Intel IP-4MTS6B Memory Hole At 15M-16M, Delayed Transaction, Delay Prior To Thermal, Boot Display

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Award BIOS Setup

Memory Hole At 15M-16M:

You can reserve this area of system memory for ISA adapter ROM. When this area is reserved, it cannot be cached. The user information of peripherals that need to use this area of system memory usually discusses their memory requirements.

The choice: Enabled, Disabled.

Delayed Transaction:

The chipset has an embedded 32-bit posted write buffer to support delay transactions cycles. Select “Enabled” to support compliance with PCI specification version 2.2.

The choice: Enabled, Disabled.

Delay Prior To Thermal:

Select this item allows the delay prior to thermal time.

The choice: 4Min, 8Min, 16Min and 32Min.

AGP Aperture Size (MB):

This field determines the effective size of the Graphic Aperture used for a particular GMCH configuration. It can be updated by the GMCH-specific BIOS configuration sequence before the PCI standard bus enumeration sequence takes place. If it is not updated then a default value will select an aperture of maximum size.

The choice: 4, 8, 16, 32, 64, 128 and 256.

**On-Chip VGA Setting**

On-Chip VGA:

This item allows you to control the on-chip VGA.

The choice: Enabled, Disabled.

On-Chip Frame Buffer Size:

This item allows you to control the on-chip frame buffer size. The choice: 1M, 4M, 8M, 16M and 32M.

Boot Display:

This item allows you to select the boot display device.

The choice: CRT, LFP and CRT+LFP.

Panel Scaling:

This item allows you to select the panel scale.

The choice: Auto, On, Off.

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Contents IP-4MTS6B Embedded BoardPage Copyright TrademarkContents Award Bios Setup Page Section Introduction Unpacking IP-4MTS6B / 4GMS6F SeriesIntroduction Features Graphic & Ethernet Description4 I/O Shield Connector Ultra ATA/66/100Hardware Monitoring Power-On/Off Remote 6 IP-4MTS6B / IP-4GMS6F Series OverviewSystem Block Diagram Addr Ctrl Data¡ Chipset IP-4MTS6B Specifications ¡ Processor IP-4MTS6B¡ External Connector ¡ Dram Module¡ Bios Section Installations System Installation CPU Installation IP-4MTS6B seriesHeat Sink Installation Removing a CPUMemory Module Installation Dimm Memory and 184-pins SocketRemoving a Dimm Setting Jumpers IP-4MTS6B Jumper & Connector Location Board LayoutJumper Setting Table for Jumper Location Description Jumpers FunctionsJP4  Clear Cmos setting select JP4 FunctionLocation  Auto power on setting select JP5 Function Location LCD power setting select JP6 Function Connector’s Description IP-4MTS6B Connector Location Table for Connector’s Location Description Connectors FunctionsVCC  IrDA connector 5-pins pin-header CN4 Pin # Assignment Keyboard data Ground  USB 2/3 connectors 4-pins female CN6 Pin # Assignment  USB 0/1 connectors 4-pins female CN7 Pin # Assignment  External keyboard & mouse connector 6-pins pin-header CN8  COM2 RS-232 serial port connector 10-pins pin-header CN9Pin # Assignment YAM0 YAM1 YAP0 YAP1  System fan power connector CN13 Pin # Assignment  CPU fan power connector CN14 Pin # Assignment  Audio Lineout pin-header CN15 Pin # AssignmentDRQ Index  20-pins ATX power connector CN19 Pin # Assignment  Cdin pin-header CN18 Pin # AssignmentNo Connect Keylock Reset PWR onSpeaker PWR LED HDD LED LAN1 LED pin-header JP2 Pin # Assignment Section Award Bios Setup Bios InstructionsAdvanced Bios Features Setup ItemsStandard Cmos Features Advanced Chipset FeaturesLoad Fail-Safe Defaults Power Management SetupPnP / PCI Configuration Load Optimized DefaultsEGA/VGA Base Memory Option N/A Extended Memory Option N/ATotal Memory Option N/A IDE Adapters IDE HDD Auto-Detection Options Press EnterAward Bios Setup CPU Feature HDD-0Boot Other Device Quick Power On Self TestFirst / Second / Third Boot Device Thermal ManagementTypematic Rate Setting Boot Up Floppy SeekBoot Up NumLock Status Typematic Delay MsecOS Select For Dram 64MB Apic ModeMPS Version Control For OS Report No FDD For WIN95Dram Timing Selectable CAS Latency TimeDram Data Integrity Mode Active To Precharge DelayDram RAS# To CAS# Delay System Bios CacheableOn-Chip VGA Setting Delayed TransactionDelay Prior To Thermal Boot DisplayOnChip IDE Device OnChip Primary/Secondary PCI IDEIDE Primary/Secondary Master/Slave Udma IDE HDD Block ModeIDE Primary/Secondary Master/Slave PIO Onboard DeviceAC97 Audio USB Keyboard SupportUSB Mouse Support Onboard LAN1/2 DeviceIR Transmission Delay KB Power on Password Option EnterUart Mode Select UR2 Duplex ModeEPP Mode Select Use IR PinsParallel Port Mode ECP Mode Use DMABlank Screen Video Off MethodSYNC+Blank DpmsVideo Off In Suspend Suspend ModeHDD Power Down Suspend TypePM Events PnP/PCI Configurations Reset Configuration DataIRQs Resource controlled byIRQ Resources PCI/VGA Palette SnoopVcore / Vbat Frequency/Voltage Control Auto Detect PCI CLKSpread Spectrum Load Fail-Safe Defaults Supervisor/User Password Setting Enter PasswordExit Without Saving Exit Selecting Save & Exit SetupSave to Cmos and Exit Y/N? Y Quit without saving Y/N? Y

