AD7150BRMZ Analog Devices Inc, AD7150BRMZ Datasheet - Page 24

IC CAP CONV 2CH ULT LP 10MSOP

AD7150BRMZ

Manufacturer Part Number
AD7150BRMZ
Description
IC CAP CONV 2CH ULT LP 10MSOP
Manufacturer
Analog Devices Inc
Type
Capacitance-to-Digital Converterr
Datasheet

Specifications of AD7150BRMZ

Design Resources
Using AD7150 for Proximity Sensing Appls (CN0095)
Input Type
Voltage
Output Type
Digital
Interface
2-Wire Serial
Current - Supply
120µA
Mounting Type
Surface Mount
Package / Case
10-MSOP, Micro10™, 10-uMAX, 10-uSOP
Resolution (bits)
12bit
Data Interface
2-Wire, I2C, Serial
Supply Voltage Range - Analog
2.7V To 3.6V
Supply Current
100µA
Digital Ic Case Style
SOP
No. Of Pins
10
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
EVAL-AD7150EBZ - BOARD EVAL FOR AD7150
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

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AD7150
PARASITIC SERIAL RESISTANCE
The AD7150 CDC result is affected by a resistance in series
with the measured capacitance. The total serial resistance (R
R
See Figure 14.
INPUT OVERVOLTAGE PROTECTION
The AD7150 capacitive input has an internal ESD protection.
However, some applications may require an additional
overvoltage protection, depending on the application-specific
requirements. Any additional circuit in the capacitive front end
must be carefully designed, especially with respect to the limits
recommended for maximum capacitance to ground, maximum
serial resistance, maximum leakage, and so on.
S2
in Figure 47) should be on the order of hundreds of Ω.
C
X
R
R
S1
S2
Figure 48. AD7150 CIN Overvoltage Protection
C
X
Figure 47. Parasitic Serial Resistance
EXC
CIN
R
R
S1
S2
EXC
CIN
CDC
CDC
GND
DATA
S1
Rev. 0 | Page 24 of 28
+
INPUT EMC PROTECTION
Some applications may require an additional input filter for
improving electromagnetic compatibility (EMC). Any input
filter must be carefully designed, considering the balance between
the system capacitance performance and system electromagnetic
immunity.
Figure 49 shows one of the possible input circuit configurations
significantly improving the system immunity against high
frequency noise and slightly affecting the AD7150 performance
in terms of additional gain and offset error.
POWER SUPPLY DECOUPLING AND FILTERING
The AD7150 has good dc and low frequency power supply
rejection but may be sensitive to higher frequency ripple and
noise, specifically around the excitation frequency and its
harmonics. Figure 50 shows a possible circuit configuration for
improving the system immunity against ripple and noise
coupled to the AD7150 via the power supply.
If the serial interface is connected to the other circuits in the
system, it is better to connect the pull-up resistors on the other
side of the V
AD7150 is used in standalone mode and the serial interface is
not used, it is better to connect the pull-up resistors directly to
the AD7150 V
Figure 50. AD7150 V
DD
GND
C
DD
X
filter than to connect to the AD7150. If the
Figure 49. AD7150 CIN EMC Protection
CDC
.
39kΩ
0.1µF
SDA
SCL
68pF
82kΩ
10kΩ
DD
10µF
Decoupling and Filtering
22pF
47pF
1kΩ
EXC
CIN
1kΩ
GND
CDC
1kΩ
V
DD

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