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.
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Customer Satisfaction
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We can provide customized products and services according to your different needs, to create a unique competitive advantage for you.
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Thin Mini Itx Motherboard◇1449TI4 Mini itx motherboard. ◇1449-TI4 V1.1. ◇Support Intel®11h(i7/i5/i3)CPU. ◇On-board REALTEK RTL8111 network card chip. ◇2×DDR4 260PIN SO-DIMM Slot. ◇1×SATA. ◇1× Mini-SATA. ◇1×M.2(2280). ◇1×MINIread more
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Thin Mini Itx Board◇Pentium/Celeron 1526TI4 thin mini itx board. ◇1526-TI4 V1.0Y. ◇Support Intel®10th(i7/i5/i3)CPU. ◇On-board REALTEK RTL8111 network card chip. ◇2×DDR4 260PIN SO-DIMM. ◇1×SATA. ◇1×M.2(2280)SSD.read more
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Mini Thin Itx◇ 1744TI4 12th 13th AIO mini thin itx motherboard. ◇ Support :Intel® Core™i312150U/i5 12450H/ i7 13620H Intel Processor. ◇ Onboard Realtek RTL8111 series Gigabit network card chip. ◇ 2 x DDR4 260PINread more
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J1900 1800 Mini Itx◇ Conroe 1356TI4 j1900 1800 Mini itx motherboard. ◇ Support: Intel® Core™i3-6006U 6/7/8 generation I3/I5/I7 (FCBGA1356) processor. ◇ Onboard Realtek RTL8111 series Gigabit network card chip. ◇ 2 xread more
What is Mini Itx
Mini-ITX is a compact motherboard configuration designed to support relatively low-cost computers in small spaces such as in automobiles, set-top boxes and network devices. It can also be used to make thin client computers.
ATX (Advanced Technology EXtended): ATX is the most common and widely used form factor. It typically measures 12 x 9.6 inches (305 x 244 mm) and offers a good balance between expansion slots and size.
Micro-ATX (mATX): Micro-ATX is a smaller form factor compared to ATX, measuring 9.6 x 9.6 inches (244 x 244 mm). It provides a more compact size while still offering a reasonable number of expansion slots.
Mini-ITX: Mini-ITX is the smallest mainstream form factor, measuring 6.7 x 6.7 inches (170 x 170 mm). It is suitable for small form factor (SFF) builds or systems with space constraints but typically has fewer expansion slots and connectors.
Extended ATX (EATX): Extended ATX is a larger form factor than ATX, measuring 12 x 13 inches (305 x 330 mm). It offers more space for additional expansion slots, memory slots, and connectors, making it suitable for high-end systems and enthusiast builds.
FlexATX: FlexATX is a compact form factor measuring 9 x 7.5 inches (229 x 191 mm). It is primarily used in small form factor systems or specialized cases that require a smaller footprint.
Mini-STX: Mini-STX is an ultra-compact form factor measuring 5.5 x 5.8 inches (147 x 140 mm). It is primarily used in small, low-power systems or embedded applications.
How to choose between Mini-ITX and MicroATX
Space constraints: For users working with a compact space or building a portable system, Mini-ITX might be the way to go due to its smaller footprint.if space isn’t a significant concern, MicroATX offers slightly more expansion options without sacrificing too much size.
Expansion needs: Users must evaluate the number of expansion slots and ports required for their build. If they plan to add multiple expansion cards such as graphics cards, W-Fi adapters, or additional storage drives, MicroATX provides more flexibility with its additional slots.if usage is more streamlined and the need for many expansion options is not anticipated, Mini-ITX can suffice.
Cooling and power: Due to their smaller size, mini-ITX systems might require more planning for efficient cooling. This could potentially limit the choices available for cooling solutions and affect overall system performance. MicroATX cases typically offer more space for larger cooling solutions and power supplies, providing better thermal management and potential for higher-performance components.
