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MAX5500AGAP+ bảng dữ liệu(PDF) 13 Page - Maxim Integrated Products

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Giải thích chi tiết về linh kiện  Low-Power, Quad, 12-Bit Voltage-Output DACs with Serial Interface
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Low-Power, Quad, 12-Bit
Voltage-Output DACs with Serial Interface
______________________________________________________________________________________
13
Digitally Programmable Current Source
The circuit of Figure 12 places an npn transistor
(2N3904 or similar) within the op-amp feedback loop to
implement a digitally programmable, unidirectional cur-
rent source. This circuit drives 4mA to 20mA current
loops, which are commonly used in industrial-control
applications. The output current is calculated with the
following equation:
IOUT = (VREF/R) x (NB/4096)
where NB is the numeric value of the DAC’s binary input
code and R is the sense resistor shown in Figure 12.
Power-Supply Considerations
On power-up, all input and DAC registers are cleared
(set to zero code) and DOUT is in mode 0 (serial data is
shifted out of DOUT on the clock’s falling edge).
For rated MAX5500/MAX5501 performance, limit VREFAB/
VREFCD to 1.4V below VDD. Bypass VDD with a 4.7µF
capacitor in parallel with a 0.1µF capacitor to AGND.
Use short lead lengths and place the bypass capaci-
tors as close as possible to the supply inputs.
Grounding and Layout Considerations
Digital or AC transient signals between AGND and
DGND create noise at the analog outputs. Connect
AGND and DGND together at the DAC, and then con-
nect this point to the highest-quality ground available.
Good PCB ground layout minimizes crosstalk between
DAC outputs, reference inputs, and digital inputs.
Reduce crosstalk by keeping analog lines away from
digital lines. Do not use wire-wrapped boards.
Chip Information
PROCESS: BiCMOS
DAC
VOUT
+5V
-5V
R1 = R2 = 10kΩ ± 0.1%
MAX5500
MAX5501
REF_
R1
R2
FB_
OUT_
Figure 11. Bipolar Output Circuit
DAC_
MAX5500
MAX5501
REF_
OUT_
R
IOUT
2N3904
VL
FB_
Figure 12. Digitally Progammable Current Source



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