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Services Clock Control Unit
Copyright © 12/13/06 Marvell
CONFIDENTIAL
Doc. No. MV-TBD-00 Rev. A
December 13, 2006
Document Classification: Proprietary Information
Page 141
Not approved by Document Control. For review only.
Services Clock Control Unit
6
6.1
Overview
This PXA300 processor or PXA310 processor is built using a modular “system-on-a-chip” architecture designed
to manage multiple subsystems with unique power-management and clocking requirements. This architecture
supports the integration of both an application processor and one or more communication subsystems even
though the PXA300 processor or PXA310 processor does not integrate any communications subsystems. This
architecture partitions power-management and clock-generation functions into a master controller, also known as
the services unit, and a slave controller within each subsystem.
The services unit controls the power and clocks for all of the other modules on the chip. It consists of a
clock-control unit and a power-management unit that controls power for the whole chip and an RTC that
provides the real-time clock for the chip. The services unit interfaces to the applications subsystem through an
asynchronous bus interface.
The slave clock control unit (BCCU) is a divide-and-select unit that generates clocks needed by the applications
subsystem. The BCCU uses basic clock outputs from the services unit clock control unit (CCU).
shows the PXA300 processor or PXA310 processor clocks and power-management architecture.
Figure 6-1. Power and Clock Management Top-Level Block Diagram
AIB = Asynchronous
Interface Bus
Pin Control
Unit
Resets and AIB
Application Subsystem
BCCU
Apps Subsystem
Slave
PMU
(BPMU)
Clocks
Resets and AIB
Services Unit
Power I
2
C
PLLs
Clock Unit (CCU)
Master PMU
(MPMU)
Oscillators
RTC