Budget and future upgradability: Users must consider their budget and plans for future upgrades. Mini-ITX motherboards and cases often come at a premium due to their more compact design, while MicroATX components can be more budget-friendly.if the need for future upgrades or component replacements is foreseen, the extra expansion slots offered by MicroATX might offer more flexibility without requiring a complete system overhaul.
What features do I need in an ITX Motherboard
One full PCI-E x16 slot
Supports most larger components, like your GPU
One smaller PCI-E slot (either x1 or x4)
Fits most smaller components, be it an audio, wireless, or capture card
At least one M.2 slot for storage
If you switch to an M.2 drive over a traditional SATA drive, you can save on quite a bit of space.
If you don’t want to use an M.2 now, you may later, so at least having the option can still be important.
What to look for when choosing a mini itx case
Size Matters
While you’re building a Mini ITX system, cases come in various sizes, so think about how much space you need. It’s advisable to choose a case that provides a little extra room for efficient airflow and component installation.
Cooling Support
Ensure your chosen case offers good cooling support. Check if it can accommodate an AIO cooler for your CPU and verify that it has adequate radiator and fan support. Proper cooling is essential for maintaining optimal system performance.
Interior Space
Ample interior space is vital for a smoother building process. Make sure there’s enough room inside the case for comfortable hardware installation. A cramped case can lead to complications during assembly.
Aesthetic Appeal
Your case’s appearance is what you and others will see, so select one that aligns with your style. Options with tempered glass side panels or optimized acoustics can enhance the visual and auditory appeal of your Mini ITX build.
There are plenty of benefits to choosing a mini ITX motherboard for your PC build. Perhaps the most obvious is the size difference — Mini ITX motherboards are about half the size of traditional ATX boards, making them perfect for smaller cases or builds. This also makes them ideal for portable or home theater or Panel PCs.
Because they are smaller in size, they take up less space and are perfect for builds that need to be portable. Additionally, mini ITX motherboards often come with features like integrated Wi-Fi and Bluetooth that aren’t available on larger boards. This makes them ideal for builds that need to be as compact as possible.
Despite their small size, mini ITX motherboards are still very powerful. They can easily handle most tasks that you would throw at them, making them a great choice for builds of all types. If you’re looking for a motherboard that is both portable and powerful, mini ITX is the way to go.
Mini ITX boards also tend to be more affordable than their full-sized counterparts, and they often come with features that aren’t available on larger boards, such as integrated Wi-Fi and Bluetooth. Additionally, since they’re smaller, they generate less heat, which can be an important consideration if you’re building a small form factor PC.
Mini ITX motherboards are becoming increasingly powerful, with many models now supporting overclocking and high-end graphics cards. So if you’re looking for a compact and affordable motherboard that still has plenty of features and performance to offer, a mini ITX board is a great option.

Installing a Motherboard - How to Install a Motherboard
Install I/O Shield (Metal Back Plate)
All motherboards should come with a metal plate with cutouts for the back connectors and ports. This metal plate is called the I/O shield (Input/Output shield). The I/O shield snaps into the back end of computer cases - No screws needed.
Before installing a motherboard in a case, you have to make sure the I/O shield is inserted in the correct direction. If your I/O shield is the type with tiny protruding bits, they should point towards the insides of the computer case.
Install Motherboard into Case
Now let's turn our attention to the motherboard standoffs (circled in yellow above). Also known as motherboard pegs, these brass-colored objects are used to secure your motherboard to the case.
Some computer cases come with motherboard standoffs pre-installed, while for others you will have to screw in the standoffs yourself. Remember to tighten the pegs with a pair of pliers instead of just using your thumbs.
Connect Front Panel Connectors to Motherboard
In order for the power button, reset button, front USB ports, front audio ports and LED lights of the computer case to work, you will need to plug their front panel connectors into the front panel header on the motherboard.
Connect Case Fans to Motherboard
Now we're down to the last step of installing a motherboard and it's a simple one: Connecting the computer case fans to your motherboard.
