The Best Embeded PC Manufacture!

 

Huizhou Xinzhilan Technology Co., Ltd. was founded in 2013,It is a high-tech enterprise that focuses on the research and development, production, sales, and service of industrial control motherboards on ARM and X86 platforms,It is also a leading provider of IoT solutions in the industry.

Why Choose Us

Customer Satisfaction

Providing after-sales services can enhance customer satisfaction by ensuring that customers' needs are met even after the purchase. This can lead to increased customer loyalty and positive word-of-mouth referrals.

Custom Service

We can provide customized products and services according to your different needs, to create a unique competitive advantage for you.

 

World-wide Expertise

We know international markets and trends. Our expertise, experience and network cover all corners of the world.

Commitment To Quality

We're committed to quality and concrete actions. That means we always deliver solutions in a professional and practical way.

  • 1016-TI3 Complete Machine
    During 72-hour stress tests at 55°C, the 1016-TI3 maintained stable performance. With an optimized heatsink, CPU frequency stayed at 1.98GHz under high load, proving its reliability for 24/7
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  • Small Embedded PC
    ◇ 1264 12 small embedded pc board. ◇ Support : Intel® N100 Processor, FCBGA1264, four cores, four threads, maximum frequency. ◇ 3.40GHz, 6MB Cache cache, TDP 6W processor. ◇ Onboard Realtek RTL8111
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  • Small Embedded Computer
    ◇ 1356 E3  I3/I5/I7 mini pc motherboard small embedded computer . ◇ Support :hIntel® Core™ I3I5I7 Processor,FC-BGA1356. ◇ Onboard Realtek RTL8111 network card chip. ◇ 2 x DDR4 260PIN SO-DIMM 2133.
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  • Embedded Single Board Computer
    ◇ 1338 12 mini pc embedded single board computer. ◇ Support :Intel® jasper lake cpu. ◇ Onboard Realtek RTL8111 network card chip. ◇ 2 x DDR4 260PIN SO-DIMM(memory support 1.2v). ◇ 1× SATA. ◇ 1X MINI
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What is Embeded PC

 

 

Embedded motherboards are typically referred to as CPU boards that are integrated into equipment for control and data processing, acting as the central processing unit of the device.

12 Key Components of a Motherboard

 

Mouse and keyboard connectors
Computer motherboards must have two separate connectors that allow users to connect their external mouse and keyboard. These connectors are responsible for sending instructions and receiving responses from the computer. There are two keyboard and mouse connectors, the PS/2 and the USB. The personal system/2(PS/2) port is a mini-DIN plug that contains six pins and connects the mouse or keyboard to an IBM-compatible computer. Other computers use the USB port to connect the mouse or keyboard.

 

Universal serial bus (USB)
The USB is a computer interface that connects computers to other devices, such as phones. The USB port is a significant part of a motherboard that allows users to connect external peripheral devices such as printers, scanners, and pen drives to the computer. Moreover, it enables users to transfer data between the device and the computer. A USB port allows users to connect peripheral devices without restarting the system. Types of USB include USB-A, USB-B, USB-mini, micro-USB, USB-C, and USB-3.

 

CPU
The central processing unit (CPU) is commonly referred to as the computer’s brain. The CPU controls all the functions of a computer. CPUs are available in different form factors, each requiring a particular slot on the motherboard. A CPU can contain one or multiple cores. A CPU with a single core can only perform a single task at a time, while those with multiple cores can execute multiple tasks simultaneously.

 

RAM memory
RAM slots connect the random access memory (RAM) to the motherboard. RAM allows the computer to temporarily store files and programs that are being accessed by the CPU. Computers with more RAM capacity can hold and process larger files and programs, thus enhancing performance. However, RAM contents are erased when the computer is shut down. A computer usually has two RAM slots. However, some computers have up to four RAM slots in the motherboard to increase the available memory.

 

Basic input/output (BIOS) system
The BIOS contains the firmware of the motherboard. It consists of instructions about what to do when the computer is turned on. It is responsible for initializing the hardware components and loading the computer’s operating system. The BIOS also allows the computer’s operating system to interact and respond with input and output devices such as a mouse and keyboard.
In some motherboards, the legacy BIOS is replaced by the modern extensible firmware interface (EFI) or the unified extensible firmware interface (UEFI). UEFI and EFI allow the computer to boot faster, provide more diagnostic and repair tools, and provide a more efficient interface between the operating system and computer components.

