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ADC12D1000CIUT Datasheet(PDF) 13 Page - Texas Instruments

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Part # ADC12D1000CIUT
Description  ADC12D1000/ADC12D1600 12-Bit, 2.0/3.2 GSPS Ultra High-Speed ADC
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

ADC12D1000CIUT Datasheet(HTML) 13 Page - Texas Instruments

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ADC12D1000, ADC12D1600
www.ti.com
SNAS480M – MAY 2010 – REVISED MARCH 2013
Operating Ratings
(1)(2) (continued)
VIN+/- Power
15.3 dBm
(maintaining common mode voltage, a.c.-
coupled)
17.1 dBm
(not maintaining common mode
voltage,a.c.-coupled)
Ground Difference
max(GNDTC/DR/E)
-min(GNDTC/DR/E)
0V
CLK+/- Voltage Range
0V to VA
Differential CLK Amplitude
0.4VP-P to 2.0VP-P
Common Mode Input Voltage
VCMO - 150mV < VCMI < VCMO +150mV
Package Thermal Resistance
Package
θJA
θJC1
θJC2
292-Ball BGA Thermally Enhanced Package
16°C/W
2.9°C/W
2.5°C/W
Soldering process must comply with Reflow Temperature Profile specifications. Refer to http://www.ti.com/packaging.(1)
(1)
Reflow temperature profiles are different for lead-free and non-lead-free packages.
Converter Electrical Characteristics
Static Converter Characteristics
Unless otherwise specified, the following apply after calibration for VA = VDR = VTC = VE = +1.9V; I- and Q-channels, AC-
coupled, unused channel terminated to AC ground, FSR Pin = High; CL = 10 pF; Differential, AC coupled Sine Wave
Sampling Clock, fCLK = 1.0/1.6 GHz at 0.5 VP-P with 50% duty cycle (as specified); VBG = Floating; Non-Extended Control
Mode; Rext = Rtrim = 3300
Ω ± 0.1%; Analog Signal Source Impedance = 100Ω Differential; 1:2 Demultiplex Non-DES Mode;
Duty Cycle Stabilizer on. Boldface limits apply for TA = TMIN to TMAX. All other limits TA = 25°C, unless otherwise
noted.
(1) (2) (3)
ADC12D1000
ADC12D1600
Units
Symbol
Parameter
Conditions
(Limits)
Typ
Lim
Typ
Lim
Resolution with No Missing Codes
12
12
bits
INL
Integral Non-Linearity
1 MHz DC-coupled over-ranged
±2.5
±4.8
±2.5
±4.8
LSB (max)
(Best fit)
sine wave
DNL
Differential Non-Linearity
1 MHz DC-coupled over-ranged
±0.4
±0.9
±0.4
±0.9
LSB (max)
sine wave
VOFF
Offset Error
5
5
LSB
VOFF_ADJ
Input Offset Adjustment Range
Extended Control Mode
±45
±45
mV
PFSE
Positive Full-Scale Error
See(4)
±25
±25
mV (max)
NFSE
Negative Full-Scale Error
See(4)
±25
±25
mV (max)
Out-of-Range Output Code(5)
(VIN+) − (VIN−) > + Full Scale
4095
4095
(VIN+) − (VIN−) < − Full Scale
0
0
(1)
The analog inputs, labeled "I/O", are protected as shown below. Input voltage magnitudes beyond the Absolute Maximum Ratings may
damage this device (see Figure 3).
(2)
To ensure accuracy, it is required that VA, VTC, VE and VDR be well-bypassed. Each supply pin must be decoupled with separate bypass
capacitors.
(3)
Typical figures are at TA = 25°C, and represent most likely parametric norms. Test limits are ensured to TI's AOQL (Average Outgoing
Quality Level).
(4)
Calculation of Full-Scale Error for this device assumes that the actual reference voltage is exactly its nominal value. Full-Scale Error for
this device, therefore, is a combination of Full-Scale Error and Reference Voltage Error. See Figure 6. For relationship between Gain
Error and Full-Scale Error, see Specification Definitions for Gain Error.
(5)
This parameter is specified by design and is not tested in production.
Copyright © 2010–2013, Texas Instruments Incorporated
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