ぜひ弊社まで サーバーシャーシ エンジニアおよび営業チーム




チャンネル登録者数24,000人
お客様の用途、シャーシの種類、ラックの高さ、マザーボード、GPU、ドライブベイ、電源、冷却システム、I/O、および注文数量をお知らせください。当社のエンジニアおよび営業チームが、お客様のプロジェクトに適した標準モデルまたはOEM/ODM構成をご提案いたします。.




チャンネル登録者数24,000人
お客様の用途、シャーシの種類、ラックの高さ、マザーボード、GPU、ドライブベイ、電源、冷却システム、I/O、および注文数量をお知らせください。当社のエンジニアおよび営業チームが、お客様のプロジェクトに適した標準モデルまたはOEM/ODM構成をご提案いたします。.
A rackmount case is an enclosure used to organize, protect, cool, and install electronic equipment in a standardized rack. Depending on its design, a rack mount case can house server components, networking devices, storage hardware, audio and video systems, industrial controls, laboratory instruments, or telecommunications equipment. Applications include data centers, enterprise IT rooms, recording studios, broadcast facilities, factories, laboratories, live venues, and telecom sites. Discuss your application and request a rackmount chassis recommendation or quote based on your rack, components, environment, and service needs.
A rackmount case provides a structured enclosure for equipment that must fit a standard rack. Organizations use rack cases to consolidate systems, simplify installation and service, support cable management, and apply cooling or protection suited to the operating environment.
Rack-mounted designs use vertical rack units to define equipment height, helping teams plan space for servers, storage, networking, test equipment, and power distribution. Depth, materials, airflow, access, and component support vary by chassis. Standard 19-inch racks also have defined mounting geometry, so compatibility must be checked before installation.
Data centers and enterprise IT teams use rackmount server cases for web servers, database servers, application servers, storage arrays, and other computing systems. Rack mounting supports dense, repeatable layouts for power, cooling, network connections, and maintenance.
High-density installations often use front-to-back airflow, drawing cooler air through the front and exhausting heat toward the rear. Fan layout, vent area, heat-sink clearance, and power capacity depend on the installed components and operating load. Rack infrastructure may also integrate power distribution and cable managers.
Choose a rack chassis based on workload and component layout. Server cases house compute hardware, network enclosures hold switches, routers, or firewalls, and storage servers may use multiple 3.5-inch or 2.5-inch drive bays.
Check motherboard format, rack depth, bays, card clearance, power, front access, cabling, and airflow. Devices with the same rack-unit height may need different depths or cooling, so mounting and airflow compatibility must be verified.
Recording studios, broadcast facilities, production control rooms, and live venues use rack cases for amplifiers, processors, wireless systems, interfaces, video equipment, and control hardware. Rack mounting organizes signal, power, and control equipment for operation, patching, and service.
Touring crews may use a rugged rack or shock mount flight case to transport sensitive equipment. Transport cases can add impact and vibration protection, handles, casters, removable covers, or adjustable depth, but these features are not universal. The enclosure must match equipment weight, depth, ventilation, and connection layout.
An industrial rack mount case may house control computers, machine-vision hardware, communications devices, or other automation electronics. Industrial applications often require durable construction, controlled airflow, and protection appropriate for dust, debris, vibration, and maintenance conditions.
Filtered airflow can reduce contaminant entry while supporting heat removal, but filter selection and maintenance affect cooling. Engineers should evaluate ambient temperature, heat load, fan arrangement, ingress exposure, vibration, grounding, cable entry, and service access. Required protection depends on the factory area and system configuration.
Laboratories rack-mount oscilloscopes, signal generators, data-acquisition systems, switching units, and related test equipment to create organized benches, automated test stations, and repeatable measurement systems. Rack mounting can centralize instruments while preserving front-panel access and structured cabling.
Instrument dimensions and rack kits differ, so teams should confirm mounting hardware, required rack units, ventilation clearance, connector access, and serviceability. Dedicated rackmount kits for oscilloscopes and data-acquisition instruments show why instrument-specific compatibility must be verified.
Telecommunications racks can house switches, routers, multiplexers, optical transport systems, power distribution units, and site-management hardware.
A rackmount chassis organizes telecom equipment in central offices, network facilities, edge sites, and other communications environments.
Find clear answers about rackmount case sizes, component compatibility, cooling, drive capacity, installation requirements, and custom OEM/ODM chassis options
Rackmount cases are available in 1U, 2U, 3U, and 4U configurations for different space, cooling, storage, and expansion requirements.
Choose 1U for maximum density, 2U for balanced expansion, or 3U and 4U for additional cooling, drive bays, and PCIe capacity.
Rackmount cases support data-center servers, network appliances, virtualization, HPC systems, AI inference, storage servers, and industrial computing equipment.
Yes. OEM and ODM options can include custom dimensions, drive bays, cooling layouts, front-panel connections, finishes, branding, and internal component arrangements.
Provide the rack-unit size, motherboard format, rack depth, PCIe cards, drive bays, power-supply requirements, cooling needs, and expected operating environment.
Submit your intended workload, rack dimensions, motherboard size, CPU or GPU requirements, drive-bay count, cooling, networking, PCIe expansion, PSU format, rail needs, and installation environment to receive a suitable rackmount case recommendation.