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L9780 bảng dữ liệu(PDF) 21 Page - STMicroelectronics

tên linh kiện L9780
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L9780 bảng dữ liệu(HTML) 21 Page - STMicroelectronics

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L9780
Main functionalities
55
4.11
Analog to digital conversion
In the device a 10bit A/D converter is present. The analog voltages to be converted are
multiplexed by the logic while the state machine is running and are: the output of RCT2
amplifier, the output of INRC amplifier and FV pin voltage (see block diagram in Figure 2).
Between the analog inputs and the A/D converter a scaling amplifier is present; this cell is
able to amplify the input signal according to the gain selected via SPI (using bit SAMP[2..0])
with the following relation:
OUTsa = REF2 + G * (Input_voltage – REF2)
where G is the gain selectable via SPI among the following values: 1 - 1.5 - 2 - 3 - 4 - 6 - 8 –
12, and OUTsa is the output of the scaling amplifier (and the input of A/D converter). When
the selected input of the scaling amplifier is the output of the INRC or RCT2 amplifier, G is
fixed (=1), while when the input is FV voltage the gain G can be modified by the user. The
multiplexing sequence at the input of the scaling amplifier when the state machine is running
is shown in Figure 8.
The absolute conversion accuracy compared to an ideal transfer curve is ±2 counts. All the
electrical parameters regarding the scaling amplifier and the A/D conversion are specified in
Table 11.
The nominal conversion of the scaling amplifier output is defined in the following formula:
count_SA
floor OUTsa
VCCA
--------------------
1024


=
where:
count_SA is the result of the A/D conversion;
OUTsa is the output voltage of the scaling amplifier;
floor: a function that returns the greatest integer less than or equal to the argument.



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