參數(shù)資料
型號(hào): LTC2410C
廠商: Linear Technology Corporation
英文描述: 20-Bit Universal Bus Driver With 3-State Outputs 56-TVSOP -40 to 85
中文描述: 24位無(wú)與差分輸入和差分ADC的參考延遲
文件頁(yè)數(shù): 30/44頁(yè)
文件大?。?/td> 778K
代理商: LTC2410C
LTC2410
30
APPLICATIU
W
U
U
front of the LTC2410, the input dynamic current should be
considered (see Input Current section). In cases where
large effective RC time constants are used, an external
buffer amplifier may be required to minimize the effects of
dynamic input current.
Traditional high order delta-sigma modulators, while pro-
viding very good linearity and resolution, suffer from po-
tential instabilities at large input signal levels. The propri-
etary architecture used for the LTC2410 third order modu-
lator resolves this problem and guarantees a predictable
stable behavior at input signal levels of up to 150% of full
scale. In many industrial applications, it is not uncommon
to have to measure microvolt level signals superimposed
over volt level perturbations and LTC2410 is eminently
suited for such tasks. When the perturbation is differential,
the specification of interest is the normal mode rejection
for large input signal levels. With a reference voltage
V
REF
=5V, the LTC2410 has a full-scale differential input
range of 5V peak-to-peak. Figures 42 and 43 show mea-
surement results for the LTC2410 normal mode rejection
ratio with a 7.5V peak-to-peak (150% of full scale) input
signal superimposed over the more traditional normal mode
rejection ratio results obtained with a 5V peak-to-peak (full
scale) input signal. In Figure 42, the LTC2410 uses the
internal oscillator with the notch set at 60Hz (F
O
= LOW)
and in Figure 43 it uses the internal oscillator with the
notch set at 50Hz (F
O
= HIGH). It is clear that the LTC2410
rejection performance is maintained with no compromises
in this extreme situation. When operating with large input
signal levels, the user must observe that such signals do
not violate the device absolute maximum ratings.
Figure 42. Measured Input Normal Mode Rejection vs Input Frequency
Figure 43. Measured Input Normal Mode Rejection vs Input Frequency
INPUT FREQUENCY (Hz)
0
15
30
45
60
75
90
105 120 135 150 165 180 195 210 225 240
N
2410 F3a
0
–20
–40
–60
–80
–100
–120
V
CC
= 5V
REF
= 5V
REF
= GND
V
INCM
= 2.5V
F
O
= GND
T
A
= 25
°
C
V
IN(P-P)
= 5V
V
IN(P-P)
= 7.5V
(150% OF FULL SCALE)
INPUT FREQUENCY (Hz)
0
N
2410 F4a
0
–20
–40
–60
–80
–100
–120
V
CC
= 5V
REF
+
= 5V
REF
= GND
V
INCM
= 2.5V
F
O
= 5V
T
A
= 25
°
C
V
IN(P-P)
= 5V
V
IN(P-P)
= 7.5V
(150% OF FULL SCALE)
12.5
25
37.5
50
62.5
75
87.5 100 112.5 125 137.5 150 162.5 175 187.5 200
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