The Best Itx 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.

  • 1528-TI4
    ◇ 1528-TI4 v1.3◇ Support Intel® Core™ i5-10210U ◇ On-board REALTEK RTL8111 network card chip◇ 2×DDR4 260PIN SO-DIMM Slot, Max 64GB◇ 1×M-SATA SSD 2 x SATA◇ 1×MINI PCI-E◇ Operating system: Windows
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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×MINI
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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.
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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 260PIN
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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 x
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  • Mainboard Thin Itx
    ◇ N5095 N5105 1338TI4 Mainboard Thin Itx. ◇ 1338-TI4 V1.1. ◇ Support Intel®Jasper Lake CPU. ◇ On-board REALTEK RTL8111 network card chip. ◇ 2×DDR4 260PIN SO-DIMM. ◇ 1×SATA. ◇ 1×M.2(2280). ◇
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  • J1900 Thin Itx
    ◇ Bay Trail celeron J1800 J1900 thin itx motherboard. ◇ 1170-TI3 V1.7. ◇ Support Intel®Bay Trail CPU. ◇ On-board REALTEK RTL8111 network card chip. ◇ 1×DDR3 204PIN SO-DIMM. ◇ 1×SATA 1×SATA 22pin. ◇
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  • 11th 12th Thin Itx
    ◇ N95 N100 1264TI4 12th thin itx motherboard◇ Support : Intel® N95 N100 Processor, FCBGA1264, quad-core, quad-thread, Max frequency 3.40GHz,6MB cache, TDP 6W processor(i7/i5/i3)CPU◇Onboard Realtek
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What is Itx

 

 

ITX refers to a form factor, which is a smaller version of the standard ATX motherboard used in computer systems. It is designed to fit into compact cases and is commonly used in small form factor (SFF) and mini-ITX systems.

 
Difference between ITX and ATX

 

Characteristics ITX ATX
Size 170mm x 170mm 305mm x 244mm
Expansion Slots 1/2 4/7
Compatibility ITX are compatible with smaller components. ATX is compatible with larger components.
Power Consumption It consumes less power. It consumes a lot of power.
Cost Low Cost High Cost
Use cases Compact PCs, HTPCs, SFF gaming PCs, mini desktops High-performance gaming PCs, workstations, and multi-GPU systems

 

 
Industrial and Embedded Uses of ITX Motherboards
Transportation Systems

ITX boards can be found in transportation systems such as smart ticketing machines, onboard infotainment systems, and passenger information displays. They provide the computing power required to handle various functionalities and ensure a smooth user experience.

Surveillance Systems

ITX boards play a crucial role in surveillance systems by providing the necessary computing power for video recording, data analysis, and monitoring. They can be used in both indoor and outdoor surveillance applications, such as CCTV systems, traffic monitoring, and security systems.

Medical Devices

In the medical field, ITX boards are used in various devices, including medical imaging systems, patient monitoring systems, and diagnostic equipment. These motherboards enable reliable and efficient data processing, contributing to improved diagnostic accuracy and patient care.

Gaming and Casino Systems

While you mentioned excluding gaming, it’s worth noting that ITX boards are also used in gaming and casino systems. They power gaming machines, slot machines, and other gaming devices, providing the necessary computing power, graphics capabilities, and connectivity options.

Smart Building Automation

ITX boards are utilized in smart building automation systems to control and monitor various building functions such as lighting, HVAC (heating, ventilation, and air conditioning), security systems, and energy management. These motherboards enable efficient management, control, and automation of building operations.

Thin Mini Itx Motherboard

Working of Motherboard

 

Component Integration: The motherboard integrates essential components such as the CPU (Central Processing Unit), RAM (Random Access Memory), GPU (Graphics Processing Unit), storage drives (HDDs/SSDs), and expansion cards (graphics cards, sound cards, etc.).

 

Data Communication: It facilitates data communication between the CPU and other components through buses, such as the front-side bus (FSB) or the more modern PCIe (Peripheral Component Interconnect Express) bus.

 

Power Distribution: The motherboard distributes power from the PSU (Power Supply Unit) to various components using power connectors such as ATX or EPS connectors. It ensures each component receives the appropriate voltage and current.

 

BIOS/UEFI Initialization: When the computer is powered on, the motherboard's BIOS (Basic Input/Output System) or UEFI (Unified Extensible Firmware Interface) initializes hardware components, conducts POST (Power-On Self-Test), and loads the operating system from storage into memory.

 

Peripheral Connectivity: It provides connectors for peripherals like USB devices, audio devices, networking interfaces, and expansion slots for additional hardware components.

 

Expansion Capabilities: Motherboards often feature expansion slots (PCIe, PCI, etc.) to accommodate additional cards, enabling users to enhance system capabilities by adding new functionalities like graphics cards, sound cards, or networking cards.

 

Heat Dissipation: Some motherboards incorporate heat sinks or heat pipes to dissipate heat generated by components like the CPU and chipset, ensuring stable operation and longevity.

