参数资料
型号: MAX1160BCPI
厂商: MAXIM INTEGRATED PRODUCTS INC
元件分类: ADC
英文描述: 10-Bit, 20Msps, TTL-Output ADC
中文描述: 1-CH 10-BIT PROPRIETARY METHOD ADC, PARALLEL ACCESS, PDIP28
封装: 0.600 INCH, PLASTIC, DIP-28
文件页数: 5/8页
文件大小: 76K
代理商: MAX1160BCPI
M
10-Bit, 20Msps, T T L-Output ADC
_______________________________________________________________________________________
5
80
20
1
10
100
SIGNAL-TO-NOISE RATIOvs.
INPUT FREQUENCY
40
30
M
INPUT FREQUENCY (MHz)
S
60
50
70
f
S
= 20Msps
80
20
1
10
100
SIGNAL-TO-NOISE AND DISTORTION
vs. INPUT FREQUENCY
40
30
M
INPUT FREQUENCY (MHz)
S
60
50
70
f
S
= 20Msps
0
-120
0
7
10
8
9
1
2
3
4
5
6
SPECTRAL RESPONSE
-60
-90
M
INPUT FREQUENCY (MHz)
A
-30
f
S
= 20Msps
f
IN
= 1MHz
80
20
1
10
100
SNR, THD, SINAD vs.
SAMPLE RATE
40
30
M
SAMPLE RATE (Msps)
S
60
50
70
SINAD
SNR, THD
f
IN
= 1MHz
65
40
-25
50
75
0
25
SNR, THD, SINAD vs.
TEMPERATURE
50
45
M
TEMPERATURE (°C)
S
60
55
SINAD
SNR
f
S
= 20Msps
f
IN
= 1MHz
THD
THD
SNR
__________________________________________Typic al Operating Charac teristic s
(T
A
= +25°C, unless otherwise noted.)
80
20
1
10
100
TOTAL HARMONIC DISTORTION vs.
INPUT FREQUENCY
40
30
M
INPUT FREQUENCY (MHz)
T
60
50
70
f
S
= 20Msps
______________Detailed Desc ription
The MAX1160 requires few external components to
achieve the stated operation and performance. Figure
2 shows the typical interface requirements when using
the MAX1160 in normal circuit operation. The following
section provides a description of the pin functions, and
outlines critical performance criteria to consider for
achieving the optimal device performance.
Power S upplies and Grounding
The MAX1160 requires -5.2V and +5V analog supply
voltages. The +5V supply is common to analog V
CC
and digital DV
CC
. A ferrite bead in series with each
supply line reduces the transient noise injected into the
analog V
CC
. Connect these beads as close to the
device as possible. The connection between the beads
and the MAX1160 should not be shared with any other
device. Bypass each power-supply pin as close to the
device as possible. Use 0.1μF for V
EE
and V
CC
, and
0.01μF for DV
CC
(chip capacitors are recommended).
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