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DAC8564IBPWR 数据表(PDF) 40 Page - Texas Instruments

部件名 DAC8564IBPWR
功能描述  16-Bit, Quad Channel, Ultra-Low Glitch, Voltage Output DIGITAL-TO-ANALOG CONVERTER with 2.5V, 2ppm/째C Internal Reference
PDF  46 Pages
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制造商  TI [Texas Instruments]
网页  http://www.ti.com
标志 TI - Texas Instruments

DAC8564IBPWR 数据表(HTML) 40 Page - Texas Instruments

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Zero-Code Error Drift
Power-Supply Rejection Ratio (PSRR)
Gain Temperature Coefficient
Monotonicity
DYNAMIC PERFORMANCE
Slew Rate
Channel-to-Channel DC Crosstalk
SR=max
DV
(t)
OUT
Dt
Channel-to-Channel AC Crosstalk
Output Voltage Settling Time
Code Change/Digital-to-Analog Glitch Energy
Signal-to-Noise Ratio (SNR)
Digital Feedthrough
Total Harmonic Distortion (THD)
DAC8564
SBAS403A – JUNE 2007 – REVISED NOVEMBER 2007
Zero-code error drift is defined as the change in
Power-supply rejection ratio (PSRR) is defined as the
zero-code error with a change in temperature.
ratio of change in output voltage to a change in
Zero-code error drift is expressed in
µV/°C.
supply voltage for a full-scale output of the DAC. The
PSRR of a device indicates how the output of the
DAC is affected by changes in the supply voltage.
PSRR is measured in decibels (dB).
The gain temperature coefficient is defined as the
change in gain error with changes in temperature.
The gain temperature coefficient is expressed in ppm
of FSR/
°C.
Monotonicity is defined as a slope whose sign does
not change. If a DAC is monotonic, the output
changes in the same direction or remains at least
constant for each step increase (or decrease) in the
input code.
Dynamic performance parameters are specifications such as settling time or slew rate. Those are important in
applications where the signal is rapidly changing and/or high frequency signals are present.
The output slew-rate (SR) of an amplifier or other
Channel-to-channel dc crosstalk is defined as the dc
electronic circuit is defined as the maximum rate of
change in the output level of one DAC channel in
change of the output voltage for all possible input
response to a change in the output of another DAC
signals.
channel. It is measured with a full-scale output
change on one DAC channel while monitoring
another DAC channel remains at mid-scale. It is
expressed in LSB.
Where
ΔVOUT(t) is the output produced by the
amplifier as a function of time t.
AC crosstalk in multi-channel DAC is defined as
amount of ac interference experienced on the output
of a channel at a frequency (f) (and its harmonics),
Settling time is the total time (including slew time) for
when the output of an adjacent channel changes its
the DAC output to settle within an error band around
value at the rate of frequency (f). It is measured with
its final value after a change in input. Settling times
one channel output oscillating with sine wave of 1KHz
are specified to within ±0.003% (or whatever value is
frequency
while
monitoring
amplitude
of
1KHz
specified) of full-scale range (FSR).
harmonics on an adjacent DAC channel output (kept
at zero scale). It is expressed in dB.
Digital-to-analog glitch impulse is the impulse injected
into the analog output when the input code in the
Signal-to-noise ratio (SNR) is defined as the ratio of
DAC register changes state. It is normally specified
root mean-squared (RMS) value of the output signal
as the area of the glitch in nanovolts-second (nV-s),
divided by the RMS values of the sum of all other
and is measured when the digital input code is
spectral
components
below
one-half
the
output
changed by 1LSB at the major carry transition
frequency, not including harmonics or dc. SNR is
(0x7FFF to 0x8000).
measured in dB.
Digital feedthrough is defined as impulse seen at the
Total harmonic distortion + noise is defined as the
output of the DAC from the digital inputs of the DAC.
ratio of the RMS values of the harmonics and noise
It is measured when the DAC output is not updated. It
to the value of the fundamental frequency. It is
is specified in nV-s, and measured with a full-scale
expressed in a percentage of the fundamental
code change on the data bus; that is, from all '0's to
frequency amplitude at sampling rate fS.
all '1's and vice versa.
40
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Copyright © 2007, Texas Instruments Incorporated
Product Folder Link(s): DAC8564



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