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30036-23 参数 Datasheet PDF下载

30036-23图片预览
型号: 30036-23
PDF下载: 下载PDF文件 查看货源
内容描述: 的Geode ™ GXLV处理器系列的低功耗X86集成解决方案 [Geode⑩ GXLV Processor Series Low Power Integrated x86 Solutions]
分类和应用:
文件页数/大小: 247 页 / 4117 K
品牌: NSC [ National Semiconductor ]
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5.0 Power Management  
Power consumption in a GXLV processor based system is  
managed with the use of both of hardware and software.  
The complete hardware solution is provided for only when  
the GXLV processor is combined with a Geode I/O com-  
panion such as the CS5530.  
Software:  
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API for APM aware OS  
API for ACPI aware OS  
PM VSA for not PM aware OSs  
Geode I/O companion power management support is dis-  
cussed in this specification only when necessary to better  
explain the GXLV processors power management fea-  
tures.  
The GXLV processor power consumption is managed pri-  
marily through a sophisticated clock stop management  
technology. The GXLV processor also provides the hard-  
ware enablers from which the complete power manage-  
ment solution depends on.  
Software support of power management is discussed in  
this specification only when necessary to better explain  
the GXLV processors power management features.  
Typically the three greatest power consumers in a battery  
powered device are the display, the hard drive (if it has  
one) and the CPU. Managing power for the first two is rel-  
atively straightforward and is discussed in the CS5530 I/O  
companion data book. Managing CPU power is more diffi-  
cult since effective use of the clock stop technology  
requires effective detection of inactivity, both at a system  
level and at a code processing level.  
5.1.1 System Management Mode  
The GXLV processor has an operation mode called Sys-  
tem Management Mode. This mode is generally entered  
when the SMI# pin goes active. SMM is explained in Sec-  
tion 3.7 System Management Modeon page 83. If active  
power management is desired, then the Geode I/O com-  
panion is programmed at boot time to activate SMM  
through the SMI# pin due to specific I/O inactivity.  
Basically two methods are supported to manage power  
during periods of inactivity. The first method, called activ-  
ity based power management allows the hardware in the  
Geode I/O companion to monitor activity to certain  
devices in the system and if a period of inactivity occurs  
take some form of power conservation action. This  
method does not require OS support because this sup-  
port is handled by SMM software. Simple monitoring of  
external activity is imperfect as well as inefficient. The  
second method, called passive power management,  
requires the OS to take the active role in managing power.  
National supports two application programming interfaces  
(APIs) to enable power management by the OS:  
Advanced Power Management (APM) and Advanced  
Configuration and Power Interface (ACPI). These two  
methods can be used independent of one another or they  
can be used together. The extent to which these  
resources are employed depends on the application and  
the discretion of the system designer.  
SMM is also used in the passive power management  
method, however, it is limited to supporting specific API  
calls such as entering sleep modes.  
5.1.2 Suspend-on-Halt  
Suspend-on-Halt is the most effective power reducing fea-  
ture of the GXLV processor with the system active. This  
feature allows the system to reduce power when the sys-  
tems OS becomes idle without producing any delay when  
the systems OS becomes active.  
When entered, Suspend-on-Halt stops the clock to the  
processor core while the intergrated functions (graphics,  
memory controller, PCI controller) are still active. There is  
absolutely no observational evidence that the processor  
has changed operational behavior except for two things.  
The GXLV draws significantly less core power and the  
SUSPA# pin is active while in this state.  
The GXLV processor and Geode I/O companion chips  
contain advanced power management features for reduc-  
ing the power consumption of the processor in the sys-  
tem.  
5.1.3 CPU Suspend  
CPU Suspend is a hardware initiated power management  
state. The SUSP# pin is asserted by external hardware  
such as an Geode I/O companion. The GXLV processor  
asserts the SUSPA# pin to indicate that the processor has  
entered CPU Suspend. This state is similar to Suspend-  
on-Halt except for its entry and exit method. SUSP# active  
causes the processor to enter the state and SUSP# inac-  
tive causes its exit. The power savings is identical to Sus-  
pend-on-Halt. Also, as in Suspend-on-Halt, the processor  
will temporally disable CPU Suspend when there is PCI  
master activity.  
5.1 POWER MANAGEMENT FEATURES  
The GXLV processor based system supports the following  
power management features:  
GXLV processor hardware  
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System Management Mode (SMM)  
Suspend-on-Halt  
CPU Suspend  
3 Volt Suspend  
GXLV Processor Serial Bus  
Geode I/O companion hardware:  
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I/O activity monitoring  
SMI generation  
CPU Suspend control  
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Suspend Modulation  
3 Volt Suspend  
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ACPI hardware  
www.national.com  
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Revision 1.1