AD7399BR Analog Devices Inc, AD7399BR Datasheet - Page 9

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AD7399BR

Manufacturer Part Number
AD7399BR
Description
D/A Converter (D-A) IC
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD7399BR

No. Of Bits
10 Bit
Mounting Type
Surface Mount
Interface Type
Serial
Package / Case
16-NSOIC
Rohs Status
RoHS non-compliant
Settling Time
6µs
Number Of Bits
10
Data Interface
Serial
Number Of Converters
4
Voltage Supply Source
Dual ±
Power Dissipation (max)
16mW
Operating Temperature
-40°C ~ 125°C
Lead Free Status / RoHS Status

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TERMINOLOGY
Relative Accuracy (INL)
For the DAC, relative accuracy or integral nonlinearity (INL) is
a measure of the maximum deviation, in LSBs, from a straight
line passing through the endpoints of the DAC transfer function.
Figure 6 illustrates a typical INL vs. code plot.
Differential Nonlinearity (DNL)
Differential nonlinearity is the difference between the measured
change and the ideal 1 LSB change between any two adjacent
codes. A specified differential nonlinearity of ±1 LSB maximum
ensures monotonicity. Figure 8 illustrates a typical DNL vs.
code plot.
Zero-Scale Error (V
Zero-scale error is a measure of the output voltage error from
zero voltage when zero code is loaded to the DAC register.
Full-Scale Error (V
Full-scale error is a measure of the output voltage error from
full-scale voltage when full-scale code is loaded to the DAC
register.
Full-Scale Temperature Coefficient (TC
This is a measure of the change in full-scale error with a change
in temperature. It is expressed in ppm/°C or mV/°C.
FSE
ZSE
)
)
VFS
)
Rev. C | Page 9 of 24
DAC Glitch Impulse (Q)
Digital-to-analog glitch impulse is the impulse injected into the
analog output when the input code in the DAC register changes
state. It is normally specified as the area of the glitch in nV − s and
is measured when the digital input code is changed by 1 LSB at the
major carry transition (midscale transition). A plot of the glitch
impulse is shown in Figure 15.
Digital Feedthrough (Q
Digital feedthrough is a measure of the impulse injected into
the analog output of the DAC from the digital inputs of the
DAC, but is measured when the DAC output is not updated. CS
is held high while the CLK and SDI signals are toggled. It is
specified in nV − s, and is measured with a full-scale code change
on the data bus, such as from all 0s to all 1s and vice versa. A
typical plot of digital feedthrough is shown in Figure 16.
Power Supply Sensitivity (PSS)
This specification indicates how the output of the DAC is
affected by changes in the power supply voltage. Power supply
sensitivity is quoted in terms of % change in output per % change
in V
Reference Feedthrough (V
This is a measure of the feedthrough from the V
DAC output when the DAC is loaded with all 0s. A 100 kHz,
1 V p-p is applied to V
dB or mV p-p.
DD
for full-scale output of the DAC. V
REF
DF
. Reference feedthrough is expressed in
)
OUT
/V
REF
)
AD7398/AD7399
DD
is varied by ±10%.
REF
input to the

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