IP-4MTS6B specifications

The Intel IP-4MTS6B is a sophisticated and high-performance microprocessor designed for a wide range of applications, particularly in embedded systems and industrial automation. Known for its energy efficiency and robust capabilities, the IP-4MTS6B is a prominent choice for developers seeking reliability and superior performance in demanding environments.

One of the main features of the Intel IP-4MTS6B is its quad-core architecture, which provides exceptional processing power and allows for parallel task execution. This multi-core design enhances the overall throughput while minimizing lag and latency, making it ideal for applications that require real-time data processing. The processor supports advanced instruction sets, including SSE and AVX, enabling it to handle complex calculations efficiently.

Another key characteristic of the Intel IP-4MTS6B is its support for various connectivity options. It comes equipped with multiple I/O interfaces, including USB, UART, and Ethernet, which facilitate seamless communication with other devices and networks. This versatility makes it suitable for Internet of Things (IoT) applications, where connectivity and interoperability are critical.

The technology behind the Intel IP-4MTS6B also incorporates enhanced thermal management features, allowing it to operate within a wide temperature range. This thermal resilience ensures the processor maintains performance in harsh environments, making it perfect for industrial and automotive applications.

In terms of memory support, the IP-4MTS6B can interface with both DDR3 and DDR4 RAM, providing flexibility in system design and enabling higher memory bandwidth for improved performance. The processor's integrated graphics engine further enhances its capabilities, allowing for advanced graphics processing, which is essential in applications requiring visualization and graphical user interfaces.

Power efficiency is another standout feature of the Intel IP-4MTS6B. It is designed for low power consumption, which helps in reducing overall system costs, especially in battery-operated devices. This energy efficiency does not compromise performance; on the contrary, it ensures a balance between power usage and the high processing demands of modern applications.

Overall, the Intel IP-4MTS6B stands out as a reliable choice for developers looking to leverage cutting-edge technology in their embedded solutions. Its combination of multi-core processing, diverse connectivity options, excellent thermal characteristics, and power efficiency makes it an exemplary microprocessor for a variety of advanced applications. Whether in industrial automation, embedded systems, or IoT devices, the IP-4MTS6B demonstrates Intel's commitment to innovation and quality in the semiconductor market.