ASRock IMB-781 manual SATA3 Connectors

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Connect the power switch, reset switch and system status indicator on the chassis to this header according to the pin assignments below. Note the positive and negative pins before connecting the cables.

PWRBTN (Power Switch):

Connect to the power switch on the chassis front panel. You may configure the way to turn off your system using the power switch.

RESET (Reset Switch):

Connect to the reset switch on the chassis front panel. Press the reset switch to restart the computer if the computer freezes and fails to perform a normal restart.

PLED (System Power LED):

Connect to the power status indicator on the chassis front panel. The LED is on when the system is operating. The LED keeps blinking when the sys- tem is in S1/S3 sleep state. The LED is off when the system is in S4 sleep state or powered off (S5).

HDLED (Hard Drive Activity LED):

Connect to the hard drive activity LED on the chassis front panel. The LED is on when the hard drive is reading or writing data.

The front panel design may differ by chassis. A front panel module mainly consists of power switch, reset switch, power LED, hard drive activity LED, speaker and etc. When connecting your chassis front panel module to this header, make sure the wire assignments and the pin assign-ments are matched correctly.

SATA3 Connectors

(SATA_0/SATA_1/SATA_2/SATA_4/SATA_5: see p.8, No. 5)

SATA 4

SATA 0

SATA 5

SATA 1

 

SATA 2

These five Serial ATA3 (SATA3) connectors support SATA data cables for internal storage devices. The current SATA3 interface allows up to 6.0 Gb/s data transfer rate.

USB 2.0 Headers

 

PWR

(9-pin USB6_7/USB8_9:

 

-

 

+ GNDNC

see p.8, No. 15)

 

 

 

(9-pin USB10_11: see p.8,

No. 8)

1

GND

 

 

- +

 

 

PWR

Besides two USB 2.0 ports on the I/O panel, there are two headers and two ports on this motherboard. Each USB 2.0 header can support two ports.

(USB12/USB13: see p.8, No. 9)

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Contents IMB-781 CALIFORNIA, USA only Contents Software Support Package Contents IntroductionSpecifications SlotInternal Motherboard Layout ATXPWR1Page I/O Panel LAN Port LED IndicationsPre-installation Precautions Screw HolesInstallation of Memory Modules Dimm Dual Channel Memory ConfigurationPage Pcie slots Installing an expansion cardExpansion Slots PCI and PCI Express Slots CFast card socket optionalJumpers Setup JumperDescription Onboard Headers and Connectors Digital Input / Output Pin HeaderATX Power Input Connector Please connect an ATX power supply to this connectorSATA3 Connectors Chassis Intrusion Headers Driver Installation Guide Introduction Uefi Menu BarNavigation Keys Navigation KeysMain Screen F10 F12Advanced Screen Instant FlashCPU Configuration No-Execute Memory Protection Intel Turbo Boost TechnologyCPU Thermal Throttling Intel Virtualization TechnologyChipset Configuration Front Panel Restore on AC/Power LossOnboard HD Audio Onboard Hdmi HD AudioStorage Configuration IntelR Rapid Start Technology IntelR Rapid Start TechnologyIntelR Smart Connect Technology IntelR Smart Connect TechnologyAMT Technology PET Progress Super IO Configuration Acpi Configuration USB Controller USB ConfigurationIntel USB 3.0 Mode Legacy USB SupportVoltage Configuration Dram VoltageHardware Health Event Monitoring Screen Boot From Onboard LAN Boot ScreenFast Boot Setup Prompt TimeoutBoot Beep Full Screen LogoAddOn ROM Display Secure Boot Security ScreenExit Screen Running The Support CD Install Operating SystemSupport CD Information Drivers Menu

IMB-781 specifications

The ASRock IMB-781 is an innovative, compact industrial motherboard designed to meet the demanding needs of embedded applications. This motherboard combines high performance with reliable operation, making it an ideal choice for industries such as automation, transportation, and telecommunications.

One of the standout features of the ASRock IMB-781 is its Intel® LGA 1151 socket, which supports a range of 8th and 9th generation Intel® Core™ processors. This allows users to leverage advanced processing capabilities, ensuring smooth operations for resource-intensive applications. The motherboard supports up to 64GB of DDR4 RAM, thereby enhancing its multitasking capabilities and overall system performance.

In terms of connectivity, the IMB-781 is equipped with dual Gigabit Ethernet ports that enable robust and fast network connections. This feature is particularly beneficial for applications requiring reliable data transmission in real-time. Additionally, the motherboard provides multiple USB ports, including USB 3.1 Gen 2, ensuring fast and versatile peripheral connections.

The ASRock IMB-781 also excels in its expansion capabilities. It features a PCIe x16 slot for high-speed graphics cards or other extension boards, alongside multiple mini PCIe slots that allow for additional functionalities such as wireless networking or I/O expansions. The ability to incorporate these extensions makes the IMB-781 highly adaptable to varied industrial applications.

Moreover, the motherboard is designed for longevity and reliability, featuring durable capacitors and solid-state components. This design consideration is crucial in industrial environments where equipment is often subjected to harsh conditions.

The IMB-781 supports various display outputs, including HDMI and VGA, allowing users to connect multiple monitors easily and manage their workspace more effectively. Its high-definition multimedia interface ensures stunning visual performance, which is essential for monitoring and control systems.

ASRock also emphasizes security and manageability features within the IMB-781. The motherboard supports TPM (Trusted Platform Module) for enhanced security measurements, essential for safeguarding sensitive data in industrial applications. Its compact form factor further ensures that it can fit within various system configurations, making it an excellent choice for space-constrained environments.

In summary, the ASRock IMB-781 industrial motherboard exemplifies a blend of performance, reliability, and adaptability. With its support for advanced Intel processors, ample connectivity options, and robust build quality, it is designed to meet the stringent demands of modern industrial applications, positioning itself as a reliable component in various embedded systems.