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DAC1006LCWM Datasheet(PDF) 12 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
Part # DAC1006LCWM
Description  uP Compatible, Double-Buffered D to A Converters
PDF  22 Pages
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Manufacturer  NSC [National Semiconductor (TI)]
Direct Link  http://www.national.com
Logo NSC - National Semiconductor (TI)

DAC1006LCWM Datasheet(HTML) 12 Page - National Semiconductor (TI)

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542 Current Switching with Bipolar Output Voltage
The circuit of
Figure 12 shows the 3 adjustments needed
The first step is to set all of the digital inputs LOW (to force
IOUT1 to 0) and then trim ‘‘zero adj’’ for zero volts at the
inverting input (pin 2) of 0A1 Next with a code of all zeros
still applied adjust ‘‘bFS adj’’ the reference voltage for
VOUTe g
l(ideal VREF)l The sign of the output voltage will
be opposite that of the applied reference
Finally set all of the digital inputs HIGH and adjust ‘‘aFS
adj’’ for VOUTeVREF (511512) The sign of the output at
this time will be the same as that of the reference voltage
The addition of the 200X resistor in series with the VREF pin
of the DAC is to force the circuit gain error from the DAC to
be negative This insures that adding resistance to Rfb with
the 500X pot will always compensate the gain error of the
DAC
543 Voltage Switching with a Unipolar Output Voltage
Refer to the circuit of
Figure 13 and set all digital inputs
LOW Trim the ‘‘zero adj’’ for VOUTe0VDCg1 mV Then
set all digital inputs HIGH and trim the ‘‘FS Adj’’ for
VOUTe(aV)
1aR1R
2
J1023
1024
544 Voltage Switching with a Bipolar Output Voltage
Refer to
Figure 14 and set all digital inputs LOW Trim the
‘‘bFS Adj’’ for VOUTeb25 VDC Then set all digital inputs
HIGH and trim the ‘‘aFS Adj’’ for VOUTea25 (511512)
VDC Test the zero by setting the MS digital input HIGH and
all the rest LOW Adjust VOS of amp
3 if necessary and
recheck the full-scale values
FIGURE 12 Full Scale Adjust
Current Switching with Bipolar Output Voltage
b
VREFsVOUTsaVREF
511
512
J
TLH5688 – 14
FIGURE 13 Full Scale Adjust
Voltage Switching with a Unipolar Output Voltage
12



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