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MCP3562-E/ST 数据表(PDF) 54 Page - Microchip Technology

部件名 MCP3562-E/ST
功能描述  Two/Four/Eight-Channel, 153.6 ksps, Low-Noise 24-Bit Delta-Sigma ADCs
PDF  108 Pages
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制造商  MICROCHIP [Microchip Technology]
网页  http://www.microchip.com
标志 MICROCHIP - Microchip Technology

MCP3562-E/ST 数据表(HTML) 54 Page - Microchip Technology

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MCP3561/2/4
DS20006181C-page 54
 2019-2021 Microchip Technology Inc.
5.14
SCAN Mode
5.14.1
SCAN MODE PRINCIPLE
In SCAN mode, the device sequentially and
automatically converts a list of predefined differential
inputs (also referred to as input channels) in a defined
order. After this series of conversions, the ADC can be
placed in Standby or ADC Shutdown mode, or it can
wait a certain time in order to perform the same
sequence of conversions periodically.
This mode is useful for applications that require
constant monitoring of defined channels or internal
resources (like AVDD or REFIN+/REFIN-), and allow a
minimal and simplified communication.
When in SCAN mode, the MUX register (address: 0x6)
becomes a Don’t Care register.
SCAN mode includes a configurable delay between
each scan cycle, as well as a configurable delay
between each conversion within a scan cycle.
Each conversion within the scan cycle leads to a data
ready interrupt and to an update of the ADCDATA reg-
ister as soon as the current conversion is finished. The
device does not include additional memory to retain all
scan cycle A/D conversion results. Therefore, each
result has to be read when it is available and before it
is overwritten by the next conversion result.
5.14.2
SCAN MODE ENABLE AND SCAN
CHANNEL SELECTION
The ADC is, by default, in MUX mode at power-up. The
ADC enters SCAN mode as soon as one of the
SCAN[15:0] bits in the SCAN register is set to ‘1’. MUX
mode and SCAN mode cannot be enabled at the same
time. When SCAN[15:0] = 0x0000, SCAN mode is dis-
abled and the part returns to MUX mode, where the
input channel selection is defined by the MUX[7:0] bits.
The scan cycle conversions are effectively started as
soon as the ADC_MODE[1:0] bits are programmed
through the SPI interface to ‘11’ (direct Write or Fast
command, ADC
Reset
and
restart). After
the
ADC_MODE[1:0] bits are set to ‘11’, they keep the same
value until the SCAN mode is completed or aborted.
Each SCAN[15:0] bit defines a possible input channel for
the scan cycle, which corresponds to a certain selection
of the analog multiplexer input channel and possibly a
certain predefined gain of the ADC. The scan cycle will
process and convert each channel that has been enabled
(SCAN[n] = 1) with a defined order of priority from MSb to
LSb (SCAN[15] to SCAN[0]). The list of channels with
their corresponding inputs is defined in Table 5-14.
When using DATA_FORMAT[1:0] = 11, each channel
conversion result in the SCAN sequence can be identi-
fied with a Channel ID (CH_ID[3:0]) code that will
appear in the 4 MSbs of the ADCDATA register output
value (Section 5.6 “ADC Output Data Format”). The
Channel ID indicates the channel that sends the output
data. Table 5-14 shows each possible Channel ID
value and its associated channel.
TABLE 5-14:
ADC CHANNEL SELECTION
SCAN[n]
Bit
Channel Name
Channel ID
MUX[7:0]
Corresponding Setting
Specific ADC Gain
15
OFFSET
1111
0x88
None
14
VCM
1110
0xF8
1x
13
AVDD
1101
0x98
0.33x
12
TEMP
1100
0xDE
1x
11
Differential Channel D (CH6-CH7)
1011
0x67
None
10
Differential Channel C (CH4-CH5)
1010
0x45
None
9
Differential Channel B (CH2-CH3)
1001
0x23
None
8
Differential Channel A (CH0-CH1)
1000
0x01
None
7
Single-Ended Channel CH7
0111
0x78
None
6
Single-Ended Channel CH6
0110
0x68
None
5
Single-Ended Channel CH5
0101
0x58
None
4
Single-Ended Channel CH4
0100
0x48
None
3
Single-Ended Channel CH3
0011
0x38
None
2
Single-Ended Channel CH2
0010
0x28
None
1
Single-Ended Channel CH1
0001
0x18
None
0
Single-Ended Channel CH0
0000
0x08
None
Note 1:
SCAN[11:9] and SCAN[7:2] are not available for MCP3561. Writing these bits has no effect. SCAN[11:10]
and SCAN[7:4] are not available for MCP3562. Writing these bits has no effect.



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