,微功耗,24位差分Σ△串行模數(shù)轉(zhuǎn)換器)
文件頁數(shù): 21/24頁
文件大?。?/td> 268K
代理商: LTC2411
LTC2411
21
APPLICATIU
W
U
U
placed with a 10k 5% and a 10k 0.1% reference resistor,
the noise level introduced at the reference, at least at
higher frequencies, will be reduced. A filter can be intro-
duced into the network, in the form of one or more
capacitors, or ferrite beads, as long as the sampling pulses
are not translated into an error. The reference voltage is
also reduced, but this is not undesirable, as it will decrease
the value of the LSB, although, not the input referred noise
level.
The circuit shown in Figure 15 shows a more rigorous
example of Figure 14, with increased noise suppression
and more protection for remote applications.
Figure 16 shows an example of gain in the excitation circuit
and remote feedback from the bridge. The LTC1043s
provide voltage multiplication, providing
±
10V from a 5V
reference with only 1ppm error. The amplifiers are used at
unity-gain and, hence, introduce a very little error due to
gain error or due to offset voltages. A 1
μ
V/
°
C offset voltage
drift translates into 0.05ppm/
°
C gain error. Simpler alter-
natives, with the amplifiers providing gain using resistor
arrays for feedback, can produce results that are similar to
bridge sensing schemes via attenuators. Note that the
amplifiers must have high open-loop gain or gain error will
be a source of error. The fact that input offset voltage has
relatively little effect on overall error may lead one to use
low performance amplifiers for this application. Note that
the gain of a device such as an LF156, (25V/mV over
temperature) will produce a worst-case error of –180ppm
at a noise gain of 3, such as would be encountered in an
inverting gain of 2, to produce –10V from a 5V reference.
The error associated with the 10V excitation would be
–80ppm. Hence, overall reference error could be as high
as 130ppm, the average of the two.
Figure 18 shows a similar scheme to provide excitation
using resistor arrays to produce precise gain. The circuit
is configured to provide 10V and –5V excitation to the
bridge, producing a common mode voltage at the input to
the LTC2411 of 2.5V, maximizing the AC input range for
applications where induced 60Hz could reach amplitudes
up to 2V
RMS
.
Figure 15. Remote Half Bridge Sensing with Noise Suppression on Reference
Figure 14. Remote Half Bridge Interface
2411 F14
REF
+
REF
IN
+
IN
GND
V
CC
V
2.7V TO 5.5V
2
3
4
5
PLATINUM
100
RTD
R1
25.5k
0.1%
6
1
LTC2411
REF
+
REF
IN
GND
V
CC
5V
2
3
5
2411 F15
6
1
LTC2411
+
LTC1050
5V
PLATINUM
100
RTD
560
R3
10k
5%
R1
10k, 5%
R2
10k
0.1%
1
μ
F
IN
+
4
10k
10k
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LTC2411-1CMSPBF 制造商:Linear Technology 功能描述:ADC 24-Bit Differential and Ref. MSOP10