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LTC2360HS6 データシートの表示(PDF) - Linear Technology

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LTC2360HS6 Datasheet PDF : 20 Pages
First Prev 11 12 13 14 15 16 17 18 19 20
LTC2360/LTC2361/LTC2362
APPLICATIONS INFORMATION
Signal-to-Noise plus Distortion Ratio
The signal-to-noise plus distortion ratio (SINAD) is the
ratio between the RMS amplitude of the fundamental
input frequency to the RMS amplitude of all other fre-
quency components at the A/D output. The output is band
limited to frequencies from above DC and below half the
sampling frequency. Figure 6 shows a typical FFT with a
500kHz sampling rate and a 248kHz input. The dynamic
performance is excellent for input frequencies up to and
beyond the Nyquist frequency of 250kHz.
Effective Number of Bits
The effective number of bits (ENOB) is a measurement of
the resolution of an ADC and is directly related to SINAD
by the equation:
ENOB = SINAD – 1.76
6.02
where ENOB is the effective number of bits of resolution
and SINAD is expressed in dB. At the maximum sampling
rate of 500kHz, the LTC2362 maintains ENOB above 11
bits up to the Nyquist input frequency of 250kHz (refer
to Figure 7).
Total Harmonic Distortion
The total harmonic distortion (THD) is the ratio of the RMS
sum of all harmonics of the input signal to the fundamental
itself. The out-of-band harmonics alias into the frequency
band between DC and half the sampling frequency. THD
is expressed as:
THD = 20log V22 + V32 + V42 + ...Vn2
V1
where V1 is the RMS amplitude of the fundamental
frequency and V2 through Vn are the amplitudes of the
second through nth harmonics. THD vs Input Frequency
is shown in Figure 8. The LTC2362 has excellent distortion
performance up to the Nyquist frequency and beyond.
74
12
VDD = 3.6V
73
VDD = 3.0V
72
11.67
71
VDD = 2.35V
70
11.34
69
68
11
67
1
10
100
INPUT FREQUENCY (kHz)
1000
2306012 F07
Figure 7. LTC2362 ENOB and SINAD vs Input Frequency
–67
–71
–75
VDD = 2.35V
–79
–83
VDD = 3.0V
VDD = 3.6V
–87
–91
1
10
100
INPUT FREQUENCY (kHz)
1000
2306012 F08
Figure 8. LTC2362 THD vs Input Frequency
12
236012fa

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