 

Chipsets
The chipsets of a computer control how the computer hardware and buses interact with the CPU and other components. Chipsets also determine the amount of memory users can add to a motherboard and the type of connectors that the motherboard can have.
The first type of chipset is the northbridge chipset. The northbridge manages the speed at which the CPU communicates with the components. It also controls the processor, the AGP video slot, and the RAM.
The second type of chipset is the southbridge chipset. The southbridge chipset controls the rest of the components connected to the computer, including communication between the processor and expansion ports such as USB ports and sound cards.

 

Cooling fans
The heat generated when electric current flows between components can make a computer run slowly. If too much heat is left to build up unchecked, it could damage computer components. Thus, a computer performs better when kept cool. Cooling fans increase the airflow, which helps to remove heat from the computer. Some elements, such as video adapter cards, have dedicated cooling fans.

 

Adapter cards and expansion slots
Adapter cards are integrated into the motherboard to enhance a computer’s functionality. Examples include sound and video adapters. The expansion slots allow users to install compatible adapter cards. Examples of expansion slots include the peripheral component interconnect (PCI) slot, the AGP slot (which enables the insertion of video cards), the PCI Express serial bus slot, and the PCI-extended slot.

 

CMOS battery
The CMOS battery is a small round battery found on the motherboard of every computer. It provides power to the complementary metal oxide semiconductor (CMOS) chip. The CMOS chip stores BIOS information and computer settings, even when powered down. The CMOS battery allows users to skip resetting BIOS configurations, such as boot order, date, and time settings, each time they power on their computer.

 

Storage devices
Storage drives store data permanently or retrieve data from a media disk. The storage devices can either be installed in the computer as hard drives or in removable drives that can connect to the computer through the USB ports. Hard disk drives(HDD) or solid-state drives (SSD) are computers’ primary storage drives. Computers with SSDs execute tasks much faster and perform better than HDDs. Users can also use optical drives such as compact discs to store information.

 

Front panel connectors
Front panel connectors connect the light-emitting diode (LED) lights on the front of the case to the hard drive, the power button, the reset button, and the internal speaker for testing. Some USB and audio devices also have LED lights.
These front panel connectors are usually plugged into small pins on the motherboard. Although the pins are grouped and color-coded, their layout structure varies depending on the model of the motherboard.

 

Power connector
The power connector provides an electric supply to the computer to function as intended. The power supply connector has 20 pins and converts 110-V AC power into +/-12-Volt, +/-5-Volt, and 3.3-Volt direct current (DC) power.

 

Types of Motherboards
Mainboard Thin Itx
Nuc Box PC
Mini PC Windows Server
Intel Box PC

Advanced Technology (AT) motherboard
This motherboard was designed by IBM in 1984 with the IBM PC/AT. It was most widely used in industry and influenced the design of many subsequent motherboards. This motherboard has larger physical dimensions but is not suitable for smaller desktop computers.
The original AT motherboards were available in 12 inches × 13.8 inches (305 mm x 351 mm) in size, making them relatively large by modern standards. The configuration of AT motherboards was not standardized, resulting in major differences between manufacturers. This frequently resulted in inadequate airflow and complex cable management.
The Advanced Technology (AT) motherboard was a key form factor in the history of personal computing, establishing standards that impacted subsequent designs.due to its large size, convoluted layout, and restricted integration, it was eventually replaced by the more efficient and user-friendly ATX specification.

 

Standard ATX motherboard
ATX stands for advanced technology extended; it is an extended version of the AT motherboard that was created by Intel in the 1990s. It has become one of the most prevalent motherboard sizes used in desktop computers because of its compatibility and interchanged component features. A standard ATX motherboard is a popular desktop computer form factor that offers a good combination of size, capabilities, and expansion. Standard ATX motherboards are typically 305 mm x 244 mm (12 in x 9.6 in) in size. This size provides enough space for components and expansion slots.
ATX motherboard uses a common layout to enhance ventilation and component placement. The CPU socket is normally located toward the top or middle of the board, with expansion slots aligned for effective cooling and simplicity of installation.

