Intel KEMX-2030 user manual „ Exit Menu, Save Changes and Exit, Discard Changes and Exit

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Chapter 4

„Exit Menu

Table 52 Exit Menu

BIOS SETUP UTILITY

M a i n

A d v a n c e d

B o o t

C h i p s e t

P o w e r

S e c u r i t y

E x i t

 

 

 

 

 

 

 

Exit Setting

Save Changes and Exit

Discard Changes and Exit Discard Changes

Load Optimal Defaults Load Failsafe Defaults

Exit System Setup after saving

the changes.

F10 key can be used for this operation.

<> Select Screen ↑↓ Select Item +- Change Field Tab Select Field F1 General Help F10 Save and Exit ESC Exit

V02.61 (C)Copyright 1985-2006, American Megatrends, Inc.

Save Changes and Exit

Exit system setup after saving the changes. Once you are finished making your selections, choose this option from the Exit menu to ensure the values you selected are saved to the CMOS RAM. The CMOS RAM is sustained by an onboard backup battery and stays on even when the PC is turned off. When you select this option, a confirmation window appears. Select [Yes] to save changes and exit.

Discard Changes and Exit

Exit system setup without saving any changes. Select this option only if you do not want to save the changes that you made to the Setup program. If you made changes to fields other than system date, system time, and password, the BIOS asks for a confirmation before exiting.

Discard Changes

Discards changes done so far to any of the setup values. This option allows you to discard the selections you made and restore the previously saved values. After selecting this option, a confirmation appears. Select [Yes] to discard any changes and load the previously saved values.

Load Optimal Defaults

Load Optimal Default values for all the setup values. This option allows you to load optimal default values for each of the parameters on the Setup menus, which will provide the best performance settings for your system. The F9 key can be used for this operation.

KEMX-2030 User’s Manual

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Contents KEMX-2030 Revision Date Edited by Changes Quanmax Inc. All rights reservedContent Content Figures Tables Tables „ When Working Inside a Computer „ Before You Begin„ Preventing Electrostatic Discharge Safety Instructions „ Regulatory Compliance Statements „ How to Use This Guide„ Unpacking FCC Compliance Statement for Class a DevicesReturn Procedure „ Warranty PolicyLimited Warranty Limitation of Liability „ Temperature„ Maintaining Your Computer Environmental Factors„ Altitude Power Protection„ Uninterruptible Power Supply „ Surge ProtectorPreface Introduction ChecklistFeatures „ Overview„ Product Specifications Bios„ System Block Diagram Block Diagram„ Mechanical Dimensions Mechanical DimensionsHardware Settings Jumpers„ Jumper Settings and Pin Definitions CN10Jumper Status Jumper Setting StatusFunction Jumper Setting Function Label Function Signal NamePin Signal Name RXD, Receive data Pin SignalDCD, Data carrier detect TXD, Transmit dataPin Signal Function Main Board Pin Assignments MIC2-L HDD LED + Signal Pin Signal Name PinDREQ0 GND IDEIOW# IDEIOR# Ideiordy Cbsel USB4 USB5 USB4+ USB5+ GND KEY Pcie slots IRDY# Comments Pitch2.54mm Yimtex 32526SAG1R6T „ Expansive Interfaces System Installation„ Memory Module Installation Removing a Dimm Align the SO-DIMM Memory Module with the onboard socketAMI Bios Setup LBA/ Large Mode Auto Bios Main MenuIDE Device Setting Menu „ Main Menu„ Advanced Menu LBA/ Large ModeDMA Mode System InformationParallel Port Mode COM3 ModeCOM4 Mode COM1 AddressUSB Device Legacy Support Parallel Port IRQUSB Controller Audio ControllerHardware Health Configuration CPU Warning TemperatureCPU Shutdown Temperature Trusted ComputingBootup Num-Lock On „ Boot MenuQuick Boot Wait for ‘F1’ If Error Enabled„ Chipset Menu Boots Graphic Adapter PriorityInternal Graphics Mode Select Dram FrequencyBoot Display Device „ Video Function ConfigurationDvmt Mode Select DVMT/FIXED Memory„ Power Menu Security Menu Change Supervisor PasswordChange User Password Security MenuSave Changes and Exit Load Optimal Defaults„ Exit Menu Discard Changes and ExitLoad Failsafe Defaults Driver Installation System Resources Interrupt Request IRQ LinesPCI Devices DMA ChannelsMemory Mapping PCI Express DevicesPS/2 P OS Hardware Monitor ParametersHow to install the test program DIO Digital I/O KIT User GuideAppendix B Appendix B How to run the test program CN3 to DIO Program look up tableHow to uninstall the test program

KEMX-2030 specifications

The Intel KEMX-2030 is a cutting-edge processor designed to push the boundaries of performance and efficiency in computing applications. This innovative chip integrates advanced technologies that cater to a variety of users, from gamers to data scientists, ensuring that it meets the demands of modern workloads.

At the heart of the KEMX-2030 is Intel's latest microarchitecture, which enhances instruction execution and optimizes power consumption. This microarchitecture employs a combination of high-performance cores and energy-efficient cores, allowing for dynamic scaling based on workload requirements. This enables the KEMX-2030 to deliver exceptional performance while maintaining energy efficiency, a crucial factor in today's environmentally conscious world.

One of the standout features of the KEMX-2030 is its support for Intel's Hyper-Threading technology. This technology allows each core to handle two threads simultaneously, effectively doubling the number of tasks the processor can manage at once. As a result, users can experience improved multitasking and faster processing times, especially in applications that require heavy computations.

The KEMX-2030 also includes built-in artificial intelligence (AI) capabilities that facilitate real-time machine learning applications. With dedicated AI accelerators, the processor can efficiently execute complex algorithms, making it suitable for tasks such as image and speech recognition, natural language processing, and more. This integration of AI and machine learning technologies not only boosts productivity but also opens up new avenues for innovation across industries.

In terms of connectivity, the KEMX-2030 supports the latest standards, including Thunderbolt 4 and USB4. This enables high-speed data transfers and connectivity to a wide array of peripherals. Additionally, the processor is optimized for use in edge computing environments, making it an ideal choice for IoT applications that require quick and reliable data processing at the source.

Thermal management is another critical aspect of the KEMX-2030's design. The processor utilizes advanced thermal throttling techniques to regulate temperature effectively during intensive tasks. This ensures stable performance without the risk of overheating, prolonging the lifespan of the hardware.

In summary, the Intel KEMX-2030 represents a significant advancement in processor technology. With its high-performance capabilities, energy-efficient design, and robust support for AI and connectivity, it is poised to become a preferred choice for a wide range of computing applications, driving innovation and efficiency in various fields.