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ADC32RF83 데이터시트(PDF) 7 Page - Texas Instruments

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부품명 ADC32RF83
상세설명  ADC32RF8x Dual-Channel, 3-GSPS Telecom Receiver and Feedback Devices
PDF  138 Pages
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제조업체  TI [Texas Instruments]
홈페이지  http://www.ti.com
Logo TI - Texas Instruments

ADC32RF83 데이터시트(HTML) 7 Page - Texas Instruments

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ADC32RF80, ADC32RF83
www.ti.com
SBAS774A – MAY 2016 – REVISED DECEMBER 2016
Product Folder Links: ADC32RF80 ADC32RF83
Submit Documentation Feedback
Copyright © 2016, Texas Instruments Incorporated
(1)
Performance is shown with DDC bypassed. When DDC is enabled, performance improves by the decimation filtering process.
(2)
Minimum values are specified at AOUT = –3 dBFS.
(3)
Output amplitude, AOUT, refers to the signal amplitude in the ADC digital output that is same as the analog input amplitude, AIN, except
when the digital gain feature is used. If digital gain is G, then AOUT = G + AIN.
(4)
The ADC internal resistance = 65 Ω, the driving source resistance = 50 Ω.
(5)
The minimum value of HD2 is specified by bench characterization.
6.6 AC Performance Characteristics: fS = 2949.12 MSPS
typical values specified at an ambient temperature of 25°C; minimum and maximum values are specified over an ambient
temperature range of –40°C to +85°C; and chip sampling rate = 2949.12 MSPS, 50% clock duty cycle, DDC-bypassed
performance
(1), AVDD19 = 1.9 V, AVDD = 1.15 V, DVDD = 1.15 V, –2-dBFS differential input, and 0-dB digital gain (unless
otherwise noted)
PARAMETER
TEST CONDITIONS
MIN(2)
NOM
MAX
UNIT
SNR
Signal-to-noise ratio
fIN = 100 MHz, AOUT = –2 dBFS
62.6
dBFS
fIN = 900 MHz, AOUT = –2 dBFS
61.1
fIN = 1850 MHz, AOUT = –2 dBFS
55.4
58.9
fIN = 2100 MHz, AOUT = –2 dBFS
58.2
fIN = 2600 MHz, AOUT = –2 dBFS
56.8
fIN = 3500 MHz, AOUT
(3) = –3 dBFS with 2-dB gain
54.1
NSD
Noise spectral density
averaged across the
Nyquist zone
fIN = 100 MHz, AOUT = –2 dBFS
154.3
dBFS/Hz
fIN = 900 MHz, AOUT = –2 dBFS
152.8
fIN = 1850 MHz, AOUT = –2 dBFS
147.1
150.6
fIN = 2100 MHz, AOUT = –2 dBFS
149.9
fIN = 2600 MHz, AOUT = –2 dBFS
148.5
fIN = 3500 MHz, AOUT
(3) = –3 dBFS with 2-dB gain
145.8
Small-signal SNR
fIN = 1850 MHz, AOUT = –40 dBFS
63.1
dBFS
NF(4)
Noise figure
fIN = 1850 MHz, AOUT = –40 dBFS
24.7
dB
SINAD
Signal-to-noise and
distortion ratio
fIN = 100 MHz, AOUT = –2 dBFS
61.7
dBFS
fIN = 900 MHz, AOUT = –2 dBFS
60.2
fIN = 1850 MHz, AOUT = –2 dBFS
58.4
fIN = 2100 MHz, AOUT = –2 dBFS
57.6
fIN = 2600 MHz, AOUT = –2 dBFS
54.8
fIN = 3500 MHz, AOUT
(3) = –3 dBFS with 2-dB gain
53.6
ENOB
Effective number of bits
fIN = 100 MHz, AOUT = –2 dBFS
10.0
Bits
fIN = 900 MHz, AOUT = –2 dBFS
9.7
fIN = 1850 MHz, AOUT = –2 dBFS
9.4
fIN = 2100 MHz, AOUT = –2 dBFS
9.3
fIN = 2600 MHz, AOUT = –2 dBFS
8.8
fIN = 3500 MHz, AOUT
(3) = –3 dBFS with 2-dB gain
8.6
SFDR
Spurious-free dynamic
range
fIN = 100 MHz, AOUT = –2 dBFS
68.0
dBc
fIN = 900 MHz, AOUT = –2 dBFS
66.0
fIN = 1850 MHz, AOUT = –2 dBFS
58
67.0
fIN = 2100 MHz, AOUT = –2 dBFS
64.0
fIN = 2600 MHz, AOUT = –2 dBFS
58.0
fIN = 3500 MHz, AOUT
(3) = –3 dBFS with 2-dB gain
62.0
HD2(5)
Second-order harmonic
distortion
fIN = 100 MHz, AOUT = –2 dBFS
72.0
dBc
fIN = 900 MHz, AOUT = –2 dBFS
73.0
fIN = 1850 MHz, AOUT = –2 dBFS
58
67.0
fIN = 2100 MHz, AOUT = –2 dBFS
64.0
fIN = 2700 MHz, AOUT = –2 dBFS
58.0
fIN = 3500 MHz, AOUT
(3) = –3 dBFS with 2-dB gain
62.0



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