 

Micro ATX motherboard
Micro ATX motherboards are smaller in size and have limited ports and slots than the Standard ATX board. This motherboard is better suited to users who don't desire too many connections and subsequent updates.
Micro ATX (mATX) motherboards are smaller versions of the conventional ATX motherboard form factor. It has been specifically designed concerning size and features which make it ideal for compact desktop builds while not compromising too much expandability or speed.
Micro ATX motherboards typically have dimensions of 244 mm x 244 mm (9.6 in x 9.6 in), which are smaller than conventional ATX but larger than Mini-ITX.
Micro ATX motherboards provide the right blend of size, capabilities, and expandability, making them a popular choice for a variety of desktop PC configurations. They provide ample PCIe slots and connectivity choices for most users while fitting in smaller cases than typical ATX boards. This makes them suited for a wide range of applications, including gaming, entertainment, and home office sets.

 

Extended ATX motherboard
An Extended ATX (eATX) motherboard is a larger variant of the normal ATX motherboard that is intended to provide additional features, improved performance, and expanded functionality like up to eight RAM slots, additionally, a higher number of PCIe (where e is for Express) and PCI slots.
An extended ATX (E-ATX) motherboard has a larger form factor than a conventional ATX motherboard, allowing for more components and more capabilities. E-ATX motherboards often have dimensions of 305 mm x 330 mm (12 in × 13 in) or greater. They are broader than regular ATX boards, making sufficient space for more components and expansion slots.
E-ATX motherboards have a larger form factor than regular ATX, allowing for more components, expansion slots, and functionality. They are ideal for high-performance desktop builds and enthusiast systems that require flexibility, performance, and a wide range of networking options.
E-ATX motherboards typically have several PCIe slots, including several PCIe x16 slots for high-performance graphics cards and several PCIe x1 slots for further expansion cards.

 

Flex ATX motherboard
The FlexATX standard sets a balance between size and capability, making it a popular choice for projects that need a tiny footprint without sacrificing features. FlexATX motherboards are often smaller than normal ATX and microATX boards, with dimensions of 229 mm x 191 mm (9 in × 7.5 in).
Despite their compact size, FlexATX motherboards can provide a wide range of functionality such as multiple USB ports, integrated audio, and network connectivity. However, they may contain limited ports and connectors than larger form factors.

 

Low-Profile EXtended (LPX) motherboard
These are comparatively older motherboard form factors that were popular in the late 1980s and early 1990s. It was designed for low-profile desktop cases. The dimensions of LPX motherboards include around 330 mm x 229 mm (13 in x 9 in), although these can vary.
One of the distinguishing characteristics of LPX motherboards is the use of a riser card. The riser card enables expansion cards to be placed parallel to the motherboard, lowering the overall height of the system. This design was ideal for low-profile desktop cases. The LPX motherboard had a significant impact on the evolution of computer form factors, particularly in permitting the creation of smaller desktop systems. However, it has subsequently been replaced by more modern and adaptable standards.

 
Our Factory

The company's products involve: OPS educational conference machines,Network security board NAS server soft routing motherboard,Industrial automation motherboard,Self service terminal motherboard,Domestic motherboard,Provide OEM/ODM and other products to customers,Led by an experienced R&D team,Guaranteed by advanced equipment, excellent quality, and a comprehensive service system,The product has been widely used in educational conferences,Multiple fields such as warehousing and logistics, smart healthcare, smart transportation, network security, digital business display, Internet of Vehicles, financial terminals, commercial POS machines, etc,

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Certifications

 

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FAQ

Q: What is a motherboard?

A: A motherboard is the main circuit board in a computer system. It connects all of the internal components, like the memory, processor, graphics card and other hardware. It also provides power to each component and allows them to communicate with each other. The motherboard is a key part of any computer, and its importance cannot be overstated.

Q: How does a motherboard work?

A: The motherboard is essentially responsible for connecting all the different components inside of a computer together. It has connectors for just about every type of component, from RAM to USB ports. By connecting these components together, it allows them to communicate with one another so that your computer can do what you want it to do.

Q: What are some common components on a motherboard?

