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68HC16MODULE датащи(PDF) 6 Page - Maxim Integrated Products

номер детали 68HC16MODULE
подробное описание детали  Evaluates Both the 14-Bit MAX194 and the 16-Bit MAX195
PDF  23 Pages
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производитель  MAXIM [Maxim Integrated Products]
домашняя страница  https://www.maximintegrated.com/en.html
Logo MAXIM - Maxim Integrated Products

68HC16MODULE датащи(HTML) 6 Page - Maxim Integrated Products

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Using Bit-Pushing to Read the MAX194
The MAX194 may be interfaced using a bit-pushing
algorithm, such as the following:
1) Verify that EOC is low before starting the conversion.
2) Assert CONV low to begin conversion.
3) Wait until EOC becomes high. Conversion has
begun.
4) Set CONV high.
5) Wait until EOC becomes low. Conversion is com-
plete.
6) Assert SCLK low.
7) Assert CS low.
8) Clear the 16-bit result register.
9) Repeat 16 times:
9-1. Set SCLK high.
9-2. Rotate the 16-bit result register left.
9-3. Read DOUT into least significant bit of the
result register.
9-4. Assert SCLK low.
10) Set CS high.
Reset and Calibration Procedure
When the MAX194 is installed in an environment with an
unregulated temperature, thermal variation can cause
DC offset errors. Transients on the power supply or ref-
erence during the power-on calibration are also a
source of DC offset error. These errors can be eliminat-
ed by performing re-calibration, as outlined below:
1) Assert the MAX194 RESET pin low.
2) Run the conversion clock until EOC becomes high.
3) Set the MAX194 RESET pin high.
4) Run the conversion clock until EOC becomes low.
For best accuracy, a typical application circuit should
allow time for the power supply and ambient tempera-
ture to settle before re-calibrating the MAX194. Refer to
the Calibration section of the MAX194 data sheet.
_Detailed Description of Hardware
Jumper Options
Several jumper blocks allow different configurations of
the MAX194. Jumper functions are listed in Table 6.
See the Voltage Reference and Measuring Supply
Current sections.
Data Connector Interface
The 68HC16 module and MAX194 communicate
through the QSPI port on the 40-pin data connector.
Table 7 lists the function of each pin.
MAX194 Evaluation System/Evaluation Kit
6
_______________________________________________________________________________________
Table 6. Jumper Settings
JUMPER
POSITION
FUNCTION
Closed
Ground the SCLK pin.
JU1
Open
Allows the SCLK pin to be driven by
the user.
“OSC”
Conversion clock is driven by crystal
oscillator U4.
“EXT”
Conversion clock is driven by the
EXTCLK input pad.
“QSPI”
Conversion clock is driven by the
QSPI serial clock.
“QSPI”
Connects CS to QSPI chip-select
PCS0.
JU4
“GND”
Connects CS to ground; data output
is always enabled.
“QSPI”
Connects CONV to QSPI chip-select
PCS0.
JU5
“CONT”
Connects CONV to EOC for continu-
ous conversion mode.
Open
Normal operating mode.
JU6
Closed
Momentary closure resets and
re-calibrates the MAX194. Do not
close this jumper if the µC module is
connected.
“SHDN”
Select shutdown mode.
“AUTO”
Lets 68HC16 drive the BP/UP/SHDN
pin. If no µC is connected, bipolar
input mode is selected.
“UNI”
Select unipolar mode.
JU7
Open
Select bipolar mode.
JU3
Table 5. QSPI Receive Format for MAX194
ADDR
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
0
RR0
x
x
x
x
x
x
x
x
B13
B12
B11
B10
B9
B8
B7
B6
RR1
x
x
x
x
x
x
B5
B4
B3
B2
B1
B0
sub
sub
x
x



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