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MCP3465R Datasheet(PDF) 46 Page - Microchip Technology

Part # MCP3465R
Description  Two-Channel, 153.6 ksps, Low Noise 16-Bit Delta-Sigma ADC with Internal Voltage Reference
PDF  110 Pages
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Manufacturer  MICROCHIP [Microchip Technology]
Direct Link  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

MCP3465R Datasheet(HTML) 46 Page - Microchip Technology

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MCP3465R
DS20006414C-page 46
 2020-2021 Microchip Technology Inc.
When DATA_FORMAT[1:0] = 1x, the ADC data are
represented on 17 bits. For these two data formats, the
output register is 32 bits long. With these two data
formats, the coding allows overrange; the equivalent
analog input range is [-2 x VREF, +2 x VREF – 1 LSb].
When VIN * Gain > 2VREF – 1 LSb, the 17-bit ADC code
(SGN + DATA[15:0]) will saturate and be locked at
0x0FFFF. When VIN * Gain < -2VREF, the 16-bit ADC
code will saturate and be locked at 0x10000. Using
these data formats allows a correct evaluation of the
full-scale errors in case of a positive full-scale error,
since they allow inputs that can be greater than VREF or
less than -VREF.
The ADC accuracy is not maintained on the full
extended [-2 x VREF, +2 x VREF – 1 LSb] range, but only
on a smaller range, which is approximately equal to
±1.05 x VREF. This overrange can be useful in high-side
measurements and gain error cancellation algorithms.
The overrange-capable formatting on 17 bits is fully
compatible with the standard code locked formatting on
16 bits; both coding formats will produce the same
16-bit codes for the [-VREF; +VREF – 1 LSb] range and
the MSb on the 17-bit coding can be considered as a
simple Sign bit extension.
When
DATA_FORMAT[1:0]
=
10,
the
17-bit
(16-bit + SGN) value is right justified. The first byte of
the 32-bit ADC output code will repeat the Sign bit
(SGN).
In DATA_FORMAT[1:0] = 11, the output code is similar
to the one in DATA_FORMAT[1:0] = 10. The only differ-
ence resides in the four MSbs of the first byte, which
are no longer repeats of the Sign bit (SGN). They are
the Channel ID data (CH_ID[3:0]) that are defined in
Table 5-15. This CH_ID[3:0] word can be used to verify
that the right channel has been converted to Scan
mode and can serve easy data retrieval and logging
(see Section 5.15 “Scan Mode” for more details
about the Scan mode). In MUX mode, this 4-bit word is
defaulted to ‘0000’ and does not vary with the
MUX[7:0] selection. This format is useful for 32-bit
MCU applications.
TABLE 5-7:
DATA_FORMAT[1:0] = 0x (16-BIT CODING)
Equivalent Input Voltage
ADC Output Code (SGN + DATA[14:0])
Hexadecimal
Decimal
> VREF – 1LSb
0111111111111111
0x7FFF
+32767
VREF – 2LSb
0111111111111110
0x7FFE
+32766
1LSb
0000000000000001
0x0001
+1
0
0000000000000000
0x0000
0
-1 LSb
1111111111111111
0xFFFF
-1
-VREF +1LSb
1000000000000001
0xFFFF
-32767
< -VREF
1000000000000000
0x8000
-32768
TABLE 5-8:
DATA_FORMAT[1:0] = 1x (17-BIT CODING)
Equivalent Input Voltage
ADC Output Code (SGN + DATA[15:0])
Hexadecimal
Decimal
> 2 VREF – 1LSb
01111111111111111
0x0FFFF
+65535
2VREF – 2LSb
01111111111111110
0x0FFFE
+65534
VREF +1LSb
01000000000000001
0x08001
+32769
VREF
01000000000000000
0x08000
+32768
VREF – 1LSb
00111111111111111
0x07FFF
+32767
VREF – 2LSb
00111111111111110
0x07FFE
+32766
1LSb
00000000000000001
0x00001
+1
0
00000000000000000
0x00000
0
-1 LSb
11111111111111111
0x1FFFF
-1
-VREF +1LSb
11000000000000001
0x18001
-32767
-VREF
11000000000000000
0x18000
-32768
-VREF – 1LSb
10111111111111111
0x17FFF
-32769
-2 VREF +1LSb
10000000000000001
0x10001
-65535
< -2 VREF
10000000000000000
0x10000
-65536



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