BIOS

SUPER PIIIDM6/PIIIDM4/PIIIDM3/PIIIDME Manual

PC/PCIB Select Enable

The settings for this option are Enabled or Disabled.

Search for MDA Resources

The settings for this option are Yes or No.

AC97 Audio Controller

This setting is used to switch the onboard audio on and off. The settings for this option are Enabled or Disabled.

Memory Hole

Some ISA cards may require specific areas of memory in order to function. This can be done by choosing the 15MB -16MBoption as an area reserved for ISA use. The Disabled option will not reserve a portion of memory for ISA cards.

DMA-0 Type

DMA-1 Type

DMA-2 Type

DMA-3 Type

DMA-5 Type

DMA-6 Type

DMA-7 Type

These options determine the bus that the specified DMA channel can be used on. The settings are LPC DMA or PC/PCI.

Onboard FDC

This option enables the FDC (Floppy Drive Controller) on the motherboard. The settings are Disabled and Enabled.

CPU Speed at FSB 133/100

This option allows you to increase the FSB speed over the normal 100 and 133 MHz settings controlled by JP3. The settings for this option are 2x266/200, 4x533/400, 3x400/300, 5x666/500, 2.5x333/250, 4.5x600/450, 3.5x466/350, 5.5x733/550, 6x800/600, 8x1K/800, 7x933/700, 6.5x866/650, 1.5x200/150 and 7.5x999/750 (MHz). (The Auto setting on JP3 allows the system to determine which front side bus speed will be used.)

MRHS Memory Buffer Strength

This settings for this option are Auto and Strong.

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SUPER MICRO Computer Super PIIIDM6 PC/PCIB Select Enable, Search for MDA Resources, AC97 Audio Controller, Memory Hole

Super PIIIDME, Super PIIIDM4, Super PIIIDM3, Super PIIIDM6 specifications

Super Micro Computer, a prominent player in the server and high-performance computing industries, has introduced a range of motherboards known as the Super PIIIDM4, Super PIIIDME, Super PIIIDM6, and Super PIIIDM3. These motherboards are engineered to cater to various computing needs, from enterprise servers to personal workstations, reinforcing Super Micro's reputation for innovation and reliability.

The Super PIIIDM4 motherboard stands out for its support for Intel's latest multi-core processors. It features a robust chipset that enhances overall system stability and performance. With up to 128GB of DDR4 ECC (Error-Correcting Code) memory support, it ensures data integrity and reliability, making it ideal for critical applications that demand uninterrupted service. It also incorporates multiple PCI-E slots for expandability, allowing users to add high-speed networking cards or advanced graphics solutions.

The Super PIIIDME motherboard, designed for minimalist environments, offers a compact form factor without compromising performance. Equipped with multiple SATA III ports, it supports modern storage solutions, including SSDs, which significantly improve data access speeds. The board provides integrated graphics, catering well to general-purpose computing while maintaining low power consumption, a hallmark of Super Micro's design philosophy.

The Super PIIIDM6 motherboard is geared towards high-density server applications. It supports dual CPU configurations, enabling parallel processing for demanding tasks. Featuring enhanced thermal management technologies, including advanced heat sink designs and multiple fan headers, this motherboard ensures optimal cooling even under heavy loads. The Super PIIIDM6 also provides extensive I/O options, including high-speed USB ports, and onboard RAID support, enhancing data redundancy and performance.

Lastly, the Super PIIIDM3 serves as a versatile solution for educational and research institutions, featuring ample expansion options and networking capabilities. It supports legacy PCI slots for compatibility with older hardware, ensuring that institutions can leverage existing infrastructure while transitioning to newer technologies.

In summary, the Super Micro Super PIIIDM series represents a commitment to quality and performance across various applications. These motherboards are designed with the latest features and technologies, ensuring that users can achieve optimal performance and scalability in their computing tasks. Whether for enterprise servers, personal workstations, or educational setups, these motherboards offer a robust foundation for any computing environment.