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ADC10065 Fiches technique(PDF) 8 Page - Texas Instruments

No de pièce ADC10065
Description  10-Bit 65 MSPS 3V A/D Converter
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Fabricant  TI1 [Texas Instruments]
Site Internet  http://www.ti.com
Logo TI1 - Texas Instruments

ADC10065 Fiches technique(HTML) 8 Page - Texas Instruments

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ADC10065
SNAS225H – JULY 2003 – REVISED APRIL 2013
www.ti.com
AC Electrical Characteristics (continued)
Unless otherwise specified, the following specifications apply for VSSA = VSSIO = 0V, VDDA = +3.0V, VDDIO = +2.5V, VIN = 2 VP-P,
STBY = 0V, VREF = 1.20V (External), fCLK = 65 MHz, 50% Duty Cycle, CL = 10 pF/pin. Boldface limits apply for TA = TMIN to
TMAX: all other limits TA = 25°C.
(1)
Parameter
Test Conditions
Min (2)
Typ (2)
Max (2)
Units
T = 25°C
2
3.4
5
ns
Data Output Delay after a Rising Clock
tOD
Edge
1
6
ns
tAD
Aperture Delay
1
ns
tAJ
Aperture Jitter
2
ps (RMS)
Differential VIN step from ±3V
Over Range Recovery Time
to 0V to get accurate
1
Clock Cycle
conversion
tSTBY
Standby Mode Exit Cycle
20
Cycles
Figure 2.
Specification Definitions
APERTURE DELAY is the time after the rising edge of the clock to when the input signal is acquired or held for
conversion.
APERTURE JITTER (APERTURE UNCERTAINTY) is the variation in aperture delay from sample to sample.
Aperture jitter manifests itself as noise in the output.
COMMON MODE VOLTAGE (VCM) is the d.c. potential present at both signal inputs to the ADC.
CONVERSION LATENCY See PIPELINE DELAY.
DIFFERENTIAL NON-LINEARITY (DNL) is the measure of the maximum deviation from the ideal step size of 1
LSB.
DUTY CYCLE is the ratio of the time that a repetitive digital waveform is high to the total time of one period. The
specification here refers to the ADC clock input signal.
EFFECTIVE NUMBER OF BITS (ENOB, or EFFECTIVE BITS) is another method of specifying Signal-to-Noise
and Distortion or SINAD. ENOB is defined as (SINAD - 1.76) / 6.02 and states that the converter is
equivalent to a perfect ADC of this (ENOB) number of bits.
FULL POWER BANDWIDTH is a measure of the frequency at which the reconstructed output fundamental drops
3 dB below its low frequency value for a full scale input.
GAIN ERROR is the deviation from the ideal slope of the transfer function. It can be calculated as:
Gain Error = Positive Full-Scale Error
− Negative Full-Scale Error
(1)
INTEGRAL NON LINEARITY (INL) is a measure of the deviation of each individual code from a line drawn from
negative full scale through positive full scale. The deviation of any given code from this straight line is
measured from the center of that code value.
MISSING CODES are those output codes that will never appear at the ADC outputs. The ADC10065 is specified
not to have any missing codes.
NEGATIVE FULL SCALE ERROR is the difference between the input voltage (VIN
+ − V
IN
) just causing a
transition from negative full scale to the first code and its ideal value of 0.5 LSB.
8
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Product Folder Links: ADC10065


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