參數(shù)資料
型號: MAX1407CAI+
廠商: Maxim Integrated Products
文件頁數(shù): 21/48頁
文件大?。?/td> 0K
描述: IC DAS 16BIT LP 28-SSOP
產品培訓模塊: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
標準包裝: 46
類型: 數(shù)據采集系統(tǒng)(DAS)
分辨率(位): 16 b
采樣率(每秒): 60
數(shù)據接口: 串行
電壓電源: 模擬和數(shù)字
電源電壓: 2.7 V ~ 3.6 V
工作溫度: 0°C ~ 70°C
安裝類型: 表面貼裝
封裝/外殼: 28-SSOP(0.209",5.30mm 寬)
供應商設備封裝: 28-SSOP
包裝: 管件
MAX1407/MAX1408/MAX1409/MAX1414
Low-Power, 16-Bit Multichannel DAS with
Internal Reference,10-Bit DACs, and RTC
28
______________________________________________________________________________________
The Offset register contains the 16-bit result from the
most recently completed ADC offset calibration. The
data format is two’s complement and is subtracted from
the filter output before writing to the Data register. After
power-up, the Offset register contains all zeros.
Each change in ambient operating condition (power
supply and temperature), PGA gain, bipolar/unipolar
input range, buffered/unbuffered mode, or conversion
speed requires an offset calibration. The offset for a
given ADC configuration can be read and stored by the
P to avoid ADC recalibration. When returning to an
ADC configuration where the offset was stored, write
back the stored offset to the Offset register. The stored
offset stays valid as long as the ambient operating con-
dition remains unchanged (within ±20°C).
Force Sense DAC Registers
(MAX1407/MAX1409/MAX1414 only)
Writing to the DAC1 register updates the output of
DAC1. Writing to the DAC2 register updates the output
of DAC2. The DAC data is 10-bit long and left justified.
Follow the timing diagrams of Figure 11 and Figure 13
to program these registers. Writing a logic 0 to the
DA1E or DA2E bit in the POWER2 register disables
DAC1 or DAC2, respectively. At power-up, DAC1 and
DAC2 are disabled.
OFFSET REGISTER (00011)
FIRST BIT (MSB)
OFF15
OFF14
OFF13
OFF12
OFF11
OFF10
OFF9
OFF8
OFF7
OFF6
OFF5
OFF4
OFF3
OFF2
OFF1
OFF0
(LSB)
DAC2 REGISTER (00101)
Writing to the DAC1 register will update the DAC1 output
(OUT1). The output voltage in a unity gain configuration is
VREF x N/(2
10), where N is the integer value of DAC1[9:0]
(0 to 1023), and VREF is the reference voltage for the
DAC. The DAC1 data is 10-bit long and left justified. After
power-up, the DAC1 register contains all zeros.
FIRST BIT (MSB)
DAC1[9]
DAC1[8]
DAC1[7]
DAC1[6]
DAC1[5]
DAC1[4]
DAC1[3]
DAC1[2]
DAC1[1]
DAC1[0]
x
xxxxx
(LSB)
DAC1 REGISTER (00100)
Writing to the DAC2 register will update the DAC2 output
(OUT2). The output voltage in a unity-gain configuration is
VREF x N/(2
10), where N is the integer value of DAC2[9:0]
(0 to 1023), and VREF is the reference voltage for the
DAC. The DAC2 data is 10-bit long and left justified. After
power-up, the DAC2 register contains all zeros.
FIRST BIT (MSB)
DAC2[9]
DAC2[8]
DAC2[7]
DAC2[6]
DAC2[5]
DAC2[4]
DAC2[3]
DAC2[2]
DAC2[1]
DAC2[0]
x
xxxxx
(LSB)
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