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ADC12DC080 Datasheet(PDF) 7 Page - Texas Instruments

Part # ADC12DC080
Description  Dual 12-Bit, 80 MSPS A/D Converter with CMOS Outputs
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

ADC12DC080 Datasheet(HTML) 7 Page - Texas Instruments

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VA
AGND
To Internal Circuitry
I/O
ADC12DC080
www.ti.com
SNAS405B – SEPTEMBER 2007 – REVISED NOVEMBER 2008
Dynamic Converter Electrical Characteristics
Unless otherwise specified, the following specifications apply: AGND = DRGND = 0V, VA = +3.0V, VDR = +2.5V, Internal VREF
= +1.2V, fCLK = 80 MHz, VCM = VCMO, CL = 5 pF/pin, . Typical values are for TA = 25°C. Boldface limits apply for TMIN ≤ TA
TMAX. All other limits apply for TA = 25°C
(1) (2)
Units
Typical
Symbol
Parameter
Conditions
Limits
(Limits)
(3)
(4)
DYNAMIC CONVERTER CHARACTERISTICS, AIN= -1dBFS
FPBW
Full Power Bandwidth
-1 dBFS Input,
−3 dB Corner
1.0
GHz
fIN = 10 MHz
71.5
dBFS
SNR
Signal-to-Noise Ratio
fIN = 70 MHz
70.5
dBFS
fIN = 170 MHz
69.5
68.6
dBFS
fIN = 10 MHz
90
dBFS
SFDR
Spurious Free Dynamic Range
fIN = 70 MHz
86
dBFS
fIN = 170 MHz
83
78
dBFS
fIN = 10 MHz
11.6
Bits
ENOB
Effective Number of Bits
fIN = 70 MHz
11.4
Bits
fIN = 170 MHz
11.2
11
Bits
fIN = 10 MHz
−86
dBFS
THD
Total Harmonic Disortion
fIN = 70 MHz
−85
dBFS
fIN = 170 MHz
−84
-77
dBFS
fIN = 10 MHz
−95
dBFS
H2
Second Harmonic Distortion
fIN = 70 MHz
−90
dBFS
fIN = 170 MHz
−83
-78
dBFS
fIN = 10 MHz
−88
dBFS
H3
Third Harmonic Distortion
fIN = 70 MHz
−85
dBFS
fIN = 170 MHz
−83
-78
dBFS
fIN = 10 MHz
71.3
dBFS
SINAD
Signal-to-Noise and Distortion Ratio
fIN = 70 MHz
70.3
dBFS
fIN = 170 MHz
69.3
68
dBFS
IMD
Intermodulation Distortion
fIN = 20 MHz and 21 MHz, each -7dBFS
-84
dBFS
0 MHz tested channel, fIN = 10 MHz at -
Crosstalk
-100
dBFS
1dBFS other channel
(1)
The inputs are protected as shown below. Input voltage magnitudes above VA or below GND will not damage this device, provided
current is limited per Note 4 under Absolute Maximum Ratings. However, errors in the A/D conversion can occur if the input goes above
2.6V or below GND as described in the Operating Ratings section.
(2)
With a full scale differential input of 2VP-P , the 12-bit LSB is 488 µV.
(3)
Typical figures are at TA = 25°C and represent most likely parametric norms at the time of product characterization. The typical
specifications are not ensured.
(4)
This parameter is specified in units of dBFS - indicating the value that would be attained with a full-scale input signal.
Copyright © 2007–2008, Texas Instruments Incorporated
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