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CAP1296 датащи(PDF) 16 Page - Microchip Technology

номер детали CAP1296
подробное описание детали  6-Channel Capacitive Touch Sensor with Proximity
PDF  68 Pages
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производитель  MICROCHIP [Microchip Technology]
домашняя страница  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

CAP1296 датащи(HTML) 16 Page - Microchip Technology

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CAP1296
DS00001569B-page 16
 2013-2015 Microchip Technology Inc.
4.1
Power States
The CAP1296 has 4 power states depending on the status of the STBY, COMBO, and DSLEEP bits. When the device
transitions between power states, previously detected touches (for channels that are being de-activated) are cleared
and the sensor input status bits are reset.
1.
Active - The normal mode of operation. The device is monitoring capacitive sensor inputs enabled in the Active
state.
2.
Standby - When the STBY bit is set, the device is monitoring the capacitive sensor inputs enabled in the Standby
state. Interrupts can still be generated based on the enabled channels. The device will still respond to communi-
cations normally and can be returned to the Active state of operation by clearing the STBY bit. Power consump-
tion in this state is dependent on the number of sensor inputs enabled as well as averaging, sampling time, and
cycle time.
3.
Combo - When the COMBO bit is set, the device is monitoring capacitive sensor inputs enabled in the Active
state as well as inputs enabled in the Standby state (hence the name “Combo”). Interrupts can still be generated
based on the enabled channels. The device will still respond to communications normally and can be returned
to the Active state of operation by clearing the COMBO bit. Power consumption in this state is dependent on the
number of sensor inputs enabled as well as averaging, sampling time, and cycle time.
4.
Deep Sleep - When the DSLEEP bit is set, the device is in its lowest power state. It is not monitoring any capac-
itive sensor inputs. While in Deep Sleep, the CAP1296 can be awakened by SMBus communications targeting
the device. This will not cause the DSLEEP to be cleared so the device will return to Deep Sleep once all com-
munications have stopped. The device can be returned to the Active state of operation by clearing the DSLEEP
bit.
4.2
Reset
The Power-On Reset (POR) circuit holds the device in reset until VDD has reached an acceptable level, Power-on Reset
Release Voltage (VPORR), for minimum operation. The power-up timer (PWRT) is used to extend the start-up period until
all device operation conditions have been met. The power-up timer starts after VDD reaches VPORR. POR and PORR
with slow rising VDD is shown in Figure 4-2.
The Brown-Out Reset (BOR) circuit holds the device in reset when VDD falls to a minimum level, VBOR for longer than
the BOR reset delay (tBORDC). After a BOR, when VDD rises above VPORR, the power-up timer is started again and must
finish before reset is released, as shown in Figure 4-2.
4.3
Capacitive Touch Sensing
The CAP1296 contains six (6) independent capacitive touch sensor inputs. Each sensor input has dynamic range to
detect a change of capacitance due to a touch. Additionally, each sensor input can be configured to be automatically
and routinely recalibrated.
4.3.1
CAPACITIVE TOUCH SENSING SETTINGS
Controls for managing capacitive touch sensor inputs are determined by the power state.
FIGURE 4-2:
POR AND PORR WITH SLOW RISING VDD AND BOR WITH FALLING VDD
VDD
VBOR
TPWRT
GND
Undefined
SYSRST
VPOR
VPORR
TBORDC TPWRT



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