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ADS1018IRUGR Arkusz danych(PDF) 11 Page - Texas Instruments

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Numer części ADS1018IRUGR
Szczegółowy opis  Ultra-Small, Low-Power, SPI??Compatible, 12-Bit, Analog-to-Digital Converter and Temperature Sensor with Internal Reference
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Producent  TI1 [Texas Instruments]
Strona internetowa  http://www.ti.com
Logo TI1 - Texas Instruments

ADS1018IRUGR Arkusz danych(HTML) 11 Page - Texas Instruments

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background image
t
SAMPLE
ON
OFF
S
1
S
2
OFF
ON
Equivalent
Circuit
f
= 250 kHz
CLK
Z
CM
Z
DIFF
Z
CM
AIN
N
AIN
P
0.7 V
0.7 V
S
1
S
1
C
A1
C
B
C
A2
S
2
S
2
0.7 V
0.7 V
AIN
N
AIN
P
ADS1018
www.ti.com
SBAS526B – NOVEMBER 2012 – REVISED OCTOBER 2013
ANALOG INPUTS
The ADS1018 uses a switched-capacitor input stage in which capacitors are continuously charged and then
discharged to measure the voltage between AINP and AINN. The capacitors used are small, and to external
circuitry, the average loading appears resistive. This structure is shown in Figure 11. The resistance is set by the
capacitor values and the rate at which they are switched. Figure 12 shows the on/off setting of the switches in
Figure 11. During the sampling phase, all S1 switches are closed. This event charges CA1 to AINP, CA2 to AINN,
and CB to (AINP – AINN). During the discharge phase, S1 is first opened and then S2 is closed. Both CA1 and CA2
then discharge to approximately 0.7 V, and CB discharges to 0 V. This charging draws a very small transient
current from the source driving the ADS1018 analog inputs. The average value of this current can be used to
calculate the effective impedance (Reff), where Reff = VIN / IAVERAGE.
Figure 11. Simplified Analog Input Circuit
Figure 12. S1 and S2 Switch Timing for Figure 11
The common-mode input impedance is measured by applying a common-mode signal to the shorted AINP and
AINN inputs and measuring the average current consumed by each pin. The common-mode input impedance
changes depending on the PGA gain setting, but is approximately 6 M
Ω for the default PGA gain setting. In
Figure 11, the common-mode input impedance is ZCM.
The differential input impedance is measured by applying a differential signal to AINP and AINN inputs where one
input is held at 0.7 V. The current that flows through the pin connected to 0.7 V is the differential current and
scales with the PGA gain setting. In Figure 11, the differential input impedance is ZDIFF. Table 1 describes the
typical differential input impedance.
Table 1. Differential Input Impedance
FS (V)
DIFFERENTIAL INPUT IMPEDANCE
±6.144(1)
22 M
Ω
±4.096(1)
15 M
Ω
±2.048
4.9 M
Ω
±1.024
2.4 M
Ω
±0.512
710 k
Ω
±0.256
710 k
Ω
(1)
This parameter expresses the full-scale range of the ADC scaling. In
no event should more than VDD + 0.3 V be applied to this device.
Copyright © 2012–2013, Texas Instruments Incorporated
Submit Documentation Feedback
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