All you have to do is take the case fan's connector (circled in yellow below) and plug it into a 3-pin or 4-pin fan header on your motherboard. This header is often labelled as SYS_FAN or PWR_FAN.
Components of Motherboard
Keyboard And Mouse
There are mainly two types of mouse and keyboard connectors. The first connector is known as PS/2 & the second connector is known as USB.
Universal Serial Bus (USB)
The USB port is used for connecting the computer system. Various devices are connected to the USB port in the computer system, like a keyboard, mouse, camera, scanner, printer, and other devices. The main use of a USB port is to connect the peripheral devices and computer motherboards. The peripheral device connected to the computer system can be inserted or removed without system restarts, which can be the main advantage of a USB port.
Parallel Port
The old printers used in the past used the parallel port to connect with the computer system. In the parallel port, multiple wires send or receive various data bits simultaneously. On the other hand, serial ports use only one wire at a time. In the parallel port, 25 pins female DB-type connector is used.
CPU Chip
The central processing unit is the processor that controls all computer system functions. The central processing unit controls the overall flow of tasks and functions. For the computer system, the central processing unit is called the brain of the computer system.
RAM Slots
The RAM slots connect the RAM (memory) in the computer system. There are mainly two RAM slots in the general computer system, but sometimes, there can be four-plus slots in the motherboard to increase the computer system’s memory.
Floppy Controller
The older motherboard chip contains a 34-pin ribbon cable connecting the computer system with a floppy drive. In this ribbon cable, one end is directly connected to the computer system, and one end is connected to the motherboard.
IDE Controller
The integrated drive electronics, also known as ATA or Parallel ATA, represent the type of component responsible for hard drive control. In today’s computer systems, there is no support for IDE controllers.
PCI Slot
The full form of PCI is a peripheral component interface. The PCI slot primarily serves as the insertion point for a computer’s expansion cards. It can also connect other PCI devices such as sound cards, network cards, video cards, modems, and other peripherals. In today’s computer system, support for PCI expansion slots is not there.
ISA Slot
Industry-standard architecture (ISA) defines a standard architecture for expansion buses. The ISA slot serves as a connection point for input devices and modems.
CMOS Battery
The CMOS battery stores the BIOS settings on the motherboard. The CMOS battery can also store the time and data in it.
AGP Slot
The AGP (Accelerated Graphics slot) is a type of computer slot used to attach the video card to the system. This slot facilitates high-speed data transfer.
CPU Slot
The CPU slot connects the central processing unit to the computer system’s motherboard.
Power Connectors
These connectors supply power to the motherboard. The main power connector is typically a 24-pin ATX connector, and there may be additional connectors for CPU power.
What are the functions of the motherboard
The motherboard plays several critical functions in a computer system.
First and foremost, the motherboard serves as a central platform that allows different components to connect and communicate with each other.
The motherboard’s second most important function is power delivery to the various components connected to it. The motherboard distributes power from the PSU to the various components, as well as voltage regulators that ensure that components don’t get overloaded or experience power spikes that could damage them.
The motherboard also facilitates the transfer of data between different components using special circuits called buses and interfaces that allow data to flow between the CPU, RAM, storage devices, expansion cards, and other peripherals. These interfaces may include SATA, USB, PCIe, Ethernet, and audio interfaces, among others.
The BIOS or UEFI chip on the motherboard contains the necessary firmware to provide instructions and settings for initializing the computer’s hardware during the system's startup. It performs tasks such as the Power-On Self-Test (POST), which checks the system's hardware, and provides a basic set of instructions for booting the operating system.
The motherboard generates clock signals that synchronize the operations of different components so that everything works in an orderly fashion, much like a traffic light keeps traffic flowing smoothly. Clock signals ensure that data transfer, processing, and other operations occur at the correct timing, preventing data errors and enabling proper coordination between components that prevents cascading bottlenecks that can potentially cause your computer to “freeze”..
The motherboard acts as the foundation of a computer system, facilitating communication, power distribution, data transfer, and coordination among all the components, ultimately enabling the system to function as more than just the sum of its components.
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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