30.4. Signal Description
Not applicable.
30.5. Product Dependencies
In order to use this peripheral, other parts of the system must be configured correctly, as described below.
30.5.1. I/O Lines
Not applicable.
30.5.2. Power Management
The EVSYS can be used to wake up the CPU from all sleep modes, even if the clock used by the EVSYS
channel and the EVSYS bus clock are disabled. Refer to the
PM – Power Manager
for details on the
different sleep modes.
In all sleep modes, although the clock for the EVSYS is stopped, the device still can wake up the EVSYS
clock. Some event generators can generate an event when their clocks are stopped. The generic clock
for the channel (GCLK_EVSYS_CHANNEL_n) will be restarted if that channel uses a synchronized path
or a resynchronized path. It does not need to wake the system from sleep.
Related Links
30.5.3. Clocks
The EVSYS bus clock (CLK_EVSYS_APB) can be enabled and disabled in the Main Clock module, and
the default state of CLK_EVSYS_APB can be found in
Peripheral Clock Masking
.
Each EVSYS channel has a dedicated generic clock (GCLK_EVSYS_CHANNEL_n). These are used for
event detection and propagation for each channel. These clocks must be configured and enabled in the
generic clock controller before using the EVSYS. Refer to
GCLK - Generic Clock Controller
for details.
Related Links
on page 145
GCLK - Generic Clock Controller
on page 121
30.5.4. DMA
Not applicable.
30.5.5. Interrupts
The interrupt request line is connected to the Interrupt Controller. Using the EVSYS interrupts requires the
interrupt controller to be configured first. Refer to
Nested Vector Interrupt Controller
for details.
Related Links
Nested Vector Interrupt Controller
on page 44
30.5.6. Events
Not applicable.
30.5.7. Debug Operation
When the CPU is halted in debug mode, this peripheral will continue normal operation. If the peripheral is
configured to require periodical service by the CPU through interrupts or similar, improper operation or
Atmel SAM L22G / L22J / L22N [DATASHEET]
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