參數(shù)資料
型號(hào): MCP3423T-E/UN
廠商: Microchip Technology
文件頁(yè)數(shù): 7/58頁(yè)
文件大?。?/td> 0K
描述: IC ADC 18BIT 3.75SPS 2CH 10-MSOP
產(chǎn)品培訓(xùn)模塊: MCP3901 Analog Front End
標(biāo)準(zhǔn)包裝: 2,500
位數(shù): 18
采樣率(每秒): 3.75
數(shù)據(jù)接口: I²C,串行
轉(zhuǎn)換器數(shù)目: 1
電壓電源: 單電源
工作溫度: -40°C ~ 125°C
安裝類(lèi)型: 表面貼裝
封裝/外殼: 10-TFSOP,10-MSOP(0.118",3.00mm 寬)
供應(yīng)商設(shè)備封裝: 10-MSOP
包裝: 帶卷 (TR)
輸入數(shù)目和類(lèi)型: 4 個(gè)單端,雙極;2 個(gè)差分,雙極
配用: MCP3423EV-ND - BOARD EVAL 18BIT 2CH ADC MCP3423
其它名稱(chēng): MCP3423T-E/UNTR
2009 Microchip Technology Inc.
DS22088C-page 15
MCP3422/3/4
4.9
Digital Output Codes and
Conversion to Real Values
4.9.1
DIGITAL OUTPUT CODE FROM
DEVICE
The digital output code is proportional to the input
voltage and PGA settings. The output data format is a
binary two’s complement. With this code scheme, the
MSB can be considered a sign indicator. When the
MSB is a logic ‘0’, the input is positive. When the MSB
is a logic ‘1’, the input is negative. The following is an
example of the output code:
a.
for a negative full scale input voltage: 100...000
Example: (CHn+ - CHn-)
PGA = -2.048V
b.
for a zero differential input voltage: 000...000
Example: (CHn+ - CHn-) = 0
c.
for a positive full scale input voltage: 011...111
Example: (CHn+ - CHn-)
PGA = 2.048V
The MSB (sign bit) is always transmitted first through
the I2C serial data line. The resolution for each
conversion is 18, 16, 14, or 12 bits depending on the
conversion rate selection bit settings by the user.
The output codes will not roll-over even if the input
voltage exceeds the maximum input range. In this
case, the code will be locked at 0111...11 for all
voltages greater than (VREF - 1 LSB)/PGA and
1000...00
for
voltages
less
than
-VREF/PGA.
Table 4-2 shows an example of output codes of various
input levels for 18 bit conversion mode. Table 4-3
shows an example of minimum and maximum output
codes for each conversion rate option.
The number of output code is given by:
EQUATION 4-2:
The LSB of the data conversion is given by:
EQUATION 4-3:
Table 4-1 shows the LSB size of each conversion rate
setting. The measured unknown input voltage is
obtained by multiplying the output codes with LSB. See
the following section for the input voltage calculation
using the output codes.
TABLE 4-1:
RESOLUTION SETTINGS VS.
LSB
TABLE 4-2:
EXAMPLE OF OUTPUT CODE
FOR 18 BITS (NOTE 1, NOTE 2)
TABLE 4-3:
MINIMUM AND MAXIMUM
OUTPUT CODES (NOTE)
Number of Output Code =
Maximum Code
1
+
() PGA
CHn+
CHn-
()
2.048V
-----------------------------------------
×
=
Where:
See Table 4-3 for Maximum Code
LSB
2V
REF
×
2
N
----------------------
2
2.048V
×
2
N
--------------------------
==
Where:
N
=
Resolution, which is programmed in
the Configuration Register.
Resolution Setting
LSB
12 bits
1 mV
14 bits
250 V
16 bits
62.5 V
18 bits
15.625 V
Input Voltage:
[CHn+ - CHn-] PGA
Digital Output Code
V
REF
011111111111111111
VREF - 1 LSB
011111111111111111
2LSB
000000000000000010
1LSB
000000000000000001
0
000000000000000000
-1 LSB
111111111111111111
-2 LSB
111111111111111110
- VREF
100000000000000000
< -VREF
100000000000000000
Note 1:
MSB is a sign indicator:
0: Positive input (CHn+ > CHn-)
1: Negative input (CHn+ < CHn-)
2:
Output data format is binary two’s
complement.
Resolution
Setting
Data Rate
Minimum
Code
Maximum
Code
12
240 SPS
-2048
2047
14
60 SPS
-8192
8191
16
15 SPS
-32768
32767
18
3.75 SPS
-131072
131071
Note:
Maximum n-bit code = 2N-1 - 1
Minimum n-bit code = -1 x 2N-1
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