Tips for Maintaining a Computer Motherboard

 

 

Make sure to keep any built-in Wi-Fi modules or Bluetooth adapters clean. If dust settles on these devices, it can cause overheating and failure of the motherboard. To prevent this from happening, simply use a compressed air duster to remove the dust at least once per year. This will also go a long way towards preventing overheating issues that could potentially damage your components.


Use an anti-static wrist strap when working inside your computer to avoid electrostatic discharge (ESD), which can ruin electronic components instantly if mishandled. ESD is prevalent in computers due to their electronic nature, so you should always wear an anti-static wrist strap while working on them! It’s best practice to attach the clip side of the wrist strap to your bare wrist and then connect the other end of the clip to a metal part of your computer chassis before handling components.


Don’t buy any cheap aftermarket cooling products for your CPU. Processor manufacturers go through great lengths to ensure their processors run at an appropriate temperature, even if that means including heat spreaders with elevated thermal tolerances. While it’s possible to delid (remove) these heat spreaders, you should only do this if you know what you’re doing! all third-party coolers void warranties on Intel processors because they aren’t made by Intel themselves.


Take care when inserting PCI/PCIe cards into empty slots on your motherboard or graphics card. After removing a slot cover screw, take care to avoid touching the exposed metal around it. While this may not seem important when your computer is off, it can cause problems when you’re booting up and applying static electricity from your body to components in the machine.


If you have a motherboard with two RAM slots and only one stick of RAM, make sure to fill both slots before booting up your computer! Not using both slots will prevent your computer from utilizing dual or quad channel memory which can slow down or decrease performance in heavy workloads.


To reduce the chance of a short circuit during a spill, always unplug all power cables to motherboards, graphics cards, hard drives, optical drives, etc. before attempting any work on them! A single exposed cable can create an electrical short capable of damaging your motherboard.


Do not move or transport computers while they are booted, especially with disk drives attached! The moving action alone can cause the read/write heads to crash into the disks and damage them beyond repair. If you must move a computer with an attached drive (e.g. external hard drive) unmount the device before transporting it to avoid any damages that might occur if the cable or cord gets caught on something.


When installing parts into your computer always double check that you have everything necessary to complete the installation before powering on! A common mistake is forgetting screws when installing new hardware like graphics cards, optical drives, etc. Not having enough screws could lead to stripping screw holes which will make removing components difficult later down the road.


Remember to ground yourself before touching any computer parts! Static discharge can damage parts majorly, even if the power is off. Touching metal objects or other grounded surfaces will help drain excess charge that could potentially damage your computer’s hardware.


When handling components be mindful of static charges. Certain types of plastics are more prone to picking up extra charges than others – typically this applies to plastic casings found on hard drives and optical drives (e.g., DVD/CD-ROM). When transporting these devices be sure to touch a grounded object first before picking them up or setting them down to avoid damaging your hardware with a static shock!


Power supplies (PSU) generate heat which must be dissipated in order for it operate at peak efficiency. When assembling your computer make sure all components are properly cooled by having enough fans blowing air throughout the case or adding an extra fan to the PSU if necessary. It is also wise to leave two empty drive bays open next to each other at the front of your system’s case for airflow purposes – This will help prevent hot air from building up within your hardware!


Freezing liquids expand when frozen, so do not store your electronic devices in places that are susceptible to freezing temperatures (e.g., near a window sill)! For devices that are not water-resistant you should avoid submerging them in liquid completely — Water can seep into openings and find its way into hardware components causing corrosion which may decrease their life span or cause them to malfunction.


It is also essential that you provide adequate ventilation to your motherboard — Most people tend to think of their CPU when they think about providing sufficient cooling for their hardware, but the chipset and voltage regulators can get hot too if not properly cooled! Cooling fans are often included with motherboards, but many users may overlook this feature and try to improvise by using standard case fans.

 

This will NOT give you satisfactory results – Do not use any devices that blow air outwards (instead of into the case) as this could actually worsen the problem by blowing dust into your computer instead of away from it! If you don’t have any cooling fans at all, replacing them early on in the life-cycle of your motherboard is cheap insurance.

 
What hardware has to go on the motherboard board

What is prioritized in the application Is it computing power, space, storage, graphics, control signals, etc.


Is the system going to be a workhorse and heavily used in incessant computing, including the TDP desktop CPU and the GPU Do I need to budget carefully for power consumption and room for cooling systems.


Do I have to save space by going for m.2 SSD storage and WiFi cards, or do I not care about size and plain old chunky SATA drives and GbE ports–do not forget the fiber cables that come into place–are more than welcome.


Is PCI-E for graphics cards essential to my business Can integrated graphics processing capability in the CPU handle the tasks such as dual display, image processing, video streaming, etc. that my business deems essential.


Does the service rely on rapid and instantaneous tasks so I have to make sure there is enough memory Is 16G enough Or should I bump it up to 64G.

 
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 are the advantages of using ITX motherboards?

A: ITX motherboards offer several advantages. Firstly, they are compact and take up less space, making them ideal for building small and portable systems. Secondly, they consume less power compared to larger motherboards, which can be beneficial for energy efficiency and reducing heat output. Additionally, ITX motherboards are often cheaper than their larger counterparts, making them a cost-effective choice for budget-conscious users.

