LTC1289BCN Linear Technology, LTC1289BCN Datasheet - Page 21

IC DATA ACQ SYS 12BIT 3V 20-DIP

LTC1289BCN

Manufacturer Part Number
LTC1289BCN
Description
IC DATA ACQ SYS 12BIT 3V 20-DIP
Manufacturer
Linear Technology
Type
Data Acquisition System (DAS)r
Datasheet

Specifications of LTC1289BCN

Resolution (bits)
12 b
Sampling Rate (per Second)
25k
Data Interface
Serial, Parallel
Voltage Supply Source
Dual ±
Voltage - Supply
3V
Operating Temperature
0°C ~ 70°C
Mounting Type
Through Hole
Package / Case
20-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LTC1289BCN#PBF
Manufacturer:
LINEAR/凌特
Quantity:
20 000
7. LTC1289 AC Characteristics
Two commonly used figures of merit for specifying the
dynamic performance of the A/D’s in digital signal pro-
cessing applications are the Signal-to-Noise Ratio (SNR)
and the “effective number of bits (ENOB).” SNR is defined
as the ratio of the RMS magnitude of the fundamental to
the RMS magnitude of all the nonfundamental signals up
to the Nyquist frequency (half the sampling frequency).
The theoretical maximum SNR for a sine wave input is
given by:
where N is the number of bits. Thus the SNR is a function
of the resolution of the A/D. For an ideal 12-bit A/D the SNR
is equal to 74dB. A Fast Fourier Transform(FFT) plot of the
A
PPLICATI
SNR = (6.02N + 1.76dB)
Figure 17b. f
Figure 17a. f
–100
–140
–100
–140
–120
–120
–60
–80
–20
–60
–80
–20
–40
–40
0
0
0
0
O
IN
IN
2
2
= 12kHz, f
U
= 1kHz, f
S
4
4
FREQUENCY (kHz)
FREQUENCY (kHz)
I FOR ATIO
U
6
6
S
S
= 25kHz, SNR = 72.92dB
= 25kHz, SNR = 72.23dB
8
8
10
10
W
LTC1289 F17a
LTC1289 F17b
12
12
14
14
U
output spectrum of the LTC1289 is shown in Figures 17a
and 17b. The input (f
with the sampling frequency (f
obtained from the plot are 72.92dB and 72.23dB.
Rewriting the SNR expression it is possible to obtain the
equivalent resolution based on the SNR measurement.
This is the so-called effective number of bits (ENOB). For
the example shown in Figures 17a and 17b, N = 11.8 bits
and 11.7 bits, respectively. Figure 18 shows a plot of ENOB
as a function of input frequency. The curve shows the
A/D’s ENOB remain in the range of 11.8 to 11.7 for input
frequencies up to f
N =
Figure 19. f
SNR – 1.76dB
Figure 18. LTC1289 ENOB vs Input Frequency
–100
–140
–120
–20
–60
–80
–40
12
11
10
9
8
7
6
0
6.02
0
0
IN
2
1 = 2.6kHz, f
10
S
/2
IN
4
FREQUENCY (kHz)
) frequencies are 1kHz and 12kHz
FREQUENCY (kHz)
20
6
IN
8
2 = 3.1kHz, f
30
S
10
) at 25kHz. The SNR
f
S
40
= 25kHz
LTC1289 • AIF18
12
LTC1289 F19
LTC1289
S
14
= 25kHz
50
21
1289fb

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