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430 데이터시트(PDF) 13 Page - Intel Corporation

부품명 430
상세설명  Celeron M Processor on 65 nm Process
PDF  71 Pages
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제조업체  INTEL [Intel Corporation]
홈페이지  http://www.intel.com
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430 데이터시트(HTML) 13 Page - Intel Corporation

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Datasheet
13
Low Power Features
2.1.1.3
C1/MWAIT Powerdown State
MWAIT is a low power state entered when the processor core executes the MWAIT
instruction. Processor behavior in the MWAIT state is identical to the AutoHALT state
except that there is an additional event that can cause the processor core to return to
the C0 state: the Monitor event. See the IA-32 Intel® Architecture Software
Developer's Manual, Volume 2A/2B: Instruction Set Reference for more information.
2.1.1.4
Core C2 State
The core of the Celeron M processor can enter the C2 state by initiating a P_LVL2 I/O
read to the P_BLK or an MWAIT(C2) instruction, but the processor will not issue a Stop
Grant Acknowledge special bus cycle unless the STPCLK# pin is also asserted.
While in C2 state, the Celeron M processor will process only the bus snoops. The
processor core will enter a snoopable sub-state (not shown in Figure 2) to process the
snoop and then return to the C2 state.
2.1.1.5
Core C3 State
Core C3 state is a very low power state the processor core can enter while maintaining
context. The core of the Celeron M processor can enter the C3 state by initiating a
P_LVL3 I/O read to the P_BLK or an MWAIT(C3) instruction. Before entering the C3
state the processor core flushes the contents of its L1 caches into the processor’s L2
cache. Except for the caches, the processor core maintains all its architectural state in
the C3 state. The Monitor remains armed if it is configured. All of the clocks in the
processor core are stopped in the C3 state.
Because the core’s caches are flushed the processor keeps the core in the C3 state
when the processor detects a snoop on the FSB. The processor core will transition to
the C0 state upon the occurrence of a Monitor event, SMI#, INIT#, LINT[1:0] (NMI,
INTR), or FSB interrupt message. RESET# will cause the processor core to immediately
initialize itself.
2.1.2
Package Low Power States
The package level low power states are applicable for the Celeron M processor. All
package level low power states are described as follows:
2.1.2.1
Normal State
This is the normal operating state for the processor. The Celeron M processor enters the
Normal state when the core is in the C0, C1/AutoHALT, or C1/MWAIT state.
2.1.2.2
Stop-Grant State
When the STPCLK# pin is asserted the core of the Celeron M processor enters the Stop-
Grant state within 20 bus clocks after the response phase of the processor-issued Stop
Grant Acknowledge special bus cycle. When the STPCLK# pin is deasserted the core
returns to the previous core low-power state.
Since the AGTL+ signal pins receive power from the FSB, these pins should not be
driven (allowing the level to return to VCCP) for minimum power drawn by the
termination resistors in this state. In addition, all other input pins on the FSB should be
driven to the inactive state.
RESET# will cause the processor to immediately initialize itself, but the processor will
stay in Stop-Grant state. When RESET# is asserted by the system the STPCLK#, SLP#,
DPSLP#, and DPRSTP# pins must be deasserted more than 480 µs prior to RESET#



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