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QST1608AU0 Datasheet(PDF) 9 Page - STMicroelectronics

Part # QST1608AU0
Description  Capacitive touch sensor device 8 keys with individual key state outputs or I2C interface
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

QST1608AU0 Datasheet(HTML) 9 Page - STMicroelectronics

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QST108
QST touch sensing technology
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3.3
Faulty and unused keys
Any sensing channel that does not have its sense capacitor (CS) fitted is assumed to be
either faulty or unused. This channel takes no further part in operation unless a Master-
commanded recalibration operation shows it to have an in-range burst count again. Faulty,
unused or disabled keys are still bursted but not processed to avoid modifying the sensitivity
of active keys.
This is important for sensing channels that have an open or short circuit fault across CS.
Such channels would otherwise cause very long acquire bursts, and in consequence would
slow the operation of the entire QST device.
To optimize touch response time and device power consumption, if some keys are not used,
we recommend to try suppressing the ones which belong to the same burst. Bursts which
do not have any keys implemented will then not be processed.
3.4
Detection threshold levels
The key capacitance change induced by the presence of a finger is sensed by the variation
in the number of charge transfer pulses to load the capacitor. The difference in the pulse
count number is compared to a threshold in order to detect the key as pressed or not.
Two different thresholds, one for detection and one for the end of detection, create an
hysteresis in order to prevent erratic behavior.
The default threshold levels and hysteresis values are described in Section 6.6: Capacitive
sensing characteristics on page 35.
3.5
Detection integrator filter
The Detection Integrator (DI) filter mechanism works together with spread spectrum
operation to dramatically reduce the effects of noise on key states. The DI mechanism
requires a specified number of measurements that qualify as detections (and these must
occur in a row) or the detection will not be reported.
In a similar manner, the end of a touch (loss of signal) also has to be confirmed over several
measurements. It is called the End of Detection Integrator (EDI).
This process acts as a type of “debounce” mechanism against noise.
The default DI and EDI values for confirming start of touch and end of touch are described in
Section 6.6: Capacitive sensing characteristics on page 35.


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