Q: Can I use an ITX motherboard in a regular-sized PC case?

A: Yes, it is possible to use an ITX motherboard in a regular-sized PC case. However, since ITX motherboards are smaller, they might leave empty spaces in the case, which can affect the aesthetics and airflow within the system. To fill these empty spaces, you can use additional components such as expansion cards or storage drives or consider using a case specifically designed for ITX motherboards.

Q: Are ITX motherboards less powerful than larger form factor motherboards?

A: ITX motherboards are not inherently less powerful than larger form factor motherboards. They offer the same functionalities and can support the latest processors, graphics cards, and memory modules. However, due to their smaller size, ITX motherboards usually have fewer expansion slots and memory slots compared to larger motherboards. This can limit the upgradability of the system.

Q: Can I build a gaming PC using an ITX motherboard?

A: ITX motherboards can be used to build gaming PCs. Although they may have limited expansion slots for additional graphics cards, you can still use a powerful graphics card that fits in the available slot. Additionally, many ITX motherboards support high-performance processors and have sufficient connectivity options to accommodate gaming peripherals and accessories.

Q: Are ITX motherboards more difficult to build compared to larger motherboards?

A: Building with ITX motherboards can be a bit more challenging than larger motherboards due to the limited space available for components. Cable management can be trickier, and the smaller form factor may require careful planning to ensure everything fits properly. However, with a little patience and attention to detail, building ITX motherboards can be a rewarding experience.

Q: Can I use a regular power supply unit (PSU) with an ITX motherboard?

A: Yes, you can use a regular PSU with an ITX motherboard. Most ITX motherboards use the same power connectors as larger motherboards. However, since ITX systems are often compact, you might need to consider the physical size of the PSU to ensure it fits in your chosen case. Some cases specifically designed for ITX motherboards may also have PSU size restrictions, so it's important to check compatibility before making a purchase.

Q: Are there any specific cooling considerations for ITX systems?

A: Cooling can be a critical aspect of ITX systems due to their compact size. It's important to ensure proper airflow to avoid overheating. Consider using a case with good ventilation and support for small form factor cooling solutions such as low-profile control processing unit (CPU) coolers or small fans. Additionally, using efficient and well-designed components, as well as proper cable management, can help optimize airflow within the system.

Q: Can I use a regular-sized graphics card with an ITX motherboard?

A: Most ITX motherboards have a peripheral component interconnect express (PCIe) x16 slot, allowing you to use a regular-sized graphics card. However, due to the limited physical space in ITX cases, you should check the maximum supported graphics card length specified in the manual. Some ITX cases have size restrictions that may require you to use smaller, compact graphics cards to ensure proper fit.

Q: Can I use an ITX motherboard for a home theater PC (HTPC)?

A: Yes, ITX motherboards are commonly used for building HTPCs. Their small form factor allows for easy integration into living room setups without taking up too much space. You can pair an ITX motherboard with a low-power processor, sufficient memory, and a compact case to create a powerful and media-centric HTPC for streaming movies, playing music, and more.

Q: Can I overclock my components with an ITX motherboard?

A: Yes, many ITX motherboards support overclocking, allowing you to increase the clock speeds of your CPU, GPU, and memory for improved performance. However, due to the limited space and potentially constrained cooling capabilities in ITX systems, you should ensure proper cooling and monitor temperatures closely when overclocking. It's also important to note that not all ITX motherboards offer extensive overclocking options, so be sure to check the specifications before making a purchase.

Q: Are there any specific considerations for ITX systems when it comes to storage options?

A: ITX systems usually have limited physical space for storage drives. Therefore, it's common to use smaller form factor storage devices such as M.2 solid state drives (SSDs) or 2.5-inch SSDs or hard drives. These compact storage options can be easily mounted on the motherboard or within the case without taking up too much space. Additionally, some ITX cases provide specialized drive mounts or brackets to maximize storage capacity within the limited form factor.

Q: Can I use liquid cooling in an ITX system?

A: Yes, it is possible to use liquid cooling in an ITX system. However, due to the limited space available, you should ensure compatibility with the case and check for radiator and pump mounting options. Some ITX cases are specifically designed to accommodate liquid cooling solutions, with built-in radiator mounts or support for all-in-one liquid coolers. Proper planning and consideration of component sizes are crucial when integrating liquid cooling into an ITX system.

Q: Can I use an ITX motherboard for a portable gaming system?

A: Yes, ITX motherboards can be used for building portable gaming systems. Their compact size and power efficiency make them suitable for portable setups. By combining an ITX motherboard with a small form factor case, a powerful processor, a high-performance graphics card, and a portable display, you can create a portable gaming system that allows you to enjoy your favorite games on the go.

Q: Can I use ITX motherboards in custom-built laptops?

A: ITX motherboards are not typically used in custom-built laptops. Laptops require specialized components and motherboard designs that are specifically tailored for their form factor and power requirements. ITX motherboards are primarily intended for desktop systems, and their larger size and power consumption make them unsuitable for laptops.

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