IBM 610, 6E1, 6C1 manual Processor clock rate, State enable means that processor 0 is enabled

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# sar -P ALL 2

AIX volker@colt 3 4 000AAFDD4C00 09/18/01 07:30:44 cpu %usr %sys %wio %idle

07:30:46

0

0

0

0

100

 

1

0

0

0

100

 

-

0

0

0

100

In the previous example, two configured processors are shown in the cpu column.

￿lsattr command. The AIX 5L™ Version 5.1 is output shown:

# lsattr -E -l proc0

 

state enable

Processor state False

type PowerPC_POWER3

Processor type False

frequency 375000000

Processor Speed False

state enable means that processor 0 is enabled.

# lsattr -E -l proc1

 

state disabled

Processor state False

type PowerPC_POWER3

Processor type False

frequency 375000000

Processor Speed False

state faulty means that processor 1 is disabled.

Note: The processor(s) remain deconfigured until manually reconfigured.

2.1.5 Processor clock rate

The different processor cards and the processor speeds can be identified by the following three methods:

1.SMS Display Configuration menu. To start and enter the graphical System Management Services, turn on or restart the computer, and press the F1 key after the keyboard icon displays during startup and before the tone. For the text-based verion of SMS, press the 1 key.

2.Use the lsattr -El procX command (where X is the number of processor, for example, proc0 is the first processor in a system). The output of the command is similar to the following:

state enable

Processor state False

type PowerPC_POWER3 Processor type False frequency 375000000 Processor Speed False

The output of the lsattr command has been expanded with AIX 5L Version 5.1 and shows now also the processor clock rate.

3.Use the lscfg -vp more command. Page down to the Processor Card entry and search for the Product Specification (ZC) entry. This gives you detailed information about:

PS

Processor Clock Speed in Hz, ASCII coded hexadecimal

LB

L2 Bus Speed in Hz, ASCII coded hexadecimal

SB

System Bus Speed in Hz, ASCII coded hexadecimal

NP

Number of Processors on Card, ASCII coded hexadecimal

L2

L2 Size in number of Kilobytes, ASCII coded hexadecimal

PF

Processor card failure code, ASCII coded decimal

The following is an example of the processor card information:

Processor Card:

 

Part Number

09P3481

12pSeries 610 Models 6C1 and 6E1 Technical Overview and Introduction

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Contents IBM Volker Haug Scott VetterPage International Technical Support Organization First Edition October Contents Page Preface Team that wrote this WhitepaperComments welcome Minimum and optional features General descriptionPage Physical package PSeries 610 Model 6C1 package layoutEnterprise racks PSeries 610 Model 6E1 package layoutRack mounting rules for Model 6C1 IBM RS/6000 7014 Model T00 Enterprise RackIBM RS/6000 7014 Model T42 Enterprise Rack VGA switch IBM 7316-TF1 Flat Panel Display ConsoleCable management arm Cable management arm for Model 6C1Page Architecture and technical overview 1 L1 and L2 cache POWER3-II architectureProcessor and cache Processor deallocation Processor boot time deconfiguration within an SMP systemCopper and Cmos technology State enable means that processor 0 is enabled Processor clock rateMemory Processor part numbersMemory boot time deconfiguration System busPCI-bus, slots, and adapters Memory interchange with other systems1 32-bit versus 64-bit PCI slots LAN adaptersGraphics accelerators Internal storage attachmentsConfiguration options, a combination MiscellaneousBoot options and limitations Boot support and limitations of storage adaptersFast boot Internal devicesSecurity Software requirementsHigh availability solution Reliability, availability, and serviceability RAS featuresRemark x means available Light Path diagnostics System indicator panelService processor Automatic rebootProcessor and memory boot time deconfiguration Service processor restartBoot to SMS menu SurveillanceSerial port snoop Hot plug power suppliesHot plug fans Hot plug task Scsi hot swap managerHandheld based systems management Special notices IBM trademarks AIX AIX 5LSystem Publications Referenced Web SitesHow to Get IBM Redbooks Mail addressRelated Publications

610, 6C1, 6E1 specifications

IBM 6C1, 6E1, and 610 models are part of IBM's legacy mainframe computing systems, renowned for their reliability, scalability, and security features. These systems have been foundational to managing enterprise-level tasks in various industries, including finance, healthcare, and government sectors.

One of the standout features of the IBM 6C1 is its advanced processing capabilities. Equipped with powerful processors, it enables users to handle heavy workloads while maintaining high performance and low latency. This model integrates IBM's latest microarchitecture technology, allowing for faster data processing and improved efficiency.

The IBM 6E1 model emphasizes enhanced memory and storage capabilities, which are crucial for running large-scale applications. With increased RAM options and high-speed access to storage solutions, users can expect improved multitasking capabilities and seamless operations for resource-intensive programs. This model also supports advanced virtualization technologies, making it easier for organizations to deploy multiple virtual machines on a single physical server, thus optimizing resource utilization.

The IBM 610 model is particularly known for its superior security features. With built-in encryption and data protection mechanisms, the 610 is designed to safeguard sensitive information against emerging cyber threats. This model adheres to stringent compliance standards, making it an ideal choice for organizations that handle critical data and require robust regulatory compliance.

Another notable characteristic across these IBM models is their reliability and uptime. IBM's engineering ensures that these systems have undergone rigorous testing to guarantee durability and performance stability. High availability configurations allow for continuous operation, minimizing downtime and ensuring business continuity.

In terms of connectivity, the IBM 6C1, 6E1, and 610 models support a wide range of networking protocols and interfaces. This flexibility allows organizations to seamlessly integrate these systems with existing IT infrastructure and modern cloud solutions.

Moreover, IBM provides comprehensive support and maintenance services for these models, ensuring that organizations can resolve issues promptly and keep their systems running optimally.

In conclusion, the IBM 6C1, 6E1, and 610 mainframe models offer a balanced combination of processing power, memory capacity, security features, and reliability. Their advanced technologies make them ideal for organizations looking to leverage mainframe capabilities for mission-critical applications and data management. With their proven track record, these IBM models continue to be a vital part of enterprise computing environments worldwide.