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MKW01Z128 Introduction and Chip Configuration
MKW01xxRM Reference Manual, Rev. 3, 04/2016
Freescale Semiconductor, Inc.
1-9
1.7.2.3
System modules
The following system modules are available on this device.
Table 1-4. Core modules
Module
Description
ARM Cortex-M0+
The ARM Cortex-M0+ is the newest member of the Cortex M Series of processors
targeting microcontroller applications focused on very cost sensitive, deterministic,
interrupt driven environments. The Cortex M0+ processor is based on the ARMv6
Architecture and Thumb®-2 ISA and is 100% instruction set compatible with its
predecessor, the Cortex-M0 core, and upward compatible to Cortex-M3 and M4 cores.
NVIC
The ARMv6-M exception model and nested-vectored interrupt controller (NVIC) implement
a relocatable vector table supporting many external interrupts, a single non-maskable
interrupt (NMI), and priority levels.
The NVIC replaces shadow registers with equivalent system and simplified
programmability. The NVIC contains the address of the function to execute for a particular
handler. The address is fetched via the instruction port allowing parallel register stacking
and look-up. The first sixteen entries are allocated to ARM internal sources with the others
mapping to MCU-defined interrupts.
AWIC
The primary function of the Asynchronous Wake-up Interrupt Controller (AWIC) is to detect
asynchronous wake-up events in stop modes and signal to clock control logic to resume
system clocking. After clock restart, the NVIC observes the pending interrupt and performs
the normal interrupt or event processing.
Single-cycle I/O Port
For high-speed, single-cycle access to peripherals, the Cortex-M0+ processor implements
a dedicated single-cycle I/O port.
Debug interfaces
Most of this device's debug is based on the ARM CoreSight™ architecture. One debug
interface is supported:
• Serial Wire Debug (SWD)
Table 1-5. System modules
Module
Description
System integration module (SIM)
The SIM includes integration logic and several module configuration settings.
System mode controller
The SMC provides control and protection on entry and exit to each power mode, control
for the Power management controller (PMC), and reset entry and exit for the complete
MCU.
Power management controller
(PMC)
The PMC provides the user with multiple power options. Multiple modes are supported that
allow the user to optimize power consumption for the level of functionality needed. Includes
power-on-reset (POR) and integrated low voltage detect (LVD) with reset (brownout)
capability and selectable LVD trip points.
Low-leakage wakeup unit (LLWU) The LLWU module allows the device to wake from low leakage power modes (LLS and
VLLS) through various internal peripheral and external pin sources.
Peripheral bridge
The peripheral bridge converts the crossbar switch interface to an interface to access a
majority of peripherals on the device.
DMA multiplexer (DMAMUX)
The DMA multiplexer selects from many DMA requests down to 4 for the DMA controller.
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