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MPC563XM Reference Manual, Rev. 1
100
Freescale Semiconductor
Preliminary—Subject to Change Without Notice
the reset controller. The internal reset signal and RSTOUT pin are asserted. The value on the WKPCFG
pin is applied at the assertion of the internal reset signal (assertion of RSTOUT), as is the PLLREF value.
Once the Software Watchdog Timer reset request is negated, the reset controller waits for a predetermined
number of clock cycles (refer to
). When the clock count finishes the WKPCFG
and BOOTCFG pins are sampled. The reset controller then waits 4 clock cycles before negating RSTOUT,
and the associated bits/fields are updated in the SIU_RSR. In addition, the SWTRS bit is set, and all other
reset status bits in the SIU_RSR are cleared.
4.5.7
Checkstop Reset
When the e200z335 core enters a checkstop state, and the Checkstop Reset is enabled (the CRE bit in the
System Reset Control Register (SIU_SRCR) is set), a Checkstop Reset occurs. The internal reset signal
and RSTOUT pin are asserted. The value on the WKPCFG pin is applied at the assertion of the internal
reset signal (assertion of RSTOUT), as is the PLLREF value. After the checkstop state signal is negated,
the reset controller waits for a predetermined number of clock cycles (refer to
Once the clock count finishes the WKPCFG and BOOTCFG pins are sampled. The reset controller then
waits 4 clock cycles before negating RSTOUT, and the associated bits/fields are updated in the SIU_RSR.
In addition, the CRS bit is set, and all other reset status bits in the SIU_RSR are cleared. Refer to the
e200z335 Core Reference Manual
for more information.
4.5.8
JTAG Reset
A system reset occurs when JTAG is enabled and either the EXTEST, CLAMP, or HIGHZ instructions are
executed by the JTAG controller. The internal reset signal is asserted. The state of the RSTOUT pin is
determined by the JTAG instruction. The value on the WKPCFG pin is applied at the assertion of the
internal reset signal, as is the PLLREF value. After the JTAG reset request is negated, the reset controller
waits for a predetermined number of clock cycles (refer to
count finishes the WKPCFG and BOOTCFG pins are sampled, and the associated bits/fields are updated
in the SIU_RSR. The reset status bits in the SIU_RSR are unaffected. Refer to
for more information.
4.5.9
Software System Reset
A Software System Reset is caused by a write to the SSR bit in the System Reset Control Register
(SIU_SRCR); see
Section 16.9.4, “System Reset Control Register (SIU_SRCR).”
A write of one to the
SSR bit causes an internal reset of the MCU. The internal reset signal and RSTOUT pin are asserted. The
value on the WKPCFG pin is applied at the assertion of the internal reset signal (assertion of RSTOUT),
as is the PLLREF value. The SSR bit is automatically cleared and the reset controller waits for a
predetermined number of clock cycles (refer to
”). Once the clock count finishes
the WKPCFG and BOOTCFG pins are sampled. The reset controller then waits 4 clock cycles before
negating RSTOUT, and the associated bits/fields are updated in the SIU_RSR. In addition, the SSRS bit
is set, and all other reset status bits in the SIU_RSR are cleared.
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