EVK1040A Atmel, EVK1040A Datasheet - Page 7

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EVK1040A

Manufacturer Part Number
EVK1040A
Description
KIT EVALUATION FOR AT42QT1040
Manufacturer
Atmel
Series
Quantum, QTouch™r
Datasheets

Specifications of EVK1040A

Sensor Type
Touch, Capacitive
Sensing Range
4 Buttons/Keys
Interface
Discrete
Voltage - Supply
1.8 V ~ 5.5 V
Embedded
No
Utilized Ic / Part
AT42QT1040
Silicon Manufacturer
Atmel
Silicon Core Number
AT42QT1040
Kit Application Type
Sensing - Touch / Proximity
Application Sub Type
Capacitive Touch
Silicon Family Name
QTouch
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Sensitivity
-
Lead Free Status / Rohs Status
Supplier Unconfirmed
3.5
3.6
9524B–AT42–04/09
Power Supply
VQFN Package Restrictions
See
with temperature, the device tracks and compensates for these changes automatically with only
minor changes in sensitivity. If the supply voltage drifts or shifts quickly, the drift compensation
mechanism is not able to keep up, causing sensitivity anomalies or false detections.
The usual power supply considerations with QT parts apply to the device. The power should be
clean and come from a separate regulator if possible. However, this device is designed to
minimize the effects of unstable power, and except in extreme conditions should not require a
separate Low Dropout (LDO) regulator.
See under
It is assumed that a larger bypass capacitor (for example, 1 µF) is somewhere else in the power
circuit; for example, near the regulator.
To assist with transient regulator stability problems, the QT1040 waits 500 µs any time it wakes
up from a sleep state (that is, in Sleep mode) before acquiring, to allow Vdd to fully stabilize.
The central pad on the underside of the VQFN chip should be connected to ground. Do not run
any tracks underneath the body of the chip, only ground.
good/bad tracking.
Figure 3-1.
Section 5.2 on page 13
close to the power pins of the IC. Failure to do so can result in device oscillation,
high current consumption, erratic operation, and so on.
Caution: A regulator IC shared with other logic can result in erratic operation and is
not advised.
A single ceramic 0.1 µF bypass capacitor, with short traces, should be placed very
Figure 1.2 on page 3
Example of GOOD tracking
Examples of Good and Bad Tracking
for the power supply range. If the power supply fluctuates slowly
for suggested regulator manufacturers.
Example of BAD tracking
Figure 3-1
AT42QT1040
shows an example of
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