A: There are several common components found on most motherboards today. These include the CPU (Central Processing Unit), GPU (Graphics Processing Unit), RAM (Random Access Memory), ROM (Read Only Memory) and Southbridge chipsets. Additionally, some motherboards also have additional features such as FireWire or Ethernet ports and onboard audio processors.

Q: What does BIOS mean?

A: BIOS stands for Basic Input/Output System, and it is used by computers to control certain low-level settings such as boot order, power management, default settings and more. BIOSs are stored on non-volatile memory chips called EEPROMs (Electrically Erasable Programmable Read Only Memory). The BIOS program runs when a computer first turns on so that it knows how to configure itself based on user settings before loading up the operating system or any applications installed on the machine.

Q: How can I connect my motherboard to the internet?

A: In order to connect your computer to the internet, you need a NIC (Network Interface Card). This card is inserted into a slot on the motherboard and is used to connect your computer to an Ethernet cable or wireless router. Once this connection is made, you can then access the internet from within your computer.

Q: What is RAID technology?

A: RAID stands for Redundant Array of Independent Disks, and it is used by many computer systems today in order to provide extra data security. By using multiple hard drives in a “RAID” configuration, you can create redundant copies of your data which can be easily recovered if one drive fails. There are different levels of RAID configurations that offer varying levels of protection and performance.

Q: What is ECC memory?

A: ECC Memory stands for Error Correcting Code Memory, and it uses special algorithms to detect and correct errors on a memory chip. ECC memory has become increasingly popular with servers as it provides much better reliability than standard RAM chips. It also allows the server to continue running even if an error occurs, meaning less downtime and more efficiency overall.

Q: How do I upgrade my CPU?

A: Upgrading your CPU requires that you know exactly what kind of processor model you currently have installed in your system. You will also need to make sure that you know what speed the processor runs at since not all CPUs are compatible with each other. Once you have determined these details, you will then need to find a compatible CPU that meets the speed requirement and purchase it before attempting any upgrades yourself.

Q: What are chipsets?

A: A chipset refers to specialized integrated circuits that are found on most modern motherboards today. They contain various controllers and bridges which allow components such as CPUs, GPUs, RAM, ROM and more communication together properly as well as providing power management features and more control over certain settings like boot orders etc. Some common chipsets include Intel’s Z87, AMD’s A58X and Nvidia’s NVMe M2/M3 series products.

Q: What is overclocking?

A: Overclocking is when users increase their CPU frequency beyond its rated specifications in order to gain improved performance in their system’s applications or games. This process usually involves adjusting voltage settings as well as other internal parameters so users should always be aware of potential risks associated with overclocking their hardware before attempting this process themselves. Additionally, some motherboards come with built-in overclocking features which can be easily enabled without having to manually adjust any settings at all - making this process even easier for experienced users who wish to increase their system’s performance without sacrificing stability or compatibility issues down the road.

Q: What is a CPU socket on a motherboard?

A: A CPU socket on a motherboard is essentially where the CPU (central processing unit) goes when installing it into your PC configuration. This socket connects directly to your processor allowing data communication between your processor and other components such as memory modules or graphics cards inside your system case via your motherboard's buses (data lanes). Different socket types exist such as LGA 1150 or LGA 1151 which indicate particular versions of Intel processors compatible with them respectively; AMD processors use their own socket types typically labeled AM3+ or FM2+.

Q: What types of motherboards are available?

A: There are several different types of motherboards available on the market today depending on what type of computer you're building or upgrading. Standard ATX (Advanced Technology extended) motherboards are most commonly used in desktop computers while mini-ITX boards are often seen in small form-factor PCs due to their compact size. There are also microATX boards which offer good performance but occupy less space than an ATX board while still supporting multiple expansion cards and internal devices like hard drives and optical drives. Additionally, there are server class motherboards designed to support higher end applications such as servers or workstations as well as embedded boards designed for embedded systems like robots or medical equipment with more specific requirements than regular PCs have.

Q: What are the different parts of a motherboard?

A: A motherboard generally consists of four main sections: the processor slot, RAM slots, PCIe or PCI Express slots, and peripheral connectors. The processor slot holds the actual CPU while RAM slots allow extra memory to be added to your PC as needed. PCIe or PCI Express slots are used to connect graphics cards and other types of expansion cards. Peripheral connectors provide power for external devices such as keyboards, mice, printers and more.

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