KITMPR03XEVM Freescale Semiconductor, KITMPR03XEVM Datasheet - Page 16

KIT EVAL FOR MPR03X

KITMPR03XEVM

Manufacturer Part Number
KITMPR03XEVM
Description
KIT EVAL FOR MPR03X
Manufacturer
Freescale Semiconductor
Datasheets

Specifications of KITMPR03XEVM

Sensor Type
Touch, Capacitive
Interface
I²C
Voltage - Supply
1.71 V ~ 2.75 V
Embedded
Yes, Other
Utilized Ic / Part
MPR031
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Description/function
Proximity Sensor
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Sensitivity
-
Sensing Range
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For Use With/related Products
MPR031, MPR032
MPR03X
16
7
7.1
The MPR03X utilizes the principle that a capacitor holds a fixed amount of charge at a specific electric potential. Both the
implementation and the configuration will be described in this section.
7.2
The basic measurement technique used by the MPR03X is to charge up the capacitor C on one electrode input with a DC current
I for a time T (the charge time). Before measurement, the electrode input is grounded, so the electrode voltage starts from 0 V
and charges up with a slope,
are grounded during this measurement. At the end of time T, the electrode voltage is measured with a 10 bit ADC. The voltage
is inversely proportional to capacitance according to
rate it was charged.
When measuring capacitance there are some inherent restrictions due to the methodology used. On the MPR03X the voltage
after charging must be in the range that is shown in
Theory of Operation
Introduction
Capacitance Measurement
V
900
800
700
600
500
400
300
200
100
0
1.71
Figure 21. MPR03X Electrode Measurement Charging Pad Capacitance
Electrode Charge Time
Equation
1, where C is the pad capacitance on the electrode
1.91
Electrode
Charging
V
Figure
dV
Equation 2
dt
Valid ADC Values vs. V DD
=
2.11
I
=
Figure 22.
×
C
22.
V DD (V)
C
ADChigh
ADCmid
ADClow
I
T
T
.
The electrode is then discharged back to ground at the same
Electrode voltage measured here
Discharging
Electrode
2.31
Electrode Discharge Time
2.51
(Figure
21). All of the other electrodes
Freescale Semiconductor
2.71
2T
Equation 1
Equation 2
Sensors

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