4-Channel, ±VREF Multirange Inputs, Serial 16-Bit ADC 12 _______________" />
參數(shù)資料
型號: MAX1303BEUP+
廠商: Maxim Integrated Products
文件頁數(shù): 4/29頁
文件大?。?/td> 0K
描述: IC ADC 16BIT MULT RANGE 20TSSOP
產(chǎn)品培訓模塊: Lead (SnPb) Finish for COTS
標準包裝: 74
位數(shù): 16
采樣率(每秒): 115k
數(shù)據(jù)接口: 串行
轉(zhuǎn)換器數(shù)目: 1
功率耗散(最大): 879mW
電壓電源: 模擬和數(shù)字
工作溫度: -40°C ~ 85°C
安裝類型: 表面貼裝
封裝/外殼: 20-TSSOP(0.173",4.40mm 寬)
供應商設(shè)備封裝: 20-TSSOP
包裝: 管件
輸入數(shù)目和類型: 4 個單端,單極;4 個單端,雙極;2 個差分,雙極
MAX1303
4-Channel, ±VREF Multirange Inputs,
Serial 16-Bit ADC
12
______________________________________________________________________________________
Pin Description
PIN
NAME
FUNCTION
1
AGND1
Analog Ground 1. DGND, DGNDO, AGND3, AGND2, and AGND1 must be connected together.
2
AVDD1
Analog Supply Voltage 1. Connect AVDD1 to a +4.75V to +5.25V power-supply voltage. Bypass AVDD1 to
AGND1 with a 0.1F capacitor.
3
CH0
Analog Input Channel 0
4
CH1
Analog Input Channel 1
5
CH2
Analog Input Channel 2
6
CH3
Analog Input Channel 3
7
CS
Active-Low Chip-Select Input. When CS is low, data is clocked into the device from DIN on the rising edge
of SCLK. With CS low, data is clocked out of DOUT on the falling edge of SCLK. When CS is high, activity
on SCLK and DIN is ignored and DOUT is high impedance.
8DIN
Serial Data Input. When CS is low, data is clocked in on the rising edge of SCLK. When CS is high,
transitions on DIN are ignored.
9
SSTRB
Serial-Strobe Output. When using the internal clock, SSTRB rising edge transitions indicate that data is
ready to be read from the device. When operating in external clock mode, SSTRB is always low. SSTRB
does not tri-state, regardless of the state of CS, and therefore requires
a dedicated I/O line.
10
SCLK
Serial Clock Input. When CS is low, transitions on SCLK clock data into DIN and out of DOUT. When CS is
high, transitions on SCLK are ignored.
11
DOUT
Serial Data Output. When CS is low, data is clocked out of DOUT with each falling SCLK transition. When
CS is high, DOUT is high impedance.
12
DGNDO
Digital I/O Ground. DGND, DGNDO, AGND3, AGND2, and AGND1 must be connected together.
13
DGND
Digital Ground. DGND, DGNDO, AGND3, AGND2, and AGND1 must be connected together.
14
DVDDO
Digital I/O Supply Voltage Input. Connect DVDDO to a +2.7V to +5.25V power-supply voltage. Bypass
DVDDO to DGNDO with a 0.1F capacitor.
15
DVDD
Digital-Supply Voltage Input. Connect DVDD to a +4.75V to +5.25V power-supply voltage. Bypass DVDD
to DGND with a 0.1F capacitor.
16
REFCAP
Bandgap-Voltage Bypass Node. For external reference operation, connect REFCAP to AVDD. For internal
reference operation, bypass REFCAP with a 0.01F capacitor to AGND1 (VREFCAP
≈ 4.096V).
17
REF
Reference-Buffer Output/ADC Reference Input. For external reference operation, apply an external
reference voltage from 3.800V to 4.136V to REF. For internal reference operation, bypassing REF with a
1F capacitor to AGND1 sets VREF = 4.096V ±1%.
18
AGND3
Analog Signal Ground 3. AGND3 is the ADC negative reference potential. Connect AGND3 to AGND1.
DGND, DGNDO, AGND3, AGND2, and AGND1 must be connected together.
19
AVDD2
Analog Supply Voltage 2. Connect AVDD2 to a +4.75V to +5.25V power-supply voltage. Bypass AVDD2 to
AGND2 with a 0.1F capacitor.
20
AGND2
Analog Ground 2. This ground carries approximately five times more current than AGND1. DGND,
DGNDO, AGND3, AGND2, and AGND1 must be connected together.
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