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CapSense Technology
AN64846 - Getting Started with CapSense
®
Doc. No. 001-64846 Rev. *X
30
C
LD
– Capacitance added by Liquid Droplet
Figure 2-35. Effect of Liquid Droplet when the Hatch Fill Around the Sensor Is Connected to Ground
To compensate the capacitance added by the liquid droplet to the CapSense circuitry, you should drive the hatch fill
surrounding the sensor with the
, when the hatch fill surrounding the sensor is connected to the driven-shield signal and when
a liquid droplet falls on the touch surface, because the voltage on both the sides of liquid droplet is kept at the same
potential, the capacitance C
LD
added by the liquid droplet is nullified. Because the voltage difference across the
capacitance C
LD
is zero, it will not draw any charge from the AMUX bus and, therefore, the increase in the raw count
when a liquid droplet falls on the sensor will be very small, as
Figure 2-36. Capacitance Added by Liquid Droplet when the Hatch Fill around the Sensor Is Connected to Shield
BTN1
Hatch Fill
Connected to
Driven Shield
Button Sensor
560
Ω
CapSense
Controller
CapSense
Controller
560
Ω
C
S
C
SH
C
HG
C
LD
Liquid Droplet
Shield
Sensor Waveform
Driven Shield
Waveform
Shield
C
S
– Sensor Parasitic Capacitance
C
SH
– Capacitance between Sensor and Hatch Fill
C
HG
– Capacitance between Hatch Fill and Ground
C
LD
– Capacitance Added by Liquid Droplet